* feat(family-09): add 7 trailing stops (HiLo, Volty, Yo-Yo, Donchian, Pct, Step, Renko)
Rounds out the Trailing Stops family from 5 to 12 indicators:
- HiLoActivator (Crabel): SMA-of-high/SMA-of-low trail with a one-bar
lag; emits the opposite-side SMA as the trailing stop.
- VoltyStop (Cynthia Kase): ATR trail anchored on the extreme close
since the trade was opened — tighter than AtrTrailingStop on
pullbacks.
- YoyoExit: long-only ATR trail with an explicit re-entry trigger at
trail + multiplier*ATR; exposes an in_trade flag.
- DonchianStop (Turtle): lowest low / highest high over the window;
multi-output {stop_long, stop_short}.
- PercentageTrailingStop: fixed-percent trail that scales across
instruments without per-asset tuning.
- StepTrailingStop: snaps to a step_size-aligned grid; mirrors
discretionary stop-by-hand workflow.
- RenkoTrailingStop: block-anchored trail; only moves on full-block
advances, ignores intra-block noise.
All seven are wired into wickra-core, the Python / Node / WASM
bindings, the indicator_update + indicator_update_candle fuzz targets,
the wickra bench harness, and the Python + Node test suites. README
counter bumps from 71 to 78; CHANGELOG entry under [Unreleased].
* fix(family-09): satisfy pedantic clippy lints
- hilo_activator: rewrite match-Some/None as if-let-else (single_match_else),
add backticks around the HiLo identifier in module/struct doc (doc_markdown).
- percentage / step / renko trailing stop tests: use f64::from(i32) instead
of `as f64` (cast_lossless).
- bench `benches()` is now >100 lines after Family 09 was wired in; allow
too_many_lines (matches the python pymodule fn).
226 lines
9.2 KiB
Rust
226 lines
9.2 KiB
Rust
#![no_main]
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//! Fuzz OHLCV-input indicator updates with arbitrary candle sequences.
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//!
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//! Every candle-input indicator must tolerate any sequence of validated OHLCV
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//! candles — extreme magnitudes, micro-spreads, zero-volume bars, abrupt
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//! reversals — without panicking. The fuzzer chunks the raw `f64` stream into
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//! `[open, high, low, close, volume]` tuples and constructs each candle via
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//! `Candle::new`; entries that fail OHLCV-invariant validation are skipped so
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//! the indicator only ever sees structurally-valid candles. Each iteration
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//! then drives that candle stream through every candle-input indicator twice
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//! (streaming `update` + batch).
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//!
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//! Audit finding R9: the previous fuzz suite had no candle-input coverage at
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//! all. This target now covers every candle-input indicator including the
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//! ones the audit named explicitly (ATR, ADX, Stochastic, PSAR) plus the
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//! complete catalogue: Keltner, Donchian, SuperTrend, Chandelier Exit, ATR
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//! Trailing Stop, Aroon, AwesomeOscillator, CCI, WilliamsR, MFI, OBV, VWAP,
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//! RollingVWAP, ADL, VPT, ChaikinMoneyFlow, ChaikinOscillator, ForceIndex,
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//! EaseOfMovement, NATR, AroonOscillator, ChandeKrollStop, Vortex, MassIndex,
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//! ChoppinessIndex, TrueRange, ChaikinVolatility, AcceleratorOscillator,
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//! BalanceOfPower, UltimateOscillator, VWMA, TypicalPrice, MedianPrice,
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//! WeightedClose.
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use libfuzzer_sys::fuzz_target;
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use wickra_core::{
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AccelerationBands, AcceleratorOscillator, AdOscillator, Adl, Adx, Adxr, Alligator,
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AnchoredVwap, Aroon, AroonOscillator, Atr, AtrBands, AtrTrailingStop, AwesomeOscillator,
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AwesomeOscillatorHistogram, BalanceOfPower, BatchExt, Candle, Cci, ChaikinMoneyFlow,
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ChaikinOscillator, ChaikinVolatility, ChandeKrollStop, ChandelierExit, ChoppinessIndex,
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DemandIndex, Donchian, DonchianStop, EaseOfMovement, Evwma, ForceIndex, FractalChaosBands,
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GarmanKlassVolatility, HiLoActivator, HurstChannel, Indicator, Inertia, Keltner, Kvo,
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MarketFacilitationIndex, MassIndex, MedianPrice, Mfi, Natr, Nvi, Obv, ParkinsonVolatility, Pgo,
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Psar, Pvi, RogersSatchellVolatility, RollingVwap, Rvi, Rwi, Smi, StarcBands, Stochastic,
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SuperTrend, TrueRange, Tsv, TtmSqueeze, TypicalPrice, UltimateOscillator, VoltyStop,
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VolumeOscillator, VolumePriceTrend, Vortex, Vwap, VwapStdDevBands, Vwma, Vzo, WaveTrend,
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WeightedClose, WilliamsR, YangZhangVolatility, YoyoExit,
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};
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/// Convert a flat `f64` stream into a `Vec<Candle>` by chunking it into
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/// `[open, high, low, close, volume]` groups. Tuples that fail OHLCV
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/// validation are dropped so the indicator under test only ever sees a
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/// structurally-valid candle stream (the *parser* is fuzz-tested elsewhere;
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/// this target focuses on indicator robustness).
