Техническое задание
Converting Tradinview indicator to Mql5 to use by i Costum Fontion mql5 should be 2 idnicator open course on tradinvgcview
//@version=2
study(title = "Smoothed Heiken Ashi Candles", shorttitle="Smoothed Ha Candles", overlay=true)
len=input(10)
o=ema(open,len)
c=ema(close,len)
h=ema(high,len)
l=ema(low,len)
haclose = (o+h+l+c)/4
haopen = na(haopen[1]) ? (o + c)/2 : (haopen[1] + haclose[1]) / 2
hahigh = max (h, max(haopen,haclose))
halow = min (l, min(haopen,haclose))
len2=input(10)
o2=ema(haopen, len2)
c2=ema(haclose, len2)
h2=ema(hahigh, len2)
l2=ema(halow, len2)
col=o2>c2 ? red : lime
plotcandle(o2, h2, l2, c2, title="heikin smoothed", color=col)
Second Indıcator
// This work is licensed under Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International
// © BigBeluga
//@version=5
indicator("Target Trend [BigBeluga]", overlay = true, max_lines_count = 40)
// INPUTS ――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――{
length = input.int(10, "Trend Length")
target = input.int(0, "Set Targets")
// }
// VARIABLES ――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――{
var bool trend = na
float trend_value = na
// Colors
color up_color = #06b690
color dn_color = color.rgb(182, 112, 6)
// ATR for calculating stop loss and target levels
series float atr_value = ta.sma(ta.atr(200), 200) * 0.8
// Moving averages for trend detection
series float sma_high = ta.sma(high, length) + atr_value
series float sma_low = ta.sma(low, length) - atr_value
color plot_color = color.new(chart.fg_color, 80)
// UDT for managing lines and labels
type TrendTargets
line[] lines
label[] labels
// Initialize UDT
var TrendTargets targets_up = TrendTargets.new(array.new_line(), array.new_label())
var TrendTargets targets_down = TrendTargets.new(array.new_line(), array.new_label())
// }
// CALCULATIONS――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――{
// Determine trend based on crossovers
if ta.crossover(close, sma_high) and barstate.isconfirmed
trend := true
if ta.crossunder(close, sma_low) and barstate.isconfirmed
trend := false
trend_value := switch
trend => sma_low
not trend => sma_high
trend_color = trend ? up_color : not trend ? dn_color : na
// Signal detection for trend changes
bool signal_up = ta.change(trend) and not trend[1]
bool signal_down = ta.change(trend) and trend[1]
// Method to draw trend targets and manage lines/labels
method draw_targets(TrendTargets targets, bool signal1, bool signal2, bool direction)=>
float base = direction ? sma_low : sma_high
float atr_multiplier = atr_value * (direction ? 1 : -1)
// Reset counters for up and down targets
var int count_up = 0
var int count_down = 0
if trend
count_down := 0
count_up += 1
if not trend
count_down += 1
count_up := 0
int count = direction ? count_up : count_down
if signal1
float target_len1 = atr_multiplier * (5+target)
float target_len2 = atr_multiplier * (10+target*2)
float target_len3 = atr_multiplier * (15+target*3)
// Clear existing lines and labels
for line_i in targets.lines
int i = targets.lines.indexof(line_i)
label.delete(targets.labels.get(i))
line.delete(line_i)
array.clear(targets.lines)
array.clear(targets.labels)
// Draw new lines for trend targets
line stop_loss_line = line.new(bar_index, base, bar_index + 20, base)
line entry_line = line.new(bar_index, close, bar_index + 20, close)
line target1_line = line.new(bar_index, close + target_len1, bar_index + 20, close + target_len1)
line target2_line = line.new(bar_index, close + target_len2, bar_index + 20, close + target_len2)
line target3_line = line.new(bar_index, close + target_len3, bar_index + 20, close + target_len3)
// Fill between stop loss and entry line
linefill.new(stop_loss_line, entry_line, color.new(dn_color, 95))
linefill.new(entry_line, target3_line, color.new(up_color, 95))
// Draw new labels for trend targets
