Indicator

Indicator

Indicator

Indicator

Indicator

MTF Daily Bias DashboardOverview
The "MTF Daily Bias Dashboard" is a streamlined, non-intrusive utility designed specifically for Smart Money Concepts (SMC) and Inner Circle Trader (ICT) methodologies. Multi-timeframe analysis is the backbone of finding high-probability setups, but constantly switching between charts to check the higher-timeframe narrative can lead to missed lower-timeframe entries.
This indicator solves that problem by providing a clean, customizable on-chart dashboard that displays real-time, objective market bias across three different timeframes simultaneously.
Core Features
Objective Bias Detection: Bias is determined mechanically using a customizable Exponential Moving Average (EMA) and price action closes, removing emotion and guesswork from your directional bias.
Multi-Timeframe Synchronization: By default, it tracks the Daily (1D), 4-Hour (4H), and 15-Minute (15m) timeframes, giving you a complete top-down narrative at a glance.
Non-Repainting Logic: The multi-timeframe data is pulled securely, ensuring that historical signals remain accurate and current data does not repaint past the current candle formation.
Dynamic Visual Dashboard: A color-coded table (Green for Bullish, Red for Bearish) provides immediate visual confirmation of market alignment.
How It Works
The indicator evaluates the current price action against your chosen baseline (EMA).
Bullish (Green):Price closes above the EMA, and the current candle closes higher than the previous candle.
Bearish (Red): Price closes below the EMA, and the current candle closes lower than the previous candle.
Confluence: When all three timeframes show the same color, you have high-probability directional alignment, perfect for looking for lower-timeframe sweeps, order blocks, or fair value gaps in the direction of the trend.
Customization & Settings
Timeframes: Fully adjustable inputs allow you to change the three monitored timeframes to fit your specific trading model (e.g., Weekly/Daily/1H or 4H/1H/5m).
Dashboard Positioning: You can move the dashboard to any corner of your chart to ensure it never obstructs current price action.
Trend Logic: Adjust the EMA length used to calculate the bias to make the indicator more or less sensitive to recent price action.
Who is this for?
This tool is ideal for SMC, ICT, and pure price action traders who rely on the daily narrative but execute on intraday timeframes. It keeps you aligned with the macro trend while you focus on micro executions. Indicator

SMA 10/20 Cross & TrailTwo SMAs with crossover and trail-break signals, plus ATR context that tells you whether a signal is a real trend turn or just two lines grinding together.
Most 10/20 moving-average tools give you a cross and nothing else. The
problem is that a cross tells you a regime already changed — by then price
has been below the fast MA for a while — and it gives you no way to tell a
decisive turn apart from two lines chopping around each other in a range.
This script addresses both.
WHAT IT PLOTS
- Two configurable MAs (default SMA 10 and SMA 20; SMA/EMA/WMA/RMA available)
- Shaded fill between them, tinted by which side the fast MA is on, so
regime state is readable at a glance without hunting for the last marker
- Cross markers when the fast MA crosses the slow MA
- Trail-break markers when PRICE closes through either MA — the earlier
warning, and the signal that actually matches how a moving average gets
used as a trailing stop. X = fast MA, circle = slow MA.
- A corner table showing current MA separation in ATR, the regime state
(ENTANGLED / SEPARATING / TRENDING), the strength of the last completed
leg, and where price sits relative to each MA in ATR terms
THE ATR LAYER
Every cross is labelled with how far apart the MAs got during the leg that
just ended, measured in ATR. A cross printing 1.20x means the averages
genuinely separated and have now reversed. A cross printing 0.15x means they
never separated at all and you are looking at noise. Same marker either way —
the number is what tells them apart. Thresholds are user-configurable.
NO REPAINTING
"Confirm on bar close" is on by default: a signal must survive to the bar's
close before it counts, so live and historical markers agree. Turn it off
only if you want intrabar triggers and accept that a signal can disappear.
ALERTS
Seven named conditions — bullish cross, bearish cross, either cross, and
close above/below each MA. Optional rich alert() mode embeds the live ATR
numbers in the message text.
USAGE NOTES
The right setting depends on hold length and volatility, not asset class.
For low-beta instruments and longer holds, use the slow-MA trail and treat
the crosses as primary. For high-beta names and short holds, use the fast-MA
trail and expect the crosses to arrive late. Save each as an indicator
template rather than maintaining two copies of the script.
No external symbols or request.security() calls — it reads the chart symbol
only. Indicator

Indicator

CHAM TREND SYSTEM v3.0 PRECISION MA CROSSCHAM TREND SYSTEM v3.0 — PRECISION MA CROSS
CHAM TREND SYSTEM is an advanced multi-confluence PulseWire indicator designed to identify high-quality BUY and SELL opportunities by combining trend, market structure, moving-average crossovers, volume, liquidity, supply and demand, support and resistance.
KEY FEATURES
• **MA Cross** — configurable Fast and Slow MA for momentum and trend-change confirmation.
• **SMMA 50** — identifies the immediate market trend.
• **EMA 200** — filters the overall market direction.
• **Precision BUY/SELL Signals** — requires multiple confirmations before generating a signal.
• **Market Structure** — detects HH, HL, LH and LL.
• **Supply & Demand Zones** — identifies potential institutional reaction areas.
• **Liquidity Sweeps** — detects potential stop-hunts above highs and below lows.
• **Volume Confirmation** — filters weak breakouts and low-volume signals.
• **Support & Resistance** — automatically tracks important price levels.
• **RSI Momentum Filter** — confirms directional momentum.
• **ATR Stop & Targets** — provides dynamic SL and TP reference levels.
• **Signal Cooldown** — reduces repeated signals during the same move.
• **Alerts** — receive notifications for MA crosses, liquidity events and confirmed CHAM BUY/SELL signals.
CHAM METHOD
**TREND → MA CROSS → STRUCTURE → ZONE → LIQUIDITY → VOLUME → CONFIRMATION → ENTRY**
CHAM TREND SYSTEM does not predict the future or guarantee profits. Markets are uncertain, and every signal should be combined with proper risk management and independent analysis.
Indicator

Indicator

MW WINDOWS TIME🇫🇷 Français
MW WINDOWS TIME est un indicateur PulseWire simple et visuel conçu pour cadrer les principales fenêtres horaires de trading sur MGC et MNQ.
Il affiche automatiquement deux zones directement sur le graphique :
08h45 → 11h00 : fenêtre Europe, priorité MGC
14h15 → 17h30 : fenêtre US, priorité MNQ + MGC
Pendant chaque fenêtre, l’indicateur crée une boîte qui s’adapte automatiquement au plus haut et au plus bas des bougies de la période. À la fin de la fenêtre, la boîte reste figée afin de conserver un repère visuel clair.
Le nom de l’actif à privilégier est affiché sous chaque boîte :
MGC le matin, puis MNQ • MGC l’après-midi.
L’utilisateur peut personnaliser les couleurs, l’opacité, les bordures, la taille du texte et la position des labels.
Le fuseau horaire peut être réglé manuellement entre UTC+2 et UTC+1 afin de s’adapter au passage heure d’été / heure d’hiver.
L’objectif du script est simple : savoir immédiatement quand chercher un setup et éviter de trader en dehors des fenêtres prévues.
🇬🇧 English
MW WINDOWS TIME is a simple and visual PulseWire indicator designed to highlight the main trading windows for MGC and MNQ.
It automatically displays two trading windows directly on the chart:
08:45 → 11:00: European session, priority MGC
14:15 → 17:30: US session, priority MNQ + MGC
During each window, the indicator creates a box that automatically adjusts to the highest and lowest price reached during the session. Once the time window is over, the box remains fixed on the chart for clear historical reference.
The preferred trading instrument is displayed below each box:
MGC during the morning session and MNQ • MGC during the US session.
Users can customize the box colors, opacity, border colors and thickness, text colors, label size, and label position.
The timezone can be manually switched between UTC+2 and UTC+1 to adapt to summer and winter time changes.
The purpose of the script is simple: clearly identify when to look for trading opportunities and avoid trading outside the planned windows. Indicator

Indicator

Indicator

VWAP Slope Trend Filter# VWAP Slope Trend Filter
The **VWAP Slope Trend Filter** is designed to identify the current intraday market direction by analyzing both the position and the slope of the Volume Weighted Average Price (VWAP).
Instead of simply checking whether price is above or below VWAP, the indicator measures how strongly VWAP is rising or falling. This helps filter out flat or sideways market conditions where trend-following entries are more likely to fail.
The VWAP slope is normalized using ATR, allowing the filter to adapt to different levels of market volatility.
## Trend Colors
**Green VWAP – Bullish Trend**
The VWAP is rising with sufficient momentum. Traders can use this condition as a filter for long setups.
**Red VWAP – Bearish Trend**
The VWAP is falling with sufficient momentum. Traders can use this condition as a filter for short setups.
**Gray VWAP – Neutral / Range**
The VWAP slope is too weak to confirm a clear trend. These conditions can be avoided to reduce trades during sideways markets.
## Main Features
* Session VWAP
* ATR-normalized VWAP slope
* Bullish, bearish, and neutral trend detection
* Adjustable slope sensitivity
* Adjustable slope lookback length
* Dynamic VWAP coloring
* Optional background trend highlighting
* Trend-change markers
* Bullish and bearish alert conditions
## Example Usage
The indicator can be used as a directional filter for another entry system.
A possible long setup:
1. Price is above VWAP.
2. VWAP is green and rising.
3. The primary entry indicator produces a long signal.
4. Enter the trade with predefined risk management.
A possible short setup:
1. Price is below VWAP.
2. VWAP is red and falling.
3. The primary entry indicator produces a short signal.
4. Enter the trade with predefined risk management.
When the VWAP is gray, traders may choose to avoid new positions until a clearer directional trend develops.
## Important
This indicator is intended to be used as a **trend filter**, not as a standalone trading system. It does not guarantee profitable trades and should be combined with proper entry rules, stop-loss placement, risk management, and backtesting.
The optimal Slope Length and Minimum Slope settings may vary depending on the market, trading session, and timeframe.
Indicator

