use crate::error::FinError;
use crate::signals::{BarInput, Signal, SignalValue};
use rust_decimal::Decimal;
pub struct AnchoredVwap {
name: String,
cum_tp_vol: Decimal,
cum_vol: Decimal,
}
impl AnchoredVwap {
pub fn new(name: impl Into<String>) -> Result<Self, FinError> {
Ok(Self {
name: name.into(),
cum_tp_vol: Decimal::ZERO,
cum_vol: Decimal::ZERO,
})
}
}
impl Signal for AnchoredVwap {
fn name(&self) -> &str { &self.name }
fn update(&mut self, bar: &BarInput) -> Result<SignalValue, FinError> {
if bar.volume > Decimal::ZERO {
let tp = bar.typical_price();
self.cum_tp_vol += tp * bar.volume;
self.cum_vol += bar.volume;
}
if self.cum_vol.is_zero() {
return Ok(SignalValue::Unavailable);
}
Ok(SignalValue::Scalar(self.cum_tp_vol / self.cum_vol))
}
fn is_ready(&self) -> bool { !self.cum_vol.is_zero() }
fn period(&self) -> usize { 1 }
fn reset(&mut self) {
self.cum_tp_vol = Decimal::ZERO;
self.cum_vol = Decimal::ZERO;
}
}
#[cfg(test)]
mod tests {
use super::*;
use crate::ohlcv::OhlcvBar;
use crate::types::{NanoTimestamp, Price, Quantity, Symbol};
use rust_decimal_macros::dec;
fn bar_hlcv(h: &str, l: &str, c: &str, v: &str) -> OhlcvBar {
let hp = Price::new(h.parse().unwrap()).unwrap();
let lp = Price::new(l.parse().unwrap()).unwrap();
let cp = Price::new(c.parse().unwrap()).unwrap();
let vol = Quantity::new(v.parse().unwrap()).unwrap();
OhlcvBar {
symbol: Symbol::new("X").unwrap(),
open: cp, high: hp, low: lp, close: cp,
volume: vol,
ts_open: NanoTimestamp::new(0),
ts_close: NanoTimestamp::new(1),
tick_count: 1,
}
}
fn bar_no_vol(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_avwap_unavailable_zero_volume() {
let mut av = AnchoredVwap::new("av").unwrap();
assert_eq!(av.update_bar(&bar_no_vol("100")).unwrap(), SignalValue::Unavailable);
assert!(!av.is_ready());
}
#[test]
fn test_avwap_single_bar() {
let mut av = AnchoredVwap::new("av").unwrap();
if let SignalValue::Scalar(v) = av.update_bar(&bar_hlcv("110", "90", "100", "1000")).unwrap() {
assert_eq!(v, dec!(100));
} else { panic!("expected Scalar"); }
}
#[test]
fn test_avwap_accumulates() {
let mut av = AnchoredVwap::new("av").unwrap();
av.update_bar(&bar_hlcv("110", "90", "100", "1000")).unwrap();
if let SignalValue::Scalar(v) = av.update_bar(&bar_hlcv("120", "100", "110", "2000")).unwrap() {
assert!(v > dec!(100) && v < dec!(110), "unexpected avwap {v}");
} else { panic!("expected Scalar"); }
}
#[test]
fn test_avwap_reset_reanchors() {
let mut av = AnchoredVwap::new("av").unwrap();
av.update_bar(&bar_hlcv("110", "90", "100", "1000")).unwrap();
assert!(av.is_ready());
av.reset();
assert!(!av.is_ready());
if let SignalValue::Scalar(v) = av.update_bar(&bar_hlcv("200", "180", "190", "500")).unwrap() {
assert_eq!(v, dec!(190));
} else { panic!("expected Scalar"); }
}
#[test]
fn test_avwap_skips_zero_volume_bars() {
let mut av = AnchoredVwap::new("av").unwrap();
av.update_bar(&bar_hlcv("110", "90", "100", "1000")).unwrap();
let v1 = av.update_bar(&bar_no_vol("200")).unwrap();
if let SignalValue::Scalar(v) = v1 {
assert_eq!(v, dec!(100)); } else { panic!("expected Scalar"); }
}
}