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fn candles_from(data: &[f64]) -> Vec<Candle> {
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data.chunks_exact(5)
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.enumerate()
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.filter_map(|(i, ch)| {
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// A monotonic timestamp avoids surprising any indicator that might
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// care about ordering. The fuzz input drives OHLCV; time is just a
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// tie-breaker.
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Candle::new(ch[0], ch[1], ch[2], ch[3], ch[4], i as i64).ok()
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})
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.collect()
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}
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/// Streaming + batch sweep through one candle-input indicator. `#[inline(never)]`
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/// keeps each indicator on its own frame in any panic backtrace.
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#[inline(never)]
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fn drive<I, O>(make: impl Fn() -> I, candles: &[Candle])
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where
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I: Indicator<Input = Candle, Output = O> + BatchExt,
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{
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let mut streaming = make();
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for c in candles {
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let _ = streaming.update(*c);
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}
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let _ = make().batch(candles);
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}
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fuzz_target!(|data: Vec<f64>| {
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let candles = candles_from(&data);
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if candles.is_empty() {
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return;
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}
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// --- Volatility & ATR family ---
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drive(|| Atr::new(14).unwrap(), &candles);
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drive(|| Natr::new(14).unwrap(), &candles);
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drive(TrueRange::new, &candles);
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drive(|| ChaikinVolatility::new(10, 10).unwrap(), &candles);
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drive(|| ParkinsonVolatility::new(20, 252).unwrap(), &candles);
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drive(|| GarmanKlassVolatility::new(20, 252).unwrap(), &candles);
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drive(|| RogersSatchellVolatility::new(20, 252).unwrap(), &candles);
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drive(|| YangZhangVolatility::new(20, 252).unwrap(), &candles);
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// --- Bands & Channels ---
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drive(|| Keltner::new(20, 10, 2.0).unwrap(), &candles);
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drive(|| Donchian::new(20).unwrap(), &candles);
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// --- Trailing Stops ---
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drive(|| Psar::new(0.02, 0.02, 0.20).unwrap(), &candles);
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drive(|| SuperTrend::new(14, 3.0).unwrap(), &candles);
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drive(|| ChandelierExit::new(22, 3.0).unwrap(), &candles);
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drive(|| ChandeKrollStop::new(10, 1.0, 9).unwrap(), &candles);
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drive(|| AtrTrailingStop::new(14, 3.0).unwrap(), &candles);
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drive(|| HiLoActivator::new(3).unwrap(), &candles);
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drive(|| VoltyStop::new(14, 2.0).unwrap(), &candles);
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drive(|| YoyoExit::new(14, 2.0).unwrap(), &candles);
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// --- Trend & Directional ---
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drive(|| Adx::new(14).unwrap(), &candles);
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drive(|| Adxr::new(14).unwrap(), &candles);
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drive(|| Aroon::new(14).unwrap(), &candles);
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drive(|| Alligator::new(13, 8, 5).unwrap(), &candles);
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drive(|| AroonOscillator::new(14).unwrap(), &candles);
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drive(|| Vortex::new(14).unwrap(), &candles);
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drive(|| Rwi::new(14).unwrap(), &candles);
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drive(|| WaveTrend::classic().unwrap(), &candles);
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drive(|| MassIndex::new(9, 25).unwrap(), &candles);
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drive(|| ChoppinessIndex::new(14).unwrap(), &candles);
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// --- Momentum & Oscillators ---
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drive(|| Cci::new(20).unwrap(), &candles);
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drive(|| Rvi::new(10).unwrap(), &candles);
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drive(|| Inertia::new(14, 20).unwrap(), &candles);
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drive(|| Pgo::new(14).unwrap(), &candles);
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drive(|| Smi::classic(), &candles);
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drive(|| WilliamsR::new(14).unwrap(), &candles);
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drive(|| AwesomeOscillator::new(5, 34).unwrap(), &candles);
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drive(
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|| AwesomeOscillatorHistogram::new(5, 34, 5).unwrap(),
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&candles,
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);
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drive(|| AcceleratorOscillator::new(5, 34, 5).unwrap(), &candles);
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drive(|| UltimateOscillator::new(7, 14, 28).unwrap(), &candles);
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drive(BalanceOfPower::new, &candles);
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// --- Volume ---
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drive(Obv::new, &candles);
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drive(|| Mfi::new(14).unwrap(), &candles);
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drive(Vwap::new, &candles);
