* feat: add Abandoned Baby candlestick pattern (CDLABANDONEDBABY) * feat: add Advance Block candlestick pattern (CDLADVANCEBLOCK) * feat: add Belt Hold candlestick pattern (CDLBELTHOLD) * feat: add Breakaway and Counterattack candlestick patterns (CDLBREAKAWAY, CDLCOUNTERATTACK) Breakaway is a 5-bar reversal: a trend gaps away on the second bar, drifts two more bars, then the fifth bar snaps back and closes inside the bar1/bar2 body gap (bullish +1, bearish -1). Counterattack is a 2-bar reversal where an opposite-coloured long second bar closes level with the first (the counterattack line; bullish +1, bearish -1). Also suppress libtest's spanless `large_stack_arrays` false positive in wickra-core test builds: the `#[test]` harness collects every test into a compiler-generated array of references that crosses clippy's 16 KB threshold once the suite passes ~2048 unit tests. The allow is scoped to `cfg(test)`, so library code is still linted for genuinely large stack arrays. * chore: sync indicator count to 254 --------- Co-authored-by: wickra-bot <wickra-bot@users.noreply.github.com>
251 lines
8.6 KiB
Rust
251 lines
8.6 KiB
Rust
//! Breakaway candlestick pattern.
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use crate::ohlcv::Candle;
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use crate::traits::Indicator;
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/// Breakaway — a 5-bar reversal that fades an exhausted run. A trend gaps away on
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/// the second bar, drifts two more bars in the same direction, then the fifth bar
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/// snaps the other way and closes back inside the body gap left between the first
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/// and second bars, signalling the move has broken away from the crowd and is
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/// turning.
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///
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/// ```text
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/// bullish (+1.0) — appears in a decline:
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/// bar1 black (close < open)
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/// bar2 black & its body gaps DOWN below bar1's body (bar2.open < bar1.close)
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/// bar3 extends lower (high & low below bar2)
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/// bar4 black & extends lower (high & low below bar3)
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/// bar5 green & closes inside the bar1/bar2 body gap (bar2.open < close < bar1.close)
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///
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/// bearish (−1.0) — the mirror in an advance:
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/// bar1 white (close > open)
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/// bar2 white & its body gaps UP above bar1's body (bar2.open > bar1.close)
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/// bar3 extends higher (high & low above bar2)
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/// bar4 white & extends higher (high & low above bar3)
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/// bar5 red & closes inside the bar1/bar2 body gap (bar1.close < close < bar2.open)
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/// ```
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///
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/// The middle bar (`bar3`) may be either colour — only its high/low must extend
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/// the run. Output is `+1.0` bullish, `−1.0` bearish, `0.0` otherwise. The first
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/// four bars always return `0.0` because the five-bar window is not yet filled.
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/// Pattern-shape check only — no trend filter is applied; combine with a trend
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/// indicator for actionable signals. Recognition uses TA-Lib's
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/// `CDLBREAKAWAY` body-gap and high/low ordering rules directly; it does not add
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/// TA-Lib's rolling body-length average, matching the geometric house style of
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/// the other multi-bar patterns in this family.
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///
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/// # Signed ±1 encoding
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///
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/// This detector emits the uniform candlestick sign convention shared across the
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/// pattern family — `+1.0` bullish, `−1.0` bearish, `0.0` no pattern — so it
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/// drops straight into a machine-learning feature matrix where the bullish and
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/// bearish variants occupy a single dimension.
