diff --git a/Indicators/MyIndicators/Authors/Ehlers/5_Ehlers_Hybrids/MACD_SuperSmoother_Pro.md b/Indicators/MyIndicators/Authors/Ehlers/5_Ehlers_Hybrids/MACD_SuperSmoother_Pro.md index a5f1bb9..00d7284 100644 --- a/Indicators/MyIndicators/Authors/Ehlers/5_Ehlers_Hybrids/MACD_SuperSmoother_Pro.md +++ b/Indicators/MyIndicators/Authors/Ehlers/5_Ehlers_Hybrids/MACD_SuperSmoother_Pro.md @@ -1,4 +1,4 @@ -# MACD SuperSmoother Professional +# MACD SuperSmoother Pro ## 1. Summary (Introduction) @@ -41,9 +41,13 @@ The system is built by first creating a SuperSmoother-based MACD line, then appl * **Modular and Composite Design:** The `MACD_SuperSmoother_Calculator.mqh` uses a composition-based design: it **contains two instances** of our robust, state-managed `Ehlers_Smoother_Calculator` to generate the base MACD line. -* **Flexible Signal Line Calculation:** The calculator uses a `switch` block and a reusable `CalculateMA` helper function to apply the user's chosen smoothing method for the signal line. This includes a dedicated, state-managed calculation for the `SuperSmoother` option. +* **Optimized Incremental Calculation:** + Unlike basic implementations that recalculate the entire history on every tick, this indicator employs an intelligent incremental algorithm. + * It utilizes the `prev_calculated` state to determine the exact starting point for updates. + * **Persistent State:** The internal SuperSmoother engines persist their state (`f1`, `f2`) between ticks, allowing the recursive calculation to continue seamlessly from the last known value. + * This results in **O(1) complexity** per tick, ensuring instant updates and zero lag, even on charts with extensive history. -* **Robust State Management:** All recursive calculations use persistent member variables to maintain their state between ticks, which is critical for the stability and accuracy of Ehlers' filters. +* **Flexible Signal Line Calculation:** The calculator dynamically instantiates either a third `Ehlers_Smoother_Calculator` or a `MovingAverage_Engine` for the signal line, depending on the user's choice. This ensures that the signal line calculation is also fully optimized and incremental. * **Heikin Ashi Integration:** A "Factory Method" (`CreateSmootherInstance`) is used to instantiate the correct type of smoother (`standard` or `_HA`), allowing for clean Heikin Ashi integration.