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RSI_ret_v7.cs
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RSI_ret_v7.cs
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#region Using declarations
using System;
using System.ComponentModel;
using System.Diagnostics;
using System.Drawing;
using System.Drawing.Drawing2D;
using System.Xml.Serialization;
using NinjaTrader.Cbi;
using NinjaTrader.Data;
using NinjaTrader.Indicator;
using NinjaTrader.Gui.Chart;
using NinjaTrader.Strategy;
#endregion
// This namespace holds all strategies and is required. Do not change it.
namespace NinjaTrader.Strategy
{
/// <summary>
/// To localise the entry level of the RSI with respect to its extremes.
/// </summary>
[Description("To localise the entry level of the RSI with respect to its extremes.")]
public class RSI_ret_v7 : Strategy
{
#region Variables
// Wizard generated variables
private int entryLevelDif = 0; // Default setting for EntryLevelDif
private int stopLoss = 29; // Default setting for StopLoss
private int profit = 280; // Default setting for Profit
private int rSIPeriod = 26; // Default setting for RSIPeriod
private int roundTickDist = 12;
private int trailStopLoss = 1;
private int turnTrailOn = 0;
private int turnExitOn = 0;
private int lastStopMin = 141;
private int bidAsk = 3;
private int priceDif = 1;
private int startingHour = 12;
private int startingMinute = 21;
private int startingSecond = 01;
private int isPositiveOn = 1;
private int rOCPeriod = 22;
private double rOCDif = 0.07;
private int overSoldLevel = 33;
private int overBoughtLevel = 67;
// User defined variables (add any user defined variables below)
private double aboveLimit = 0;
private double belowLimit = 100;
private int itsOn = 0;
private double longPriceDif =0;
private double shortPriceDif = 0;
//private int timeOff = 1;
#endregion
/// <summary>
/// This method is used to configure the §strategy and is called once before any strategy method is called.
/// </summary>
protected override void Initialize()
{
SetProfitTarget("", CalculationMode.Ticks, Profit);
if(TurnExitOn ==1){
ExitOnClose= true;
} else if(TurnExitOn ==0){
ExitOnClose = false;
}
if(TurnTrailOn == 1){
SetTrailStop("", CalculationMode.Ticks, TrailStopLoss, false);
} else {
SetStopLoss(CalculationMode.Ticks,StopLoss);
}
CalculateOnBarClose = false;
}
/// <summary>
/// Called on each bar update event (incoming tick)
/// </summary>
protected Boolean checkRoundNum(){
String check = Close[0].ToString();
int len = check.Length-2;
double units =100;
if(len >= 3){
units = double.Parse(check.Substring(len,2))*0.01/TickSize;
}
if (units >= 100 -RoundTickDist || units <= roundTickDist){
return false;
} else {
return true;
}
}
protected bool rocFilter(){
double maxROC = Math.Max(Math.Abs(ROC(ROCPeriod)[0]),Math.Abs(ROC(ROCPeriod)[0]));
if(maxROC>ROCDif){
return true;
} else {
return false;
}
//Need to go through all the code and change double comparisons to something more exact
/*absolute max value of roc between previous and current bar
* is this less than optimized value?
* dont take the trade
* int ROC Period(already Defined)
* double Optimized value
*
*/
}
protected String checkRecentLossDirection(){
Boolean recentLoss = false;
// Check to make sure there is at least one trade in the collection
if (Performance.AllTrades.LosingTrades.Count > 0)
{
//references last trade
Trade lastTrade = Performance.AllTrades.LosingTrades[Performance.AllTrades.LosingTrades.Count -1 ];
//gets the difference in time between last losing and current time
TimeSpan losingTime =( Times[0][0].TimeOfDay - lastTrade.ExitExecution.Time.TimeOfDay );
//prints to log that difference
if(losingTime.TotalSeconds>0 && losingTime.TotalSeconds < LastStopMin){
recentLoss = true;
} else {
recentLoss = false;
}
if(recentLoss && lastTrade.Entry.MarketPosition == MarketPosition.Long){
this.longPriceDif=Close[0]-PriceDif*TickSize;
return "Long";
} else if(recentLoss && lastTrade.Entry.MarketPosition == MarketPosition.Short){
this.shortPriceDif=Close[0]+PriceDif*TickSize;
return "Short";
} else {
return "Nop";
}
}else {
return "Nop";
}
}
protected bool timeframe(){
if (//Times[0][0].DayOfWeek == DayOfWeek.Monday &&
