Consolidate Python ignore rules into root gitignore
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//+------------------------------------------------------------------+
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//| SignalAO.mqh |
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//| Copyright 2000-2026, MetaQuotes Ltd. |
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//| www.mql5.com |
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//+------------------------------------------------------------------+
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#include <Expert\ExpertSignal.mqh>
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// wizard description start
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//+------------------------------------------------------------------+
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//| Description of the class |
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//| Title=Signals of indicator 'Awesome Oscillator' |
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//| Type=SignalAdvanced |
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//| Name=Awesome Oscillator |
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//| ShortName=AO |
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//| Class=CSignalAO |
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//| Page=signal_ao |
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//+------------------------------------------------------------------+
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// wizard description end
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//+------------------------------------------------------------------+
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//| Class CSignalAO. |
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//| Purpose: Class of generator of trade signals based on |
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//| the 'Awesome Oscillator' indicator. |
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//| Is derived from the CExpertSignal class. |
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//+------------------------------------------------------------------+
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class CSignalAO : public CExpertSignal
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{
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protected:
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CiAO m_ao; // object-indicator
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//--- "weights" of market models (0-100)
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int m_pattern_0; // model 0 "first analyzed bar has required color"
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int m_pattern_1; // model 1 "the 'saucer' signal"
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int m_pattern_2; // model 2 "the 'crossing of the zero line' signal"
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int m_pattern_3; // model 2 "the 'divergence' signal"
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//--- variables
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double m_extr_osc[10]; // array of values of extremums of the oscillator
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double m_extr_pr[10]; // array of values of the corresponding extremums of price
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int m_extr_pos[10]; // array of shifts of extremums (in bars)
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uint m_extr_map; // resulting bit-map of ratio of extremums of the oscillator and the price
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public:
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CSignalAO(void);
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~CSignalAO(void);
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//--- methods of adjusting "weights" of market models
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void Pattern_0(int value) { m_pattern_0=value; }
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void Pattern_1(int value) { m_pattern_1=value; }
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void Pattern_2(int value) { m_pattern_2=value; }
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void Pattern_3(int value) { m_pattern_3=value; }
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//--- method of creating the indicator and timeseries
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virtual bool InitIndicators(CIndicators *indicators);
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//--- methods of checking if the market models are formed
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virtual int LongCondition(void);
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virtual int ShortCondition(void);
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protected:
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//--- method of initialization of the indicator
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bool InitAO(CIndicators *indicators);
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//--- methods of getting data
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double AO(int ind) { return(m_ao.Main(ind)); }
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double DiffAO(int ind) { return(AO(ind)-AO(ind+1)); }
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int StateAO(int ind);
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bool ExtStateAO(int ind);
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};
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//+------------------------------------------------------------------+
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//| Constructor |
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//+------------------------------------------------------------------+
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CSignalAO::CSignalAO(void) : m_pattern_0(30),
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m_pattern_1(20),
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m_pattern_2(70),
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m_pattern_3(90)
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{
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//--- initialization of protected data
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m_used_series=USE_SERIES_HIGH+USE_SERIES_LOW;
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}
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//+------------------------------------------------------------------+
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//| Destructor |
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//+------------------------------------------------------------------+
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CSignalAO::~CSignalAO(void)
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{
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}
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//+------------------------------------------------------------------+
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//| Create indicators. |
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//+------------------------------------------------------------------+
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bool CSignalAO::InitIndicators(CIndicators *indicators)
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{
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//--- check pointer
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if(indicators==NULL)
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return(false);
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//--- initialization of indicators and timeseries of additional filters
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if(!CExpertSignal::InitIndicators(indicators))
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return(false);
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//--- create and initialize AO indicator
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if(!InitAO(indicators))
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return(false);
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//--- ok
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return(true);
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}
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//+------------------------------------------------------------------+
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//| Initialize AO indicators. |
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//+------------------------------------------------------------------+
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bool CSignalAO::InitAO(CIndicators *indicators)
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{
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//--- check pointer
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if(indicators==NULL)
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return(false);
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//--- add object to collection
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if(!indicators.Add(GetPointer(m_ao)))
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{