Indicator

Liquidity Magnet TerminalLiquidity Magnet Terminal
Liquidity Magnet Terminal is a volume-weighted liquidity mapping tool that helps traders identify the price levels where the market has historically accumulated the most trading interest — the zones most likely to act as magnets for future price movement.
Most support/resistance tools plot every swing high and low individually, which quickly clutters the chart with dozens of overlapping lines of equal visual weight. This script takes a different approach: it treats pivots as raw data points, clusters the ones sitting close together into unified zones, and weights each zone by the volume that traded at those levels. The result is a small, ranked set of levels — the ones that actually matter — instead of visual noise.
How the zones are built
The script continuously scans for pivot highs and lows using a configurable lookback window, recording the price, volume, and direction (resistance vs. support) of each one. As new pivots form, nearby pivots of the same direction are merged into a single zone using a volume-weighted average — meaning a pivot backed by high volume pulls the zone's price toward itself more strongly than a low-volume pivot would. This mimics how real liquidity accumulates: not at one exact tick, but across a cluster of prices where repeated buying or selling interest has occurred.
Each resulting zone is then scored by its total accumulated volume and normalized against the strongest zone on the chart, producing a relative strength score from 0 to 1. Only the top-ranked zones (configurable count) that clear a minimum strength threshold are kept and drawn — everything else is filtered out automatically.
What you see on the chart
Horizontal lines marking each liquidity zone, color-coded by direction (resistance zones in red, support zones in green), with line length and opacity scaling to zone strength — the strongest, most "magnetic" levels stand out visually without any manual adjustment
A star marker (⭐) highlighting zones in the top strength tier (≥75% relative strength)
A compact terminal-style panel showing current price alongside all active zones, their price levels, and a strength bar for at-a-glance comparison
Inputs
Pivot strength, lookback period, number of zones to display, zone merge tolerance (%), minimum strength filter, line width, and toggles for the panel, price labels, and star markers — all adjustable to fit different timeframes and instruments.
How to use it
Liquidity Magnet Terminal is designed as a contextual map, not a standalone signal generator. Use the ranked zones to anticipate where price is likely to react, get drawn toward, or reverse from — then combine that context with your own entry triggers, market structure analysis, and risk management. Zone strength reflects historical volume clustering; it does not predict direction or guarantee a reaction. Indicator

TDVW Momentum Levels v3TDVW Momentum Levels v2 — Volume & Trend-Confirmed Trading Zones
A precision toolkit for momentum and scalping traders that filters out noise before it reaches your chart.
📊 WHAT IT SHOWS
✅ EMA Ribbon (9/21/50/100/200) — instant trend read at a glance
✅ VWAP — the institutional benchmark line
✅ Supply & Demand Zones — confirmed, not raw pivots
✅ Volatility-Adaptive Entry, Stop, Target 1 & Target 2
✅ Clean summary table — all key levels in one glance, top-right corner
🔍 ORIGINALITY — HOW THIS DIFFERS FROM A STANDARD PIVOT/ATR SCRIPT
Most zone-detection scripts plot every raw pivot high/low, producing dozens of levels most of which are noise. This script only confirms a zone when TWO independent conditions align: (1) the pivot bar's volume exceeds its rolling average by a configurable multiplier, and (2) the zone is not counter to the current EMA trend direction (e.g. a supply zone is discarded while the market is in a confirmed uptrend). This cross-filter removes low-conviction levels that a raw pivot detector would otherwise plot.
The Entry/Stop/Target system is volatility-adaptive rather than fixed: it compares the current ATR reading against its own historical average (50-bar baseline) and scales the stop/target multipliers up or down accordingly. In a high-volatility regime, target distances automatically widen; in a quiet market, they compress. The live "Volatility×" reading in the summary table shows this factor directly.
🎯 BUILT FOR MOMENTUM & SCALPING
Designed for traders working fast-moving, low-float stocks, where fixed-percentage or fixed-ATR tools often place targets too tight (choppy markets) or too far (quiet markets) because they don't adapt to changing volatility.
⚙️ HOW TO USE
1. Add to any chart, any timeframe
2. Watch for EMA alignment (9 > 21 > 50) confirming trend direction
3. Only confirmed Supply/Demand zones (labeled "Vol+Trend Confirmed") are plotted — raw unconfirmed pivots are filtered out
4. Use the Entry/Stop/Target table for a volatility-adjusted trade plan
5. Adjust Volume Multiplier, ATR Length, and Base ATR multipliers in settings to match your risk tolerance and the instrument's typical volatility
⚠️ Educational tool only. Not financial advice. Always manage your own risk. Indicator

