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MQL5Data/Documents/BKP/autofibgage.pine
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2025-03-30 01:20:09 +03:30

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// This indicator is created under TechnoBlooms - Innovating Trading Indicators and Strategies.
// All rights reserved. Unauthorized copying or distribution is prohibited.
// © TechnoBlooms
//@version=6
indicator("AutoFibGauge (TechnoBlooms) ", overlay=true)
//----------------------------------------------------------------------------
// Initialize with a default value that's not NaN
//----------------------------------------------------------------------------
var float highestHigh = 0.0
var float lowestLow = 0.0
var float level0 = na
var float level100 = na
var float level236 = na
var float level382 = na
var float level500 = na
var float level618 = na
var float level786 = na
// Variables for labels
var label label0 = na
var label label100 = na
var label label236 = na
var label label382 = na
var label label500 = na
var label label618 = na
var label label786 = na
var int positionState = 0 // 0 = neutral, 1 = buy, -1 = sell
Thermometer_position = input.string("Middle right", title="Position", options=["Middle left", "Middle right"], group='Thermometer Settings')
//-------------------------------------------------------------------------------
//input how many candles to consider for drawing fibonacci
//-------------------------------------------------------------------------------
num_of_cand = input(25,"No of Candles to find fib")
//-------------------------------------------------------------------------------
// Calculate the highest high and lowest low of the last n candles
//-------------------------------------------------------------------------------
highestHigh := ta.highest(high, num_of_cand)
lowestLow := ta.lowest(low, num_of_cand)
hhBar = ta.highestbars(high, num_of_cand)
llBar = ta.lowestbars(low, num_of_cand)
// Calculate actual bar indices (negative offsets need to be converted)
currentBar = bar_index
highBarIndex = currentBar + hhBar
lowBarIndex = currentBar + llBar
//-------------------------------------------------------------------------------
// Calculate Simple Moving Average (SMA)
//-------------------------------------------------------------------------------
SLength = input(20,"Short Length")
LLength = input(55,"Long Length") // You can adjust this to change the SMA period
Strend = ta.sma(close,SLength)
LTrend = ta.sma(close, LLength)
//-------------------------------------------------------------------------------------------
// Determine if we're in an uptrend or downtrend based on the current close relative to SMA
//-------------------------------------------------------------------------------------------
isUptrend = Strend > LTrend
barColor = isUptrend ?#26a6c6 : #9c1f98
barcolor(barColor, title="Trend-Based Bar Color")
//----------------------------------------
//Choose Visibility of MA lines
//----------------------------------------
showSMAShort = input.bool(false,"Short SMA")
showSMALong = input.bool(false,"Long SMA")
//---------------------------------------------------
//Choose which all fib lines to display
//---------------------------------------------------
showFib0 = input.bool(true, "Fib 0",group = "Show Fib Lines")
showFib236 = input.bool(true,"Fib 23.6",group = "Show Fib Lines")
showFib382 = input.bool(true,"Fib 38.2",group = "Show Fib Lines")
showFib500 = input.bool(true,"Fib 50",group = "Show Fib Lines")
showFib618 = input.bool(true,"Fib 61.8",group = "Show Fib Lines")
showFib786 = input.bool(true,"Fib 78.6",group = "Show Fib Lines")
showFib100 = input.bool(true,"Fib 100",group = "Show Fib Lines")
//----------------------------------------------------------------
// Choose background color of thermometer
