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2024-05-17 04:54:01 +03:30

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///////////////////////////////////////////////////////
//
// SaherElm IT Center MQL5 Indicator
// -------------------------------------------------
// Name: X121_XICH
// Description: Ichimoku Kinko Hyo ...
//
//
// Maintainer:
// ------------
// Hadi Khazaee Asl (hadi_khazaee_asl@yahoo.com)
//
//////////////////////////////////////////////////////
//
// Global Properties ...
#property copyright "Copyright 2023, SaherElm IT Center"
#property link "https://saherelm.ir"
#property version "1.00"
#property description "SaherElm X121_XICH Indicator"
#property strict
//
// START Constants ...
//
//
// Indicator Short Name ...
#define ShortName "X121_XICH"
//
// Ichimoku Golden Numbers ...
enum ENUM_X_ICHIMOKU_GOLDEN_NUMBERS
{
X_ICH_BASE = 9,
X_ICH_GOLDEN = 17,
X_ICH_CYCLE = 26,
X_ICH_PERIOD = 35,
X_ICH_STAR = 45,
X_ICH_MED = 52,
X_ICH_LONG = 63,
X_ICH_FULL = 72
};
//
// Ichimoku Lines Calculator Mode ...
enum ENUM_X_ICHIMOKU_CALCULATION_MODE
{
//
X_XICH_HH_LL_MODE = 1, // Highest High and Lowest Low
X_XICH_HO_LC_MODE = 2, // Highest Open and Lowest Close
};
//
// END Constants ...
//
//
// START Inputs ...
//
//
// ICHIMOKU Kinko Hyo ...
//
// TENKANSEN ...
input group "Tenkan Sen";
input int tenkanSenLength = 9; // Length
input ENUM_X_ICHIMOKU_CALCULATION_MODE tenkanSenMode = X_XICH_HH_LL_MODE; // Calculation Mode
//
// KIJUNSEN ...
input group "Kijun Sen";
input int kijunSenLength = 26; // Length
input ENUM_X_ICHIMOKU_CALCULATION_MODE kijunSenMode = X_XICH_HH_LL_MODE; // Calculation Mode
//
// SENKOUSPANB ...
input group "Senkou Span B";
input int senkouSpanBLength = 52; // Length
input ENUM_X_ICHIMOKU_CALCULATION_MODE senkouSpanBMode = X_XICH_HH_LL_MODE; // Calculation Mode
//
// CHIKOUSPAN ...
input group "Chikou Span";
input ENUM_APPLIED_PRICE chikuoSpanAppliedTo = PRICE_CLOSE; // Price Type
//
input group "Presentation";
input bool showTenkanSen = true; // Show Tenkan Sen
input bool showKijunSen = true; // Show Kijun Sen
input bool showKijunSenPlus = false; // Show Kijun Sen +
input bool showKijunSenNegative = false; // Show Kijun Sen -
input bool showChikouSpan = true; // Show Chikou Span
input bool showSenkouSpanA = true; // Show Senkou Span A
input bool showSenkouSpanB = true; // Show Senkou Span B
input bool showKumo = true; // Show Kumo
input bool shiftKumo = true; // Shift Kumo to Future
//
// END Inputs ...
//
//
// START Includes and Imports ...
//
//
// Includes Common Library ...
#include "../Libraries/x-saherelm.common.lib.mq5"
//
// END Includes and Imports ...
//
//
// START Buffers ...
//
#property indicator_chart_window
//
#property indicator_buffers 15
#property indicator_plots 8
//
// PLOTTED Buffers ...
//
// ICHIMOKU ...
//
// TENKANSEN ...
//
#define tenkanSenBufferIndex 0
double tenkanSenBuffer[];
//
#property indicator_label1 "X121_XICH TK"
#property indicator_type1 DRAW_LINE
#property indicator_color1 clrBrown
#property indicator_style1 STYLE_SOLID
#property indicator_width1 1
//
// KIJUNSEN ...
