2026-02-21 20:45:38 -08:00
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using System.Buffers;
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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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/// TRAMA: Trend Regularity Adaptive Moving Average
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/// </summary>
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/// <remarks>
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/// LuxAlgo's adaptive EMA using HH/LL frequency as smoothing factor.
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/// Flat in ranging markets, responsive in trending conditions.
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///
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/// Calculation: <c>tc = SMA(HH_or_LL ? 1 : 0, N)²; TRAMA = TRAMA[1] + tc × (src - TRAMA[1])</c>.
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/// </remarks>
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/// <seealso href="Trama.md">Detailed documentation</seealso>
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/// <seealso href="trama.pine">Reference Pine Script implementation</seealso>
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[SkipLocalsInit]
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public sealed class Trama : AbstractBase
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{
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private readonly int _period;
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private readonly RingBuffer _prices;
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private readonly RingBuffer _events;
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private readonly ITValuePublisher? _source;
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private readonly TValuePublishedHandler? _pubHandler;
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private bool _isNew = true;
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private bool _disposed;
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[StructLayout(LayoutKind.Auto)]
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private record struct State(
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double PrevHighest, double PrevLowest,
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double LastTrama, double CurrentTrama,
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bool IsInitialized, int BarCount
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);
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private State _state;
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private State _p_state;
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public Trama(int period)
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{
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if (period < 1)
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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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_period = period;
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_prices = new RingBuffer(period);
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_events = new RingBuffer(period);
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Name = $"Trama({period})";
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WarmupPeriod = period;
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InitState();
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}
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public Trama(ITValuePublisher source, int period) : this(period)
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{
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_source = source;
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_pubHandler = Handle;
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source.Pub += _pubHandler;
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}
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protected override void Dispose(bool disposing)
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{
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if (!_disposed)
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{
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if (disposing && _source != null && _pubHandler != null)
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{
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_source.Pub -= _pubHandler;
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}
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_disposed = true;
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}
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base.Dispose(disposing);
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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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public bool IsNew => _isNew;
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public override bool IsHot => _state.BarCount >= _period;
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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public override TValue Update(TValue input, bool isNew = true)
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{
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_isNew = isNew;
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if (isNew)
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{
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_p_state = _state;
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_prices.Snapshot();
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_events.Snapshot();
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}
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else
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{
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_state = _p_state;
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_prices.Restore();
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_events.Restore();
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}
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2026-02-23 17:27:35 -08:00
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// Local copy for register promotion
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var s = _state;
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2026-02-21 20:45:38 -08:00
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double price = input.Value;
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if (!double.IsFinite(price))
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{
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2026-02-23 17:27:35 -08:00
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if (!s.IsInitialized)
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2026-02-21 20:45:38 -08:00
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{
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return input;
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}
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price = _prices.Newest;
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}
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2026-02-23 17:27:35 -08:00
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// Advance bar counter and capture previous-bar context
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// These steps are identical for isNew=true and isNew=false
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// because after Restore, we're at the same pre-bar state
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if (isNew) { s.BarCount++; }
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if (s.IsInitialized)
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2026-02-21 20:45:38 -08:00
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{
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2026-02-23 17:27:35 -08:00
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s.PrevHighest = _prices.Max();
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s.PrevLowest = _prices.Min();
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s.LastTrama = s.CurrentTrama;
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}
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_prices.Add(price);
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if (s.BarCount <= 1)
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{
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s.PrevHighest = price;
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s.PrevLowest = price;
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s.LastTrama = price;
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s.CurrentTrama = price;
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s.IsInitialized = true;
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_events.Add(0);
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_state = s;
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2026-02-21 20:45:38 -08:00
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Last = new TValue(input.Time, price);
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PubEvent(Last);
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return Last;
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}
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double currentHighest = _prices.Max();
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double currentLowest = _prices.Min();
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// Detect new highest-high or lowest-low
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2026-02-23 17:27:35 -08:00
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double hh = currentHighest > s.PrevHighest ? 1.0 : 0.0;
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double ll = currentLowest < s.PrevLowest ? 1.0 : 0.0;
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2026-02-21 20:45:38 -08:00
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// Binary event: did HH or LL occur?