//----------------------------------------------------------------
color0 = color.from_gradient(0, 0, 7, color.aqua, color.purple)
color1 = color.from_gradient(1, 0, 7, color.aqua, color.purple)
color2 = color.from_gradient(2, 0, 7, color.aqua, color.purple)
color3 = color.from_gradient(3, 0, 7, color.aqua, color.purple)
color4 = color.from_gradient(4, 0, 7, color.aqua, color.purple)
color5 = color.from_gradient(5, 0, 7, color.aqua, color.purple)
color6 = color.from_gradient(6, 0, 7, color.aqua, color.purple)
color7 = color.from_gradient(7, 7, 14, color.purple, color.red)
color8 = color.from_gradient(8, 7, 14, color.purple, color.red)
color9 = color.from_gradient(9, 7, 14, color.purple, color.red)
color10 = color.from_gradient(10, 7, 14, color.purple, color.red)
color11 = color.from_gradient(11, 7, 14, color.purple, color.red)
color12 = color.from_gradient(12, 7, 14, color.purple, color.red)
color13 = color.from_gradient(13, 7, 14,color.purple, color.red)
//---------------------------------------------------------------------
// Calculate Fibonacci levels based on trend
//---------------------------------------------------------------------
if not na(highestHigh) and not na(lowestLow) and highestHigh != lowestLow
float diff = highestHigh - lowestLow
if isUptrend
level0 := highestHigh
level100 := lowestLow
level236 := highestHigh - (diff * 0.236)
level382 := highestHigh - (diff * 0.382)
level500 := highestHigh - (diff * 0.500)
level618 := highestHigh - (diff * 0.618)
level786 := highestHigh - (diff * 0.786)
else
level0 := lowestLow
level100 := highestHigh
level236 := lowestLow + (diff * 0.236)
level382 := lowestLow + (diff * 0.382)
level500 := lowestLow + (diff * 0.500)
level618 := lowestLow + (diff * 0.618)
level786 := lowestLow + (diff * 0.786)
//-------------------------------------------------
// Delete old labels
//-------------------------------------------------
label.delete(label0)
label.delete(label100)
label.delete(label236)
label.delete(label382)
label.delete(label500)
label.delete(label618)
label.delete(label786)
//----------------------------------------------------
// Draw new labels, considering trend
//----------------------------------------------------
if showFib0
label0 := label.new(bar_index+5, level0, text="0.0%", color=color0, textcolor=color.white, style=label.style_label_left)
if showFib100
label100 := label.new(bar_index+5, level100, text="100.0%", color=color12, textcolor=color.white, style=label.style_label_left)
if showFib236
label236 := label.new(bar_index+5, level236, text="23.6%", color=color2, textcolor=color.white, style=label.style_label_left)
if showFib382
label382 := label.new(bar_index+5, level382, text="38.2%", color=color4, textcolor=color.white, style=label.style_label_left)
if showFib500
label500 := label.new(bar_index+5, level500, text="50.0%", color=color6, textcolor=color.white, style=label.style_label_left)
if showFib618
label618 := label.new(bar_index+5, level618, text="61.8%", color=color8, textcolor=color.white, style=label.style_label_left)
if showFib786
label786 := label.new(bar_index+5, level786, text="78.6%", color=color10, textcolor=color.white, style=label.style_label_left)
//---------------------------------------------------------------
// Draw straight lines to 20 candles back
//---------------------------------------------------------------
var line line0 = na
var line line100 = na
var line line236 = na
var line line382 = na
var line line500 = na
var line line618 = na
var line line786 = na
line.delete(line0)
line.delete(line100)
line.delete(line236)
line.delete(line382)
line.delete(line500)
line.delete(line618)
line.delete(line786)
if showFib0
line0 := line.new(bar_index[num_of_cand], level0, bar_index+5, level0, color=color0, width=1)
if showFib100
line100 := line.new(bar_index[num_of_cand], level100, bar_index+5, level100, color=color12, width=1)
if showFib236