Indicator

Killzones EUR/GBP - Manuel De Jesus Leiva// This source code is subject to the terms of the Mozilla Public License 2.0 at mozilla.org
// © tradeforopp
//@version=6
indicator("Killzones EUR/GBP - Manuel De Jesus Leiva", "Killzones EUR/GBP - Manuel De Jesus Leiva", true, max_labels_count = 500, max_lines_count = 500, max_boxes_count = 500)
// ---------------------------------------- Constant Functions --------------------------------------------------
get_line_type(_style) =>
switch _style
"Solid" => line.style_solid
"Dotted" => line.style_dotted
"Dashed" => line.style_dashed
get_size(x) =>
switch x
"Auto" => size.auto
"Tiny" => size.tiny
"Small" => size.small
"Normal" => size.normal
"Large" => size.large
"Huge" => size.huge
get_table_pos(pos) =>
switch pos
"Bottom Center" => position.bottom_center
"Bottom Left" => position.bottom_left
"Bottom Right" => position.bottom_right
"Middle Center" => position.middle_center
"Middle Left" => position.middle_left
"Middle Right" => position.middle_right
"Top Center" => position.top_center
"Top Left" => position.top_left
"Top Right" => position.top_right
// ---------------------------------------- Constant Functions --------------------------------------------------
// ---------------------------------------- Inputs --------------------------------------------------
var g_SETTINGS = "Settings"
max_days = input.int(1000, "Session Drawing Limit", 1, tooltip = "Only this many drawings will be kept on the chart, for each selected drawing type (killzone boxes, pivot lines, open lines, etc.). Set to 200 for ~6 months of sessions.", group = g_SETTINGS)
tf_limit = input.timeframe("60", "Timeframe Limit", tooltip = "Drawings will not appear on timeframes greater than or equal to this", group = g_SETTINGS)
gmt_tz = input.string('America/New_York', "Timezone", options = , tooltip = "Note GMT is not adjusted to reflect Daylight Saving Time changes", group = g_SETTINGS)
lbl_size = get_size(input.string('Normal', "Label Size", options = , tooltip = "The size of all labels", group = g_SETTINGS))
txt_color = input.color(color.black, "Text Color", tooltip = "The color of all label and table text", group = g_SETTINGS)
use_cutoff = input.bool(false, "Drawing Cutoff Time", inline = "CO", tooltip = "When enabled, all pivots and open price lines will stop extending at this time", group = g_SETTINGS)
cutoff = input.session("1800-1801", "", inline = "CO", group = g_SETTINGS)
var tf_limit_is_equal_or_more_chart_tf = timeframe.in_seconds('') <= timeframe.in_seconds(tf_limit)
var g_KZ = "Killzones"
// General Killzone Settings
show_kz = input.bool(true, "Show Killzone Boxes", inline = "KZ", group = g_KZ)
show_kz_text = input.bool(false, "Display Text", inline = "KZ", group = g_KZ)
box_transparency = input.int(70, "Box Transparency", 0, 100, group = g_KZ)
text_transparency = input.int(50, "Text Transparency", 0, 100, group = g_KZ)
// ==================== KILLZONE 01 ====================
use_kz01 = input.bool(true, "00:00-01:00", inline = "KZ01", group = g_KZ)
kz01_txt = input.string("00-01", "", inline = "KZ01", group = g_KZ)
kz01 = input.session("0000-0100", "", inline = "KZ01", group = g_KZ)
kz01_color = input.color(color.blue, "", inline = "KZ01", group = g_KZ)
// ==================== KILLZONE 02 ====================
use_kz02 = input.bool(true, "01:00-02:00", inline = "KZ02", group = g_KZ)
kz02_txt = input.string("01-02", "", inline = "KZ02", group = g_KZ)
kz02 = input.session("0100-0200", "", inline = "KZ02", group = g_KZ)
kz02_color = input.color(color.blue, "", inline = "KZ02", group = g_KZ)
// ==================== KILLZONE 03 ====================
use_kz03 = input.bool(true, "02:00-03:00", inline = "KZ03", group = g_KZ)
kz03_txt = input.string("02-03", "", inline = "KZ03", group = g_KZ)
kz03 = input.session("0200-0300", "", inline = "KZ03", group = g_KZ)
kz03_color = input.color(color.blue, "", inline = "KZ03", group = g_KZ)
// ==================== KILLZONE 04 ====================
use_kz04 = input.bool(true, "03:00-04:00", inline = "KZ04", group = g_KZ)
kz04_txt = input.string("03-04", "", inline = "KZ04", group = g_KZ)
kz04 = input.session("0300-0400", "", inline = "KZ04", group = g_KZ)
kz04_color = input.color(color.blue, "", inline = "KZ04", group = g_KZ)
// ==================== KILLZONE 05 ====================
use_kz05 = input.bool(true, "04:00-05:00", inline = "KZ05", group = g_KZ)
kz05_txt = input.string("04-05", "", inline = "KZ05", group = g_KZ)
kz05 = input.session("0400-0500", "", inline = "KZ05", group = g_KZ)
kz05_color = input.color(color.blue, "", inline = "KZ05", group = g_KZ)
// ==================== KILLZONE 06 ====================
use_kz06 = input.bool(true, "05:00-06:00", inline = "KZ06", group = g_KZ)
kz06_txt = input.string("05-06", "", inline = "KZ06", group = g_KZ)
kz06 = input.session("0500-0600", "", inline = "KZ06", group = g_KZ)
kz06_color = input.color(color.blue, "", inline = "KZ06", group = g_KZ)
// ==================== KILLZONE 07 ====================
use_kz07 = input.bool(true, "06:00-07:00", inline = "KZ07", group = g_KZ)
kz07_txt = input.string("06-07", "", inline = "KZ07", group = g_KZ)
kz07 = input.session("0600-0700", "", inline = "KZ07", group = g_KZ)
kz07_color = input.color(color.blue, "", inline = "KZ07", group = g_KZ)
// ==================== KILLZONE 08 ====================
use_kz08 = input.bool(true, "07:00-08:00", inline = "KZ08", group = g_KZ)
kz08_txt = input.string("07-08", "", inline = "KZ08", group = g_KZ)
kz08 = input.session("0700-0800", "", inline = "KZ08", group = g_KZ)
kz08_color = input.color(color.blue, "", inline = "KZ08", group = g_KZ)
// ==================== KILLZONE 09 ====================
use_kz09 = input.bool(true, "08:00-09:00", inline = "KZ09", group = g_KZ)
kz09_txt = input.string("08-09", "", inline = "KZ09", group = g_KZ)
kz09 = input.session("0800-0900", "", inline = "KZ09", group = g_KZ)
kz09_color = input.color(color.blue, "", inline = "KZ09", group = g_KZ)
// ==================== KILLZONE 10 ====================
use_kz10 = input.bool(true, "09:00-10:00", inline = "KZ10", group = g_KZ)
kz10_txt = input.string("09-10", "", inline = "KZ10", group = g_KZ)
kz10 = input.session("0900-1000", "", inline = "KZ10", group = g_KZ)
kz10_color = input.color(color.blue, "", inline = "KZ10", group = g_KZ)
// ==================== KILLZONE 11 ====================
use_kz11 = input.bool(true, "10:00-11:00", inline = "KZ11", group = g_KZ)
kz11_txt = input.string("10-11", "", inline = "KZ11", group = g_KZ)
kz11 = input.session("1000-1100", "", inline = "KZ11", group = g_KZ)
kz11_color = input.color(color.blue, "", inline = "KZ11", group = g_KZ)
// ==================== KILLZONE 12 ====================
use_kz12 = input.bool(true, "11:00-12:00", inline = "KZ12", group = g_KZ)
kz12_txt = input.string("11-12", "", inline = "KZ12", group = g_KZ)
kz12 = input.session("1100-1200", "", inline = "KZ12", group = g_KZ)
kz12_color = input.color(color.blue, "", inline = "KZ12", group = g_KZ)
// ==================== KILLZONE 13 ====================
use_kz13 = input.bool(true, "12:00-13:00", inline = "KZ13", group = g_KZ)
kz13_txt = input.string("12-13", "", inline = "KZ13", group = g_KZ)
kz13 = input.session("1200-1300", "", inline = "KZ13", group = g_KZ)
kz13_color = input.color(color.blue, "", inline = "KZ13", group = g_KZ)
// ==================== KILLZONE 14 ====================
use_kz14 = input.bool(true, "13:00-14:00", inline = "KZ14", group = g_KZ)
kz14_txt = input.string("13-14", "", inline = "KZ14", group = g_KZ)
kz14 = input.session("1300-1400", "", inline = "KZ14", group = g_KZ)
kz14_color = input.color(color.blue, "", inline = "KZ14", group = g_KZ)
// ==================== KILLZONE 15 ====================
use_kz15 = input.bool(true, "14:00-15:00", inline = "KZ15", group = g_KZ)
kz15_txt = input.string("14-15", "", inline = "KZ15", group = g_KZ)
kz15 = input.session("1400-1500", "", inline = "KZ15", group = g_KZ)
kz15_color = input.color(color.blue, "", inline = "KZ15", group = g_KZ)
// ==================== KILLZONE 16 ====================
use_kz16 = input.bool(true, "15:00-16:00", inline = "KZ16", group = g_KZ)
kz16_txt = input.string("15-16", "", inline = "KZ16", group = g_KZ)
kz16 = input.session("1500-1600", "", inline = "KZ16", group = g_KZ)
kz16_color = input.color(color.blue, "", inline = "KZ16", group = g_KZ)
// ==================== KILLZONE 17 ====================
use_kz17 = input.bool(true, "16:00-17:00", inline = "KZ17", group = g_KZ)
kz17_txt = input.string("16-17", "", inline = "KZ17", group = g_KZ)
kz17 = input.session("1600-1700", "", inline = "KZ17", group = g_KZ)