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printf(__FUNCTION__+": error adding object");
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return(false);
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}
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//--- initialize object
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if(!m_ao.Create(m_symbol.Name(),m_period))
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{
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printf(__FUNCTION__+": error initializing object");
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return(false);
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}
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//--- ok
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return(true);
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}
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//+------------------------------------------------------------------+
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//| Check of the indicator state. |
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//+------------------------------------------------------------------+
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int CSignalAO::StateAO(int ind)
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{
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int res=0;
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double var;
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//---
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for(int i=ind;;i++)
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{
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if(AO(i+1)==EMPTY_VALUE)
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break;
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var=DiffAO(i);
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if(res>0)
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{
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if(var<0)
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break;
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res++;
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continue;
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}
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if(res<0)
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{
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if(var>0)
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break;
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res--;
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continue;
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}
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if(var>0)
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res++;
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if(var<0)
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res--;
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}
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//---
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return(res);
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}
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//+------------------------------------------------------------------+
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//| Extended check of the oscillator state consists |
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//| in forming a bit-map according to certain rules, |
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//| which shows ratios of extremums of the oscillator and price. |
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//+------------------------------------------------------------------+
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bool CSignalAO::ExtStateAO(int ind)
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{
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//--- operation of this method results in a bit-map of extremums
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//--- practically, the bit-map of extremums is an "array" of 4-bit fields
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//--- each "element of the array" definitely describes the ratio
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//--- of current extremums of the oscillator and the price with previous ones
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//--- purpose of bits of an element of the analyzed bit-map
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//--- bit 3 - not used (always 0)
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//--- bit 2 - is equal to 1 if the current extremum of the oscillator is "more extreme" than the previous one
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//--- (a higher peak or a deeper valley), otherwise - 0
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//--- bit 1 - not used (always 0)
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//--- bit 0 - is equal to 1 if the current extremum of price is "more extreme" than the previous one
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//--- (a higher peak or a deeper valley), otherwise - 0
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//--- in addition to them, the following is formed:
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//--- array of values of extremums of the oscillator,
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//--- array of values of price extremums and
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//--- array of "distances" between extremums of the oscillator (in bars)
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//--- it should be noted that when using the results of the extended check of state,
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//--- you should consider, which extremum of the oscillator (peak or valley)
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//--- is the "reference point" (i.e. was detected first during the analysis)
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//--- if a peak is detected first then even elements of all arrays
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//--- will contain information about peaks, and odd elements will contain information about valleys
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//--- if a valley is detected first, then respectively in reverse
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int pos=ind,off,index;
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uint map; // intermediate bit-map for one extremum
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//---
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m_extr_map=0;
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for(int i=0;i<10;i++)
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{
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off=StateAO(pos);
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if(off>0)
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{
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//--- minimum of the oscillator is detected
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pos+=off;
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m_extr_pos[i]=pos;
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m_extr_osc[i]=AO(pos);
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if(i>1)
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{
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m_extr_pr[i]=m_low.MinValue(pos-2,5,index);
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//--- form the intermediate bit-map
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map=0;
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if(m_extr_pr[i-2]<m_extr_pr[i])
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map+=1; // set bit 0
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if(m_extr_osc[i-2]<m_extr_osc[i])
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map+=4; // set bit 2
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//--- add the result
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m_extr_map+=map<<(4*(i-2));
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}
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else
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m_extr_pr[i]=m_low.MinValue(pos-1,4,index);
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}
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else
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{
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//--- maximum of the oscillator is detected
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pos-=off;
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m_extr_pos[i]=pos;
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m_extr_osc[i]=AO(pos);
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if(i>1)
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{
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m_extr_pr[i]=m_high.MaxValue(pos-2,5,index);
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//--- form the intermediate bit-map
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map=0;
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if(m_extr_pr[i-2]>m_extr_pr[i])
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map+=1; // set bit 0
