use crate::error::FinError;
use crate::signals::{BarInput, Signal, SignalValue};
use rust_decimal::Decimal;
use std::collections::VecDeque;
pub struct Vhf {
name: String,
period: usize,
closes: VecDeque<Decimal>,
}
impl Vhf {
pub fn new(name: impl Into<String>, period: usize) -> Result<Self, FinError> {
if period == 0 { return Err(FinError::InvalidPeriod(period)); }
Ok(Self {
name: name.into(),
period,
closes: VecDeque::with_capacity(period + 1),
})
}
}
impl Signal for Vhf {
fn name(&self) -> &str { &self.name }
fn update(&mut self, bar: &BarInput) -> Result<SignalValue, FinError> {
self.closes.push_back(bar.close);
if self.closes.len() > self.period + 1 {
self.closes.pop_front();
}
if self.closes.len() < self.period + 1 {
return Ok(SignalValue::Unavailable);
}
let mut path = Decimal::ZERO;
let closes_vec: Vec<Decimal> = self.closes.iter().copied().collect();
for w in closes_vec.windows(2) {
path += (w[1] - w[0]).abs();
}
if path.is_zero() {
return Ok(SignalValue::Scalar(Decimal::ZERO));
}
let hi = closes_vec.iter().copied().fold(Decimal::MIN, Decimal::max);
let lo = closes_vec.iter().copied().fold(Decimal::MAX, Decimal::min);
Ok(SignalValue::Scalar((hi - lo) / path))
}
fn is_ready(&self) -> bool { self.closes.len() >= self.period + 1 }
fn period(&self) -> usize { self.period }
fn reset(&mut self) { self.closes.clear(); }
}
#[cfg(test)]
mod tests {
use super::*;
use crate::ohlcv::OhlcvBar;
use crate::signals::Signal;
use crate::types::{NanoTimestamp, Price, Quantity, Symbol};
use rust_decimal_macros::dec;
fn bar(c: &str) -> OhlcvBar {
let p = Price::new(c.parse().unwrap()).unwrap();
OhlcvBar {
symbol: Symbol::new("X").unwrap(),
open: p, high: p, low: p, close: p,
volume: Quantity::zero(),
ts_open: NanoTimestamp::new(0),
ts_close: NanoTimestamp::new(1),
tick_count: 1,
}
}
#[test]
fn test_vhf_invalid_period() { assert!(Vhf::new("v", 0).is_err()); }
#[test]
fn test_vhf_unavailable_before_period() {
let mut v = Vhf::new("v", 3).unwrap();
for _ in 0..3 {
assert_eq!(v.update_bar(&bar("100")).unwrap(), SignalValue::Unavailable);
}
}
#[test]
fn test_vhf_trending_high() {
let mut v = Vhf::new("v", 4).unwrap();
for i in 0..5 {
let p = format!("{}", 100 + i * 10);
v.update_bar(&bar(&p)).unwrap();
}
match v.update_bar(&bar("150")).unwrap() {
SignalValue::Scalar(val) => assert!(val > dec!(0.5), "trending VHF should be high: {val}"),
_ => panic!("expected scalar"),
}
}
#[test]
fn test_vhf_flat_is_zero() {
let mut v = Vhf::new("v", 3).unwrap();
for _ in 0..4 { v.update_bar(&bar("100")).unwrap(); }
assert_eq!(v.update_bar(&bar("100")).unwrap(), SignalValue::Scalar(Decimal::ZERO));
}
#[test]
fn test_vhf_reset() {
let mut v = Vhf::new("v", 3).unwrap();
for i in 0..4 { let p = format!("{}", 100+i); v.update_bar(&bar(&p)).unwrap(); }
assert!(v.is_ready());
v.reset();
assert!(!v.is_ready());
}
}