mirror of
https://github.com/mihakralj/QuanTAlib.git
synced 2026-08-17 10:08:05 +00:00
Merge branch 'dev' into main
This commit is contained in:
@@ -1,4 +1,8 @@
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<<<<<<< HEAD
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/*
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=======
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>>>>>>> dev
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using Xunit;
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using System;
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using QuanTAlib;
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@@ -20,7 +24,7 @@ public class PandasTA : IDisposable
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public PandasTA() {
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bars = new(Bars: 5000, Volatility: 0.8, Drift: 0.0);
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period = rnd.Next(maxValue: 28) + 3;
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sample = 200;
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sample = period+1;
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digits = 10;
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// Checking the host OS and setting PythonDLL accordingly
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@@ -186,7 +190,20 @@ public class PandasTA : IDisposable
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double PanTA_item = Math.Round((double)pta[i - 1], digits: digits);
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Assert.InRange(PanTA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
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}
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}
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}
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[Fact]
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void MACD() {
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MACD_Series QL = new(bars.Close, 26,fast: 12,signal:9);
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var pta = df.ta.macd(close: df.close).to_numpy();
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for (int i = QL.Length; i > QL.Length - sample; i--) {
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double QL_item = QL[i - 1].v;
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double PanTA_item = (double)pta[i - 1][0];
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Assert.InRange(PanTA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
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QL_item = QL.Signal[i - 1].v;
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PanTA_item = (double)pta[i - 1][2];
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Assert.InRange(PanTA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
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}
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}
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[Fact] void MAD()
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{
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MAD_Series QL = new(bars.Close, period, useNaN: false);
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@@ -380,4 +397,7 @@ public class PandasTA : IDisposable
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}
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}
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*/
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<<<<<<< HEAD
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*/
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=======
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>>>>>>> dev
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@@ -17,7 +17,7 @@ public class Skender
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bars = new(Bars: 10000, Volatility: 0.5, Drift: 0.0, Precision: 2);
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period = rnd.Next(30) + 5;
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digits = 5; //minimizing rounding errors in type conversions
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skip = 300;
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skip = period+2;
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quotes = bars.Select(q => new Quote
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{
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@@ -156,7 +156,7 @@ public class Skender
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[Fact]
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public void DEMA()
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{
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DEMA_Series QL = new(bars.Close, period, false);
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DEMA_Series QL = new(bars.Close, period, false, useSMA: true);
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var SK = quotes.GetDema(period).Select(i => i.Dema.Null2NaN()!);
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for (int i = QL.Length; i > skip; i--)
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{
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@@ -213,20 +213,19 @@ public class Skender
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10, -digits), Math.Pow(10, -digits));
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}
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}
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/*
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[Fact]
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public void KAMA()
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{
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// TODO: check precision of KAMA()
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KAMA_Series QL = new(bars.Close, period, useNaN: false);
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var SK = quotes.GetKama(period).Select(i => i.Kama.Null2NaN()!);
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for (int i = QL.Length; i > skip; i--)
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for (int i = QL.Length; i > 250; i--)
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{
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double QL_item = QL[i - 1].v;
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double SK_item = SK.ElementAt(i - 1);
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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}
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} */
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}
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[Fact]
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public void LINREG()
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{
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@@ -253,14 +252,14 @@ public class Skender
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{
