split benches
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bc62e0f189
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@ -27,7 +27,11 @@ debug = true
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criterion = "0.3.0"
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[[bench]]
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name = "bench"
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name = "maxwell"
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harness = false
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[[bench]]
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name = "euler"
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harness = false
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[profile.bench]
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106
benches/bench.rs
106
benches/bench.rs
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@ -1,106 +0,0 @@
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use criterion::{black_box, criterion_group, criterion_main, Criterion};
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use maxwell::operators::{SbpOperator, Upwind4, UpwindOperator, SBP4};
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use maxwell::{EulerSystem, System};
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fn advance_system<SBP: SbpOperator>(universe: &mut System<SBP>, n: usize) {
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for _ in 0..n {
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universe.advance(0.01);
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}
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}
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fn advance_system_upwind<UO: UpwindOperator>(universe: &mut System<UO>, n: usize) {
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for _ in 0..n {
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universe.advance_upwind(0.01);
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}
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}
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fn performance_benchmark(c: &mut Criterion) {
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let mut group = c.benchmark_group("System");
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group.sample_size(25);
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let w = 40;
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let h = 26;
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let x = ndarray::Array2::from_shape_fn((h, w), |(_, i)| i as f32 / (w - 1) as f32);
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let y = ndarray::Array2::from_shape_fn((h, w), |(j, _)| j as f32 / (h - 1) as f32);
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let mut universe = System::<Upwind4>::new(w, h, x.as_slice().unwrap(), y.as_slice().unwrap());
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group.bench_function("advance", |b| {
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b.iter(|| {
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universe.set_gaussian(0.5, 0.5);
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advance_system(&mut universe, black_box(20))
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})
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});
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let mut universe = System::<Upwind4>::new(w, h, x.as_slice().unwrap(), y.as_slice().unwrap());
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group.bench_function("advance_upwind", |b| {
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b.iter(|| {
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universe.set_gaussian(0.5, 0.5);
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advance_system_upwind(&mut universe, black_box(20))
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})
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});
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let mut universe = System::<SBP4>::new(w, h, x.as_slice().unwrap(), y.as_slice().unwrap());
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group.bench_function("advance_trad4", |b| {
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b.iter(|| {
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universe.set_gaussian(0.5, 0.5);
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advance_system(&mut universe, black_box(20))
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})
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});
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group.finish();
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}
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criterion_group!(benches, performance_benchmark);
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fn advance_euler_system<SBP: SbpOperator>(universe: &mut EulerSystem<SBP>, n: usize) {
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for _ in 0..n {
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universe.advance(1.0 / 40.0 * 0.2);
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}
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}
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fn advance_euler_system_upwind<UO: UpwindOperator>(universe: &mut EulerSystem<UO>, n: usize) {
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for _ in 0..n {
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universe.advance_upwind(1.0 / 40.0 * 0.2);
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}
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}
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fn euler_performance_benchmark(c: &mut Criterion) {
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let mut group = c.benchmark_group("EulerSystem");
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group.sample_size(25);
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let w = 40;
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let h = 26;
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let x = ndarray::Array1::linspace(-10.0, 10.0, w);
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let x = x.broadcast((h, w)).unwrap();
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let y = ndarray::Array1::linspace(-10.0, 10.0, h);
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let y = y.broadcast((w, h)).unwrap().reversed_axes();
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let mut universe = EulerSystem::<Upwind4>::new(x.into_owned(), y.into_owned());
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group.bench_function("advance_euler", |b| {
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b.iter(|| {
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universe.vortex(0.0, 0.0);
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advance_euler_system(&mut universe, black_box(20))
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})
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});
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let mut universe = EulerSystem::<Upwind4>::new(x.into_owned(), y.into_owned());
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group.bench_function("advance_euler_upwind", |b| {
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b.iter(|| {
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universe.vortex(0.0, 0.0);
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advance_euler_system_upwind(&mut universe, black_box(20))
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})
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});
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let mut universe = EulerSystem::<SBP4>::new(x.into_owned(), y.into_owned());
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group.bench_function("advance_euler_trad4", |b| {
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b.iter(|| {
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universe.vortex(0.0, 0.0);
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advance_euler_system(&mut universe, black_box(20))
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})
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});
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group.finish();
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}