//
#define kijunSenBufferIndex 1
double kijunSenBuffer[];
//
#property indicator_label2 "X121_XICH KJ"
#property indicator_type2 DRAW_LINE
#property indicator_color2 clrDodgerBlue
#property indicator_style2 STYLE_SOLID
#property indicator_width2 1
//
#define kijunSenPlusBufferIndex 2
double kijunSenPlusBuffer[];
//
#property indicator_label3 "X121_XICH KJ+"
#property indicator_type3 DRAW_LINE
#property indicator_color3 clrMediumTurquoise
#property indicator_style3 STYLE_DOT
#property indicator_width3 1
//
#define kijunSenNegativeBufferIndex 3
double kijunSenNegativeBuffer[];
//
#property indicator_label4 "X121_XICH KJ-"
#property indicator_type4 DRAW_LINE
#property indicator_color4 clrDarkSeaGreen
#property indicator_style4 STYLE_DOT
#property indicator_width4 1
//
// CHIKOUSPAN ...
//
#define chikouSpanBufferIndex 4
double chikouSpanBuffer[];
//
#property indicator_label5 "X121_XICH CS"
#property indicator_type5 DRAW_LINE
#property indicator_color5 clrDarkGreen
#property indicator_style5 STYLE_SOLID
#property indicator_width5 1
//
#define senkouABufferIndex 5
double senkouABuffer[];
//
#property indicator_label6 "X121_XICH SSA"
#property indicator_type6 DRAW_LINE
#property indicator_color6 clrLightGray
#property indicator_style6 STYLE_DASHDOTDOT
#property indicator_width6 1
//
#define senkouBBufferIndex 6
double senkouBBuffer[];
//
#property indicator_label7 "X121_XICH SSB"
#property indicator_type7 DRAW_LINE
#property indicator_color7 clrLightGray
#property indicator_style7 STYLE_DASHDOTDOT
#property indicator_width7 1
//
// KUMO ...
//
// SENKOUSPANA ...
//
#define senkouSpanABufferIndex 7
double senkouSpanABuffer[];
//
// SENKOUSPANB ...
//
#define senkouSpanBBufferIndex 8
double senkouSpanBBuffer[];
//
// KUMOCLOUD ...
//
#define kumoBufferIndex 7
//
#property indicator_label8 "X121_XICH Kumo"
#property indicator_type8 DRAW_FILLING
#property indicator_color8 clrAqua, clrMagenta
#property indicator_style8 STYLE_SOLID
#property indicator_width8 1
//
// DATA Buffers ...
//
#define dTenkanBufferIndex 9
double dTenkanBuffer[];
//
#define dKijunBufferIndex 10
double dKijunBuffer[];
//
#define dChikouBufferIndex 11
double dChikouBuffer[];
//
#define dSSABufferIndex 12
double dSSABuffer[];
//
#define dSSBBufferIndex 13
double dSSBBuffer[];
//
// END Buffers ...
//
//
// START Global Definitions: Variables, Properties and etc ...
//
//
int maxLength;
int mHandler;
//
ENUM_SERIESMODE mTenkanSenTopMode = NULL;
ENUM_SERIESMODE mTenkanSenBottomMode = NULL;
//
ENUM_SERIESMODE mKijunSenTopMode = NULL;
ENUM_SERIESMODE mKijunSenBottomMode = NULL;
//
ENUM_SERIESMODE mSenkouSpanBTopMode = NULL;
ENUM_SERIESMODE mSenkouSpanBBottomMode = NULL;
//
// END Global Definitions: Variables, Properties and etc ...
//
//
// START Event Handlers ...
//
//
// Initialization ...
int OnInit()
{
//
// Validate Inputs ...
if (!ValidateInputs())
{
return INIT_PARAMETERS_INCORRECT;
}
//
// because in some cases we may have more than one input for
// calculation and we must prevent any calculation
// untill we pass the biggest input length, here we get max Input length
// and then wait until pass it ...
maxLength = ExtractMaxLengthOfInputs();
//
// Define Index Buffers ...