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MACD_Series QL = new(bars.Close, 26, 12, 9, useNaN: false);
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var SK = quotes.GetMacd(12, 26, 9);
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for (int i = QL.Length; i > skip; i--)
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for (int i = QL.Length; i > 27; i--)
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{
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double QL_item = Math.Round(QL[i - 1].v, digits: digits);
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double SK_item = Math.Round(SK.ElementAt(i - 1).Macd.Null2NaN()!, digits: digits);
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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QL_item = Math.Round(QL.Signal[i - 1].v, digits: digits);
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SK_item = Math.Round(SK.ElementAt(i - 1).Signal.Null2NaN()!, digits: digits);
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double QL_item = QL[i - 1].v;
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double SK_item = SK.ElementAt(i - 1).Macd.Null2NaN()!;
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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//QL_item = QL.Signal[i - 1].v;
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//SK_item = SK.ElementAt(i - 1).Signal.Null2NaN()!;
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//Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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}
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}
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[Fact]
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@@ -319,11 +318,10 @@ public class Skender
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{
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OBV_Series QL = new(bars, period, false);
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var SK = quotes.GetObv(period).Select(i => i.Obv!);
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// adding volume[0] to OBV to pass the test and keep compatibility with TA-LIB
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for (int i = QL.Length; i > skip; i--)
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{
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for (int i = QL.Length; i > skip; i--) {
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double QL_item = Math.Round(QL.Last().v, digits: digits);
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double SK_item = Math.Round(SK.Last()! + (double)quotes.First().Volume!, digits: digits);
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// adding volume[0] to OBV to pass the test and keep compatibility with TA-LIB
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double SK_item = Math.Round(SK.Last()! + (double)quotes.First().Volume!, digits: digits);
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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}
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}
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@@ -411,8 +409,7 @@ public class Skender
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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}
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}
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/*
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[Fact]
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[Fact]
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public void T3()
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{
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T3_Series QL = new(source: bars.Close, period: period, vfactor: 0.7, false);
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@@ -423,8 +420,18 @@ public class Skender
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double SK_item = Math.Round(SK.ElementAt(i - 1), digits: digits);
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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}
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}*/
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[Fact]
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}
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[Fact]
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public void TRIX() {
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TRIX_Series QL = new(bars.Close, period, false);
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var SK = quotes.GetTrix(period).Select(i => i.Trix.Null2NaN()!);
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for (int i = QL.Length; i > skip; i--) {
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double QL_item = Math.Round(QL[i - 1].v, digits: digits);
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double SK_item = Math.Round(SK.ElementAt(i - 1), digits: digits);
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10, -digits), Math.Pow(10, -digits));
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}
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}
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[Fact]
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public void TEMA()
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{
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TEMA_Series QL = new(bars.Close, period, false);
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@@ -448,7 +455,6 @@ public class Skender
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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}
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}
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/*
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[Fact]
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public void WMA()
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{
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@@ -461,8 +467,7 @@ public class Skender
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Assert.InRange(SK_item! - QL_item, -Math.Pow(10,-digits), Math.Pow(10,-digits));
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}
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}
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*/
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[Fact]
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[Fact]
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public void ZSCORE()
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{
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ZSCORE_Series QL = new(bars.Close, period, useNaN: false);
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@@ -21,7 +21,7 @@ public class Ta_Lib
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{
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bars = new(Bars: 5000, Volatility: 0.8, Drift: 0.0, Precision: 3);
