move width/height from Universe
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d52c461d6d
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deafbeb415
44
src/lib.rs
44
src/lib.rs
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@ -7,8 +7,6 @@ static ALLOC: wee_alloc::WeeAlloc = wee_alloc::WeeAlloc::INIT;
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#[wasm_bindgen]
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#[wasm_bindgen]
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pub struct Universe {
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pub struct Universe {
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width: u32,
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height: u32,
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e_x: Array2<f32>,
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e_x: Array2<f32>,
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// e_y: Array2<f32>,
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// e_y: Array2<f32>,
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// h_z: Array2<f32>,
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// h_z: Array2<f32>,
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@ -44,8 +42,6 @@ impl Universe {
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// let h_z = field.clone();
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// let h_z = field.clone();
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Universe {
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Universe {
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width,
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height,
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e_x,
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e_x,
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// e_y,
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// e_y,
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// h_z,
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// h_z,
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@ -58,48 +54,51 @@ impl Universe {
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"exp" => exponential,
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"exp" => exponential,
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_ => |_x: f32, _y: f32, _t: f32| 0.0,
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_ => |_x: f32, _y: f32, _t: f32| 0.0,
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};
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};
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for j in 0..self.height {
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let nx = self.e_x.shape()[1];
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for i in 0..self.width {
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let ny = self.e_x.shape()[0];
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let x = i as f32 / self.width as f32;
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for j in 0..ny {
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let y = j as f32 / self.height as f32;
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for i in 0..nx {
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self.e_x[(j as usize, i as usize)] = func(x, y, t);
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// Must divice interval on nx/ny instead of nx - 1/ny-1
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// due to periodic conditions [0, 1)
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let x = i as f32 / nx as f32;
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let y = j as f32 / ny as f32;
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self.e_x[(j, i)] = func(x, y, t);
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// self.e_y[(j as usize, i as usize)] = func(x, y, t);
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// self.e_y[(j as usize, i as usize)] = func(x, y, t);
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// self.h_z[(j as usize, i as usize)] = func(x, y, t);
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// self.h_z[(j as usize, i as usize)] = func(x, y, t);
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}
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}
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}
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}
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}
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}
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pub fn advance(&self, fut: &mut Universe, dt: f32) {
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pub fn advance(&self, fut: &mut Universe, dt: f32) {
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assert_eq!(self.width, fut.width);
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assert_eq!(self.e_x.shape(), fut.e_x.shape());
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assert_eq!(self.height, fut.height);
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let mut y = self.e_x.clone();
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let mut y = self.e_x.clone();
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// y.assign(&self.e_x)
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// y.assign(&self.e_x)
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let mut k0 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k0 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k0.view_mut());
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diffx(y.view(), k0.view_mut());
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diffy(y.view(), k0.view_mut());
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diffy(y.view(), k0.view_mut());
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// y.assign(&self.e_x);
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// y.assign(&self.e_x);
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y.scaled_add(-1.0 / 2.0 * dt, &k0);
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y.scaled_add(-1.0 / 2.0 * dt, &k0);
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let mut k1 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k1 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k1.view_mut());
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diffx(y.view(), k1.view_mut());
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diffy(y.view(), k1.view_mut());
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diffy(y.view(), k1.view_mut());
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y.assign(&self.e_x);
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y.assign(&self.e_x);
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y.scaled_add(-1.0 / 2.0 * dt, &k1);
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y.scaled_add(-1.0 / 2.0 * dt, &k1);
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let mut k2 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k2 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k2.view_mut());
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diffx(y.view(), k2.view_mut());
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diffy(y.view(), k2.view_mut());
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diffy(y.view(), k2.view_mut());
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y.assign(&self.e_x);
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y.assign(&self.e_x);
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y.scaled_add(-1.0 / 2.0 * dt, &k2);
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y.scaled_add(-1.0 / 2.0 * dt, &k2);
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let mut k3 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k3 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k3.view_mut());