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double evt = (hh != 0.0 || ll != 0.0) ? 1.0 : 0.0;
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2026-02-23 17:27:35 -08:00
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_events.Add(evt);
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2026-02-21 20:45:38 -08:00
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// tc = SMA(events, period)² = Average²
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double avg = _events.Average;
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double tc = avg * avg;
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// Adaptive EMA: TRAMA = prev + tc * (price - prev) = FMA(prev, 1-tc, tc*price)
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double decay = 1.0 - tc;
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2026-02-23 17:27:35 -08:00
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s.CurrentTrama = Math.FusedMultiplyAdd(s.LastTrama, decay, tc * price);
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2026-02-21 20:45:38 -08:00
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2026-02-23 17:27:35 -08:00
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_state = s;
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Last = new TValue(input.Time, s.CurrentTrama);
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2026-02-21 20:45:38 -08:00
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PubEvent(Last);
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return Last;
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}
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public override TSeries Update(TSeries 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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int len = source.Count;
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var t = new List<long>(len);
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var v = new List<double>(len);
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CollectionsMarshal.SetCount(t, len);
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CollectionsMarshal.SetCount(v, len);
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var tSpan = CollectionsMarshal.AsSpan(t);
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var vSpan = CollectionsMarshal.AsSpan(v);
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Batch(source.Values, vSpan, _period);
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source.Times.CopyTo(tSpan);
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// Replay last _period bars to restore internal state
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Reset();
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int start = 0;
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if (len > 2 * _period)
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{
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start = len - _period;
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}
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for (int i = start; i < len; i++)
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{
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Update(new TValue(source.Times[i], source.Values[i]));
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}
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return new TSeries(t, v);
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}
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public override void Prime(ReadOnlySpan<double> source, TimeSpan? step = null)
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{
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if (source.Length == 0)
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{
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return;
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}
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Reset();
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// Process all bars to build state
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for (int i = 0; i < source.Length; i++)
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{
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double price = source[i];
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if (!double.IsFinite(price) && _state.IsInitialized)
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{
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price = _prices.Newest;
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}
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_prices.Add(price);
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_state.BarCount++;
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if (_state.BarCount <= 1)
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{
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_state.PrevHighest = price;
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_state.PrevLowest = price;
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_state.LastTrama = price;
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_state.CurrentTrama = price;
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_state.IsInitialized = true;
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_events.Add(0);
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continue;
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}
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double prevHighest = _state.PrevHighest;
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double prevLowest = _state.PrevLowest;
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double currentHighest = _prices.Max();
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double currentLowest = _prices.Min();
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double hh = currentHighest > prevHighest ? 1.0 : 0.0;
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double ll = currentLowest < prevLowest ? 1.0 : 0.0;
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double evt = (hh != 0.0 || ll != 0.0) ? 1.0 : 0.0;
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_events.Add(evt);
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double avg = _events.Average;
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double tc = avg * avg;
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double decay = 1.0 - tc;
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double trama = Math.FusedMultiplyAdd(_state.LastTrama, decay, tc * price);
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_state.PrevHighest = currentHighest;
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_state.PrevLowest = currentLowest;
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_state.LastTrama = trama;
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_state.CurrentTrama = trama;
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}
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Last = new TValue(DateTime.MinValue, _state.CurrentTrama);
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_p_state = _state;
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}
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public override void Reset()
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{
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_prices.Clear();
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_events.Clear();
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InitState();
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_p_state = _state;
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Last = default;
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}
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private void InitState()
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{
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_state = new State(
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PrevHighest: double.NaN,
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PrevLowest: double.NaN,
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LastTrama: double.NaN,
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CurrentTrama: double.NaN,
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IsInitialized: false,
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BarCount: 0
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);
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}
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public static TSeries Batch(TSeries source, int period)
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{
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var trama = new Trama(period);
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return trama.Update(source);
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}
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public static void Batch(ReadOnlySpan<double> source, Span<double> output, int period)
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{
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if (period < 1)
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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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if (source.Length != output.Length)
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{
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throw new ArgumentException("Source and output must have the same length", nameof(output));
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}
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if (source.Length == 0)
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{
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return;
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}
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// Rent circular buffers from ArrayPool
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double[] pricesBuf = ArrayPool<double>.Shared.Rent(period);
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double[] eventsBuf = ArrayPool<double>.Shared.Rent(period);
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Array.Clear(pricesBuf, 0, period);
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Array.Clear(eventsBuf, 0, period);
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try
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{
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int priceHead = 0;
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int eventHead = 0;
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int priceCount = 0;
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int eventCount = 0;
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double eventSum = 0;
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double prevHighest = source[0];
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double prevLowest = source[0];
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double lastTrama = source[0];
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output[0] = source[0];
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// Seed first value into price buffer
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pricesBuf[priceHead] = source[0];
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priceHead = (priceHead + 1) % period;
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priceCount = 1;
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// First event is 0 (no previous to compare)
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eventsBuf[eventHead] = 0;
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eventHead = (eventHead + 1) % period;
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eventCount = 1;
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// eventSum stays 0
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for (int i = 1; i < source.Length; i++)
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{
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double price = source[i];
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if (!double.IsFinite(price))
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{
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price = source[i - 1]; // last valid substitution
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}
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// Add price to circular buffer
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pricesBuf[priceHead] = price;
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priceHead = (priceHead + 1) % period;
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if (priceCount < period)
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{
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priceCount++;
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}
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// Compute max/min over price buffer
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double currentHighest = double.MinValue;
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double currentLowest = double.MaxValue;
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int start = priceCount < period ? 0 : priceHead;
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for (int j = 0; j < priceCount; j++)
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{
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double val = pricesBuf[(start + j) % period];
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if (val > currentHighest)
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{
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currentHighest = val;
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}
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if (val < currentLowest)
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{
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currentLowest = val;
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}
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}
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// Detect HH/LL
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double hh = currentHighest > prevHighest ? 1.0 : 0.0;
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double ll = currentLowest < prevLowest ? 1.0 : 0.0;
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double evt = (hh != 0.0 || ll != 0.0) ? 1.0 : 0.0;
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// Add event to circular buffer, maintain running sum
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if (eventCount >= period)
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{
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int oldIdx = eventHead;
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eventSum -= eventsBuf[oldIdx];
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}
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eventsBuf[eventHead] = evt;
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eventHead = (eventHead + 1) % period;
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if (eventCount < period)
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{
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eventCount++;
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}
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eventSum += evt;
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// tc = (eventSum / eventCount)²
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double avg = eventSum / eventCount;
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double tc = avg * avg;
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// Adaptive EMA
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double decay = 1.0 - tc;
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double trama = Math.FusedMultiplyAdd(lastTrama, decay, tc * price);
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output[i] = trama;
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prevHighest = currentHighest;
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prevLowest = currentLowest;
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lastTrama = trama;
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}
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}
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finally
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{
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ArrayPool<double>.Shared.Return(pricesBuf);
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ArrayPool<double>.Shared.Return(eventsBuf);
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}
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}
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public static (TSeries Results, Trama Indicator) Calculate(TSeries source, int period)
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{
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var indicator = new Trama(period);
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TSeries results = indicator.Update(source);
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return (results, indicator);
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}
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}
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