kz17_color = input.color(color.blue, "", inline = "KZ17", group = g_KZ)
// ==================== KILLZONE 18 ====================
use_kz18 = input.bool(true, "17:00-18:00", inline = "KZ18", group = g_KZ)
kz18_txt = input.string("17-18", "", inline = "KZ18", group = g_KZ)
kz18 = input.session("1700-1800", "", inline = "KZ18", group = g_KZ)
kz18_color = input.color(color.blue, "", inline = "KZ18", group = g_KZ)
// ==================== KILLZONE 19 ====================
use_kz19 = input.bool(true, "18:00-19:00", inline = "KZ19", group = g_KZ)
kz19_txt = input.string("18-19", "", inline = "KZ19", group = g_KZ)
kz19 = input.session("1800-1900", "", inline = "KZ19", group = g_KZ)
kz19_color = input.color(color.blue, "", inline = "KZ19", group = g_KZ)
// ==================== KILLZONE 20 ====================
use_kz20 = input.bool(true, "19:00-20:00", inline = "KZ20", group = g_KZ)
kz20_txt = input.string("19-20", "", inline = "KZ20", group = g_KZ)
kz20 = input.session("1900-2000", "", inline = "KZ20", group = g_KZ)
kz20_color = input.color(color.blue, "", inline = "KZ20", group = g_KZ)
// ==================== KILLZONE 21 ====================
use_kz21 = input.bool(true, "20:00-21:00", inline = "KZ21", group = g_KZ)
kz21_txt = input.string("20-21", "", inline = "KZ21", group = g_KZ)
kz21 = input.session("2000-2100", "", inline = "KZ21", group = g_KZ)
kz21_color = input.color(color.blue, "", inline = "KZ21", group = g_KZ)
// ==================== KILLZONE 22 ====================
use_kz22 = input.bool(true, "21:00-22:00", inline = "KZ22", group = g_KZ)
kz22_txt = input.string("21-22", "", inline = "KZ22", group = g_KZ)
kz22 = input.session("2100-2200", "", inline = "KZ22", group = g_KZ)
kz22_color = input.color(color.blue, "", inline = "KZ22", group = g_KZ)
// ==================== KILLZONE 23 ====================
use_kz23 = input.bool(true, "22:00-23:00", inline = "KZ23", group = g_KZ)
kz23_txt = input.string("22-23", "", inline = "KZ23", group = g_KZ)
kz23 = input.session("2200-2300", "", inline = "KZ23", group = g_KZ)
kz23_color = input.color(color.blue, "", inline = "KZ23", group = g_KZ)
// ==================== KILLZONE 24 ====================
use_kz24 = input.bool(true, "23:00-00:00", inline = "KZ24", group = g_KZ)
kz24_txt = input.string("23-00", "", inline = "KZ24", group = g_KZ)
kz24 = input.session("2300-0000", "", inline = "KZ24", group = g_KZ)
kz24_color = input.color(color.blue, "", inline = "KZ24", group = g_KZ)
// ==================== KILLZONE 25 ====================
use_kz25 = input.bool(true, "17:00-21:00", inline = "KZ25", group = g_KZ)
kz25_txt = input.string("17-21", "", inline = "KZ25", group = g_KZ)
kz25 = input.session("1700-2100", "", inline = "KZ25", group = g_KZ)
kz25_color = input.color(color.orange, "", inline = "KZ25", group = g_KZ)
// ==================== KILLZONE 26 ====================
use_kz26 = input.bool(true, "21:00-01:00", inline = "KZ26", group = g_KZ)
kz26_txt = input.string("21-01", "", inline = "KZ26", group = g_KZ)
kz26 = input.session("2100-0100", "", inline = "KZ26", group = g_KZ)
kz26_color = input.color(color.aqua, "", inline = "KZ26", group = g_KZ)
// ==================== KILLZONE 27 ====================
use_kz27 = input.bool(true, "01:00-05:00", inline = "KZ27", group = g_KZ)
kz27_txt = input.string("01-05", "", inline = "KZ27", group = g_KZ)
kz27 = input.session("0100-0500", "", inline = "KZ27", group = g_KZ)
kz27_color = input.color(color.green, "", inline = "KZ27", group = g_KZ)
// ==================== KILLZONE 28 ====================
use_kz28 = input.bool(true, "05:00-09:00", inline = "KZ28", group = g_KZ)
kz28_txt = input.string("05-09", "", inline = "KZ28", group = g_KZ)
kz28 = input.session("0500-0900", "", inline = "KZ28", group = g_KZ)
kz28_color = input.color(color.yellow, "", inline = "KZ28", group = g_KZ)
// ==================== KILLZONE 29 ====================
use_kz29 = input.bool(true, "09:00-13:00", inline = "KZ29", group = g_KZ)
kz29_txt = input.string("09-13", "", inline = "KZ29", group = g_KZ)
kz29 = input.session("0900-1300", "", inline = "KZ29", group = g_KZ)
kz29_color = input.color(color.red, "", inline = "KZ29", group = g_KZ)
// ==================== KILLZONE 30 ====================
use_kz30 = input.bool(true, "13:00-17:00", inline = "KZ30", group = g_KZ)
kz30_txt = input.string("13-17", "", inline = "KZ30", group = g_KZ)
kz30 = input.session("1300-1700", "", inline = "KZ30", group = g_KZ)
kz30_color = input.color(color.purple, "", inline = "KZ30", group = g_KZ)
var g_LABELS = "Killzone Pivots"
show_pivots = input.bool(false, "Show Pivots", inline = "PV", group = g_LABELS)
use_alerts = input.bool(false, "Alert Broken Pivots", inline = "PV", tooltip = "The desired killzones must be enabled at the time that an alert is created, along with the show pivots option, in order for alerts to work", group = g_LABELS)
show_midpoints = input.bool(false, "Show Pivot Midpoints", inline = "mp", group = g_LABELS)
stop_midpoints = input.bool(false, "Stop Once Mitigated", inline = "mp", group = g_LABELS)
show_labels = input.bool(false, "Show Pivot Labels", inline = "LB", tooltip = "Show labels denoting each killzone's high and low. Optionally choose to show the price of each level. Right side will show labels on the right-hand side of the chart until they are reached", group = g_LABELS)
label_price = input.bool(false, "Display Price", inline = "LB", group = g_LABELS)
label_right = input.bool(false, "Right Side", inline = "LB", group = g_LABELS)
ext_pivots = input.string("Until Mitigated", "Extend Pivots...", options = , group = g_LABELS)
ext_which = input.string("All", "...From Which Sessions", options = , group = g_LABELS)
ash_str = input.string("AS.H", "Killzone 1 Labels", inline = "L_AS", group = g_LABELS)
asl_str = input.string("AS.L", "", inline = "L_AS", group = g_LABELS)
loh_str = input.string("LO.H", "Killzone 2 Labels", inline = "L_LO", group = g_LABELS)
lol_str = input.string("LO.L", "", inline = "L_LO", group = g_LABELS)
nah_str = input.string("NYAM.H", "Killzone 3 Labels", inline = "L_NA", group = g_LABELS)
nal_str = input.string("NYAM.L", "", inline = "L_NA", group = g_LABELS)
nlh_str = input.string("NYL.H", "Killzone 4 Labels", inline = "L_NL", group = g_LABELS)
nll_str = input.string("NYL.L", "", inline = "L_NL", group = g_LABELS)
nph_str = input.string("NYPM.H", "Killzone 5 Labels", inline = "L_NP", group = g_LABELS)
npl_str = input.string("NYPM.L", "", inline = "L_NP", group = g_LABELS)
kzp_style = get_line_type(input.string(defval = 'Solid', title = "Pivot Style", options = , inline = "KZP", group = g_LABELS))
kzp_width = input.int(1, "", inline = "KZP", group = g_LABELS)
kzm_style = get_line_type(input.string(defval = 'Dotted', title = "Midpoint Style", options = , inline = "KZM", group = g_LABELS))
kzm_width = input.int(1, "", inline = "KZM", group = g_LABELS)
var g_RNG = "Killzone Range"
show_range = input.bool(false, "Show Killzone Range", tooltip = "Show the most recent ranges of each selected killzone, from high to low", group = g_RNG)
show_range_avg = input.bool(false, "Show Average", tooltip = "Show the average range of each selected killzone", group = g_RNG)
range_avg = input.int(5, "Average Length", 0, tooltip = "This many previous sessions will be used to calculate the average. If there isn't enough data on the current chart, it will use as many sessions as possible", group = g_RNG)
range_pos = get_table_pos(input.string('Top Right', "Table Position", options = , group = g_RNG))
range_size = get_size(input.string('Normal', "Table Size", options = , group = g_RNG))
var g_DWM = "Day - Week - Month"
sep_unlimited = input.bool(false, "Unlimited", tooltip = "Unlimited will show as many of the selected lines as possible. Otherwise, the session drawing limit will be used", group = g_DWM)
alert_HL = input.bool(false, "Alert High/Low Break", tooltip = "Alert when any selected highs and lows are traded through. The desired timeframe's high/low option must be enabled at the time that an alert is created", group = g_DWM)
show_d_open = input.bool(false, "D Open", inline = "DO", group = g_DWM)
dhl = input.bool(false, "High/Low", inline = "DO", tooltip = "", group = g_DWM)
ds = input.bool(false, "Separators", inline = "DO", tooltip = "Mark where a new day begins", group = g_DWM)
d_color = input.color(color.blue, "", inline = "DO", group = g_DWM)
show_w_open = input.bool(false, "W Open", inline = "WO", group = g_DWM)
whl = input.bool(false, "High/Low", inline = "WO", tooltip = "", group = g_DWM)
ws = input.bool(false, "Separators", inline = "WO", tooltip = "Mark where a new week begins", group = g_DWM)