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diffx(y.view(), k3.view_mut());
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diffy(y.view(), k3.view_mut());
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diffy(y.view(), k3.view_mut());
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y.assign(&self.e_x);
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y.assign(&self.e_x);
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y.scaled_add(-dt, &k2);
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y.scaled_add(-dt, &k2);
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let mut k4 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k4 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k4.view_mut());
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diffx(y.view(), k4.view_mut());
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diffy(y.view(), k4.view_mut());
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diffy(y.view(), k4.view_mut());
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@ -115,15 +114,14 @@ impl Universe {
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}
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}
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pub fn advance_upwind(&self, fut: &mut Universe, dt: f32) {
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pub fn advance_upwind(&self, fut: &mut Universe, dt: f32) {
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assert_eq!(self.width, fut.width);
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assert_eq!(self.e_x.dim(), fut.e_x.dim());
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assert_eq!(self.height, fut.height);
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let mut ad = Array2::zeros(fut.e_x.dim());
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let mut ad = Array2::zeros(fut.e_x.dim());
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let mut y = self.e_x.clone();
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let mut y = self.e_x.clone();
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// y.assign(&self.e_x)
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// y.assign(&self.e_x)
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// ad.fill(0.0);
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// ad.fill(0.0);
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let mut k0 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k0 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k0.view_mut());
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diffx(y.view(), k0.view_mut());
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diffy(y.view(), k0.view_mut());
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diffy(y.view(), k0.view_mut());
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dissx(y.view(), ad.view_mut());
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dissx(y.view(), ad.view_mut());
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@ -133,7 +131,7 @@ impl Universe {
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// y.assign(&self.e_x);
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// y.assign(&self.e_x);
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ad.fill(0.0);
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ad.fill(0.0);
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y.scaled_add(-1.0 / 2.0 * dt, &k0);
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y.scaled_add(-1.0 / 2.0 * dt, &k0);
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let mut k1 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k1 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k1.view_mut());
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diffx(y.view(), k1.view_mut());
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diffy(y.view(), k1.view_mut());
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diffy(y.view(), k1.view_mut());
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dissx(y.view(), ad.view_mut());
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dissx(y.view(), ad.view_mut());
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@ -143,7 +141,7 @@ impl Universe {
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y.assign(&self.e_x);
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y.assign(&self.e_x);
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ad.fill(0.0);
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ad.fill(0.0);
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y.scaled_add(-1.0 / 2.0 * dt, &k1);
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y.scaled_add(-1.0 / 2.0 * dt, &k1);
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let mut k2 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k2 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k2.view_mut());
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diffx(y.view(), k2.view_mut());
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diffy(y.view(), k2.view_mut());
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diffy(y.view(), k2.view_mut());
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dissx(y.view(), ad.view_mut());
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dissx(y.view(), ad.view_mut());
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@ -153,7 +151,7 @@ impl Universe {
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y.assign(&self.e_x);
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y.assign(&self.e_x);
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ad.fill(0.0);
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ad.fill(0.0);
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y.scaled_add(-1.0 / 2.0 * dt, &k2);
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y.scaled_add(-1.0 / 2.0 * dt, &k2);
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let mut k3 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k3 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k3.view_mut());
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diffx(y.view(), k3.view_mut());
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diffy(y.view(), k3.view_mut());
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diffy(y.view(), k3.view_mut());
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dissx(y.view(), ad.view_mut());
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dissx(y.view(), ad.view_mut());
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@ -163,7 +161,7 @@ impl Universe {
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y.assign(&self.e_x);
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y.assign(&self.e_x);
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ad.fill(0.0);
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ad.fill(0.0);
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y.scaled_add(-dt, &k2);
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y.scaled_add(-dt, &k2);
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let mut k4 = Array2::zeros((self.height as usize, self.width as usize));
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let mut k4 = Array2::zeros(self.e_x.dim());
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diffx(y.view(), k4.view_mut());
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diffx(y.view(), k4.view_mut());
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diffy(y.view(), k4.view_mut());
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diffy(y.view(), k4.view_mut());
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dissx(y.view(), ad.view_mut());
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dissx(y.view(), ad.view_mut());
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