mirror of
https://github.com/bevyengine/bevy
synced 2025-01-08 03:08:55 +00:00
180 lines
6.8 KiB
Rust
180 lines
6.8 KiB
Rust
#[macro_export]
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macro_rules! bench_func {
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($name: ident, $desc: expr, op => $func: ident, from => $from: expr) => {
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pub(crate) fn $name(c: &mut Criterion) {
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const SIZE: usize = 1 << 13;
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let mut rng = support::PCG32::default();
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let inputs =
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criterion::black_box((0..SIZE).map(|_| $from(&mut rng)).collect::<Vec<_>>());
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// pre-fill output vector with some random value
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let mut outputs = vec![$func($from(&mut rng)); SIZE];
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let mut i = 0;
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c.bench_function($desc, |b| {
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b.iter(|| {
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i = (i + 1) & (SIZE - 1);
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unsafe {
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*outputs.get_unchecked_mut(i) = $func(*inputs.get_unchecked(i));
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}
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})
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});
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criterion::black_box(outputs);
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}
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};
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}
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#[macro_export]
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macro_rules! bench_unop {
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($name: ident, $desc: expr, op => $unop: ident, from => $from: expr) => {
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pub(crate) fn $name(c: &mut Criterion) {
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const SIZE: usize = 1 << 13;
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let mut rng = support::PCG32::default();
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let inputs =
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criterion::black_box((0..SIZE).map(|_| $from(&mut rng)).collect::<Vec<_>>());
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// pre-fill output vector with some random value
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let mut outputs = vec![$from(&mut rng).$unop(); SIZE];
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let mut i = 0;
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c.bench_function($desc, |b| {
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b.iter(|| {
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i = (i + 1) & (SIZE - 1);
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unsafe {
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*outputs.get_unchecked_mut(i) = inputs.get_unchecked(i).$unop();
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}
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})
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});
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criterion::black_box(outputs);
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}
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};
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}
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#[macro_export]
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macro_rules! bench_binop {
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($name: ident, $desc: expr, op => $binop: ident, from1 => $from1:expr, from2 => $from2:expr) => {
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pub(crate) fn $name(c: &mut Criterion) {
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const SIZE: usize = 1 << 13;
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let mut rng = support::PCG32::default();
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let inputs1 =
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criterion::black_box((0..SIZE).map(|_| $from1(&mut rng)).collect::<Vec<_>>());
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let inputs2 =
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criterion::black_box((0..SIZE).map(|_| $from2(&mut rng)).collect::<Vec<_>>());
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// pre-fill output vector with some random value
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let mut outputs = vec![$from1(&mut rng).$binop($from2(&mut rng)); SIZE];
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let mut i = 0;
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c.bench_function($desc, |b| {
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b.iter(|| {
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i = (i + 1) & (SIZE - 1);
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unsafe {
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*outputs.get_unchecked_mut(i) = inputs1.get_unchecked(i).$binop(*inputs2.get_unchecked(i));
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}
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})
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});
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criterion::black_box(outputs);
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}
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};
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($name: ident, $desc: expr, op => $binop: ident, from => $from: expr) => {
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bench_binop!($name, $desc, op => $binop, from1 => $from, from2 => $from);
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};
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}
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#[macro_export]
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macro_rules! bench_trinop {
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($name: ident, $desc: expr, op => $trinop: ident, from1 => $from1:expr, from2 => $from2:expr, from3 => $from3:expr) => {
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pub(crate) fn $name(c: &mut Criterion) {
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const SIZE: usize = 1 << 13;
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let mut rng = support::PCG32::default();
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let inputs1 =
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criterion::black_box((0..SIZE).map(|_| $from1(&mut rng)).collect::<Vec<_>>());
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let inputs2 =
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criterion::black_box((0..SIZE).map(|_| $from2(&mut rng)).collect::<Vec<_>>());
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let inputs3 =
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criterion::black_box((0..SIZE).map(|_| $from3(&mut rng)).collect::<Vec<_>>());
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// pre-fill output vector with some random value
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let mut outputs =
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vec![$from1(&mut rng).$trinop($from2(&mut rng), $from3(&mut rng)); SIZE];
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let mut i = 0;
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c.bench_function($desc, |b| {
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b.iter(|| {
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i = (i + 1) & (SIZE - 1);
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unsafe {
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*outputs.get_unchecked_mut(i) = inputs1
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.get_unchecked(i)
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.$trinop(*inputs2.get_unchecked(i), *inputs3.get_unchecked(i));
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}
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})
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});
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criterion::black_box(outputs);
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}
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};
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}
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#[macro_export]
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macro_rules! bench_from_ypr {
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($name: ident, $desc: expr, ty => $ty:ty) => {
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pub(crate) fn $name(c: &mut Criterion) {
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const SIZE: usize = 1 << 13;
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let mut rng = support::PCG32::default();
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let inputs = criterion::black_box(
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(0..SIZE)
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.map(|_| {
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(
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random_radians(&mut rng),
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random_radians(&mut rng),
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random_radians(&mut rng),
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)
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})
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.collect::<Vec<_>>(),
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);
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let mut outputs = vec![<$ty>::default(); SIZE];
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let mut i = 0;
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c.bench_function($desc, |b| {
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b.iter(|| {
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i = (i + 1) & (SIZE - 1);
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unsafe {
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let data = inputs.get_unchecked(i);
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*outputs.get_unchecked_mut(i) =
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<$ty>::from_rotation_ypr(data.0, data.1, data.2)
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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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#[macro_export]
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macro_rules! euler {
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($name: ident, $desc: expr, ty => $t: ty, storage => $storage: ty, zero => $zero: expr, rand => $rand: ident) => {
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pub(crate) fn $name(c: &mut Criterion) {
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const UPDATE_RATE: f32 = 1.0 / 60.0;
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const NUM_OBJECTS: usize = 10000;
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struct TestData {
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acc: Vec<$storage>,
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vel: Vec<$storage>,
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pos: Vec<$storage>,
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}
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let mut rng = support::PCG32::default();
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let mut data = TestData {
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acc: vec![$rand(&mut rng); NUM_OBJECTS],
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vel: vec![$zero; NUM_OBJECTS],
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pos: vec![$zero; NUM_OBJECTS],
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};
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let dt = <$t>::splat(UPDATE_RATE);
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c.bench_function($desc, |b| {
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b.iter(|| {
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for ((position, acceleration), velocity) in
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data.pos.iter_mut().zip(&data.acc).zip(&mut data.vel)
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{
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let local_acc: $t = (*acceleration).into();
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let mut local_pos: $t = (*position).into();
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let mut local_vel: $t = (*velocity).into();
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local_vel += local_acc * dt;
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local_pos += local_vel * dt;
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*velocity = local_vel.into();
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*position = local_pos.into();
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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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