DefineBuffers();
//
// Init Handler ...
mHandler = iIchimoku(
_Symbol,
_Period,
tenkanSenLength,
kijunSenLength,
senkouSpanBLength);
if (mHandler == INVALID_HANDLE)
{
return INIT_FAILED;
}
//
// Set Indicator ShortName ...
SetIndicatorName();
//
// Init Succeed ...
return INIT_SUCCEEDED;
}
//
// DeInitialization ...
void OnDeinit(const int reason)
{
//
// REASON_PROGRAM 0 The EA has stopped working calling the ExpertRemove() function
// REASON_REMOVE 1 Program removed from a chart
// REASON_RECOMPILE 2 Program recompiled
// REASON_CHARTCHANGE 3 A symbol or a chart period is changed
// REASON_CHARTCLOSE 4 Chart closed
// REASON_PARAMETERS 5 Inputs changed by a user
// REASON_ACCOUNT 6 Another account has been activated or reconnection to the trade server has occurred due to changes in the account settings
// REASON_TEMPLATE 7 Another chart template applied
// REASON_INITFAILED 8 The OnInit() handler returned a non-zero value
// REASON_CLOSE 9 Terminal closed
//
IndicatorRelease(mHandler);
}
//
// Calculating what we want ...
int OnCalculate(
//
// total Candles on chart ...
const int rates_total,
//
// total calculated Candles on charts ...
const int prev_calculated,
//
// history of Candles Open Time ...
const datetime &time[],
//
// history of Candles Open Price ...
const double &open[],
//
// history of Candles High Price ...
const double &high[],
//
// history of Candles Low Price ...
const double &low[],
//
// history of Candles Close Price ...
const double &close[],
//
// history of Tick Volumes on Candle ...
const long &tick_volume[],
//
// history of Trade Volumes ...
const long &volume[],
//
// history of Candles Spread Price ...
const int &spread[])
{
//
// Prepare Buffers ...
ArraySetAsSeries(time, true);
ArraySetAsSeries(open, true);
ArraySetAsSeries(high, true);
ArraySetAsSeries(low, true);
ArraySetAsSeries(close, true);
ArraySetAsSeries(tick_volume, true);
ArraySetAsSeries(volume, true);
ArraySetAsSeries(spread, true);
//
// this counts Available Bars ...
int limit;
//
// Check Calculated Bars ...
int ichCalculatedBars = BarsCalculated(mHandler);
if (ichCalculatedBars < maxLength)
{
return prev_calculated;
}
//
limit = (prev_calculated > rates_total || prev_calculated <= 0) ? rates_total : (rates_total - prev_calculated) + 1;
//
// Buffers Copy ...
int copiedTenkans = CopyBuffer(mHandler, TENKANSEN_LINE, 0, limit, dTenkanBuffer);
int copiedKijuns = CopyBuffer(mHandler, KIJUNSEN_LINE, 0, limit, dKijunBuffer);
int copiedChikous = CopyBuffer(mHandler, CHIKOUSPAN_LINE, 0, limit, dChikouBuffer);
int copiedSSAs = CopyBuffer(mHandler, SENKOUSPANA_LINE, 0, limit, dSSABuffer);
int copiedSSBs = CopyBuffer(mHandler, SENKOUSPANB_LINE, 0, limit, dSSBBuffer);
if (
copiedSSAs < 0 ||
copiedSSBs < 0 ||
copiedKijuns < 0 ||
copiedTenkans < 0 ||
copiedChikous < 0)
{
return prev_calculated;
}
//
// Main Loop ...
for (int i = limit - 1; i >= 0 && !IsStopped(); i--)
{
CalculateBuffers(i);
}
//
return rates_total;
}
//
// END Event Handlers ...
//
//
// START Functions ...
//
//
// Validate Input Args for Initialization ...
bool ValidateInputs()
{
//
bool result =
//
(tenkanSenLength > 2 &&
kijunSenLength > tenkanSenLength &&
senkouSpanBLength > kijunSenLength)
//
;
//
return result;
}
//
// Retrieve all Exists Input Max Length ...