w_color = input.color(#089981, "", inline = "WO", group = g_DWM)
show_m_open = input.bool(false, "M Open", inline = "MO", group = g_DWM)
mhl = input.bool(false, "High/Low", inline = "MO", tooltip = "", group = g_DWM)
ms = input.bool(false, "Separators", inline = "MO", tooltip = "Mark where a new month begins", group = g_DWM)
m_color = input.color(color.red, "", inline = "MO", group = g_DWM)
htf_style = get_line_type(input.string(defval = 'Solid', title = "Style", options = , inline = "D0", group = g_DWM))
htf_width = input.int(1, "", inline = "D0", group = g_DWM)
dow_labels = input.bool(false, "Day of Week Labels", inline = "DOW", group = g_DWM)
dow_yloc = input.string('Bottom', "", options = , inline = "DOW", group = g_DWM)
dow_xloc = input.string('Midnight', "", options = , inline = "DOW", group = g_DWM)
dow_hide_wknd = input.bool(false, "Hide Weekend Labels", group = g_DWM)
var g_OPEN = "Opening Prices"
open_unlimited = input.bool(false, "Unlimited", tooltip = "Unlimited will show as many of the selected lines as possible. Otherwise, the session drawing limit will be used", group = g_OPEN)
use_h1 = input.bool(false, "", inline = "H1", group = g_OPEN)
h1_text = input.string("17:00 H12/H8/H6/H4", "", inline = "H1", group = g_OPEN)
h1 = input.session("1700-1701", "", inline = "H1", group = g_OPEN)
h1_color = input.color(color.black, "", inline = "H1", group = g_OPEN)
use_h2 = input.bool(false, "", inline = "H2", group = g_OPEN)
h2_text = input.string("05:00 H12/H6/H4", "", inline = "H2", group = g_OPEN)
h2 = input.session("0500-0501", "", inline = "H2", group = g_OPEN)
h2_color = input.color(color.black, "", inline = "H2", group = g_OPEN)
use_h3 = input.bool(false, "", inline = "H3", group = g_OPEN)
h3_text = input.string("01:00 H8/H4", "", inline = "H3", group = g_OPEN)
h3 = input.session("0100-0101", "", inline = "H3", group = g_OPEN)
h3_color = input.color(color.black, "", inline = "H3", group = g_OPEN)
use_h4 = input.bool(false, "", inline = "H4", group = g_OPEN)
h4_text = input.string("09:00 H8/H4", "", inline = "H4", group = g_OPEN)
h4 = input.session("0900-0901", "", inline = "H4", group = g_OPEN)
h4_color = input.color(color.black, "", inline = "H4", group = g_OPEN)
use_h5 = input.bool(false, "", inline = "H5", group = g_OPEN)
h5_text = input.string("23:00 H6", "", inline = "H5", group = g_OPEN)
h5 = input.session("2300-2301", "", inline = "H5", group = g_OPEN)
h5_color = input.color(color.black, "", inline = "H5", group = g_OPEN)
use_h6 = input.bool(false, "", inline = "H6", group = g_OPEN)
h6_text = input.string("11:00 H6", "", inline = "H6", group = g_OPEN)
h6 = input.session("1100-1101", "", inline = "H6", group = g_OPEN)
h6_color = input.color(color.black, "", inline = "H6", group = g_OPEN)
use_h7 = input.bool(false, "", inline = "H7", group = g_OPEN)
h7_text = input.string("21:00 H4", "", inline = "H7", group = g_OPEN)
h7 = input.session("2100-2101", "", inline = "H7", group = g_OPEN)
h7_color = input.color(color.black, "", inline = "H7", group = g_OPEN)
use_h8 = input.bool(false, "", inline = "H8", group = g_OPEN)
h8_text = input.string("13:00 H4", "", inline = "H8", group = g_OPEN)
h8 = input.session("1300-1301", "", inline = "H8", group = g_OPEN)
h8_color = input.color(color.black, "", inline = "H8", group = g_OPEN)
hz_style = get_line_type(input.string(defval = 'Dotted', title = "Style", options = , inline = "H0", group = g_OPEN))
hz_width = input.int(1, "", inline = "H0", group = g_OPEN)
var g_VERTICAL = "Timestamps"
v_unlimited = input.bool(false, "Unlimited", tooltip = "Unlimited will show as many of the selected lines as possible. Otherwise, the session drawing limit will be used", group = g_VERTICAL)
use_v1 = input.bool(false, "", inline = "V1", group = g_VERTICAL)
v1 = input.session("0000-0001", "", inline = "V1", group = g_VERTICAL)
v1_color = input.color(color.black, "", inline = "V1", group = g_VERTICAL)
use_v2 = input.bool(false, "", inline = "V2", group = g_VERTICAL)
v2 = input.session("0800-0801", "", inline = "V2", group = g_VERTICAL)
v2_color = input.color(color.black, "", inline = "V2", group = g_VERTICAL)
use_v3 = input.bool(false, "", inline = "V3", group = g_VERTICAL)
v3 = input.session("1000-1001", "", inline = "V3", group = g_VERTICAL)
v3_color = input.color(color.black, "", inline = "V3", group = g_VERTICAL)
use_v4 = input.bool(false, "", inline = "V4", group = g_VERTICAL)
v4 = input.session("1200-1201", "", inline = "V4", group = g_VERTICAL)
v4_color = input.color(color.black, "", inline = "V4", group = g_VERTICAL)
vl_style = get_line_type(input.string(defval = 'Dotted', title = "Style", options = , inline = "V0", group = g_VERTICAL))
vl_width = input.int(1, "", inline = "V0", group = g_VERTICAL)
// ---------------------------------------- Inputs --------------------------------------------------
// ---------------------------------------- Variables & Constants --------------------------------------------------
type kz
string _title
array _box
array _hi_line
array _md_line
array _lo_line
array _hi_label
array _lo_label
array _hi_valid
array _md_valid
array _lo_valid
array _range_store
float _range_current
type hz
array LN
array LB
array CO
type dwm_hl
array hi_line
array lo_line
array hi_label
array lo_label
bool hit_high = false
bool hit_low = false
type dwm_info
string tf
float o = na
float h = na
float l = na
float ph = na
float pl = na
type lines_helper
hz _hz
string h
string h_text
color h_color
initLines() =>
array res = array.new()
if use_h1
res.push(lines_helper.new(hz.new(array.new_line(), array.new_label(), array.new_bool()), h1, h1_text, h1_color))
if use_h2
res.push(lines_helper.new(hz.new(array.new_line(), array.new_label(), array.new_bool()), h2, h2_text, h2_color))
if use_h3
res.push(lines_helper.new(hz.new(array.new_line(), array.new_label(), array.new_bool()), h3, h3_text, h3_color))
if use_h4
res.push(lines_helper.new(hz.new(array.new_line(), array.new_label(), array.new_bool()), h4, h4_text, h4_color))
if use_h5
res.push(lines_helper.new(hz.new(array.new_line(), array.new_label(), array.new_bool()), h5, h5_text, h5_color))
if use_h6
res.push(lines_helper.new(hz.new(array.new_line(), array.new_label(), array.new_bool()), h6, h6_text, h6_color))
if use_h7
res.push(lines_helper.new(hz.new(array.new_line(), array.new_label(), array.new_bool()), h7, h7_text, h7_color))
if use_h8
res.push(lines_helper.new(hz.new(array.new_line(), array.new_label(), array.new_bool()), h8, h8_text, h8_color))
res
var array lines = initLines()
type kz_helper
kz _kz
string session
color c
string box_txt
string hi_txt
string lo_txt
initKZ() =>
array res = array.new()
if use_kz01
res.push(kz_helper.new(
kz.new(kz01_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz01, kz01_color, kz01_txt, "KZ01.H", "KZ01.L"
))
if use_kz02
res.push(kz_helper.new(
kz.new(kz02_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz02, kz02_color, kz02_txt, "KZ02.H", "KZ02.L"
))
if use_kz03
res.push(kz_helper.new(
kz.new(kz03_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz03, kz03_color, kz03_txt, "KZ03.H", "KZ03.L"
))
if use_kz04
res.push(kz_helper.new(
kz.new(kz04_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz04, kz04_color, kz04_txt, "KZ04.H", "KZ04.L"
))
if use_kz05
res.push(kz_helper.new(
kz.new(kz05_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz05, kz05_color, kz05_txt, "KZ05.H", "KZ05.L"
))
if use_kz06
res.push(kz_helper.new(
kz.new(kz06_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz06, kz06_color, kz06_txt, "KZ06.H", "KZ06.L"
))
if use_kz07
res.push(kz_helper.new(
kz.new(kz07_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz07, kz07_color, kz07_txt, "KZ07.H", "KZ07.L"
))
if use_kz08
res.push(kz_helper.new(
kz.new(kz08_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz08, kz08_color, kz08_txt, "KZ08.H", "KZ08.L"
))
if use_kz09
res.push(kz_helper.new(
kz.new(kz09_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz09, kz09_color, kz09_txt, "KZ09.H", "KZ09.L"
))
if use_kz10
res.push(kz_helper.new(
kz.new(kz10_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz10, kz10_color, kz10_txt, "KZ10.H", "KZ10.L"
))
if use_kz11
res.push(kz_helper.new(
kz.new(kz11_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz11, kz11_color, kz11_txt, "KZ11.H", "KZ11.L"
))
if use_kz12
res.push(kz_helper.new(
kz.new(kz12_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz12, kz12_color, kz12_txt, "KZ12.H", "KZ12.L"
))
if use_kz13
res.push(kz_helper.new(
kz.new(kz13_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz13, kz13_color, kz13_txt, "KZ13.H", "KZ13.L"