Times[0][0].Hour >= StartingHour
&& Times[0][0].Minute >= StartingMinute
&& Times[0][0].Second>= StartingSecond){
return true;
} else {
return false;
}
}
protected override void OnBarUpdate()
{
if((GetCurrentAsk()-GetCurrentBid())<BidAsk*TickSize && checkRoundNum() ){
itsOn = 1;
} else {
itsOn = 0;
}
if(CurrentBar < RSIPeriod || itsOn == 0){
return;
}
//reset limits
belowLimit = 100;
aboveLimit = 0;
//condition for oversold
Boolean shortIsPositive = true;
if (Position.MarketPosition == MarketPosition.Short){
if( Position.GetProfitLoss(Close[0], PerformanceUnit.Points)<0
&& IsPositiveOn == 1){
shortIsPositive = false;
}
}
if(RSI(RSIPeriod,3)[0]<OverSoldLevel){
belowLimit = RSI(RSIPeriod,3)[1];
if (CrossAbove(RSI(RSIPeriod,3), belowLimit, 1)
&& (RSI(RSIPeriod,3)[0]-belowLimit>=entryLevelDif )
&& checkRecentLossDirection() != "Long"
&& (Close[0] < this.longPriceDif|| this.longPriceDif == 0)
&& shortIsPositive
&& rocFilter()
&& timeframe())
{
this.longPriceDif = 0;
EnterLong(DefaultQuantity, "");
}
}
//condition for overbought
Boolean longIsPositive = true;
if (Position.MarketPosition == MarketPosition.Long){
if( Position.GetProfitLoss(Close[0], PerformanceUnit.Points)<0
&& IsPositiveOn == 1){
longIsPositive = false;
}
}
if(RSI(RSIPeriod,3)[0]>OverBoughtLevel){
aboveLimit = RSI(RSIPeriod,3)[1];
if (CrossBelow(RSI(RSIPeriod,3), aboveLimit, 1)
&& ( aboveLimit-RSI(RSIPeriod,3)[0]>=entryLevelDif)
&& checkRecentLossDirection() != "Short"
&& (Close[0] > this.shortPriceDif || this.shortPriceDif == 0)
&& longIsPositive
&& rocFilter()
&& timeframe())
{
this.shortPriceDif= 0;
EnterShort(DefaultQuantity, "");
}
}
}
#region Properties
[Description("Diferential from max/min to open position, in RSI percentage.")]
[GridCategory("Parameters")]
public int EntryLevelDif
{
get { return entryLevelDif; }
set { entryLevelDif = Math.Max(0, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int StopLoss
{
get { return stopLoss; }
set { stopLoss = Math.Max(1, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int Profit
{
get { return profit; }
set { profit = Math.Max(1, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int RSIPeriod
{
get { return rSIPeriod; }
set { rSIPeriod = Math.Max(1, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int RoundTickDist
{
get { return roundTickDist; }
set { roundTickDist = Math.Max(0, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int TrailStopLoss
{
get { return trailStopLoss; }
set { trailStopLoss = Math.Max(0, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int TurnTrailOn
{
get { return turnTrailOn; }
set { turnTrailOn = Math.Max(0, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int LastStopMin
{
get { return lastStopMin; }
set { lastStopMin = Math.Max(0, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int TurnExitOn
{
get { return turnExitOn; }
set { turnExitOn = Math.Max(0, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int PriceDif
{
get { return priceDif; }
set { priceDif = Math.Max(0, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int IsPositiveOn
{
get { return isPositiveOn; }
set { isPositiveOn = Math.Max(0, value); }
}
[Description("")]
[GridCategory("Parameters")]
public int ROCPeriod
{
get { return rOCPeriod; }
set { rOCPeriod = Math.Max(1, value); }
}
[Description("")]
[GridCategory("Parameters")]
public double ROCDif
{
get { return rOCDif; }
set { rOCDif = Math.Max(0, value); }
}
[GridCategory("Parameters")]
public int BidAsk
{
get { return bidAsk; }
set { bidAsk = Math.Max(1, value); }
}
[GridCategory("Parameters")]
public int OverSoldLevel
{
get { return overSoldLevel; }
set { overSoldLevel = Math.Max(1, value); }
}
[GridCategory("Parameters")]
public int OverBoughtLevel
{
get { return overBoughtLevel; }
set { overBoughtLevel = Math.Max(1, value); }
}
[GridCategory("Parameters")]
public int StartingHour
{
get { return startingHour; }
set { startingHour = Math.Max(0, value); }
}
[GridCategory("Parameters")]
public int StartingMinute
{
get { return startingMinute; }
set { startingMinute = Math.Max(0, value); }
}
[GridCategory("Parameters")]
public int StartingSecond
{
get { return startingSecond; }
set { startingSecond = Math.Max(0, value); }
}
#endregion
}
}