// use for Start Of Drawing ...
int ExtractMaxLengthOfInputs()
{
//
int result = 0;
//
// Ichimoku ...
result = MathMax(result, tenkanSenLength);
result = MathMax(result, kijunSenLength);
result = MathMax(result, senkouSpanBLength);
//
return result;
}
//
// Define Indexes and Styles ...
void DefineBuffers()
{
//
// ICHIMOKU ...
//
// TENKANSEN ...
//
ENUM_DRAW_TYPE tenkanSenDrawType = showTenkanSen ? DRAW_LINE : DRAW_NONE;
//
ArraySetAsSeries(tenkanSenBuffer, true);
SetIndexBuffer(tenkanSenBufferIndex, tenkanSenBuffer, INDICATOR_DATA);
PlotIndexSetInteger(tenkanSenBufferIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(tenkanSenBufferIndex, PLOT_SHOW_DATA, showTenkanSen);
PlotIndexSetInteger(tenkanSenBufferIndex, PLOT_DRAW_TYPE, tenkanSenDrawType);
//
// KIJUNSEN ...
//
ENUM_DRAW_TYPE kijunSenDrawType = showKijunSen ? DRAW_LINE : DRAW_NONE;
//
ArraySetAsSeries(kijunSenBuffer, true);
SetIndexBuffer(kijunSenBufferIndex, kijunSenBuffer, INDICATOR_DATA);
PlotIndexSetInteger(kijunSenBufferIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(kijunSenBufferIndex, PLOT_SHOW_DATA, showKijunSen);
PlotIndexSetInteger(kijunSenBufferIndex, PLOT_DRAW_TYPE, kijunSenDrawType);
//
// KIJUNSEN Plus ...
//
ENUM_DRAW_TYPE kijunSenPlusDrawType = showKijunSenPlus ? DRAW_LINE : DRAW_NONE;
//
ArraySetAsSeries(kijunSenPlusBuffer, true);
SetIndexBuffer(kijunSenPlusBufferIndex, kijunSenPlusBuffer, INDICATOR_DATA);
PlotIndexSetInteger(kijunSenPlusBufferIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(kijunSenPlusBufferIndex, PLOT_SHIFT, kijunSenLength);
PlotIndexSetInteger(kijunSenPlusBufferIndex, PLOT_SHOW_DATA, false);
PlotIndexSetInteger(kijunSenPlusBufferIndex, PLOT_DRAW_TYPE, kijunSenPlusDrawType);
//
// KIJUNSEN Negative ...
//
ENUM_DRAW_TYPE kijunSenNegativeDrawType = showKijunSenNegative ? DRAW_LINE : DRAW_NONE;
//
ArraySetAsSeries(kijunSenNegativeBuffer, true);
SetIndexBuffer(kijunSenNegativeBufferIndex, kijunSenNegativeBuffer, INDICATOR_DATA);
PlotIndexSetInteger(kijunSenNegativeBufferIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(kijunSenNegativeBufferIndex, PLOT_SHIFT, -kijunSenLength);
PlotIndexSetInteger(kijunSenNegativeBufferIndex, PLOT_SHOW_DATA, false);
PlotIndexSetInteger(kijunSenNegativeBufferIndex, PLOT_DRAW_TYPE, kijunSenNegativeDrawType);
//
// CHIKOUSPAN ...
//
ENUM_DRAW_TYPE chikouSpanDrawType = showChikouSpan ? DRAW_LINE : DRAW_NONE;
//
ArraySetAsSeries(chikouSpanBuffer, true);
SetIndexBuffer(chikouSpanBufferIndex, chikouSpanBuffer, INDICATOR_DATA);
PlotIndexSetInteger(chikouSpanBufferIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(chikouSpanBufferIndex, PLOT_SHIFT, -kijunSenLength);
PlotIndexSetInteger(chikouSpanBufferIndex, PLOT_SHOW_DATA, showChikouSpan);
PlotIndexSetInteger(chikouSpanBufferIndex, PLOT_DRAW_TYPE, chikouSpanDrawType);
//
// SENKOUSPAN A and B ...
int shiftSize = shiftKumo ? kijunSenLength : 0;
//
// SENKOUSPANA ...
