namespace QuanTAlib; public class Qema : AbstractBase { private readonly double _k1, _k2, _k3, _k4; private readonly Ema _ema1, _ema2, _ema3, _ema4; private double _lastQema, _p_lastQema; <<<<<<< HEAD public Qema(double k1 = 0.2, double k2 = 0.2, double k3 = 0.2, double k4 = 0.2) : base() ======= public Qema(double k1 = 0.2, double k2 = 0.2, double k3 = 0.2, double k4 = 0.2) >>>>>>> dev { if (k1 <= 0 || k2 <= 0 || k3 <= 0 || k4 <= 0) { throw new ArgumentOutOfRangeException("All k values must be in the range (0, 1]."); } _k1 = k1; _k2 = k2; _k3 = k3; _k4 = k4; _ema1 = new Ema(k1); _ema2 = new Ema(k2); _ema3 = new Ema(k3); _ema4 = new Ema(k4); Name = $"QEMA ({k1:F2},{k2:F2},{k3:F2},{k4:F2})"; double smK = Math.Min(Math.Min(_k1, _k2), Math.Min(_k3, _k4)); WarmupPeriod = (int)((2 - smK) / smK); Init(); } public Qema(object source, double k1, double k2, double k3, double k4) : this(k1, k2, k3, k4) { var pubEvent = source.GetType().GetEvent("Pub"); pubEvent?.AddEventHandler(source, new ValueSignal(Sub)); } public override void Init() { base.Init(); _lastQema = 0; _p_lastQema = 0; } protected override void ManageState(bool isNew) { if (isNew) { _p_lastQema = _lastQema; _index++; } else { _lastQema = _p_lastQema; } } protected override double Calculation() { ManageState(Input.IsNew); double ema1 = _ema1.Calc(new TValue(Input.Time, Input.Value, Input.IsNew)); double ema2 = _ema2.Calc(new TValue(Input.Time, ema1, Input.IsNew)); double ema3 = _ema3.Calc(new TValue(Input.Time, ema2, Input.IsNew)); double ema4 = _ema4.Calc(new TValue(Input.Time, ema3, Input.IsNew)); _lastQema = 4 * ema1 - 6 * ema2 + 4 * ema3 - ema4; IsHot = _index >= WarmupPeriod; return _lastQema; } }