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///
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/// # Example
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///
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/// ```
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/// use wickra_core::{Breakaway, Candle, Indicator};
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///
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/// let mut indicator = Breakaway::new();
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/// indicator.update(Candle::new(20.0, 20.2, 14.8, 15.0, 1.0, 0).unwrap());
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/// indicator.update(Candle::new(14.0, 14.1, 11.9, 12.0, 1.0, 1).unwrap());
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/// indicator.update(Candle::new(12.5, 13.0, 10.5, 11.0, 1.0, 2).unwrap());
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/// indicator.update(Candle::new(11.0, 11.5, 9.0, 9.5, 1.0, 3).unwrap());
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/// let out = indicator
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/// .update(Candle::new(9.5, 14.7, 9.4, 14.5, 1.0, 4).unwrap());
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/// assert_eq!(out, Some(1.0));
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/// ```
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#[derive(Debug, Clone, Default)]
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pub struct Breakaway {
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c1: Option<Candle>,
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c2: Option<Candle>,
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c3: Option<Candle>,
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c4: Option<Candle>,
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has_emitted: bool,
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}
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impl Breakaway {
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/// Construct a new Breakaway detector.
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pub const fn new() -> Self {
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Self {
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c1: None,
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c2: None,
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c3: None,
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c4: None,
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has_emitted: false,
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}
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}
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}
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impl Indicator for Breakaway {
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type Input = Candle;
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type Output = f64;
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fn update(&mut self, candle: Candle) -> Option<f64> {
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self.has_emitted = true;
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let bar1 = self.c1;
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let bar2 = self.c2;
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let bar3 = self.c3;
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let bar4 = self.c4;
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self.c1 = self.c2;
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self.c2 = self.c3;
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self.c3 = self.c4;
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self.c4 = Some(candle);
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let (Some(bar1), Some(bar2), Some(bar3), Some(bar4)) = (bar1, bar2, bar3, bar4) else {
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return Some(0.0);
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};
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// Bullish: a decline gaps lower, runs two more bars down, then a green
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// bar5 closes back inside the bar1/bar2 body gap.
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if bar1.close < bar1.open
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&& bar2.close < bar2.open
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&& bar2.open < bar1.close
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&& bar3.high < bar2.high
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&& bar3.low < bar2.low
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&& bar4.close < bar4.open
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&& bar4.high < bar3.high
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&& bar4.low < bar3.low
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&& candle.close > candle.open
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&& candle.close > bar2.open
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&& candle.close < bar1.close
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{
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return Some(1.0);
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}
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// Bearish: the mirror — an advance gaps higher, runs two more bars up,
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// then a red bar5 closes back inside the bar1/bar2 body gap.
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if bar1.close > bar1.open
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&& bar2.close > bar2.open
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&& bar2.open > bar1.close
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&& bar3.high > bar2.high
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&& bar3.low > bar2.low
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&& bar4.close > bar4.open
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&& bar4.high > bar3.high
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&& bar4.low > bar3.low
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&& candle.close < candle.open
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&& candle.close < bar2.open
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&& candle.close > bar1.close
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{
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return Some(-1.0);
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}
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Some(0.0)
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}
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fn reset(&mut self) {
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self.c1 = None;
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self.c2 = None;
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self.c3 = None;
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self.c4 = None;
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self.has_emitted = false;
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}
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fn warmup_period(&self) -> usize {
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5
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}
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fn is_ready(&self) -> bool {
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self.has_emitted
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}
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fn name(&self) -> &'static str {
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"Breakaway"
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use crate::traits::BatchExt;
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fn c(open: f64, high: f64, low: f64, close: f64, ts: i64) -> Candle {
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Candle::new(open, high, low, close, 1.0, ts).unwrap()
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}
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#[test]
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fn accessors_and_metadata() {
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let t = Breakaway::new();
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assert_eq!(t.name(), "Breakaway");
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assert_eq!(t.warmup_period(), 5);
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assert!(!t.is_ready());
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}
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#[test]
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fn bullish_breakaway_is_plus_one() {
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let mut t = Breakaway::new();
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assert_eq!(t.update(c(20.0, 20.2, 14.8, 15.0, 0)), Some(0.0));
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assert_eq!(t.update(c(14.0, 14.1, 11.9, 12.0, 1)), Some(0.0));
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assert_eq!(t.update(c(12.5, 13.0, 10.5, 11.0, 2)), Some(0.0));
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assert_eq!(t.update(c(11.0, 11.5, 9.0, 9.5, 3)), Some(0.0));
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assert_eq!(t.update(c(9.5, 14.7, 9.4, 14.5, 4)), Some(1.0));
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}
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#[test]
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fn bearish_breakaway_is_minus_one() {
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let mut t = Breakaway::new();
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assert_eq!(t.update(c(15.0, 20.2, 14.8, 20.0, 0)), Some(0.0));
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assert_eq!(t.update(c(21.0, 23.1, 20.9, 23.0, 1)), Some(0.0));
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assert_eq!(t.update(c(22.5, 24.5, 21.5, 24.0, 2)), Some(0.0));
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assert_eq!(t.update(c(24.0, 26.5, 23.0, 26.0, 3)), Some(0.0));
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assert_eq!(t.update(c(27.0, 27.2, 20.4, 20.5, 4)), Some(-1.0));
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}
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#[test]
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fn no_body_gap_yields_zero() {
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let mut t = Breakaway::new();
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// bar2 does not gap below bar1's body (bar2.open >= bar1.close).