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period = rnd.Next(28) + 3;
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skip = 500;
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skip = period+2;
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digits = 10;
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TALIB = new double[bars.Count];
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@@ -81,32 +81,27 @@ public class Ta_Lib
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Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
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}
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}
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/*
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[Fact]
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public void BBANDS()
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{
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double[] outMiddle = new double[bars.Count];
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double[] outUpper = new double[bars.Count];
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double[] outLower = new double[bars.Count];
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BBANDS_Series QL = new(bars.Close, period: 26, multiplier: 2.0, false);
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Core.Bbands(inclose, 0, bars.Count - 1, outRealUpperBand: outUpper, outRealMiddleBand: outMiddle, outRealLowerBand: outLower, out int outBegIdx, out _, optInTimePeriod: 26, optInNbDevUp: 2.0, optInNbDevDn: 2.0);
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BBANDS_Series QL = new(bars.Close, period: period, multiplier: 2.0, false);
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Core.Bbands(inclose, 0, bars.Count - 1, outRealUpperBand: outUpper, outRealMiddleBand: outMiddle, outRealLowerBand: outLower, out int outBegIdx, out _, optInTimePeriod: period, optInNbDevUp: 2.0, optInNbDevDn: 2.0);
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for (int i = QL.Length - 1; i > skip; i--)
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{
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double QL_item = Math.Round(QL.Upper[i].v, digits: digits);
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double TA_item = Math.Round(outUpper[i - outBegIdx], digits: digits);
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Assert.Equal(TA_item!, QL_item);
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QL_item = Math.Round(QL.Mid[i].v, digits: digits);
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TA_item = Math.Round(outMiddle[i - outBegIdx], digits: digits);
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Assert.Equal(TA_item!, QL_item);
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QL_item = Math.Round(QL.Lower[i].v, digits: digits);
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TA_item = Math.Round(outLower[i - outBegIdx], digits: digits);
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Assert.Equal(TA_item!, QL_item);
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double QL_item = QL.Upper[i].v;
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double TA_item = outUpper[i - outBegIdx];
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Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), high: Math.Exp(-digits));
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QL_item = QL.Mid[i].v;
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TA_item = outMiddle[i - outBegIdx];
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Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), high: Math.Exp(-digits));
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QL_item = QL.Lower[i].v;
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TA_item = outLower[i - outBegIdx];
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Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), high: Math.Exp(-digits));
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}
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Assert.Equal(Math.Round(outUpper[outUpper.Length - outBegIdx - 1], digits: digits), Math.Round(QL.Upper.Last().v, digits: digits));
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Assert.Equal(Math.Round(outMiddle[outMiddle.Length - outBegIdx - 1], digits: digits), Math.Round(QL.Mid.Last().v, digits: digits));
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Assert.Equal(Math.Round(outLower[outLower.Length - outBegIdx - 1], digits: digits), Math.Round(QL.Lower.Last().v, digits: digits));
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}
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*/
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[Fact]
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public void CCI()
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{
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@@ -119,7 +114,6 @@ public class Ta_Lib
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Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
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}
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}
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/*
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[Fact]
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public void CMO() {
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CMO_Series QL = new(bars.Close, period, false);
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@@ -130,7 +124,6 @@ public class Ta_Lib
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Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
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}
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}
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*/
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[Fact]
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public void CORR()
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{
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@@ -146,9 +139,9 @@ public class Ta_Lib
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[Fact]
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public void DEMA()
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{
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DEMA_Series QL = new(bars.Close, period, false);
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DEMA_Series QL = new(bars.Close, period, false, useSMA: false);
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Core.Dema(inclose, 0, bars.Count - 1, TALIB, out int outBegIdx, out _, period);
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for (int i = QL.Length - 1; i > skip; i--)
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for (int i = QL.Length - 1; i > skip*2; i--)
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{
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double QL_item = Math.Round(QL[i].v, digits: digits);