label stop_loss_label = label.new(bar_index + 20, base, str.tostring(math.round(base, 2)))
label entry_label = label.new(bar_index + 20, close, str.tostring(math.round(close, 2)))
label target1_label = label.new(bar_index + 20, close + target_len1, "1 - " + str.tostring(math.round(close + target_len1, 2)))
label target2_label = label.new(bar_index + 20, close + target_len2, "2 - " + str.tostring(math.round(close + target_len2, 2)))
label target3_label = label.new(bar_index + 20, close + target_len3, "3 - " + str.tostring(math.round(close + target_len3, 2)))
// Push lines and labels to the UDT
targets.lines.push(stop_loss_line)
targets.lines.push(entry_line)
targets.lines.push(target1_line)
targets.lines.push(target2_line)
targets.lines.push(target3_line)
targets.labels.push(stop_loss_label)
targets.labels.push(entry_label)
targets.labels.push(target1_label)
targets.labels.push(target2_label)
targets.labels.push(target3_label)
// Update styles for labels and lines
for lbl in targets.labels
int idx = targets.labels.indexof(lbl)
line line_ref = targets.lines.get(idx)
lbl.set_style(label.style_label_left)
lbl.set_color(chart.fg_color)
lbl.set_textcolor(chart.bg_color)
line_ref.set_color(chart.fg_color)
if signal2
// Clear existing lines and labels
for line_i in targets.lines
int i = targets.lines.indexof(line_i)
label.delete(targets.labels.get(i))
line.delete(line_i)
array.clear(targets.lines)
array.clear(targets.labels)
for line_i in targets.lines
int idx = targets.lines.indexof(line_i)
label lbl_ref = targets.labels.get(idx)
label first_label = targets.labels.first()
line entry_line = targets.lines.get(1)
label entry_label = targets.labels.get(1)
// Targets
if high >= line.get_y2(line_i) and low <= line.get_y2(line_i) and count > 1
lbl_ref.set_style(label.style_label_left)
lbl_ref.set_color(chart.fg_color)
lbl_ref.set_text(" ✔ ")
lbl_ref.set_textcolor(#16ac09)
line_i.set_style(line.style_dashed)
line_i.set_color(plot_color)
// Stop Loss
if high >= line.get_y2(targets.lines.first()) and low <= line.get_y2(targets.lines.first()) and count > 1
first_label.set_text(" ✖ ")
if direction ? trend : not trend
first_label.set_textcolor(#db1e1e)
line_i.set_x2(bar_index + 20)
targets.lines.first().set_color(#db1e1e)
label.set_x(targets.labels.get(idx), bar_index + 20)
entry_line.set_style(line.style_solid)
entry_line.set_color(up_color)
entry_label.set_text("◉ " + str.tostring(math.round(line.get_y2(entry_line), 2)))
entry_label.set_textcolor(#1d80dd)
// }
// PLOT―――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――――{
// Call the draw_targets method for both upward and downward trends
targets_down.draw_targets(signal_down, signal_up, false)
targets_up.draw_targets(signal_up, signal_down, true)
// Plot candlesticks with trend color
plotcandle(open, high, low, close,
title = 'Title',
color = trend_color,
wickcolor = trend_color,
bordercolor = trend_color)
// Plot trailing stops
p1 = plot(trend ? trend_value : na, style = plot.style_linebr, color = plot_color)
p2 = plot(not trend ? trend_value : na, style = plot.style_linebr, color = plot_color)
p0 = plot(hl2, display = display.none, editable = false)
fill(p1, p0, trend_value, hl2, color.new(chart.fg_color, 90), na)
fill(p2, p0, trend_value, hl2, color.new(chart.fg_color, 90), na)
// Plot signals on the chart
float sigUp = signal_up ? low - atr_value*2 : na
float sigDn = signal_down ? high + atr_value*2 : na
plotshape(sigUp, "", shape.triangleup, location.absolute, up_color, size = size.tiny)
plotshape(sigUp, "", shape.triangleup, location.absolute, color.new(up_color, 80), size = size.small)
plotshape(sigDn, "", shape.triangledown, location.absolute, dn_color, size = size.tiny)
plotshape(sigDn, "", shape.triangledown, location.absolute, color.new(dn_color, 80), size = size.small)
// }
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