Files
QuanTAlib/lib/channels/mmchannel/Mmchannel.cs
T
2026-02-10 21:33:16 -08:00

295 lines
8.5 KiB
C#

using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
namespace QuanTAlib;
/// <summary>
/// MMCHANNEL: Min-Max Channel
/// Upper = rolling highest high; Lower = rolling lowest low.
/// Streaming path uses monotonic deques for O(1) amortized updates; corrections (isNew=false)
/// rebuild deques without allocations.
/// </summary>
[SkipLocalsInit]
public sealed class Mmchannel : ITValuePublisher
{
private readonly int _period;
private readonly double[] _hBuf;
private readonly double[] _lBuf;
private readonly MonotonicDeque _maxDeque;
private readonly MonotonicDeque _minDeque;
// Rolling counters
private int _count;
private long _index;
[StructLayout(LayoutKind.Auto)]
private record struct State(double LastValidHigh, double LastValidLow);
private State _state;
private State _p_state;
private readonly TBarPublishedHandler _barHandler;
public string Name { get; }
public int WarmupPeriod { get; }
public TValue Last { get; private set; }
public TValue Upper { get; private set; }
public TValue Lower { get; private set; }
public bool IsHot => _count >= _period;
public event TValuePublishedHandler? Pub;
public Mmchannel(int period)
{
if (period <= 0)
{
throw new ArgumentException("Period must be greater than 0", nameof(period));
}
_period = period;
_hBuf = new double[_period];
_lBuf = new double[_period];
_maxDeque = new MonotonicDeque(_period);
_minDeque = new MonotonicDeque(_period);
_count = 0;
_index = -1;
_state = new State(double.NaN, double.NaN);
_p_state = _state;
Name = $"Mmchannel({period})";
WarmupPeriod = period;
_barHandler = HandleBar;
}
public Mmchannel(TBarSeries source, int period) : this(period)
{
Prime(source);
source.Pub += _barHandler;
}
private void HandleBar(object? sender, in TBarEventArgs e) => Update(e.Value, e.IsNew);
[MethodImpl(MethodImplOptions.AggressiveInlining)]
private void PubEvent(TValue value, bool isNew = true) => Pub?.Invoke(this, new TValueEventArgs { Value = value, IsNew = isNew });
[MethodImpl(MethodImplOptions.AggressiveInlining)]
private (double high, double low) GetValid(double high, double low)
{
if (double.IsFinite(high))
{
_state = _state with { LastValidHigh = high };
}
else
{
high = _state.LastValidHigh;
}
if (double.IsFinite(low))
{
_state = _state with { LastValidLow = low };
}
else
{
low = _state.LastValidLow;
}
return (high, low);
}
[MethodImpl(MethodImplOptions.AggressiveInlining)]
public TValue Update(TBar input, bool isNew = true)
{
if (isNew)
{
_p_state = _state;
_index++;
if (_count < _period)
{
_count++;
}
}
else
{
_state = _p_state;
}
// Defensive guard: ensure non-negative buffer index even if _index is -1 (shouldn't happen but safeguard)
int bufIdx = _index < 0 ? 0 : (int)(_index % _period);
var (high, low) = GetValid(input.High, input.Low);
// If still no valid data, return NaN placeholders
if (double.IsNaN(high) || double.IsNaN(low))
{
Last = new TValue(input.Time, double.NaN);
Upper = new TValue(input.Time, double.NaN);
Lower = new TValue(input.Time, double.NaN);
PubEvent(Last, isNew);
return Last;
}
_hBuf[bufIdx] = high;
_lBuf[bufIdx] = low;
if (isNew)
{
_maxDeque.PushMax(_index, high, _hBuf);
_minDeque.PushMin(_index, low, _lBuf);
}
else
{
// Correcting current bar: rebuild deques to maintain consistency
_maxDeque.RebuildMax(_hBuf, _index, _count);
_minDeque.RebuildMin(_lBuf, _index, _count);
}
double top = _maxDeque.GetExtremum(_hBuf);
double bot = _minDeque.GetExtremum(_lBuf);