line236 := line.new(bar_index[num_of_cand], level236, bar_index+5, level236, color=color2, width=1)
if showFib382
line382 := line.new(bar_index[num_of_cand], level382, bar_index+5, level382, color=color4, width=1)
if showFib500
line500 := line.new(bar_index[num_of_cand], level500, bar_index+5, level500, color=color6,width = 1)
if showFib618
line618 := line.new(bar_index[num_of_cand], level618, bar_index+5, level618, color=color8,width = 1)
if showFib786
line786 := line.new(bar_index[num_of_cand], level786, bar_index+5, level786, color=color10,width = 1)
// Draw dashed line for showing Fib range
var line fibline = na
//-------------------------------------------------------------------------
//Highlight Golden Ration region
//-------------------------------------------------------------------------
var box box1 = na
var box box2 = na
var box box3 = na
var box box2_lower = na
var box box2_upper = na
var box box3_lower = na
var box box3_upper = na
// Draw gradient shading with darker areas above and below 61.8%, fading toward 38.2% and 78.6%
// Delete previous boxes
if not na(box1)
box.delete(box1)
if not na(box2_lower)
box.delete(box2_lower)
if not na(box2_upper)
box.delete(box2_upper)
if not na(box3_lower)
box.delete(box3_lower)
if not na(box3_upper)
box.delete(box3_upper)
// Base layer: Full range (38.2% to 78.6%) - lightest shade
// box1 := box.new(left=bar_index[num_of_cand], top=level786, right=bar_index+5, bottom=level382, bgcolor=color.new(color.yellow, 100), border_width=0)
// Middle layers: Split around 61.8%, fading outward
box2_lower := box.new(left=bar_index[num_of_cand], top=(level618 + level382)/2, right=bar_index+5, bottom=level382, bgcolor=color.new(color.yellow, 100), border_width=0)
box2_upper := box.new(left=bar_index[num_of_cand], top=level786, right=bar_index+5, bottom=(level786 + level618)/2, bgcolor=color.new(color.yellow, 100), border_width=0)
// Core layers: Closest to 61.8%, darkest shade
box3_lower := box.new(left=bar_index[num_of_cand], top=level618, right=bar_index+5, bottom=(level618 + level382)/2, bgcolor=color.new(color.yellow, 85), border_width=0)
box3_upper := box.new(left=bar_index[num_of_cand], top=(level786 + level618)/2, right=bar_index+5, bottom=level618, bgcolor=color.new(color.yellow, 85), border_width=0)
if isUptrend
line.delete(fibline)
fibline := line.new(lowBarIndex, lowestLow, highBarIndex, highestHigh, color=color.gray, style=line.style_dashed)
else
line.delete(fibline)
fibline := line.new(highBarIndex, highestHigh, lowBarIndex, lowestLow, color=color.gray, style=line.style_dashed)
//-------------------------
// Plot SMA
//-------------------------
plot(showSMAShort? Strend:na, title="SMA", color=color.blue, linewidth=1)
plot(showSMALong? LTrend:na, title="Strend", color=#f321b4, linewidth=1)
//-----------------------------------------------------------
//create labels in Thermometer when trend = 1 (uptrend)
//-----------------------------------------------------------
var table_position = Thermometer_position == 'Top right' ? position.top_right :
Thermometer_position == 'Top left' ? position.top_left :
Thermometer_position == 'Top center' ? position.top_center :
Thermometer_position == 'Bottom right' ? position.bottom_right :
Thermometer_position == 'Bottom left' ? position.bottom_left :
Thermometer_position == 'Bottom center' ? position.bottom_center :
Thermometer_position == 'Middle right' ? position.middle_right : position.middle_right
tbl = table.new(position=table_position, columns = 100, rows=100)
closenum=math.round(close,0)
if level0 < level100
table.cell(tbl,0,0,text = label100.get_text() , text_color = #f83f8c)
table.cell(tbl,0,11,text = label236.get_text() ,text_color = #f83f8c)
table.cell(tbl,0,8,text = label382.get_text() ,text_color = #f83f8c)
table.cell(tbl,0,5,text = label618.get_text() , text_color =#f83f8c)
table.cell(tbl,0,2,text = label786.get_text(),text_color = #f83f8c)
