using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
namespace QuanTAlib;
///
/// FISHER04: Ehlers Fisher Transform (2004 Cybernetic Analysis)
///
///
/// Implements the revised Fisher Transform from Ehlers' "Cybernetic Analysis
/// for Stocks and Futures" (Wiley, 2004), Chapter 1. This version uses wider
/// normalization and gentler arctanh scaling than the original 2002 TASC article:
///
/// Value1 = 0.5 × 2 × ((Price − MinL)/(MaxH − MinL) − 0.5) + 0.5 × Value1[1]
/// Fish = 0.25 × ln((1 + Value1)/(1 − Value1)) + 0.5 × Fish[1]
///
/// Key differences from Fisher (2002):
/// • Normalization coefficient: 1.0 (vs 0.66)
/// • IIR feedback on Value1: 0.5 (vs 0.67)
/// • Clamp threshold: 0.9999 (vs 0.99→0.999)
/// • Fisher multiplier: 0.25 (vs 0.5)
/// • Fisher IIR: 0.5 (same)
///
/// References:
/// John Ehlers, "Cybernetic Analysis for Stocks and Futures", Wiley, 2004
/// PineScript reference: fisher04.pine
///
[SkipLocalsInit]
public sealed class Fisher04 : AbstractBase
{
private readonly int _period;
private readonly RingBuffer _buffer;
[StructLayout(LayoutKind.Auto)]
private record struct State(
double Value,
double FisherValue,
double Signal,
double LastValid,
int Count);
private State _state;
private State _p_state;
///
/// Creates Fisher04 Transform with specified period.
///
/// Lookback period for min/max normalization (must be > 0)
public Fisher04(int period = 10)
{
if (period <= 0)
{
throw new ArgumentException("Period must be greater than 0", nameof(period));
}
_period = period;
_buffer = new RingBuffer(period);
Name = $"Fisher04({period})";
WarmupPeriod = period;
}
///
/// Creates Fisher04 Transform with specified source and period.
///
public Fisher04(ITValuePublisher source, int period = 10) : this(period)
{
source.Pub += Handle;
}
[MethodImpl(MethodImplOptions.AggressiveInlining)]
private void Handle(object? sender, in TValueEventArgs e) => Update(e.Value, e.IsNew);
///
/// True if the indicator has enough data for valid results.
///
public override bool IsHot => _buffer.IsFull;
///
/// Period of the indicator.
///
public int Period => _period;
///
/// Current Fisher Transform value.
///
public double FisherValue => _state.FisherValue;
///
/// Current Signal line value.
///
public double Signal => _state.Signal;
[MethodImpl(MethodImplOptions.AggressiveInlining)]
public override TValue Update(TValue input, bool isNew = true)
{
double value = input.Value;
// Sanitize input
if (!double.IsFinite(value))
{
value = double.IsFinite(_state.LastValid) ? _state.LastValid : 0.0;
}
else
{
_state.LastValid = value;
}
if (isNew)
{
_p_state = _state;
_buffer.Add(value);
_state.Count++;
}
else
{
_state = _p_state;
_buffer.UpdateNewest(value);
}
// Find min/max over the buffer
double highest = double.MinValue;
double lowest = double.MaxValue;
int count = _buffer.Count;
for (int i = 0; i < count; i++)
{
double v = _buffer[i];
if (v > highest)
{
highest = v;
}
if (v < lowest)
{
lowest = v;
}
}
// Ehlers 2004 normalization: Value1 = 1.0 * ((price-low)/range - 0.5) + 0.5 * Value1[1]
double range = highest - lowest;
if (range != 0.0)
{
_state.Value = (((value - lowest) / range) - 0.5)
+ (0.5 * _state.Value);
}
else
{
_state.Value = 0.0;
}
// Ehlers 2004: clamp to ±0.9999
if (_state.Value > 0.9999)
{
_state.Value = 0.9999;
}
else if (_state.Value < -0.9999)
{
_state.Value = -0.9999;
}
// Ehlers 2004: Fish = 0.25 * arctanh(Value1) + 0.5 * Fish[1]
