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LSMA
//+------------------------------------------------------------------+
//| LSMA.mq5 |
//| Copyright © 2007, mandorr |
//| mandorr@gmail.com |
//+------------------------------------------------------------------+
#property copyright "Copyright © 2007, mandorr"
#property link "mandorr@gmail.com"
//---- indicator version number
#property version "1.01"
//---- drawing the indicator in the main window
#property indicator_chart_window
//---- number of indicator buffers
#property indicator_buffers 1
//---- only one plot is used
#property indicator_plots 1
//+-----------------------------------+
//| Indicator drawing parameters |
//+-----------------------------------+
//---- drawing the indicator as a line
#property indicator_type1 DRAW_LINE
//---- pink color is used as the color of the bullish line of the indicator
#property indicator_color1 clrViolet
//---- the indicator line is a continuous curve
#property indicator_style1 STYLE_SOLID
//---- indicator line width is equal to 1
#property indicator_width1 1
//---- displaying the indicator label
#property indicator_label1 "LSMA"
//+-----------------------------------+
//| Declaration of enumerations |
//+-----------------------------------+
enum Applied_price_ //Type od constant
{
PRICE_CLOSE_ = 1, //Close
PRICE_OPEN_, //Open
PRICE_HIGH_, //High
PRICE_LOW_, //Low
PRICE_MEDIAN_, //Median Price (HL/2)
PRICE_TYPICAL_, //Typical Price (HLC/3)
PRICE_WEIGHTED_, //Weighted Close (HLCC/4)
PRICE_SIMPL_, //Simpl Price (OC/2)
PRICE_QUARTER_, //Quarted Price (HLOC/4)
PRICE_TRENDFOLLOW0_, //TrendFollow_1 Price
PRICE_TRENDFOLLOW1_, //TrendFollow_2 Price
PRICE_DEMARK_ //Demark Price
};
//+-----------------------------------+
//| INDICATOR INPUT PARAMETERS |
//+-----------------------------------+
input uint period=50; // smoothing depth
input Applied_price_ IPC=PRICE_CLOSE_;//price constant
/* , used for calculation of the indicator ( 1-CLOSE, 2-OPEN, 3-HIGH, 4-LOW,
5-MEDIAN, 6-TYPICAL, 7-WEIGHTED, 8-SIMPL, 9-QUARTER, 10-TRENDFOLLOW, 11-0.5 * TRENDFOLLOW.) */
input int Shift=0; // horizontal shift of the indicator in bars
input int PriceShift=0; // vertical shift of the indicator in pointsõ
//+-----------------------------------+
//---- indicator buffer
double LSMA[];
double lengthvar,periodX2;
//---- Declaration of the average vertical shift value variable
double dPriceShift;
//---- Declaration of integer variables of data starting point
int min_rates_total;
//+------------------------------------------------------------------+
//| LSMA indicator initialization function |
//+------------------------------------------------------------------+
void OnInit()
{
//---- Initialization of variables of the start of data calculation
min_rates_total=int(period);
lengthvar=(period+1)/3;
periodX2=period*(period+1);
//---- set dynamic array as an indicator buffer
SetIndexBuffer(0,LSMA,INDICATOR_DATA);
//---- shifting the indicator horizontally by Shift
PlotIndexSetInteger(0,PLOT_SHIFT,Shift);
//---- performing the shift of beginning of indicator drawing
PlotIndexSetInteger(0,PLOT_DRAW_BEGIN,min_rates_total);
//---- setting the indicator values that won't be visible on a chart
PlotIndexSetDouble(0,PLOT_EMPTY_VALUE,EMPTY_VALUE);
//---- initializations of variable for indicator short name
string shortname;
StringConcatenate(shortname,"LSMA(",period,",",Shift,")");
//--- creation of the name to be displayed in a separate sub-window and in a pop up help
IndicatorSetString(INDICATOR_SHORTNAME,shortname);
//--- determining the accuracy of displaying the indicator values
IndicatorSetInteger(INDICATOR_DIGITS,_Digits+1);
//---- Initialization of the vertical shift
dPriceShift=_Point*PriceShift;
//---- end of initialization
}
//+------------------------------------------------------------------+
//| LSMA iteration function |
//+------------------------------------------------------------------+
int OnCalculate(
const int rates_total, // amount of history in bars at the current tick
const int prev_calculated,// amount of history in bars at the previous tick
const datetime &time[],
const double &open[],
const double& high[], // price array of maximums of price for the calculation of indicator
const double& low[], // price array of price lows for the indicator calculation
const double &close[],
const long &tick_volume[],
const long &volume[],
const int &spread[]
)
{
//---- checking the number of bars to be enough for calculation
if(rates_total<min_rates_total)return(0);
//---- Declaration of local variables
int first,bar;
//----
double sum,lsma;
//---- calculation of the starting number first for the bar recalculation loop
if(prev_calculated>rates_total || prev_calculated<=0) // checking for the first start of calculation of an indicator
{
first=min_rates_total; // starting index for calculation of all bars
}
else first=prev_calculated-1; // starting number for calculation of new bars
//---- main indicator calculation loop
for(bar=first; bar<rates_total && !IsStopped(); bar++)
{
sum=0.0;
for(int kkk=int(period); kkk>0; kkk--)sum+=(kkk-lengthvar)*PriceSeries(IPC,bar-period+kkk,open,low,high,close);
lsma=sum*6/periodX2;
LSMA[bar]=lsma+dPriceShift;
}
//----
return(rates_total);
}
//+------------------------------------------------------------------+
//| Getting values of a price series |
//+------------------------------------------------------------------+
double PriceSeries
(
uint applied_price,// Price constant
uint bar,// Shift index relative to the current bar by a specified number of periods backward or forward).
const double &Open[],
const double &Low[],
const double &High[],
const double &Close[]
)
//PriceSeries(applied_price, bar, open, low, high, close)
//+ - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -+
{
//----
switch(applied_price)
{
//---- Price constants from the ENUM_APPLIED_PRICE enumeration
case PRICE_CLOSE: return(Close[bar]);
case PRICE_OPEN: return(Open [bar]);
case PRICE_HIGH: return(High [bar]);
case PRICE_LOW: return(Low[bar]);
case PRICE_MEDIAN: return((High[bar]+Low[bar])/2.0);
case PRICE_TYPICAL: return((Close[bar]+High[bar]+Low[bar])/3.0);
case PRICE_WEIGHTED: return((2*Close[bar]+High[bar]+Low[bar])/4.0);
//----
case 8: return((Open[bar] + Close[bar])/2.0);
case 9: return((Open[bar] + Close[bar] + High[bar] + Low[bar])/4.0);
//----
case 10:
{
if(Close[bar]>Open[bar])return(High[bar]);
else
{
if(Close[bar]<Open[bar])
return(Low[bar]);
else return(Close[bar]);
}
}
//----
case 11:
{
if(Close[bar]>Open[bar])return((High[bar]+Close[bar])/2.0);
else
{
if(Close[bar]<Open[bar])
return((Low[bar]+Close[bar])/2.0);
else return(Close[bar]);
}
break;
}
//----
case 12:
{
double res=High[bar]+Low[bar]+Close[bar];
if(Close[bar]<Open[bar]) res=(res+Low[bar])/2;
if(Close[bar]>Open[bar]) res=(res+High[bar])/2;
if(Close[bar]==Open[bar]) res=(res+Close[bar])/2;
return(((res-Low[bar])+(res-High[bar]))/2);
}
//----
default: return(Close[bar]);
}
//----
//return(0);
}
//+------------------------------------------------------------------+
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