))
if use_kz14
res.push(kz_helper.new(
kz.new(kz14_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz14, kz14_color, kz14_txt, "KZ14.H", "KZ14.L"
))
if use_kz15
res.push(kz_helper.new(
kz.new(kz15_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz15, kz15_color, kz15_txt, "KZ15.H", "KZ15.L"
))
if use_kz16
res.push(kz_helper.new(
kz.new(kz16_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz16, kz16_color, kz16_txt, "KZ16.H", "KZ16.L"
))
if use_kz17
res.push(kz_helper.new(
kz.new(kz17_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz17, kz17_color, kz17_txt, "KZ17.H", "KZ17.L"
))
if use_kz18
res.push(kz_helper.new(
kz.new(kz18_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz18, kz18_color, kz18_txt, "KZ18.H", "KZ18.L"
))
if use_kz19
res.push(kz_helper.new(
kz.new(kz19_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz19, kz19_color, kz19_txt, "KZ19.H", "KZ19.L"
))
if use_kz20
res.push(kz_helper.new(
kz.new(kz20_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz20, kz20_color, kz20_txt, "KZ20.H", "KZ20.L"
))
if use_kz21
res.push(kz_helper.new(
kz.new(kz21_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz21, kz21_color, kz21_txt, "KZ21.H", "KZ21.L"
))
if use_kz22
res.push(kz_helper.new(
kz.new(kz22_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz22, kz22_color, kz22_txt, "KZ22.H", "KZ22.L"
))
if use_kz23
res.push(kz_helper.new(
kz.new(kz23_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz23, kz23_color, kz23_txt, "KZ23.H", "KZ23.L"
))
if use_kz24
res.push(kz_helper.new(
kz.new(kz24_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz24, kz24_color, kz24_txt, "KZ24.H", "KZ24.L"
))
if use_kz25
res.push(kz_helper.new(
kz.new(kz25_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz25, kz25_color, kz25_txt, "KZ25.H", "KZ25.L"
))
if use_kz26
res.push(kz_helper.new(
kz.new(kz26_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz26, kz26_color, kz26_txt, "KZ26.H", "KZ26.L"
))
if use_kz27
res.push(kz_helper.new(
kz.new(kz27_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz27, kz27_color, kz27_txt, "KZ27.H", "KZ27.L"
))
if use_kz28
res.push(kz_helper.new(
kz.new(kz28_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz28, kz28_color, kz28_txt, "KZ28.H", "KZ28.L"
))
if use_kz29
res.push(kz_helper.new(
kz.new(kz29_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz29, kz29_color, kz29_txt, "KZ29.H", "KZ29.L"
))
if use_kz30
res.push(kz_helper.new(
kz.new(kz30_txt, array.new_box(), array.new_line(), array.new_line(), array.new_line(), array.new_label(), array.new_label(), array.new_bool(), array.new_bool(), array.new_bool(), array.new_float()),
kz30, kz30_color, kz30_txt, "KZ30.H", "KZ30.L"
))
res
var array _kz = initKZ()
var d_hl = dwm_hl.new(array.new_line(), array.new_line(), array.new_label(), array.new_label())
var w_hl = dwm_hl.new(array.new_line(), array.new_line(), array.new_label(), array.new_label())
var m_hl = dwm_hl.new(array.new_line(), array.new_line(), array.new_label(), array.new_label())
var d_info = dwm_info.new("D")
var w_info = dwm_info.new("W")
var m_info = dwm_info.new("M")
t_co = not na(time("", cutoff, gmt_tz))
type ts_helper
string session
array lines
color c
initTS() =>
array res = array.new()
if use_v1
res.push(ts_helper.new(v1, array.new_line(), v1_color))
if use_v2
res.push(ts_helper.new(v2, array.new_line(), v2_color))
if use_v3
res.push(ts_helper.new(v3, array.new_line(), v3_color))
if use_v4
res.push(ts_helper.new(v4, array.new_line(), v4_color))
res
var array ts_data = initTS()
var d_sep_line = array.new_line()
var w_sep_line = array.new_line()
var m_sep_line = array.new_line()
var d_line = array.new_line()
var w_line = array.new_line()
var m_line = array.new_line()
var d_label = array.new_label()
var w_label = array.new_label()
var m_label = array.new_label()
var transparent = #ffffff00
var ext_current = ext_which == 'Most Recent'
var ext_past = ext_pivots == 'Past Mitigation'
update_dwm_info(dwm_info n) =>
if timeframe.change(n.tf)
n.ph := n.h
n.pl := n.l
n.o := open
n.h := high
n.l := low
else
n.h := math.max(high, n.h)
n.l := math.min(low, n.l)
if dhl or show_d_open
update_dwm_info(d_info)
if whl or show_w_open
update_dwm_info(w_info)
if mhl or show_m_open
update_dwm_info(m_info)
// ---------------------------------------- Variables & Constants --------------------------------------------------
// ---------------------------------------- Functions --------------------------------------------------
get_box_color(color c) =>
color.new(c, box_transparency)
get_text_color(color c) =>
color.new(c, text_transparency)
// ---------------------------------------- Functions --------------------------------------------------
// ---------------------------------------- Core Logic --------------------------------------------------
dwm_sep(string tf, bool use, array arr, color col) =>
if use
if timeframe.change(tf)
arr.unshift(line.new(bar_index, high * 1.0001, bar_index, low, style = htf_style, width = htf_width, extend = extend.both, color = col))
if not sep_unlimited and arr.size() > max_days
arr.pop().delete()
dwm_open(string tf, bool use, array lns, array lbls, dwm_info n, color col) =>
if use
if lns.size() > 0
lns.get(0).set_x2(time)
lbls.get(0).set_x(time)
if timeframe.change(tf)
lns.unshift(line.new(time, n.o, time, n.o, xloc = xloc.bar_time, style = htf_style, width = htf_width, color = col))
lbls.unshift(label.new(time, n.o, tf + " OPEN", xloc = xloc.bar_time, style = label.style_label_left, color = transparent, textcolor = txt_color, size = lbl_size))
if not sep_unlimited and lns.size() > max_days
lns.pop().delete()
lbls.pop().delete()
dwm_hl(string tf, bool use, dwm_hl hl, dwm_info n, color col) =>
if use
if hl.hi_line.size() > 0
hl.hi_line.get(0).set_x2(time)
hl.lo_line.get(0).set_x2(time)
hl.hi_label.get(0).set_x(time)
hl.lo_label.get(0).set_x(time)
if timeframe.change(tf)
hl.hi_line.unshift(line.new(time, n.ph, time, n.ph, xloc = xloc.bar_time, style = htf_style, width = htf_width, color = col))
hl.lo_line.unshift(line.new(time, n.pl, time, n.pl, xloc = xloc.bar_time, style = htf_style, width = htf_width, color = col))
hl.hi_label.unshift(label.new(time, n.ph, "P" + tf + "H", xloc = xloc.bar_time, style = label.style_label_left, color = transparent, textcolor = txt_color, size = lbl_size))
hl.lo_label.unshift(label.new(time, n.pl, "P" + tf + "L", xloc = xloc.bar_time, style = label.style_label_left, color = transparent, textcolor = txt_color, size = lbl_size))
hl.hit_high := false
hl.hit_low := false
if not sep_unlimited and hl.hi_line.size() > max_days
hl.hi_line.pop().delete()
hl.lo_line.pop().delete()
hl.hi_label.pop().delete()
hl.lo_label.pop().delete()
if hl.hi_line.size() > 0 and alert_HL
if not hl.hit_high and high > hl.hi_line.get(0).get_y1()
hl.hit_high := true
alert(str.format("Hit P{0}H", tf))
if not hl.hit_low and low < hl.lo_line.get(0).get_y1()
hl.hit_low := true
alert(str.format("Hit P{0}L", tf))
dwm() =>
if tf_limit_is_equal_or_more_chart_tf
// DWM - Separators
dwm_sep("D", ds, d_sep_line, d_color)
dwm_sep("W", ws, w_sep_line, w_color)
dwm_sep("M", ms, m_sep_line, m_color)
// DWM - Open Lines
dwm_open("D", show_d_open, d_line, d_label, d_info, d_color)
dwm_open("W", show_w_open, w_line, w_label, w_info, w_color)
dwm_open("M", show_m_open, m_line, m_label, m_info, m_color)
// DWM - Highs and Lows
dwm_hl("D", dhl, d_hl, d_info, d_color)
dwm_hl("W", whl, w_hl, w_info, w_color)
dwm_hl("M", mhl, m_hl, m_info, m_color)
method vline(ts_helper this) =>
bool t = not na(time("", this.session, gmt_tz))
bool t_prev = not na(time("", this.session, gmt_tz, bars_back = 1))
array arr = this.lines
color col = this.c
if t and not t_prev
arr.unshift(line.new(bar_index, high * 1.0001, bar_index, low, style = vl_style, width = vl_width, extend = extend.both, color = col))
if not v_unlimited
if arr.size() > max_days
arr.pop().delete()
vlines() =>
if tf_limit_is_equal_or_more_chart_tf
for in ts_data
vline(value)
method hz_line(lines_helper this) =>
bool t = not na(time("", this.h, gmt_tz))
bool t_prev = not na(time("", this.h, gmt_tz, bars_back = 1))
hz hz = this._hz
string txt = this.h_text
color col = this.h_color
if t and not t_prev
hz.LN.unshift(line.new(bar_index, open, bar_index, open, style = hz_style, width = hz_width, color = col))
hz.LB.unshift(label.new(bar_index, open, txt, style = label.style_label_left, color = transparent, textcolor = txt_color, size = lbl_size))
array.unshift(hz.CO, false)
if not open_unlimited and hz.LN.size() > max_days
hz.LN.pop().delete()
hz.LB.pop().delete()
hz.CO.pop()
