//@version=5 indicator("DrNiki's Market Nuker", shorttitle="DrNiki's Market Nuker", overlay=true) // [Input for Indicators] rsiLength = input(14, title="RSI Length") stochRsiLength = input(14, title="Stochastic RSI Length") n1 = input(10, title="WT Channel Length") n2 = input(21, title="WT Average Length") // Wavetrend Indicator Calculation ap = hlc3 esa = ta.ema(ap, n1) d = ta.ema(math.abs(ap - esa), n1) ci = (ap - esa) / (0.015 * d) tci = ta.ema(ci, n2) wt1 = tci wt2 = ta.sma(wt1, 4) // Custom implementation of On Balance Volume (OBV) var float obv = na obv := close > close[1] ? obv + volume : close < close[1] ? obv - volume : obv // Money Flow Index (MFI) mfiLength = input(7, title="MFI Length") mfiValue = ta.mfi(close, mfiLength) // RSI and Stochastic RSI Calculation rsiValue = ta.rsi(close, rsiLength) stochRsiValue = ta.stoch(rsiValue, rsiValue, rsiValue, stochRsiLength) // [Function to calculate points for a given indicator and pair] // Function to calculate points for a given indicator and pair calcPoints(currentValue, previousValue, isInverse) => value = 0 if isInverse value := currentValue < previousValue ? 1 : currentValue > previousValue ? -1 : 0 else value := currentValue > previousValue ? 1 : currentValue < previousValue ? -1 : 0 value // Calculate points for each currency pair longPoints(pair, isInverse) => rsiP = calcPoints(rsiValue, rsiValue[1], isInverse) stochRsiP = calcPoints(stochRsiValue, stochRsiValue[1], isInverse) wavetrendP = calcPoints(wt1, wt1[1], isInverse) rsiP + stochRsiP + wavetrendP shortPoints(pair, isInverse) => -longPoints(pair, isInverse) // Hardcoded pairs and their corresponding inverse flags pairs = array.new_string(5) array.set(pairs, 0, "US30") array.set(pairs, 1, "GOLD") array.set(pairs, 2, "DXY") array.set(pairs, 3, "BTCUSDT.P") array.set(pairs, 4, syminfo.tickerid) isInverse = array.new_bool(5, false) array.set(isInverse, 2, true) // Inverse for DXY // Initialize variables for storing points var float totalLongPoints = 0 var float totalShortPoints = 0 // Calculate points for each pair longPointsArray = array.new_float(5) shortPointsArray = array.new_float(5) for i = 0 to 4 pair = array.get(pairs, i) inverseFlag = array.get(isInverse, i) array.set(longPointsArray, i, longPoints(pair, inverseFlag)) array.set(shortPointsArray, i, shortPoints(pair, inverseFlag)) // Update total points for i = 0 to 4 totalLongPoints := totalLongPoints + array.get(longPointsArray, i) totalShortPoints := totalShortPoints + array.get(shortPointsArray, i) // Display the results plot(totalLongPoints, title="Total Long Points", color=color.blue) plot(totalShortPoints, title="Total Short Points", color=color.orange) // Display