use super::{rk4, DynamicalSystem};
pub struct Halvorsen {
state: Vec<f64>,
pub a: f64,
}
impl Halvorsen {
pub fn new() -> Self {
Self {
state: vec![-5.0, 0.0, 0.0],
a: 1.89,
}
}
fn deriv(state: &[f64], a: f64) -> Vec<f64> {
let x = state[0];
let y = state[1];
let z = state[2];
vec![
-a * x - 4.0 * y - 4.0 * z - y * y,
-a * y - 4.0 * z - 4.0 * x - z * z,
-a * z - 4.0 * x - 4.0 * y - x * x,
]
}
}
impl DynamicalSystem for Halvorsen {
fn state(&self) -> &[f64] {
&self.state
}
fn dimension(&self) -> usize {
3
}
fn name(&self) -> &str {
"Halvorsen"
}
fn step(&mut self, dt: f64) {
let a = self.a;
rk4(&mut self.state, dt, |s| Self::deriv(s, a));
}
fn deriv_at(&self, state: &[f64]) -> Vec<f64> {
Self::deriv(state, self.a)
}
fn set_state(&mut self, s: &[f64]) {
let n = self.state.len().min(s.len());
for i in 0..n {
if s[i].is_finite() {
self.state[i] = s[i];
}
}
}
fn speed(&self) -> f64 {
let d = self.current_deriv();
d.iter().map(|x| x * x).sum::<f64>().sqrt()
}
}
#[cfg(test)]
mod tests {
use super::*;
use crate::systems::DynamicalSystem;
#[test]
fn test_halvorsen_initial_state() {
let sys = Halvorsen::new();
let s = sys.state();
assert_eq!(s.len(), 3);
assert!((s[0] - (-5.0)).abs() < 1e-15);
assert!((s[1] - 0.0).abs() < 1e-15);
assert!((s[2] - 0.0).abs() < 1e-15);
assert_eq!(sys.name(), "Halvorsen");
assert_eq!(sys.dimension(), 3);
}
#[test]
fn test_halvorsen_step_changes_state() {
let mut sys = Halvorsen::new();
let before: Vec<f64> = sys.state().to_vec();
sys.step(0.01);
let after = sys.state();
assert!(
before.iter().zip(after.iter()).any(|(a, b)| (a - b).abs() > 1e-15),
"State did not change after step"
);
}
#[test]
fn test_halvorsen_deterministic() {
let mut sys1 = Halvorsen::new();
let mut sys2 = Halvorsen::new();
for _ in 0..500 {
sys1.step(0.01);
sys2.step(0.01);
}
for (a, b) in sys1.state().iter().zip(sys2.state().iter()) {
assert!((a - b).abs() < 1e-15, "Non-deterministic: {} vs {}", a, b);
}
}
#[test]
fn test_halvorsen_dt_zero_no_change() {
let mut sys = Halvorsen::new();
let before: Vec<f64> = sys.state().to_vec();
sys.step(0.0);
let after = sys.state();
for (a, b) in before.iter().zip(after.iter()) {
assert!((a - b).abs() < 1e-15, "State changed with dt=0: {} -> {}", a, b);
}
}
#[test]
fn test_halvorsen_set_state() {
let mut sys = Halvorsen::new();
sys.set_state(&[1.0, 2.0, 3.0]);
let s = sys.state();
assert!((s[0] - 1.0).abs() < 1e-15);
assert!((s[1] - 2.0).abs() < 1e-15);
assert!((s[2] - 3.0).abs() < 1e-15);
}
#[test]
fn test_halvorsen_set_state_ignores_nan() {
let mut sys = Halvorsen::new();
let original: Vec<f64> = sys.state().to_vec();
sys.set_state(&[f64::NAN, f64::NAN, f64::NAN]);
for (a, b) in original.iter().zip(sys.state().iter()) {
assert!((a - b).abs() < 1e-15, "NaN state should be ignored");
}
}
#[test]
fn test_halvorsen_speed_positive_after_step() {
let mut sys = Halvorsen::new();
sys.step(0.01);
assert!(sys.speed() > 0.0, "speed should be positive after step: {}", sys.speed());
}
}