pub struct HangingMan { /* private fields */ }Expand description
Hanging Man — a single-bar bearish reversal candidate.
A Hanging Man has the same geometry as a Hammer (small body near the top, long lower shadow ≥ 2× body, short upper shadow) but is read bearishly because it appears at the top of an uptrend.
body = |close − open|
upper_shadow = high − max(open, close)
lower_shadow = min(open, close) − low
hanging = lower_shadow >= 2 * body
&& upper_shadow <= body
&& body > 0Output is −1.0 when the shape matches, 0.0 otherwise. Pattern-shape
check only — no trend filter is applied; combine with a trend indicator
for actionable signals.
§Signed ±1 encoding
A Hanging Man is bearish by definition, so under the uniform candlestick
sign convention (+1.0 bullish, −1.0 bearish, 0.0 none) it emits
−1.0 when the shape matches and 0.0 otherwise — it never emits +1.0.
The same geometry read at the bottom of a downtrend is the bullish
Hammer, which carries the opposite sign.
§Example
use wickra_core::{Candle, HangingMan, Indicator};
let mut indicator = HangingMan::new();
let candle = Candle::new(10.0, 10.6, 5.0, 10.5, 1.0, 0).unwrap();
assert_eq!(indicator.update(candle), Some(-1.0));Implementations§
Source§impl HangingMan
impl HangingMan
Trait Implementations§
Source§impl Clone for HangingMan
impl Clone for HangingMan
Source§impl Debug for HangingMan
impl Debug for HangingMan
Source§impl Default for HangingMan
impl Default for HangingMan
Source§impl Indicator for HangingMan
impl Indicator for HangingMan
Source§type Input = Candle
type Input = Candle
Type of one input data point (typically
f64 for a price, or Candle / Tick).Source§fn update(&mut self, candle: Candle) -> Option<f64>
fn update(&mut self, candle: Candle) -> Option<f64>
Feed one new data point into the indicator and return the freshly
computed output, or
None if there is no value for this input. Read moreSource§fn reset(&mut self)
fn reset(&mut self)
Reset all internal state, leaving the indicator equivalent to a freshly
constructed instance with the same parameters.
Source§fn warmup_period(&self) -> usize
fn warmup_period(&self) -> usize
Number of inputs required before the first non-
None output can be produced.Source§fn is_ready(&self) -> bool
fn is_ready(&self) -> bool
Whether the indicator has emitted at least one value since the last reset.
Source§fn name(&self) -> &'static str
fn name(&self) -> &'static str
Stable, human-readable indicator name. Used by chaining and diagnostics.
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])
Opt-in fast batch: like
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 HangingMan
impl RefUnwindSafe for HangingMan
impl Send for HangingMan
impl Sync for HangingMan
impl Unpin for HangingMan
impl UnsafeUnpin for HangingMan
impl UnwindSafe for HangingMan
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>>
Run the indicator over a slice of inputs in order, returning one output (or
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
Mutably borrows from an owned value. Read more
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> ⓘ
Converts
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> ⓘ
Converts
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