2026-01-18 19:02:03 -08:00
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using System.Runtime.CompilerServices;
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using System.Runtime.InteropServices;
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namespace QuanTAlib;
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/// <summary>
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/// ATRP: Average True Range Percent
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/// </summary>
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/// <remarks>
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/// ATR as percentage of closing price for cross-asset volatility comparison.
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/// Higher values indicate greater relative volatility; typical range 0-10%.
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///
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/// Calculation: <c>ATRP = (ATR / Close) × 100</c>.
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/// </remarks>
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/// <seealso href="Atrp.md">Detailed documentation</seealso>
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2026-01-18 19:02:03 -08:00
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[SkipLocalsInit]
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public sealed class Atrp : AbstractBase
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{
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private readonly double _alpha;
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private readonly double _decay;
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private const double ConvergenceThreshold = 1e-10;
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[StructLayout(LayoutKind.Auto)]
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private record struct State(
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double RawRma,
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double E,
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double PrevClose,
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double LastValidHigh,
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double LastValidLow,
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double LastValidClose,
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bool IsInitialized);
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private State _state;
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private State _p_state;
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/// <summary>
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/// Creates ATRP with specified period.
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/// </summary>
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/// <param name="period">Period for ATR calculation (must be > 0)</param>
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public Atrp(int period)
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{
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if (period <= 0)
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{
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throw new ArgumentException("Period must be greater than 0", nameof(period));
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}
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_alpha = 1.0 / period;
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_decay = 1.0 - _alpha;
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Name = $"Atrp({period})";
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// Warmup based on RMA convergence: ln(0.05) / ln(1 - alpha)
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WarmupPeriod = (int)Math.Ceiling(Math.Log(0.05) / Math.Log(_decay));
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_state = new State(0, 1.0, double.NaN, double.NaN, double.NaN, double.NaN, false);
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_p_state = _state;
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}
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/// <summary>
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/// Creates ATRP with specified source and period.
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/// </summary>
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/// <param name="source">Source to subscribe to</param>
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/// <param name="period">Period for ATRP calculation</param>
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public Atrp(ITValuePublisher source, int period) : this(period)
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{
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source.Pub += Handle;
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}
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/// <summary>
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/// Creates ATRP from a TBarSeries.
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/// </summary>
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/// <param name="source">Bar series source</param>
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/// <param name="period">Period for ATRP calculation</param>
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public Atrp(TBarSeries source, int period) : this(period)
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{
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var result = Update(source);
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if (result.Count > 0)
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{
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Last = result.Last;
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}
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}
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private void Handle(object? sender, in TValueEventArgs e) => Update(e.Value, e.IsNew);
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/// <summary>
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/// True if the ATRP has warmed up and is providing valid results.
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/// </summary>
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public override bool IsHot => _state.E <= 0.05;
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/// <summary>
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/// Initializes the indicator state using the provided history.
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/// Note: ATRP needs OHLCV data. This Prime method expects pre-calculated TR values.
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/// </summary>
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public override void Prime(ReadOnlySpan<double> source, TimeSpan? step = null)
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{
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for (int i = 0; i < source.Length; i++)
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{
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double tr = source[i];
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_state.RawRma = Math.FusedMultiplyAdd(_state.RawRma, _decay, _alpha * tr);
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_state.E *= _decay;
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}
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if (source.Length > 0)
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{
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double atr = _state.E > ConvergenceThreshold ? _state.RawRma / (1.0 - _state.E) : _state.RawRma;
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// Without close price, we can't calculate ATRP percentage
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Last = new TValue(DateTime.UtcNow, atr);
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}
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_p_state = _state;
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}
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/// <summary>
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/// Resets the ATRP state.
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/// </summary>
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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public override void Reset()
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{
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_state = new State(0, 1.0, double.NaN, double.NaN, double.NaN, double.NaN, false);
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_p_state = _state;
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Last = default;
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}
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/// <summary>
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/// Updates ATRP with a new bar.