ENUM_DRAW_TYPE senkouSpanADrawType = showSenkouSpanA ? DRAW_LINE : DRAW_NONE;
ArraySetAsSeries(senkouABuffer, true);
SetIndexBuffer(senkouABufferIndex, senkouABuffer, INDICATOR_DATA);
PlotIndexSetInteger(senkouABufferIndex, PLOT_SHIFT, shiftSize);
PlotIndexSetInteger(senkouABufferIndex, PLOT_SHOW_DATA, showSenkouSpanA);
PlotIndexSetInteger(senkouABufferIndex, PLOT_DRAW_TYPE, senkouSpanADrawType);
//
// SENKOUSPANB ...
ENUM_DRAW_TYPE senkouSpanBDrawType = showSenkouSpanB ? DRAW_LINE : DRAW_NONE;
ArraySetAsSeries(senkouBBuffer, true);
SetIndexBuffer(senkouBBufferIndex, senkouBBuffer, INDICATOR_DATA);
PlotIndexSetInteger(senkouBBufferIndex, PLOT_SHIFT, shiftSize);
PlotIndexSetInteger(senkouBBufferIndex, PLOT_SHOW_DATA, showSenkouSpanB);
PlotIndexSetInteger(senkouBBufferIndex, PLOT_DRAW_TYPE, senkouSpanBDrawType);
//
// KUMO ...
//
// SENKOUSPANA ...
ArraySetAsSeries(senkouSpanABuffer, true);
SetIndexBuffer(senkouSpanABufferIndex, senkouSpanABuffer, INDICATOR_DATA);
PlotIndexSetInteger(senkouSpanABufferIndex, PLOT_DRAW_BEGIN, maxLength);
//
// SENKOUSPANB ...
ArraySetAsSeries(senkouSpanBBuffer, true);
SetIndexBuffer(senkouSpanBBufferIndex, senkouSpanBBuffer, INDICATOR_DATA);
PlotIndexSetInteger(senkouSpanBBufferIndex, PLOT_DRAW_BEGIN, maxLength);
//
// KUMO ...
//
ENUM_DRAW_TYPE kumoDrawType = showKumo ? DRAW_FILLING : DRAW_NONE;
//
PlotIndexSetInteger(kumoBufferIndex, PLOT_SHIFT, shiftSize);
PlotIndexSetInteger(kumoBufferIndex, PLOT_SHOW_DATA, false);
PlotIndexSetInteger(kumoBufferIndex, PLOT_DRAW_TYPE, kumoDrawType);
//
// DATA Buffers ...
//
// D Tenkan ...
ArraySetAsSeries(dTenkanBuffer, true);
SetIndexBuffer(dTenkanBufferIndex, dTenkanBuffer, INDICATOR_CALCULATIONS);
//
// D Kijun ...
ArraySetAsSeries(dKijunBuffer, true);
SetIndexBuffer(dKijunBufferIndex, dKijunBuffer, INDICATOR_CALCULATIONS);
//
// D Chikou ...
ArraySetAsSeries(dChikouBuffer, true);
SetIndexBuffer(dChikouBufferIndex, dChikouBuffer, INDICATOR_CALCULATIONS);
//
// D SSA ...
ArraySetAsSeries(dSSABuffer, true);
SetIndexBuffer(dSSABufferIndex, dSSABuffer, INDICATOR_CALCULATIONS);
//
// D SSB ...
ArraySetAsSeries(dSSBBuffer, true);
SetIndexBuffer(dSSBBufferIndex, dSSBBuffer, INDICATOR_CALCULATIONS);
}
//
// Set Indicator Short Name and also we can define Buffers Labels ...
void SetIndicatorName()
{
IndicatorSetString(INDICATOR_SHORTNAME, ShortName);
}
//
// Calculate Buffers ...
void CalculateBuffers(
int bar_index // Selected Bar Index
)
{
//
// ICHIMOKU ...
//
double topValue;
double bottomValue;
//
// TENKANSEN ...
