pub struct RisingThreeMethods { /* private fields */ }Expand description
Rising Three Methods — a 5-bar bullish continuation. A long white candle is
followed by three small black bars that drift back but stay inside its range
(a brief rest), then a second long white candle opens above the last rest
bar’s close and closes above the first, resuming the advance (Nison; TA-Lib
CDLRISEFALL3METHODS).
long body = |close − open| >= 0.5 * (high − low)
small body = |close − open| <= 0.5 * body1
bar1 white & long
bar2, bar3, bar4 small black bodies, each overlapping bar1's high/low range
(min(open, close) < high1 and max(open, close) > low1),
with falling closes (close3 < close2, close4 < close3)
bar5 white & long, opening above bar4's close (open5 > close4)
and closing above bar1's close (close5 > close1)Output is +1.0 when the pattern completes and 0.0 otherwise. Rising Three
Methods is a single-direction (bullish-only) continuation, so it never emits
−1.0. The first four bars always return 0.0 because the five-bar window is
not yet filled. Body thresholds follow the geometric house style rather than
TA-Lib’s rolling averages. Pattern-shape check only — no trend filter is
applied; combine with a trend indicator for actionable signals.
§Signed ±1 encoding
This detector emits the uniform candlestick sign convention shared across the
pattern family — +1.0 bullish, 0.0 no pattern — so it drops straight into
a machine-learning feature matrix as a single dimension.
§Example
use wickra_core::{Candle, Indicator, RisingThreeMethods};
let mut indicator = RisingThreeMethods::new();
indicator.update(Candle::new(10.0, 15.1, 9.9, 15.0, 1.0, 0).unwrap());
indicator.update(Candle::new(14.0, 14.1, 12.9, 13.0, 1.0, 1).unwrap());
indicator.update(Candle::new(13.5, 13.6, 12.4, 12.5, 1.0, 2).unwrap());
indicator.update(Candle::new(13.0, 13.1, 11.9, 12.0, 1.0, 3).unwrap());
let out = indicator
.update(Candle::new(12.5, 16.1, 12.4, 16.0, 1.0, 4).unwrap());
assert_eq!(out, Some(1.0));Implementations§
Trait Implementations§
Source§impl Clone for RisingThreeMethods
impl Clone for RisingThreeMethods
Source§impl Debug for RisingThreeMethods
impl Debug for RisingThreeMethods
Source§impl Default for RisingThreeMethods
impl Default for RisingThreeMethods
Source§impl Indicator for RisingThreeMethods
impl Indicator for RisingThreeMethods
Source§type Input = Candle
type Input = Candle
f64 for a price, or Candle / Tick).Source§fn update(&mut self, candle: Candle) -> Option<f64>
fn update(&mut self, candle: Candle) -> Option<f64>
None if there is no value for this input. Read moreSource§fn reset(&mut self)
fn reset(&mut self)
Source§fn warmup_period(&self) -> usize
fn warmup_period(&self) -> usize
None output can be produced.Source§fn is_ready(&self) -> bool
fn is_ready(&self) -> bool
Source§fn name(&self) -> &'static str
fn name(&self) -> &'static str
Source§fn batch_nan_into(&mut self, inputs: &[Self::Input], out: &mut [f64])
fn batch_nan_into(&mut self, inputs: &[Self::Input], out: &mut [f64])
Source§fn batch_fast_into(&mut self, inputs: &[Self::Input], out: &mut [f64])
fn batch_fast_into(&mut self, inputs: &[Self::Input], out: &mut [f64])
batch_nan_into, but
an indicator with a vectorised kernel may reassociate its arithmetic to
run it in SIMD lanes. Each value then agrees with the exact batch to within
the tolerance the indicator documents (a few units in the last place), not
bit for bit; warmup positions, NaN placement and the output length are
identical. The kernels are deterministic: the same input produces the same
bits on every platform, with or without SIMD hardware. Read moreAuto Trait Implementations§
impl Freeze for RisingThreeMethods
impl RefUnwindSafe for RisingThreeMethods
impl Send for RisingThreeMethods
impl Sync for RisingThreeMethods
impl Unpin for RisingThreeMethods
impl UnsafeUnpin for RisingThreeMethods
impl UnwindSafe for RisingThreeMethods
Blanket Implementations§
Source§impl<T> BatchExt for Twhere
T: Indicator,
impl<T> BatchExt for Twhere
T: Indicator,
Source§fn batch(&mut self, inputs: &[Self::Input]) -> Vec<Option<Self::Output>>
fn batch(&mut self, inputs: &[Self::Input]) -> Vec<Option<Self::Output>>
None during warmup) per input.Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§impl<T> IntoEither for T
impl<T> IntoEither for T
Source§fn into_either(self, into_left: bool) -> Either<Self, Self> ⓘ
fn into_either(self, into_left: bool) -> Either<Self, Self> ⓘ
self into a Left variant of Either<Self, Self>
if into_left is true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§fn into_either_with<F>(self, into_left: F) -> Either<Self, Self> ⓘ
fn into_either_with<F>(self, into_left: F) -> Either<Self, Self> ⓘ
self into a Left variant of Either<Self, Self>
if into_left(&self) returns true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read more