#![forbid(unsafe_code)]
fn non_zero_sign(sample: f64) -> Option<i8> {
if !sample.is_finite() || sample == 0.0 {
None
} else if sample.is_sign_positive() {
Some(1)
} else {
Some(-1)
}
}
#[must_use]
pub fn crosses_zero(previous: f64, current: f64) -> bool {
previous.is_finite()
&& current.is_finite()
&& ((previous < 0.0 && current > 0.0) || (previous > 0.0 && current < 0.0))
}
#[must_use]
pub fn zero_crossing_count(samples: &[f64]) -> usize {
let mut previous_sign = None;
let mut count = 0;
for sample in samples.iter().copied() {
match non_zero_sign(sample) {
Some(sign) => {
if let Some(previous) = previous_sign && previous != sign {
count += 1;
}
previous_sign = Some(sign);
}
None if !sample.is_finite() => previous_sign = None,
None => {}
}
}
count
}
pub fn zero_crossing_rate(samples: &[f64]) -> Option<f64> {
if samples.len() < 2 || samples.iter().any(|sample| !sample.is_finite()) {
return None;
}
Some(zero_crossing_count(samples) as f64 / (samples.len() - 1) as f64)
}
#[cfg(test)]
mod tests {
use super::{crosses_zero, zero_crossing_count, zero_crossing_rate};
#[test]
fn detects_direct_crossings() {
assert!(crosses_zero(-1.0, 1.0));
assert!(crosses_zero(1.0, -1.0));
assert!(!crosses_zero(-1.0, 0.0));
assert!(!crosses_zero(0.0, 1.0));
}
#[test]
fn counts_crossings_while_skipping_exact_zero_samples() {
assert_eq!(zero_crossing_count(&[-1.0, 0.0, 1.0, 0.0, -1.0]), 2);
assert_eq!(zero_crossing_count(&[1.0]), 0);
}
#[test]
fn computes_zero_crossing_rate() {
assert_eq!(zero_crossing_rate(&[-1.0, 0.0, 1.0, -1.0]), Some(2.0 / 3.0));
}
#[test]
fn rejects_invalid_rate_inputs() {
assert_eq!(zero_crossing_rate(&[]), None);
assert_eq!(zero_crossing_rate(&[1.0]), None);
assert_eq!(zero_crossing_rate(&[1.0, f64::NAN]), None);
}
}