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double TA_item = Math.Round(TALIB[i - outBegIdx], digits: digits);
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@@ -215,20 +208,31 @@ public class Ta_Lib
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Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
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}
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}
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[Fact]
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||||
[Fact]
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public void KAMA() {
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KAMA_Series QL = new(bars.Close, period, fast: 2, slow: 30);
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Core.Kama(inReal: inclose, startIdx: 0, endIdx: bars.Count - 1, outReal: TALIB, outBegIdx: out int outBegIdx, outNbElement: out _, optInTimePeriod: period);
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for (int i = QL.Length - 1; i > skip * 15; i--) {
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double QL_item = QL[i].v;
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double TA_item = TALIB[i - outBegIdx];
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Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
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}
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}
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[Fact]
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public void MACD()
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{
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double[] macdSignal = new double[bars.Count];
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double[] macdHist = new double[bars.Count];
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MACD_Series QL = new(bars.Close, slow: 26, fast: 12, signal: 9, false);
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Core.Macd(inclose, 0, bars.Count - 1, outMacd: TALIB, outMacdSignal: macdSignal, outMacdHist: macdHist, out int outBegIdx, out _);
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for (int i = QL.Length - 1; i > skip * 10; i--)
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// TA-LIB runs EMA without SMA, leaving first 100 values for convergence
|
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Core.Macd(inclose, 0, bars.Count - 1, outMacd: TALIB, outMacdSignal: macdSignal, outMacdHist: macdHist, out int outBegIdx, out _, optInFastPeriod: 12, optInSlowPeriod: 26, optInSignalPeriod: 9);
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for (int i = QL.Length - 1; i > 100; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
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double TA_item = Math.Round(TALIB[i - outBegIdx], digits: digits);
|
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Assert.Equal(TA_item!, QL_item);
|
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QL_item = Math.Round(QL.Signal[i].v, digits: digits);
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||||
TA_item = Math.Round(macdSignal[i - outBegIdx], digits: digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TA_item = TALIB[i - outBegIdx];
|
||||
Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
QL_item = QL.Signal[i].v;
|
||||
TA_item = macdSignal[i - outBegIdx];
|
||||
Assert.InRange(TA_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
|
||||
@@ -20,7 +20,7 @@ public class Tulip_Test
|
||||
{
|
||||
bars = new(Bars: 5000, Volatility: 0.8, Drift: 0.0, Precision: 3);
|
||||
period = rnd.Next(28) + 3;
|
||||
skip = 200;
|
||||
skip = period+1;
|
||||
digits = 10;
|
||||
|
||||
outdata = new double[bars.Count];
|
||||
@@ -40,8 +40,8 @@ public class Tulip_Test
|
||||
Tulip.Indicators.ad.Run(inputs: arrin, options: new double[] { }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
@@ -54,8 +54,8 @@ public class Tulip_Test
|
||||
Tulip.Indicators.add.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
@@ -69,8 +69,8 @@ public class Tulip_Test
|
||||
Tulip.Indicators.adosc.Run(inputs: arrin, options: new double[] { s, period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i-period+1], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i-period+1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
@@ -84,8 +84,8 @@ public class Tulip_Test
|
||||
Tulip.Indicators.atr.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i - period + 1], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
@@ -101,47 +101,220 @@ public class Tulip_Test
|
||||
Tulip.Indicators.bbands.Run(inputs: arrin, options: new double[] { period, 2 }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL.Lower[i].v, digits: digits);
|
||||
double TU_item = Math.Round(outlower[i - period + 1], digits);
|
||||
double QL_item = QL.Lower[i].v;
|
||||
double TU_item = outlower[i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
QL_item = Math.Round(QL.Mid[i].v, digits: digits);
|
||||
TU_item = Math.Round(outmid[i - period + 1], digits);
|
||||
QL_item = QL.Mid[i].v;
|
||||
TU_item = outmid[i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
QL_item = Math.Round(QL.Upper[i].v, digits: digits);
|
||||
TU_item = Math.Round(outupper[i - period + 1], digits);
|
||||
QL_item = QL.Upper[i].v;
|
||||
TU_item = outupper[i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void CCI() {
|
||||
double[][] arrin = { inopen, inhigh, inlow, inclose, involume };
|
||||
double[][] arrout = { outdata };
|
||||
CCI_Series QL = new(bars, period, useNaN: false);
|
||||
Tulip.Indicators.cci.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period-1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void CMO() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
CMO_Series QL = new(bars.Close, period, useNaN: false);
|
||||
Tulip.Indicators.cmo.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
/*
|
||||
[Fact]
|
||||
public void DEMA() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
DEMA_Series QL = new(bars.Close, period, useNaN: false, useSMA: false);
|
||||
Tulip.Indicators.dema.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip*2; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i-(period+period-2)];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void DIV() {
|
||||
double[][] arrin = { inhigh, inlow };
|
||||
double[][] arrout = { outdata };
|
||||
DIV_Series QL = new(bars.High, bars.Low);
|
||||
Tulip.Indicators.div.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i-(period+period-2)], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
*/
|
||||
[Fact]
|
||||
public void EMA()
|
||||
{
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
EMA_Series QL = new(bars.Close, period, false);
|
||||
// Tulip EMA doesn't use SMA to warm-up
|
||||
EMA_Series QL = new(bars.Close, period, false, useSMA: false);
|
||||
Tulip.Indicators.ema.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void AVGPRICE()