//
// Extract Tenkan Sen Top/Bottom Calculation Mode based on User Input ...
if (mTenkanSenTopMode == NULL || mTenkanSenBottomMode == NULL)
{
//
switch (tenkanSenMode)
{
//
case X_XICH_HH_LL_MODE:
//
mTenkanSenTopMode = MODE_HIGH;
mTenkanSenBottomMode = MODE_LOW;
break;
//
case X_XICH_HO_LC_MODE:
//
mTenkanSenTopMode = MODE_OPEN;
mTenkanSenBottomMode = MODE_CLOSE;
break;
}
}
//
// Calculate Top ...
topValue = GetHighestHigh(
_Symbol,
_Period,
mTenkanSenTopMode,
tenkanSenLength,
bar_index);
//
// Calculate Bottom ...
bottomValue = GetLowestLow(
_Symbol,
_Period,
mTenkanSenBottomMode,
tenkanSenLength,
bar_index);
//
double tenkanSenValue = (topValue + bottomValue) / 2;
tenkanSenBuffer[bar_index] = tenkanSenValue;
//
// KIJUNSEN ...
//
// Extract Kijun Sen Top/Bottom Calculation Mode based on User Input ...
if (mKijunSenTopMode == NULL || mKijunSenBottomMode == NULL)
{
//
switch (kijunSenMode)
{
//
case X_XICH_HH_LL_MODE:
//
mKijunSenTopMode = MODE_HIGH;
mKijunSenBottomMode = MODE_LOW;
break;
//
case X_XICH_HO_LC_MODE:
//
mKijunSenTopMode = MODE_OPEN;
mKijunSenBottomMode = MODE_CLOSE;
break;
}
}
//
// Calculate Top ...
topValue = GetHighestHigh(
_Symbol,
_Period,
mKijunSenTopMode,
kijunSenLength,
bar_index);
//
// Calculate Bottom ...
bottomValue = GetLowestLow(
_Symbol,
_Period,
mKijunSenBottomMode,
kijunSenLength,
bar_index);
//
double kijunSenValue = (topValue + bottomValue) / 2;
kijunSenBuffer[bar_index] = kijunSenValue;
//
kijunSenPlusBuffer[bar_index] = kijunSenValue;
kijunSenNegativeBuffer[bar_index] = kijunSenValue;
//
// CHIKOUSPAN ...
double chikouSpanValue = GetAppliedPrice(
bar_index,
chikuoSpanAppliedTo);
chikouSpanBuffer[bar_index] = chikouSpanValue;
//
// KUMO ...
//
// SENKOUSPANA ...
double senkouSpanAValue = (tenkanSenValue + kijunSenValue) / 2;
senkouABuffer[bar_index] = senkouSpanAValue;
senkouSpanABuffer[bar_index] = senkouSpanAValue;
//
// SENKOUSPANB ...
//
// Extract Senkou Span B Top/Bottom Calculation Mode based on User Input ...
if (mSenkouSpanBTopMode == NULL || mSenkouSpanBBottomMode == NULL)
{
//
switch (senkouSpanBMode)
{
//
case X_XICH_HH_LL_MODE:
//
mSenkouSpanBTopMode = MODE_HIGH;
mSenkouSpanBBottomMode = MODE_LOW;
break;
//
case X_XICH_HO_LC_MODE:
//
mSenkouSpanBTopMode = MODE_OPEN;
mSenkouSpanBBottomMode = MODE_CLOSE;
break;
}
}
//
// Calculate Top ...
topValue = GetHighestHigh(
_Symbol,
_Period,
mSenkouSpanBTopMode,
senkouSpanBLength,
bar_index);
//
// Calculate Bottom ...
bottomValue = GetLowestLow(
_Symbol,
_Period,
mSenkouSpanBBottomMode,
senkouSpanBLength,
bar_index);
//
double senkouSpanBValue = (topValue + bottomValue) / 2;
senkouBBuffer[bar_index] = senkouSpanBValue;
senkouSpanBBuffer[bar_index] = senkouSpanBValue;
}
//
// END Functions ...
//