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drive(|| RollingVwap::new(20).unwrap(), &candles);
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drive(|| Vwma::new(20).unwrap(), &candles);
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drive(|| Evwma::new(20).unwrap(), &candles);
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drive(Adl::new, &candles);
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drive(VolumePriceTrend::new, &candles);
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drive(|| ChaikinMoneyFlow::new(20).unwrap(), &candles);
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drive(|| ChaikinOscillator::new(3, 10).unwrap(), &candles);
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drive(|| ForceIndex::new(13).unwrap(), &candles);
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drive(|| EaseOfMovement::with_divisor(14, 1e8).unwrap(), &candles);
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drive(|| Kvo::new(34, 55).unwrap(), &candles);
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drive(|| VolumeOscillator::new(14, 28).unwrap(), &candles);
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drive(Nvi::new, &candles);
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drive(Pvi::new, &candles);
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drive(AdOscillator::new, &candles);
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drive(AnchoredVwap::new, &candles);
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drive(|| DemandIndex::new(10).unwrap(), &candles);
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drive(|| Tsv::new(18).unwrap(), &candles);
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drive(|| Vzo::new(14).unwrap(), &candles);
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drive(MarketFacilitationIndex::new, &candles);
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// --- Price transformations ---
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drive(TypicalPrice::new, &candles);
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drive(MedianPrice::new, &candles);
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drive(WeightedClose::new, &candles);
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// --- Stochastic (multi-output) ---
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{
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let mut s = Stochastic::new(14, 3).unwrap();
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for c in &candles {
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let _ = s.update(*c);
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}
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let _ = Stochastic::new(14, 3).unwrap().batch(&candles);
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}
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// --- Donchian Stop (multi-output) ---
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{
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let mut s = DonchianStop::new(10).unwrap();
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for c in &candles {
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let _ = s.update(*c);
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}
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let _ = DonchianStop::new(10).unwrap().batch(&candles);
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}
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// --- Family 05: candle-input band/channel indicators (multi-output) ---
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{
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let mut ab = AccelerationBands::new(20, 0.001).unwrap();
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for c in &candles {
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let _ = ab.update(*c);
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}
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let _ = AccelerationBands::new(20, 0.001).unwrap().batch(&candles);
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}
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{
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let mut sb = StarcBands::new(6, 15, 2.0).unwrap();
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for c in &candles {
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let _ = sb.update(*c);
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}
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let _ = StarcBands::new(6, 15, 2.0).unwrap().batch(&candles);
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}
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{
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let mut atrb = AtrBands::new(14, 3.0).unwrap();
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for c in &candles {
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let _ = atrb.update(*c);
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}
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let _ = AtrBands::new(14, 3.0).unwrap().batch(&candles);
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}
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{
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let mut hc = HurstChannel::new(10, 0.5).unwrap();
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for c in &candles {
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let _ = hc.update(*c);
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}
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let _ = HurstChannel::new(10, 0.5).unwrap().batch(&candles);
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}
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{
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let mut ts = TtmSqueeze::new(20, 2.0, 1.5).unwrap();
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for c in &candles {
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let _ = ts.update(*c);
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}
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let _ = TtmSqueeze::new(20, 2.0, 1.5).unwrap().batch(&candles);
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}
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{
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let mut fc = FractalChaosBands::new(2).unwrap();
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for c in &candles {
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let _ = fc.update(*c);
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}
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let _ = FractalChaosBands::new(2).unwrap().batch(&candles);
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}
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{
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let mut vb = VwapStdDevBands::new(2.0).unwrap();
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for c in &candles {
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let _ = vb.update(*c);
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}
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let _ = VwapStdDevBands::new(2.0).unwrap().batch(&candles);
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}
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});
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