SummationByParts/src/maxwell.rs

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2019-08-13 18:43:31 +00:00
use super::operators::{diffx_periodic, diffy_periodic};
use ndarray::{Array2, Zip};
pub struct System {
pub(crate) ex: Array2<f32>,
pub(crate) ey: Array2<f32>,
pub(crate) hz: Array2<f32>,
}
fn gaussian(x: f32, x0: f32, y: f32, y0: f32) -> f32 {
use std::f32;
let x = x - x0;
let y = y - y0;
let sigma = 0.05;
1.0 / (2.0 * f32::consts::PI * sigma * sigma) * (-(x * x + y * y) / (2.0 * sigma * sigma)).exp()
}
impl System {
pub fn new(width: u32, height: u32) -> Self {
let field = Array2::zeros((height as usize, width as usize));
let ex = field.clone();
let ey = field.clone();
let hz = field;
Self { ex, ey, hz }
}
pub fn set_gaussian(&mut self, x0: f32, y0: f32) {
let nx = self.ex.shape()[1];
let ny = self.ex.shape()[0];
for j in 0..ny {
for i in 0..nx {
// Must divice interval on nx/ny instead of nx - 1/ny-1
// due to periodic conditions [0, 1)
let x = i as f32 / nx as f32;
let y = j as f32 / ny as f32;
self.ex[(j, i)] = 0.0;
self.ey[(j, i)] = 0.0;
self.hz[(j, i)] = gaussian(x, x0, y, y0) / 32.0;
}
}
}
pub fn advance(&self, fut: &mut System, dt: f32, work_buffers: Option<&mut WorkBuffers>) {
assert_eq!(self.ex.shape(), fut.ex.shape());
let mut wb: WorkBuffers;
let (y, k) = match work_buffers {
Some(x) => (&mut x.y, &mut x.buf),
None => {
wb = WorkBuffers::new(self.ex.shape()[1], self.ex.shape()[0]);
(&mut wb.y, &mut wb.buf)
}
};
for i in 0..4 {
// y = y0 + c*kn
y.0.assign(&self.ex);
y.1.assign(&self.hz);
y.2.assign(&self.ey);
match i {
0 => {}
1 => {
y.0.scaled_add(1.0 / 2.0 * dt, &k[i - 1].0);
y.1.scaled_add(1.0 / 2.0 * dt, &k[i - 1].1);
y.2.scaled_add(1.0 / 2.0 * dt, &k[i - 1].2);
}
2 => {
y.0.scaled_add(1.0 / 2.0 * dt, &k[i - 1].0);
y.1.scaled_add(1.0 / 2.0 * dt, &k[i - 1].1);
y.2.scaled_add(1.0 / 2.0 * dt, &k[i - 1].2);
}
3 => {
y.0.scaled_add(dt, &k[i - 1].0);
y.1.scaled_add(dt, &k[i - 1].1);
y.2.scaled_add(dt, &k[i - 1].2);
}
_ => {
unreachable!();
}
};
k[i].0.fill(0.0);
// ex = hz_y
diffy_periodic(y.1.view(), k[i].0.view_mut());
// ey = -hz_x
k[i].2.fill(0.0);
diffx_periodic(y.1.view(), k[i].2.view_mut());
k[i].2.mapv_inplace(|v| -v);
// hz = -ey_x + ex_y
k[i].1.fill(0.0);
diffx_periodic(y.2.view(), k[i].1.view_mut());
k[i].1.mapv_inplace(|v| -v);
diffy_periodic(y.0.view(), k[i].1.view_mut());
}
Zip::from(&mut fut.ex)
.and(&self.ex)
.and(&k[0].0)
.and(&k[1].0)
.and(&k[2].0)
.and(&k[3].0)
.apply(|y1, &y0, &k1, &k2, &k3, &k4| {
*y1 = y0 + dt / 6.0 * (k1 + 2.0 * k2 + 2.0 * k3 + k4)
});
Zip::from(&mut fut.hz)
.and(&self.hz)
.and(&k[0].1)
.and(&k[1].1)
.and(&k[2].1)
.and(&k[3].1)
.apply(|y1, &y0, &k1, &k2, &k3, &k4| {
*y1 = y0 + dt / 6.0 * (k1 + 2.0 * k2 + 2.0 * k3 + k4)
});
Zip::from(&mut fut.ey)
.and(&self.ey)
.and(&k[0].2)
.and(&k[1].2)
.and(&k[2].2)
.and(&k[3].2)
.apply(|y1, &y0, &k1, &k2, &k3, &k4| {
*y1 = y0 + dt / 6.0 * (k1 + 2.0 * k2 + 2.0 * k3 + k4)
});
}
}
pub struct WorkBuffers {
y: (Array2<f32>, Array2<f32>, Array2<f32>),
buf: [(Array2<f32>, Array2<f32>, Array2<f32>); 4],
}
impl WorkBuffers {
pub fn new(nx: usize, ny: usize) -> Self {
let arr = Array2::zeros((ny, nx));
Self {
y: (arr.clone(), arr.clone(), arr.clone()),
buf: [
(arr.clone(), arr.clone(), arr.clone()),
(arr.clone(), arr.clone(), arr.clone()),
(arr.clone(), arr.clone(), arr.clone()),
(arr.clone(), arr.clone(), arr),
],
}
}
}