if not t and hz.CO.size() > 0
if not hz.CO.get(0)
hz.LN.get(0).set_x2(bar_index)
hz.LB.get(0).set_x(bar_index)
if (use_cutoff ? t_co : false)
hz.CO.set(0, true)
hz_lines() =>
if tf_limit_is_equal_or_more_chart_tf
for in lines
hz_line(value)
del_kz(kz k) =>
if k._box.size() > max_days
k._box.pop().delete()
if k._hi_line.size() > max_days
k._hi_line.pop().delete()
k._lo_line.pop().delete()
k._hi_valid.pop()
k._lo_valid.pop()
if show_midpoints
k._md_line.pop().delete()
k._md_valid.pop()
if k._hi_label.size() > max_days
k._hi_label.pop().delete()
k._lo_label.pop().delete()
update_price_string(label L, float P) =>
S = L.get_text()
pre = str.substring(S, 0, str.pos(S, " "))
str.trim(pre)
L.set_text(str.format("{0} ({1})", pre, P))
adjust_in_kz(kz kz, bool t) =>
if t
kzBox0 = kz._box.get(0)
kzBox0.set_right(time)
newTop = math.max(kzBox0.get_top(), high)
kzBox0.set_top(newTop)
newBottom = math.min(kzBox0.get_bottom(), low)
kzBox0.set_bottom(newBottom)
kz._range_current := newTop - newBottom
if show_pivots and kz._hi_line.size() > 0
kzHiLine0 = kz._hi_line.get(0)
kzHiLine0.set_x2(time)
if high > kzHiLine0.get_y1()
kzHiLine0.set_xy1(time, high)
kzHiLine0.set_xy2(time, high)
kzLoLine0 = kz._lo_line.get(0)
kzLoLine0.set_x2(time)
if low < kzLoLine0.get_y1()
kzLoLine0.set_xy1(time, low)
kzLoLine0.set_xy2(time, low)
if show_midpoints
kzMidLine0 = kz._md_line.get(0)
kzMidLine0.set_x2(time)
kzMidLine0.set_xy1(time, math.avg(kzHiLine0.get_y2(), kzLoLine0.get_y2()))
kzMidLine0.set_xy2(time, math.avg(kzHiLine0.get_y2(), kzLoLine0.get_y2()))
if show_labels and kz._hi_label.size() > 0
if label_right
kz._hi_label.get(0).set_x(time)
kz._lo_label.get(0).set_x(time)
if high > kz._hi_label.get(0).get_y()
kz._hi_label.get(0).set_xy(time, high)
if label_price
update_price_string(kz._hi_label.get(0), high)
if low < kz._lo_label.get(0).get_y()
kz._lo_label.get(0).set_xy(time, low)
if label_price
update_price_string(kz._lo_label.get(0), low)
adjust_out_kz(kz kz, bool t, bool t_prev) =>
boxCount = kz._box.size()
if not t and boxCount > 0
if t_prev
array.unshift(kz._range_store, kz._range_current)
if kz._range_store.size() > range_avg
kz._range_store.pop()
if show_pivots and boxCount > 0
for i = 0 to boxCount - 1 by 1
if not ext_current or i == 0
kzHiValid = kz._hi_valid.get(i)
if ext_past or kzHiValid
kz._hi_line.get(i).set_x2(time)
if show_labels and label_right
kz._hi_label.get(i).set_x(time)
if kzHiValid and high > kz._hi_line.get(i).get_y1()
if use_alerts and i == 0
alert('Broke ' + kz._title + ' High', alert.freq_once_per_bar)
kz._hi_valid.set(i, false)
if show_labels and label_right
kz._hi_label.get(i).set_style(label.style_label_down)
else if use_cutoff ? t_co : false
kz._hi_valid.set(i, false)
kzLoValid = kz._lo_valid.get(i)
if ext_past or kzLoValid
kz._lo_line.get(i).set_x2(time)
if show_labels and label_right
kz._lo_label.get(i).set_x(time)
if kzLoValid and low < kz._lo_line.get(i).get_y1()
if use_alerts and i == 0
alert("Broke " + kz._title + " Low", alert.freq_once_per_bar)
kz._lo_valid.set(i, false)
if show_labels and label_right
kz._lo_label.get(i).set_style(label.style_label_up)
else if use_cutoff ? t_co : false
kz._lo_valid.set(i, false)
if show_midpoints and not t
if stop_midpoints ? kz._md_valid.get(i) : true
kz._md_line.get(i).set_x2(time)
if kz._md_valid.get(i) and low <= kz._md_line.get(i).get_y1() and high >= kz._md_line.get(i).get_y1()
kz._md_valid.set(i, false)
else
break
method manage_kz(kz_helper this) =>
kz kz = this._kz
c = this.c
string box_txt = this.box_txt
string hi_txt = this.hi_txt
string lo_txt = this.lo_txt
if tf_limit_is_equal_or_more_chart_tf
t = not na(time("", this.session, gmt_tz))
t_prev = not na(time("", this.session, gmt_tz, bars_back = 1))
if t and not t_prev
_c = get_box_color(c)
_t = get_text_color(c)
kz._box.unshift(box.new(time, high, time, low, xloc = xloc.bar_time, border_color = show_kz ? _c : na, bgcolor = show_kz ? _c : na, text = show_kz and show_kz_text ? box_txt : na, text_color = _t))
if show_pivots
kz._hi_line.unshift(line.new(time, high, time, high, xloc = xloc.bar_time, style = kzp_style, color = c, width = kzp_width))
kz._lo_line.unshift(line.new(time, low, time, low, xloc = xloc.bar_time, style = kzp_style, color = c, width = kzp_width))
if show_midpoints
kz._md_line.unshift(line.new(time, math.avg(high, low), time, math.avg(high, low), xloc = xloc.bar_time, style = kzm_style, color = c, width = kzm_width))
array.unshift(kz._md_valid, true)
array.unshift(kz._hi_valid, true)
array.unshift(kz._lo_valid, true)
if show_labels
_hi_txt = label_price ? str.format('{0} ({1})', hi_txt, high) : hi_txt
_lo_txt = label_price ? str.format('{0} ({1})', lo_txt, low) : lo_txt
if label_right
kz._hi_label.unshift(label.new(time, high, _hi_txt, xloc = xloc.bar_time, color = transparent, textcolor = txt_color, style = label.style_label_left, size = lbl_size))
kz._lo_label.unshift(label.new(time, low, _lo_txt, xloc = xloc.bar_time, color = transparent, textcolor = txt_color, style = label.style_label_left, size = lbl_size))
else
kz._hi_label.unshift(label.new(time, high, _hi_txt, xloc = xloc.bar_time, color = transparent, textcolor = txt_color, style = label.style_label_down, size = lbl_size))
kz._lo_label.unshift(label.new(time, low, _lo_txt, xloc = xloc.bar_time, color = transparent, textcolor = txt_color, style = label.style_label_up, size = lbl_size))
del_kz(kz)
adjust_in_kz(kz, t)
adjust_out_kz(kz, t, t_prev)
for in _kz
manage_kz(value)
dwm()
vlines()
hz_lines()
new_dow_time = dow_xloc == 'Midday' ? time - timeframe.in_seconds("D") / 2 * 1000 : time
new_day = dayofweek(new_dow_time, gmt_tz) != dayofweek(new_dow_time, gmt_tz)
var dow_top = dow_yloc == 'Top'
var saturday = "SATURDAY"
var sunday = "SUNDAY"
var monday = "MONDAY"
var tuesday = "TUESDAY"
var wednesday = "WEDNESDAY"
var thursday = "THURSDAY"
var friday = "FRIDAY"
plotchar(dow_labels and timeframe.isintraday and dayofweek(new_dow_time, gmt_tz) == 1 and new_day and not dow_hide_wknd, location = dow_top ? location.top : location.bottom, char = '', textcolor = txt_color, text = sunday)
plotchar(dow_labels and timeframe.isintraday and dayofweek(new_dow_time, gmt_tz) == 2 and new_day, location = dow_top ? location.top : location.bottom, char = '', textcolor = txt_color, text = monday)
plotchar(dow_labels and timeframe.isintraday and dayofweek(new_dow_time, gmt_tz) == 3 and new_day, location = dow_top ? location.top : location.bottom, char = '', textcolor = txt_color, text = tuesday)
plotchar(dow_labels and timeframe.isintraday and dayofweek(new_dow_time, gmt_tz) == 4 and new_day, location = dow_top ? location.top : location.bottom, char = '', textcolor = txt_color, text = wednesday)
plotchar(dow_labels and timeframe.isintraday and dayofweek(new_dow_time, gmt_tz) == 5 and new_day, location = dow_top ? location.top : location.bottom, char = '', textcolor = txt_color, text = thursday)
plotchar(dow_labels and timeframe.isintraday and dayofweek(new_dow_time, gmt_tz) == 6 and new_day, location = dow_top ? location.top : location.bottom, char = '', textcolor = txt_color, text = friday)
plotchar(dow_labels and timeframe.isintraday and dayofweek(new_dow_time, gmt_tz) == 7 and new_day and not dow_hide_wknd, location = dow_top ? location.top : location.bottom, char = '', textcolor = txt_color, text = saturday)
get_min_days_stored() =>
store = array.new_int()
for in _kz
int tmpStoreSize = value._kz._range_store.size()
if tmpStoreSize > 0
store.push(tmpStoreSize)
store.min()
method set_table(table tbl, kz kz, int row, string txt, bool t, color col) =>
table.cell(tbl, 0, row, txt, text_size = range_size, bgcolor = get_box_color(col), text_color = txt_color)
table.cell(tbl, 1, row, str.tostring(kz._range_current), text_size = range_size, bgcolor = t ? get_box_color(col) : na, text_color = txt_color)
if show_range_avg
table.cell(tbl, 2, row, str.tostring(kz._range_store.avg()), text_size = range_size, text_color = txt_color)
if show_range and barstate.islast
var tbl = table.new(range_pos, 10, 10, chart.bg_color, chart.fg_color, 2, chart.fg_color, 1)
table.cell(tbl, 0, 0, "Killzone", text_size = range_size, text_color = txt_color)
table.cell(tbl, 1, 0, "Range", text_size = range_size, text_color = txt_color)
if show_range_avg
table.cell(tbl, 2, 0, "Avg (" + str.tostring(get_min_days_stored()) + ")", text_size = range_size, text_color = txt_color)
for in _kz
set_table(tbl, value._kz, index + 1, value.box_txt, not na(time("", value.session, gmt_tz)), value.c)
// ---------------------------------------- Core Logic --------------------------------------------------
Indicator

