//------------------------------------------------------------------ #property copyright "© mladen, 2017, @ mladenfx@gmail.com" #property link "www.forex-station.com" #property version "1.00" //------------------------------------------------------------------ #property description "Moving Average Convergence/Divergence" #property indicator_separate_window #property indicator_buffers 9 #property indicator_plots 4 #property indicator_type1 DRAW_COLOR_HISTOGRAM #property indicator_type2 DRAW_COLOR_LINE #property indicator_type3 DRAW_COLOR_LINE #property indicator_type4 DRAW_COLOR_ARROW #property indicator_color1 clrLimeGreen, clrGreen, clrRed, clrFireBrick #property indicator_color2 clrLimeGreen, clrGreen, clrRed, clrFireBrick #property indicator_color3 clrLimeGreen, clrRed #property indicator_color3 clrLimeGreen, clrRed #property indicator_color4 clrLimeGreen, clrGreen, clrRed, clrFireBrick #property indicator_width1 2 #property indicator_width2 3 #property indicator_width3 2 #property indicator_label1 "MACD" #property indicator_label2 "MACD line" #property indicator_label3 "Signal" #property indicator_label4 "dots" // // // // // enum enPrices { pr_close, // Close pr_open, // Open pr_high, // High pr_low, // Low pr_median, // Median pr_typical, // Typical pr_weighted, // Weighted pr_average, // Average (high+low+open+close)/4 pr_medianb, // Average median body (open+close)/2 pr_tbiased, // Trend biased price pr_haclose, // Heiken ashi close pr_haopen , // Heiken ashi open pr_hahigh, // Heiken ashi high pr_halow, // Heiken ashi low pr_hamedian, // Heiken ashi median pr_hatypical, // Heiken ashi typical pr_haweighted, // Heiken ashi weighted pr_haaverage, // Heiken ashi average pr_hamedianb, // Heiken ashi median body pr_hatbiased // Heiken ashi trend biased price }; input ENUM_TIMEFRAMES TimeFrame = PERIOD_CURRENT; // Time frame input int InpFastEMA = 12; // Macd fast period input int InpSlowEMA = 26; // Macd slow period input int InpSignalEMA = 9; // Signal period input enPrices InpAppliedPrice = pr_close; // Price to use input bool Interpolate = true; // Interpolate in multi time frame mode? // // // // // double ExtMacdBuffer[],ExtMacdBufferl[],ExtSignalBuffer[],ExtFastMaBuffer[],ExtSlowMaBuffer[],dots[],Colors[],Colorsl[],Colorss[],Colorsd[],count[]; int _mtfHandle = INVALID_HANDLE; ENUM_TIMEFRAMES timeFrame; #define _mtfCall iCustom(_Symbol,timeFrame,getIndicatorName(),PERIOD_CURRENT,InpFastEMA,InpSlowEMA,InpSignalEMA,InpAppliedPrice) //------------------------------------------------------------------ // //------------------------------------------------------------------ void OnInit() { SetIndexBuffer(0,ExtMacdBuffer, INDICATOR_DATA); SetIndexBuffer(1,Colors ,INDICATOR_COLOR_INDEX); SetIndexBuffer(2,ExtMacdBufferl, INDICATOR_DATA); SetIndexBuffer(3,Colorsl ,INDICATOR_COLOR_INDEX); SetIndexBuffer(4,ExtSignalBuffer,INDICATOR_DATA); SetIndexBuffer(5,Colorss ,INDICATOR_COLOR_INDEX); SetIndexBuffer(6,dots ,INDICATOR_DATA); SetIndexBuffer(7,Colorsd ,INDICATOR_COLOR_INDEX); SetIndexBuffer(8,count ,INDICATOR_CALCULATIONS); PlotIndexSetInteger(3,PLOT_ARROW,158); PlotIndexSetInteger(2,PLOT_DRAW_BEGIN,InpSignalEMA-1); timeFrame = MathMax(_Period,TimeFrame); IndicatorSetString(INDICATOR_SHORTNAME,"MACD original("+string(InpFastEMA)+","+string(InpSlowEMA)+","+string(InpSignalEMA)+")"); } int OnCalculate(const int rates_total,const int prev_calculated, const datetime &time[], const double &Open[], const double &High[], const double &Low[], const double &Close[], const long &TickVolume[], const long &Volume[], const int &Spread[]) { if (Bars(_Symbol,_Period) 0 && time[i-n] >= currTime[0]; n++) continue; for(k=1; (i-k)>=0 && k0) { if (ExtMacdBuffer[i]>0) { if (ExtMacdBuffer[i]>ExtMacdBuffer[i-1]) Colors[i] = 0; if (ExtMacdBuffer[i]ExtSignalBuffer[i]) Colorsd[i] = 1; if (Colors[i]==0 && ExtMacdBuffer[i]ExtMacdBuffer[i-1]) Colors[i] = 3; if (Colors[i]==3 && ExtMacdBuffer[i]ExtSignalBuffer[i]) Colorsd[i] = 1; } if (ExtMacdBuffer[i]ExtSignalBuffer[i]) Colorss[i] = 0; } if (Colorsd[i]!