// Last returns Upper by default for single-value compatibility
Last = new TValue(input.Time, top);
Upper = new TValue(input.Time, top);
Lower = new TValue(input.Time, bot);
PubEvent(Last, isNew);
return Last;
}
public (TSeries Upper, TSeries Lower) Update(TBarSeries source)
{
if (source.Count == 0)
{
return (new TSeries([], []), new TSeries([], []));
}
int len = source.Count;
var tUpper = new List<long>(len);
var vUpper = new List<double>(len);
var tLower = new List<long>(len);
var vLower = new List<double>(len);
CollectionsMarshal.SetCount(tUpper, len);
CollectionsMarshal.SetCount(vUpper, len);
CollectionsMarshal.SetCount(tLower, len);
CollectionsMarshal.SetCount(vLower, len);
var tSpan = CollectionsMarshal.AsSpan(tUpper);
var vUpperSpan = CollectionsMarshal.AsSpan(vUpper);
var vLowerSpan = CollectionsMarshal.AsSpan(vLower);
Batch(source.HighValues, source.LowValues, vUpperSpan, vLowerSpan, _period);
source.Times.CopyTo(tSpan);
tSpan.CopyTo(CollectionsMarshal.AsSpan(tLower));
// Prime internal state for continued streaming
Prime(source);
var lastTime = new DateTime(source.Times[^1], DateTimeKind.Utc);
Last = new TValue(lastTime, vUpperSpan[^1]);
Upper = new TValue(lastTime, vUpperSpan[^1]);
Lower = new TValue(lastTime, vLowerSpan[^1]);
return (new TSeries(tUpper, vUpper), new TSeries(tLower, vLower));
}
public void Prime(TBarSeries source)
{
Reset();
if (source.Count == 0)
{
return;
}
for (int i = 0; i < source.Count; i++)
{
Update(source[i], isNew: true);
}
}
public void Reset()
{
Array.Clear(_hBuf);
Array.Clear(_lBuf);
_maxDeque.Reset();
_minDeque.Reset();
_count = 0;
_index = -1;
_state = new State(double.NaN, double.NaN);
_p_state = _state;
Last = default;
Upper = default;
Lower = default;
}
/// <summary>
/// Batch calculation using spans (zero allocation).
/// </summary>
public static void Batch(
ReadOnlySpan<double> high,
ReadOnlySpan<double> low,
Span<double> upper,
Span<double> lower,
int period)
{
if (period <= 0)
{
throw new ArgumentException("Period must be greater than 0", nameof(period));
}
if (high.Length != low.Length)
{
throw new ArgumentException("High and Low spans must have the same length", nameof(high));
}
if (upper.Length < high.Length || lower.Length < high.Length)
{
throw new ArgumentException("Output spans must be at least as long as inputs", nameof(upper));
}
int len = high.Length;
if (len == 0)
{
return;
}
Highest.Batch(high, upper, period);
Lowest.Batch(low, lower, period);
}
public static (TSeries Upper, TSeries Lower) Batch(TBarSeries source, int period)
{
if (source == null || source.Count == 0)
{
return (new TSeries([], []), new TSeries([], []));
}
int len = source.Count;
var tUpper = new List<long>(len);
var vUpper = new List<double>(len);
var tLower = new List<long>(len);
var vLower = new List<double>(len);
CollectionsMarshal.SetCount(tUpper, len);
CollectionsMarshal.SetCount(vUpper, len);
CollectionsMarshal.SetCount(tLower, len);
CollectionsMarshal.SetCount(vLower, len);
Batch(source.HighValues, source.LowValues,
CollectionsMarshal.AsSpan(vUpper),
CollectionsMarshal.AsSpan(vLower),
period);
source.Times.CopyTo(CollectionsMarshal.AsSpan(tUpper));
CollectionsMarshal.AsSpan(tUpper).CopyTo(CollectionsMarshal.AsSpan(tLower));
return (new TSeries(tUpper, vUpper), new TSeries(tLower, vLower));
}
public static ((TSeries Upper, TSeries Lower) Results, Mmchannel Indicator) Calculate(TBarSeries source, int period)
{
var indicator = new Mmchannel(source, period);
var results = indicator.Update(source);
return (results, indicator);
}
}