Indicator

ATK/DEF MOON Cycle# ATK/DEF MOON Cycle
ATK/DEF MOON Cycle is a market observation framework designed to examine price behavior through a different analytical structure from conventional technical analysis.
Instead of reducing market behavior to a single trend, indicator, or directional classification, this framework observes several measuble properties of the market simuaneously, including **price position, range depth, movement velocity, volatility, activity, structural distance, price expansion and contraction, and session conditions**.
The framework uses a physics-inspired conceual vocabary to organize these observations. Terms such as **Moon Phase, Water Depth, Resonance, Rotation, Black Hole, Satellite, Velocity and Burst** are names for calculated market conditions within the indicator. They are conceptual analytical labels and do not repreent literal astromical forces, gravitional effects, or claims that physical objects control fin markets.
The objective is to provide another way of ohow market conditions develop and intect.
## 🌙 MO Moon Phase — Cyclical Price Position
The Moon Phase module divies the current price position within a confurable obsertion range into eight stages:
* 🌑 New Moon
* 🌒 Waxing Crescent
* 🌓 First Quarter
* 🌔 Waxing Gibbous
* 🌕 Full Moon
* 🌖 Waning Gibbous
* 🌗 Last Quarter
* 🌘 Waning Crescent
The calcation uses the highest and lowest prices within the selected cy length.
The current closing price is noalized between these two bdaries and expreed as a percentage
This creates a visual reprention of where price is currently posioned inside its measured range.
The eight phas theefore describe **progressive positnal changes inside the market range**, rather than reprenting an actual astrmical moon cycle.
The default observation length is 28 bars and can be adjued through the indicator settings.
## 🌊 MO Test Depth — Range Depth
Test Depth measures how deeply the current price is positioned within the observed price range.
The calcation compares the current close with the cycle high and cycle low and converts the result into a normalied percentage.
The indicator divides this position into several zones:
* 🔵 Shallows
* 🟢 Shallow Water
* 🟡 Mid Water
* 🔴 Deep Water
This proides a diffent perective from siply describg price as bullish or bearish.
The same directional movement can have very different structural meanings depeding on wther price is located near the lower portion, middle portion, or upper portion of its observed range.
Test Depth is therefore primarily a **positional measurement**.
## 🔄 MO Resonance Rotation — Movement Velocity
Resonance Rotation measures the magtude of recent pric displacement relative to ATR.
The indicator calcates price change over several bas and compares that movement with the current ATR environment.
The result is normalized into a scale and classified into:
* Lo Speed
* M Speed
* Hg Speed
This allows the framework to distinguish between relatively small price movement and movement that is large comred with the current volatity environment.
The rm “Rotation” is a coptual descrtion of changing market movement. It does not iply literal physical rotation.
## 🌀 MO Black Hole Trap — Compression and Expansion
Black Hole Trap examines the relationship between **candle range and relative volume**.
The cunt candle range is comred with the brder cycle range, while current volume is comped with its moving average.
Several conditions can therefre be observed:
* relatiely compresed price rane with reced actity
* comessed range with very low relive activity
* expaded range with eleted activity
* more orary range and activity conditions
These conditions are converted into a normaled Black Hole Score
The resulting classifications are:
* No Tra
* Weak Tra
* Mid Tr
* Strong Tr
The purpose of this module is to describe unul combitions of **range compression, range expansion and market activity**.
“Black Hole” is a conceptual name for this calculd condition. It does not reprent an acal phcal black hole, gravitanal fild, or phycal force acng on price.
## ⚡ MO Price Action Resonance — Condition Alignment
Price Action Resonance examines several market characstics together.
The calculation considers:
* current price relative to the cycle high
* current price relative to the cycle low
* price relationship with the per
* relative volume
Each condition contrutes to a combined resonance score.
The score is classified into:
* No Reonace
* Weak Resnance
* Mid Resonace
* Strong Renance
This component is desned to show when seral difrent market obseations are ocuing together.
Raer than trting one measurent as the comlete descption of market behavior, the module presves several dimions and combes them into a single descrtive state.
## ⚡ MO Smooth Velocity — Smoothed Directional Movement
Smooth Velocity measures the rate of change of an EMA-smoothed price series.
The price is first smoothed with an EMA, after which the change in the smoothed series is measured over several bars and normazed relative to the smoothed price.
The resulting state is classified as:
* 🚀 Fast Up
* ⬆️ Slow Up
* ➡️ Sideways
* ⬇️ Slow Down
* 📉 Fast Down
This provides information about both **direction and movement rate**.
The purpose is not simply to ideify whether price is above or below a moving average, but to obrve how the smoothed price itelf is changing.
## 💥 MO Price Burst — Candle Displacement and Activity
Price Burst examines the relationship between candle body movement, total candle range and relative volume.
The open-to-close movement is normaled agaist the candle's high-to-low range.
The resulting directional movement is then combined with the current volume ratio.
This produces a Burst Strength measurement that is classified into:
* 💤 No Burst
* 💥 Weak Burst
* 💥 Mid Burst
* 💥 Strong Burst
This module descibes periods where candle displacement becomes more pronnced relative to the candle's total range and surrnding activity.
It provides another way of observing changes in the intesity of price movement.
## 🌍 MO Session Disruption Radar — Session Volatility
Session Radar divides the d into three broad observation periods:
* 🌏 Asia
* 🌍 Europe
* 🌎 America
The current ATR is compared with a session-specific volatility reference.
This produces a normalized session activity value and corsponding state.
The module therefore examines whether current volatility is relatively subdd or eleted within the defied session environment.
It is designed as a **session cont measurement**, allowing volatity conditions to be observed alonside the other componts of the framework.
## 🛰️ MO Moon Satellite — Secondary Price Position
The Satellite module introdes a secondary observation range derived from the main cycle length.
The current price is measured between the sateite high and salite low and normaled
The resulting states are:
* Very Low Sateite
* Low Sateite
* Balance Sateite
* Mid Sateite
* High Sateite
This creates a second positnal layer.
The main Moon Phase describes the broer range posion, while the Satelte measument provides another view of where price is locatd inside a smller obseation range.
“Satellite” is a conceptual naming system for this secondary range relationship.
## ⛰️ MO Structure Distance — Structural Location
Structure Distance evaates the current price against an expded structural range.
The indicator idtifies the highest and lowest prices over a larger obsvation window and calates the distance from the current close to both boundies.
The resulting conditions include:
* ⛰️ Near Re
* 🏔️ Near Sort
* 📈 Near Hh
* 📉 Near Lw
* 〰️ Mid Zo
This allows the current market locaon to be descbed in relation to its brder obseed exemes.
The measurement is based on distance rather than a manally drn level.
# 📍 Swing Point Context
The indicator also uses confirmed pivot-based swing highs and swing lows.
When a swing point is confirmed, its label can disay several pieces of conte information simaneously:
* swing price
* current MO Phase
* Satellite position
* structural location
* structural distance
This connects individual swing points with the broader market state being observed by the framework.
The pivot parameters can be adjusted through the Left Bars and Right Bars settings.
# 🧭 A Different Way to Observe Market Direction
The central concept of ATK/DEF MOON Cycle is that market direction does not have to be repreted by one conveional trend calcuion.
The framework separates several different questions:
**Where is price?**
MO Moon Phase, Test Depth and Satellite Position describe price location within different observation ranges.
**How fast is price moving?**
Resonance Rotation and Smooth Velocity describe the rate of price movement.
**How large is the current movement?**
ATR, candle range and Price Burst provide volatility and displacement information.
**How active is the market?**
Relative volume contributes information about the current activity environment.
**Where is price within the broader structure?**
Structure Distance describes the relationship between current price and observed structural extremes.
**Are several conditions occurring together?**
Price Action Resonance combines multiple observations into a common descriptive score.
This separation is important because market position and market movement are not necearily the same thing.
Price can be positioned near an extreme while movement remains weak.
Price can also move rapidly while remaining inside the middle portion of a larger structure.
A compressed range can occur with low activity, while an expanded range can occur with elevated activity.
ATK/DEF MOON Cycle keeps these characteristics visible instead of forcing them into a single conventional trend definition.
# 🧠 Conceptual Architecture
The indicator uses a phycs-inspired voculary as an alrnative organizational language for market obervation.
The terology can be understood as follows:
**Moon Phase**
→ progressive position inside a measured price cycle.
**Water Depth**
→ depth of current price inside the observed range.
**Rotation**
→ normalized magnitude of recent price movement.
**Resonance**
→ simultaneous presence of several measurable market conditions.
**Black Hole**
→ unusual range and activity conditions.
**Velocity**
→ rate of change of price movement.
**Burst**
→ concentrated candle displacement combined with activity.
**Satellite**
→ position inside a secondary observation range.
**Structure Distance**
→ distance between current price and observed structural extremes.
These terms form one consistent analytical language while the underlng calculations remain based on chart data.
The indicator transrms these values into normazed measurements and desiptive states.
The percentages displayed by the indicator repsent **normazed analytical values**. They are not probality estates and should not be intereted as guateed forecasts.
# 📊 Dashboard Design
The MOON Cycle dashboard presents several indepdent obseations in one compact structure.
The dashboard includes:
* Test Depth
* Resonance Rotation
* Black Hole Trap
* Price Action Resonance
* Smooth Velocity
* Price Burst
* Session Radar
Each row reprents a different charactertic of the current market environment.
The purpose of the dashboard is to make the relationship between different market properties eaier to observe without reding the ente chart to a single numeral value.
# 🔬 Analytical Philosophy
ATK/DEF MOON Cycle is based on a simple principle:
**Observe the market from multiple dimensns instead of descring it through only one contional concept.**
Price is treated not only as a seqnce of candles, but as a changing system of:
* position
* movement
* velocity
* range
* activity
* expansion
* contraction
* structural distance
* cyclical progression
* session environment
The physics-inspired terminology provides a separate conceptual language for organizing these observations.
It is not preseed as a claim that finl markets are goverd by lital astroal or phycal mechanms.
The undeying measements remain derived from market data available on the chart.
# ⚠️ Important Information
ATK/DEF MOON Cycle is an analytical and visualization framework for stu market behavior.
The ter used by the indicator is concal. References to Moon, Satellite, Black Hole, Resonance, Rotation, Water Depth and similar terms describe calcul market conditions and are not claims about leral physical forces affting fin mars.
The indicator does not provide fin advice Its purpose is to provide an altetive framework for obsing and analyzing the changing chararistics of market da.
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