=-1) { if (ExtMacdBuffer[i]>0) dots[i] = ExtMacdBuffer[i]+5*_Point; if (ExtMacdBuffer[i]<0) dots[i] = ExtMacdBuffer[i]-5*_Point; } Colorsl[i] = Colors[i]; } count[rates_total-1] = MathMax(rates_total-prev_calculated+1,1); return(i); } //------------------------------------------------------------------ // //------------------------------------------------------------------ // // // // double workEma[][3]; double iEma(double price, double period, int r, int totalBars, int instanceNo=0) { if (ArrayRange(workEma,0)!= totalBars) ArrayResize(workEma,totalBars); // // // // // double alpha = 2.0 / (1.0+period); workEma[r][instanceNo] = price; if (r>0) workEma[r][instanceNo] = workEma[r-1][instanceNo]+alpha*(price-workEma[r-1][instanceNo]); return(workEma[r][instanceNo]); } //------------------------------------------------------------------ // //------------------------------------------------------------------ // // // // // // double workHa[][4]; double getPrice(int price, const double& open[], const double& close[], const double& high[], const double& low[], int bars, int i, int instanceNo=0) { if (price>=pr_haclose) { if (ArrayRange(workHa,0)!= bars) ArrayResize(workHa,bars); // // // // // double haOpen; if (i>0) haOpen = (workHa[i-1][instanceNo+2] + workHa[i-1][instanceNo+3])/2.0; else haOpen = (open[i]+close[i])/2; double haClose = (open[i] + high[i] + low[i] + close[i]) / 4.0; double haHigh = MathMax(high[i], MathMax(haOpen,haClose)); double haLow = MathMin(low[i] , MathMin(haOpen,haClose)); if(haOpen haOpen) return((haHigh+haClose)/2.0); else return((haLow+haClose)/2.0); } } // // // // // switch (price) { case pr_close: return(close[i]); case pr_open: return(open[i]); case pr_high: return(high[i]); case pr_low: return(low[i]); case pr_median: return((high[i]+low[i])/2.0); case pr_medianb: return((open[i]+close[i])/2.0); case pr_typical: return((high[i]+low[i]+close[i])/3.0); case pr_weighted: return((high[i]+low[i]+close[i]+close[i])/4.0); case pr_average: return((high[i]+low[i]+close[i]+open[i])/4.0); case pr_tbiased: if (close[i]>open[i]) return((high[i]+close[i])/2.0); else return((low[i]+close[i])/2.0); } return(0); } //------------------------------------------------------------------- // //------------------------------------------------------------------- // // // // // string getIndicatorName() { string path = MQL5InfoString(MQL5_PROGRAM_PATH); string data = TerminalInfoString(TERMINAL_DATA_PATH)+"\\MQL5\\Indicators\\"; string name = StringSubstr(path,StringLen(data)); return(name); } // // // // // int _tfsPer[]={PERIOD_M1,PERIOD_M2,PERIOD_M3,PERIOD_M4,PERIOD_M5,PERIOD_M6,PERIOD_M10,PERIOD_M12,PERIOD_M15,PERIOD_M20,PERIOD_M30,PERIOD_H1,PERIOD_H2,PERIOD_H3,PERIOD_H4,PERIOD_H6,PERIOD_H8,PERIOD_H12,PERIOD_D1,PERIOD_W1,PERIOD_MN1}; string _tfsStr[]={"1 minute","2 minutes","3 minutes","4 minutes","5 minutes","6 minutes","10 minutes","12 minutes","15 minutes","20 minutes","30 minutes","1 hour","2 hours","3 hours","4 hours","6 hours","8 hours","12 hours","daily","weekly","monthly"}; string timeFrameToString(int period) { if (period==PERIOD_CURRENT) period = _Period; int i; for(i=0;i0) { CopyTime(_Symbol,_timeFrame,time[0],1,testTime); SeriesInfoInteger(_Symbol,_timeFrame,SERIES_FIRSTDATE,startTime); } if (startTime<=0 || startTime>time[0]) { Comment(MQL5InfoString(MQL5_PROGRAM_NAME)+"\nMissing data for "+timeFrameToString(_timeFrame)+" time frame\nRe-trying on next tick"); warned=true; return(false); } } if (warned) { Comment(""); warned=false; } return(true); }