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/// </summary>
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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public TValue Update(TBar input, bool isNew = true)
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{
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if (isNew)
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{
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_p_state = _state;
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}
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else
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{
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_state = _p_state;
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}
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// Get valid values with last-value substitution
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double high = input.High;
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double low = input.Low;
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double close = input.Close;
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if (double.IsFinite(high))
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{
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_state.LastValidHigh = high;
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}
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else
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{
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high = _state.LastValidHigh;
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}
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if (double.IsFinite(low))
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{
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_state.LastValidLow = low;
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}
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else
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{
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low = _state.LastValidLow;
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}
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if (double.IsFinite(close))
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{
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_state.LastValidClose = close;
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}
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else
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{
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close = _state.LastValidClose;
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}
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// Handle case where no valid values yet
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if (double.IsNaN(close))
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{
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Last = new TValue(input.Time, double.NaN);
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PubEvent(Last, isNew);
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return Last;
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}
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// Calculate True Range
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double tr;
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if (!_state.IsInitialized || double.IsNaN(_state.PrevClose))
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{
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// First bar: TR = High - Low
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tr = high - low;
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}
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else
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{
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double hl = high - low;
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double hpc = Math.Abs(high - _state.PrevClose);
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double lpc = Math.Abs(low - _state.PrevClose);
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tr = Math.Max(hl, Math.Max(hpc, lpc));
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}
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// Calculate ATR using RMA with warmup compensation
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_state.RawRma = Math.FusedMultiplyAdd(_state.RawRma, _decay, _alpha * tr);
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_state.E *= _decay;
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double atr = _state.E > ConvergenceThreshold ? _state.RawRma / (1.0 - _state.E) : _state.RawRma;
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// Calculate ATRP: (ATR / Close) * 100
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double atrp = close != 0.0 ? (atr / close) * 100.0 : double.NaN;
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// Update state
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if (isNew)
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{
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_state.PrevClose = close;
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_state.IsInitialized = true;
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}
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TValue result = new(input.Time, atrp);
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Last = result;
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PubEvent(Last, isNew);
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return result;
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}
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/// <summary>
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/// Updates ATRP with a TValue input.
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/// </summary>
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/// <exception cref="NotSupportedException">
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/// ATRP requires OHLC bar data to calculate the percentage (ATR/Close * 100).
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/// Use Update(TBar) instead.
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/// </exception>
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public override TValue Update(TValue input, bool isNew = true)
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{
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throw new NotSupportedException(
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"ATRP requires OHLC bar data to calculate the percentage (ATR/Close * 100). " +
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"Use Update(TBar) instead.");
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}
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/// <summary>
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/// Updates ATRP from a TBarSeries.
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/// </summary>
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public TSeries Update(TBarSeries source)
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{
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if (source.Count == 0)
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{
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return [];
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}
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var t = new List<long>(source.Count);
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var v = new List<double>(source.Count);
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for (int i = 0; i < source.Count; i++)
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{
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TValue result = Update(source[i], true);
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t.Add(result.Time);
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v.Add(result.Value);
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}
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return new TSeries(t, v);
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}
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/// <summary>
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/// Updates ATRP from a TSeries.
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/// </summary>
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/// <exception cref="NotSupportedException">
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/// ATRP requires OHLC bar data to calculate the percentage (ATR/Close * 100).
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/// Use Update(TBarSeries) instead.
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/// </exception>
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public override TSeries Update(TSeries source)
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{
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throw new NotSupportedException(
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"ATRP requires OHLC bar data to calculate the percentage (ATR/Close * 100). " +
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"Use Update(TBarSeries) instead.");
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}
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/// <summary>
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/// Calculates ATRP for the entire series using a new instance.
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/// </summary>
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public static TSeries Batch(TBarSeries source, int period)
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{
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var atrp = new Atrp(period);
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return atrp.Update(source);
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}
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}
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