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if(m_extr_osc[i-2]>m_extr_osc[i])
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map+=4; // set bit 2
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//--- add the result
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m_extr_map+=map<<(4*(i-2));
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}
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else
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m_extr_pr[i]=m_high.MaxValue(pos-1,4,index);
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}
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}
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//---
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return(true);
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}
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//+------------------------------------------------------------------+
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//| "Voting" that price will grow. |
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//+------------------------------------------------------------------+
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int CSignalAO::LongCondition(void)
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{
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int result=0;
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int idx =StartIndex();
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//--- if the first analyzed bar is "red", don't "vote" for buying
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if(DiffAO(idx)<0.0)
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return(result);
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//--- first analyzed bar is "green" (the indicator has no objections to buying)
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if(IS_PATTERN_USAGE(0))
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result=m_pattern_0;
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if(AO(idx++)>0.0)
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{
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//--- first analyzed bar is greater than zero, search for the "saucer" and "crosing of the zero line" signals
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if(IS_PATTERN_USAGE(1) && DiffAO(idx)<0.0)
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{
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//--- the "saucer" signal
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//--- there is a condition for buying
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return(m_pattern_1);
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}
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if(IS_PATTERN_USAGE(2) && AO(idx)<0.0)
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{
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//--- the "crossing of the zero line" signal
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//--- there is a condition for buying
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return(m_pattern_2);
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}
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}
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else
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{
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//--- first analyzed bar is less than zero, search for the "divergence" signal
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//--- if the second analyzed bar is "red", the condition for buying may be fulfilled
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if(IS_PATTERN_USAGE(3) && DiffAO(idx)<0.0)
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{
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idx=StartIndex();
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//--- search for the "divergence" signal
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ExtStateAO(idx);
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if((m_extr_map&0xF)==1)
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{
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if(m_extr_osc[0]<0.0 && m_extr_osc[1]<0.0 && m_extr_osc[2]<0.0)
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{
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//--- both valleys are below zero, the peak is between them and it hasn't raised above zero
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//--- we suppose that this is "divergence"
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return(m_pattern_3);
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}
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}
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}
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}
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//--- return the result
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return(result);
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}
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//+------------------------------------------------------------------+
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//| "Voting" that price will fall. |
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//+------------------------------------------------------------------+
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int CSignalAO::ShortCondition(void)
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{
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int result=0;
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int idx =StartIndex();
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//--- if the first analyzed bar is "green", don't "vote" for selling
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if(DiffAO(idx)>0.0)
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return(result);
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//--- first analyzed bar is "red" (the indicator has no objections to selling)
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if(IS_PATTERN_USAGE(0))
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result=m_pattern_0;
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if(AO(idx++)<0.0)
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{
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//--- first analyzed bar is below zero, search for the "saucer" and "crossing of the zero line" signals
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if(IS_PATTERN_USAGE(1) && DiffAO(idx)>0.0)
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{
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//--- the "saucer" signal
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//--- there is a condition for buying
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return(m_pattern_1);
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}
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if(IS_PATTERN_USAGE(2) && AO(idx)>0.0)
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{
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//--- the "crossing of the zero line" signal
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//--- there is a condition for buying
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return(m_pattern_2);
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}
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}
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else
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{
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//--- first analyzed bar is above zero, search for the "divergence" signal
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//--- if the second analyzed bar is "green", the condition for buying may be fulfilled
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if(IS_PATTERN_USAGE(3) && DiffAO(idx)>0.0)
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{
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idx=StartIndex();
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//--- search for the "divergence" signal
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ExtStateAO(idx);
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if((m_extr_map&0xF)==1)
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{
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if(m_extr_osc[0]>0.0 && m_extr_osc[1]>0.0 && m_extr_osc[2]>0.0)
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{
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//--- both peaks are above zero and the valley between them hasn't fallen below zero
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//--- we suppose that this is "divergence"
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return(m_pattern_3);
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}
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}
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}
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}
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//--- return the result
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return(result);
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}
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//+------------------------------------------------------------------+
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