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t.update(c(20.0, 20.2, 14.8, 15.0, 0));
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t.update(c(16.0, 16.1, 13.9, 14.0, 1));
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t.update(c(13.5, 14.0, 11.5, 12.0, 2));
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t.update(c(12.0, 12.5, 10.0, 10.5, 3));
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assert_eq!(t.update(c(10.5, 15.7, 10.4, 15.5, 4)), Some(0.0));
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}
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#[test]
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fn bullish_close_outside_gap_yields_zero() {
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let mut t = Breakaway::new();
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t.update(c(20.0, 20.2, 14.8, 15.0, 0));
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t.update(c(14.0, 14.1, 11.9, 12.0, 1));
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t.update(c(12.5, 13.0, 10.5, 11.0, 2));
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t.update(c(11.0, 11.5, 9.0, 9.5, 3));
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// bar5 closes at 13.0 — below bar2.open (14), so outside the body gap.
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assert_eq!(t.update(c(9.5, 13.2, 9.4, 13.0, 4)), Some(0.0));
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}
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#[test]
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fn first_four_bars_return_zero() {
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let mut t = Breakaway::new();
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assert_eq!(t.update(c(20.0, 20.2, 14.8, 15.0, 0)), Some(0.0));
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assert_eq!(t.update(c(14.0, 14.1, 11.9, 12.0, 1)), Some(0.0));
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assert_eq!(t.update(c(12.5, 13.0, 10.5, 11.0, 2)), Some(0.0));
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assert_eq!(t.update(c(11.0, 11.5, 9.0, 9.5, 3)), Some(0.0));
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}
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#[test]
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fn batch_equals_streaming() {
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let candles: Vec<Candle> = (0..40)
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.map(|i| {
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let base = 100.0 + i as f64;
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c(base, base + 2.0, base - 0.5, base + 1.5, i)
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})
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.collect();
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let mut a = Breakaway::new();
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let mut b = Breakaway::new();
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assert_eq!(
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a.batch(&candles),
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candles.iter().map(|x| b.update(*x)).collect::<Vec<_>>()
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);
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}
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#[test]
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fn reset_clears_state() {
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let mut t = Breakaway::new();
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t.update(c(20.0, 20.2, 14.8, 15.0, 0));
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t.update(c(14.0, 14.1, 11.9, 12.0, 1));
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t.update(c(12.5, 13.0, 10.5, 11.0, 2));
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t.update(c(11.0, 11.5, 9.0, 9.5, 3));
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t.update(c(9.5, 14.7, 9.4, 14.5, 4));
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assert!(t.is_ready());
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t.reset();
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assert!(!t.is_ready());
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assert_eq!(t.update(c(20.0, 20.2, 14.8, 15.0, 0)), Some(0.0));
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}
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}
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