|
||||
public void HL2() {
|
||||
double[][] arrin = { inhigh, inlow };
|
||||
double[][] arrout = { outdata };
|
||||
|
||||
TSeries QL = bars.HL2;
|
||||
Tulip.Indicators.medprice.Run(inputs: arrin, options: new double[] { }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void HLC3() {
|
||||
double[][] arrin = { inhigh, inlow, inclose };
|
||||
double[][] arrout = { outdata };
|
||||
|
||||
TSeries QL = bars.HLC3;
|
||||
Tulip.Indicators.typprice.Run(inputs: arrin, options: new double[] { }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void HLCC4() {
|
||||
double[][] arrin = { inhigh, inlow, inclose };
|
||||
double[][] arrout = { outdata };
|
||||
|
||||
TSeries QL = bars.HLCC4;
|
||||
Tulip.Indicators.wcprice.Run(inputs: arrin, options: new double[] { }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void HMA() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
HMA_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.hma.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period - 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void KAMA() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
KAMA_Series QL = new(bars.Close, period);
|
||||
Tulip.Indicators.kama.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > 250; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void LINREG() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
LINREG_Series QL = new(bars.Close, period);
|
||||
Tulip.Indicators.linregslope.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period+1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void MACD() {
|
||||
|
||||
double[] outsignal = new double[bars.Count];
|
||||
double[] outhist = new double[bars.Count];
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata, outsignal, outhist };
|
||||
MACD_Series QL = new(bars.Close, slow: 26,fast: 10, signal: 9);
|
||||
Tulip.Indicators.macd.Run(inputs: arrin, options: new double[] { 10,26,9 }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > 150; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item =outdata[i - 26+1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void MAX() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
MAX_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.max.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i-period+1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void MIN() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
MIN_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.min.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void MUL() {
|
||||
double[][] arrin = { inhigh, inlow };
|
||||
double[][] arrout = { outdata };
|
||||
MUL_Series QL = new(bars.High, bars.Low);
|
||||
Tulip.Indicators.mul.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void OBV() {
|
||||
double[][] arrin = { inclose, involume };
|
||||
double[][] arrout = { outdata };
|
||||
OBV_Series QL = new(bars, period, false);
|
||||
Tulip.Indicators.obv.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void OHLC4()
|
||||
{
|
||||
double[][] arrin = { inopen, inhigh, inlow, inclose };
|
||||
double[][] arrout = { outdata };
|
||||
@@ -150,8 +323,32 @@ public class Tulip_Test
|
||||
Tulip.Indicators.avgprice.Run(inputs: arrin, options: new double[] { }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void RMA() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
RMA_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.wilders.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void RSI() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
RSI_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.rsi.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
@@ -164,33 +361,128 @@ public class Tulip_Test
|
||||
Tulip.Indicators.sma.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--)
|
||||
{
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i-period+1], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i-period+1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
/*
|
||||
[Fact]
|
||||
public void HMA() {
|
||||
public void SDEV() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
HMA_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.hma.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
SDEV_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.stddev.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i-period-1], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}*/
|
||||
}
|
||||
[Fact]
|
||||
public void CMO() {
|
||||
public void SUB() {
|
||||
double[][] arrin = { inhigh, inlow };
|
||||
double[][] arrout = { outdata };
|
||||
SUB_Series QL = new(bars.High, bars.Low);
|
||||
Tulip.Indicators.sub.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void SUM() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
CMO_Series QL = new(bars.Close, period, useNaN: false);
|
||||
Tulip.Indicators.cmo.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
SUM_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.sum.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = Math.Round(QL[i].v, digits: digits);
|
||||
double TU_item = Math.Round(arrout[0][i-period], digits);
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void TR() {
|
||||
double[][] arrin = { inhigh,inlow,inclose };
|
||||
double[][] arrout = { outdata };
|
||||
TR_Series QL = new(bars, false);
|
||||
Tulip.Indicators.tr.Run(inputs: arrin, options: new double[] {}, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void TEMA() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
TEMA_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.tema.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void TRIMA() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
TRIMA_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.trima.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void TRIX() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
TRIX_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.trix.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period +1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void VAR() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
VAR_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.var.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void WMA() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
WMA_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.wma.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
[Fact]
|
||||
public void ZLEMA() {
|
||||
double[][] arrin = { inclose };
|
||||
double[][] arrout = { outdata };
|
||||
ZLEMA_Series QL = new(bars.Close, period, false);
|
||||
Tulip.Indicators.zlema.Run(inputs: arrin, options: new double[] { period }, outputs: arrout);
|
||||
for (int i = QL.Length - 1; i > skip; i--) {
|
||||
double QL_item = QL[i].v;
|
||||
double TU_item = arrout[0][i - period + 1];
|
||||
Assert.InRange(TU_item! - QL_item, -Math.Exp(-digits), Math.Exp(-digits));
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user