double fisher = (0.25 * Math.Log((1.0 + _state.Value) / (1.0 - _state.Value)))
+ (0.5 * _state.FisherValue);
// Signal line: previous bar's Fisher value (Fish[1])
_state.Signal = _state.FisherValue;
_state.FisherValue = fisher;
Last = new TValue(input.Time, fisher);
PubEvent(Last, isNew);
return Last;
}
public override TSeries Update(TSeries source)
{
int len = source.Count;
var t = new List(len);
var v = new List(len);
CollectionsMarshal.SetCount(t, len);
CollectionsMarshal.SetCount(v, len);
var tSpan = CollectionsMarshal.AsSpan(t);
var vSpan = CollectionsMarshal.AsSpan(v);
Batch(source.Values, vSpan, _period);
source.Times.CopyTo(tSpan);
for (int i = 0; i < len; i++)
{
Update(new TValue(source.Times[i], source.Values[i]), isNew: true);
}
return new TSeries(t, v);
}
public override void Prime(ReadOnlySpan source, TimeSpan? step = null)
{
TimeSpan interval = step ?? TimeSpan.FromTicks(1);
DateTime baseTime = DateTime.UtcNow - (interval * (source.Length - 1));
for (int i = 0; i < source.Length; i++)
{
Update(new TValue(baseTime + (interval * i), source[i]), isNew: true);
}
}
public override void Reset()
{
_buffer.Clear();
_state = default;
_p_state = default;
Last = default;
}
///
/// Calculates Fisher04 Transform for entire series.
///
public static TSeries Batch(TSeries source, int period = 10)
{
int len = source.Count;
var t = new List(len);
var v = new List(len);
CollectionsMarshal.SetCount(t, len);
CollectionsMarshal.SetCount(v, len);
var tSpan = CollectionsMarshal.AsSpan(t);
var vSpan = CollectionsMarshal.AsSpan(v);
Batch(source.Values, vSpan, period);
source.Times.CopyTo(tSpan);
return new TSeries(t, v);
}
///
/// Batch Fisher04 Transform with O(period) streaming min/max.
///
[MethodImpl(MethodImplOptions.AggressiveInlining)]
public static void Batch(ReadOnlySpan source, Span output, int period = 10)
{
if (source.Length != output.Length)
{
throw new ArgumentException("Source and output must have the same length", nameof(output));
}
if (period <= 0)
{
throw new ArgumentException("Period must be greater than 0", nameof(period));
}
int len = source.Length;
if (len == 0)
{
return;
}
var buffer = new RingBuffer(period);
double emaValue = 0.0;
double fisherValue = 0.0;
double lastValid = 0.0;
for (int i = 0; i < len; i++)
{
double val = source[i];
if (!double.IsFinite(val))
{
val = lastValid;
}
else
{
lastValid = val;
}
buffer.Add(val);
// Find min/max
double highest = double.MinValue;
double lowest = double.MaxValue;
int count = buffer.Count;
for (int j = 0; j < count; j++)
{
double v = buffer[j];
if (v > highest)
{
highest = v;
}
if (v < lowest)
{
lowest = v;
}
}
// Ehlers 2004 normalization: 1.0 * ((val-low)/range - 0.5) + 0.5 * prev
double range = highest - lowest;
if (range != 0.0)
{
emaValue = (((val - lowest) / range) - 0.5)
+ (0.5 * emaValue);
}
else
{
emaValue = 0.0;
}
// Ehlers 2004: clamp to ±0.9999
if (emaValue > 0.9999)
{
emaValue = 0.9999;
}
else if (emaValue < -0.9999)
{
emaValue = -0.9999;
}
// Ehlers 2004: Fish = 0.25 * arctanh(Value1) + 0.5 * Fish[1]
fisherValue = (0.25 * Math.Log((1.0 + emaValue) / (1.0 - emaValue)))
+ (0.5 * fisherValue);
output[i] = fisherValue;
}
}
///
/// Creates a Fisher04 indicator, processes the source, and returns results with the indicator.
///
public static (TSeries Results, Fisher04 Indicator) Calculate(TSeries source, int period = 10)
{
var indicator = new Fisher04(period);
return (indicator.Update(source), indicator);
}
}