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criterion_group!(euler_benches, euler_performance_benchmark);
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criterion_main!(benches, euler_benches);
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@ -0,0 +1,56 @@
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use criterion::{black_box, criterion_group, criterion_main, Criterion};
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use maxwell::operators::{SbpOperator, Upwind4, UpwindOperator, SBP4};
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use maxwell::EulerSystem;
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fn advance_system<SBP: SbpOperator>(universe: &mut EulerSystem<SBP>, n: usize) {
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for _ in 0..n {
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universe.advance(1.0 / 40.0 * 0.2);
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}
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}
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fn advance_system_upwind<UO: UpwindOperator>(universe: &mut EulerSystem<UO>, n: usize) {
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for _ in 0..n {
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universe.advance_upwind(1.0 / 40.0 * 0.2);
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}
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}
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fn performance_benchmark(c: &mut Criterion) {
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let mut group = c.benchmark_group("EulerSystem");
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group.sample_size(25);
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let w = 40;
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let h = 26;
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let x = ndarray::Array1::linspace(-10.0, 10.0, w);
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let x = x.broadcast((h, w)).unwrap();
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let y = ndarray::Array1::linspace(-10.0, 10.0, h);
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let y = y.broadcast((w, h)).unwrap().reversed_axes();
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let mut universe = EulerSystem::<Upwind4>::new(x.into_owned(), y.into_owned());
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group.bench_function("advance", |b| {
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b.iter(|| {
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universe.vortex(0.0, 0.0);
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advance_system(&mut universe, black_box(20))
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})
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});
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let mut universe = EulerSystem::<Upwind4>::new(x.into_owned(), y.into_owned());
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group.bench_function("advance_upwind", |b| {
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b.iter(|| {
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universe.vortex(0.0, 0.0);
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advance_system_upwind(&mut universe, black_box(20))
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})
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});
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let mut universe = EulerSystem::<SBP4>::new(x.into_owned(), y.into_owned());
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group.bench_function("advance_trad4", |b| {
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b.iter(|| {
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universe.vortex(0.0, 0.0);
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advance_system(&mut universe, black_box(20))
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})
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});
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group.finish();
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}
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criterion_group!(benches, performance_benchmark);
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criterion_main!(benches);
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@ -0,0 +1,54 @@
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use criterion::{black_box, criterion_group, criterion_main, Criterion};
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use maxwell::operators::{SbpOperator, Upwind4, UpwindOperator, SBP4};
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use maxwell::System;
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fn advance_system<SBP: SbpOperator>(universe: &mut System<SBP>, n: usize) {
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for _ in 0..n {
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universe.advance(0.01);
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}
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}
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fn advance_system_upwind<UO: UpwindOperator>(universe: &mut System<UO>, n: usize) {
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for _ in 0..n {
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universe.advance_upwind(0.01);
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}
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}
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fn performance_benchmark(c: &mut Criterion) {
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let mut group = c.benchmark_group("System");
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group.sample_size(25);
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let w = 40;
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let h = 26;
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let x = ndarray::Array2::from_shape_fn((h, w), |(_, i)| i as f32 / (w - 1) as f32);
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let y = ndarray::Array2::from_shape_fn((h, w), |(j, _)| j as f32 / (h - 1) as f32);
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let mut universe = System::<Upwind4>::new(w, h, x.as_slice().unwrap(), y.as_slice().unwrap());
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group.bench_function("advance", |b| {
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b.iter(|| {
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universe.set_gaussian(0.5, 0.5);
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advance_system(&mut universe, black_box(20))
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})
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});
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let mut universe = System::<Upwind4>::new(w, h, x.as_slice().unwrap(), y.as_slice().unwrap());
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group.bench_function("advance_upwind", |b| {
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b.iter(|| {
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universe.set_gaussian(0.5, 0.5);
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advance_system_upwind(&mut universe, black_box(20))
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})
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});
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let mut universe = System::<SBP4>::new(w, h, x.as_slice().unwrap(), y.as_slice().unwrap());
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group.bench_function("advance_trad4", |b| {
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b.iter(|| {
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universe.set_gaussian(0.5, 0.5);
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advance_system(&mut universe, black_box(20))
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})
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});
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group.finish();
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}
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criterion_group!(benches, performance_benchmark);
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criterion_main!(benches);
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