table.cell(tbl,0,13,text = label0.get_text(), text_color = #f83f8c)
table.cell(tbl,2,13,text = str.tostring(level0," #,###"), text_color = #f83f8c)
table.cell(tbl,2,11,text = str.tostring(level236, " #,###"),text_color = #f83f8c)
table.cell(tbl,2,8,text = str.tostring(level382, " #,###"),text_color = #f83f8c)
table.cell(tbl,2,5,text = str.tostring(level618, " #,###"), text_color =#f83f8c)
table.cell(tbl,2,2,text = str.tostring(level786, " #,###"),text_color = #f83f8c)
table.cell(tbl,2,0,text = str.tostring(level100," #,###"), text_color = #f83f8c)
for i = 0 to 13 by 1
table.cell(tbl, 1, i, "", bgcolor = i < 8 ? color.from_gradient(i, 0, 7, color.aqua, color.purple) : color.from_gradient(i, 7, 14, color.purple, color.red))
var reg = 0
bkcolor = color.aqua
if closenum > level0 and closenum < level236
reg := 12
if closenum > level236 and closenum < level382
reg := 9
if closenum > level382 and closenum < level618
reg := 6
if closenum > level618 and closenum < level786
reg := 3
if closenum > level786 and closenum < level100
reg := 1
if closenum == level0
reg := 0
if closenum == level236
reg := 11
if closenum == level382
reg := 8
if closenum == level618
reg := 5
if closenum == level786
reg := 2
if reg == 12
bkcolor := color12
if reg == 9
bkcolor := color9
if reg == 6
bkcolor := color6
if reg == 3
bkcolor := color3
if reg == 1
bkcolor := color1
if reg == 2
bkcolor := color2
if reg == 4
bkcolor := color4
if reg == 5
bkcolor := color5
if reg == 7
bkcolor := color7
if reg == 8
bkcolor := color8
if reg == 10
bkcolor := color10
if reg == 11
bkcolor := color11
if reg == 13
bkcolor := color13
table.cell(tbl,1,reg,"🌕", text_size = size.small,bgcolor = bkcolor)
//-----------------------------------------------------------
//create labels in Thermometer
//-----------------------------------------------------------
else
table.cell(tbl,0,13,text = label100.get_text() , text_color = #f83f8c)
table.cell(tbl,0,2,text = label236.get_text() ,text_color = #f83f8c)
table.cell(tbl,0,5,text = label382.get_text() ,text_color = #f83f8c)
table.cell(tbl,0,8,text = label618.get_text() , text_color =#f83f8c)
table.cell(tbl,0,11,text = label786.get_text(),text_color = #f83f8c)
table.cell(tbl,0,0,text = label0.get_text(), text_color = #f83f8c)
table.cell(tbl,2,0,text = str.tostring(level0," #,###"), text_color = #f83f8c)
table.cell(tbl,2,2,text = str.tostring(level236, " #,###"),text_color = #f83f8c)
table.cell(tbl,2,5,text = str.tostring(level382, " #,###"),text_color = #f83f8c)
table.cell(tbl,2,8,text = str.tostring(level618, " #,###"), text_color =#f83f8c)
table.cell(tbl,2,11,text = str.tostring(level786, " #,###"),text_color = #f83f8c)
table.cell(tbl,2,13,text = str.tostring(level100," #,###"), text_color = #f83f8c)
for i = 0 to 13 by 1
table.cell(tbl, 1, i, "", bgcolor = i < 8 ? color.from_gradient(i, 0, 7, color.aqua, color.purple) : color.from_gradient(i, 7, 14, color.purple, color.red))
var reg = 0
bkcolor = color.aqua
if closenum > level100 and closenum < level786
reg := 12
if closenum > level786 and closenum < level618
reg := 9
if closenum > level618 and closenum < level382
reg := 6
if closenum > level382 and closenum < level236
reg := 3
if closenum > level236 and closenum < level0
reg := 1
if closenum == level0
reg := 0
if closenum == level236
reg := 11
if closenum == level382
reg := 8
if closenum == level618
reg := 5
if closenum == level786
reg := 2
if reg == 12
bkcolor := color12
if reg == 9
bkcolor := color9
if reg == 6
bkcolor := color6
if reg == 3
bkcolor := color3
if reg == 1
bkcolor := color1
if reg == 2
bkcolor := color2
if reg == 4
bkcolor := color4
if reg == 5
bkcolor := color5
if reg == 7
bkcolor := color7
if reg == 8
bkcolor := color8
if reg == 10
bkcolor := color10
if reg == 11
bkcolor := color11
if reg == 13
bkcolor := color13
table.cell(tbl,1,reg,"🌕", text_size = size.small,bgcolor = bkcolor)