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Stepping disabled performance fix (#11959)
# Objective * Fixes #11932 (performance impact when stepping is disabled) ## Solution The `Option<FixedBitSet>` argument added to `ScheduleExecutor::run()` in #8453 caused a measurable performance impact even when stepping is disabled. This can be seen by the benchmark of running `Schedule:run()` on an empty schedule in a tight loop (https://github.com/bevyengine/bevy/issues/11932#issuecomment-1950970236). I was able to get the same performance results as on 0.12.1 by changing the argument `ScheduleExecutor::run()` from `Option<FixedBitSet>` to `Option<&FixedBitSet>`. The down-side of this change is that `Schedule::run()` now takes about 6% longer (3.7319 ms vs 3.9855ns) when stepping is enabled --- ## Changelog * Change `ScheduleExecutor::run()` `_skipped_systems` from `Option<FixedBitSet>` to `Option<&FixedBitSet>` * Added a few benchmarks to measure `Schedule::run()` performance with various executors
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8de15ae71a
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7 changed files with 44 additions and 23 deletions
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@ -19,4 +19,5 @@ criterion_group!(
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contrived,
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schedule,
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build_schedule,
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empty_schedule_run,
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);
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@ -118,3 +118,28 @@ pub fn build_schedule(criterion: &mut Criterion) {
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group.finish();
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}
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pub fn empty_schedule_run(criterion: &mut Criterion) {
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let mut app = bevy_app::App::default();
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let mut group = criterion.benchmark_group("run_empty_schedule");
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let mut schedule = Schedule::default();
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schedule.set_executor_kind(bevy_ecs::schedule::ExecutorKind::SingleThreaded);
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group.bench_function("SingleThreaded", |bencher| {
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bencher.iter(|| schedule.run(&mut app.world));
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});
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let mut schedule = Schedule::default();
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schedule.set_executor_kind(bevy_ecs::schedule::ExecutorKind::MultiThreaded);
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group.bench_function("MultiThreaded", |bencher| {
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bencher.iter(|| schedule.run(&mut app.world));
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});
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let mut schedule = Schedule::default();
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schedule.set_executor_kind(bevy_ecs::schedule::ExecutorKind::Simple);
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group.bench_function("Simple", |bencher| {
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bencher.iter(|| schedule.run(&mut app.world));
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});
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group.finish();
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}
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@ -21,8 +21,8 @@ pub(super) trait SystemExecutor: Send + Sync {
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fn run(
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&mut self,
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schedule: &mut SystemSchedule,
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skip_systems: Option<FixedBitSet>,
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world: &mut World,
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skip_systems: Option<&FixedBitSet>,
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);
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fn set_apply_final_deferred(&mut self, value: bool);
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}
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@ -166,8 +166,8 @@ impl SystemExecutor for MultiThreadedExecutor {
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fn run(
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&mut self,
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schedule: &mut SystemSchedule,
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_skip_systems: Option<FixedBitSet>,
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world: &mut World,
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_skip_systems: Option<&FixedBitSet>,
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) {
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// reset counts
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self.num_systems = schedule.systems.len();
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@ -189,26 +189,18 @@ impl SystemExecutor for MultiThreadedExecutor {
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// If stepping is enabled, make sure we skip those systems that should
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// not be run.
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#[cfg(feature = "bevy_debug_stepping")]
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if let Some(mut skipped_systems) = _skip_systems {
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if let Some(skipped_systems) = _skip_systems {
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debug_assert_eq!(skipped_systems.len(), self.completed_systems.len());
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// mark skipped systems as completed
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self.completed_systems |= &skipped_systems;
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self.completed_systems |= skipped_systems;
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self.num_completed_systems = self.completed_systems.count_ones(..);
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// signal the dependencies for each of the skipped systems, as
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// though they had run
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for system_index in skipped_systems.ones() {
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self.signal_dependents(system_index);
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self.ready_systems.set(system_index, false);
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}
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// Finally, we need to clear all skipped systems from the ready
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// list.
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//
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// We invert the skipped system mask to get the list of systems
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// that should be run. Then we bitwise AND it with the ready list,
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// resulting in a list of ready systems that aren't skipped.
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skipped_systems.toggle_range(..);
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self.ready_systems &= skipped_systems;
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}
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let thread_executor = world
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@ -33,15 +33,15 @@ impl SystemExecutor for SimpleExecutor {
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fn run(
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&mut self,
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schedule: &mut SystemSchedule,
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_skip_systems: Option<FixedBitSet>,
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world: &mut World,
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_skip_systems: Option<&FixedBitSet>,
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) {
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// If stepping is enabled, make sure we skip those systems that should
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// not be run.
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#[cfg(feature = "bevy_debug_stepping")]
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if let Some(skipped_systems) = _skip_systems {
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// mark skipped systems as completed
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self.completed_systems |= &skipped_systems;
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self.completed_systems |= skipped_systems;
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}
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for system_index in 0..schedule.systems.len() {
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@ -41,15 +41,15 @@ impl SystemExecutor for SingleThreadedExecutor {
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fn run(
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&mut self,
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schedule: &mut SystemSchedule,
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_skip_systems: Option<FixedBitSet>,
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world: &mut World,
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_skip_systems: Option<&FixedBitSet>,
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) {
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// If stepping is enabled, make sure we skip those systems that should
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// not be run.
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#[cfg(feature = "bevy_debug_stepping")]
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if let Some(skipped_systems) = _skip_systems {
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// mark skipped systems as completed
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self.completed_systems |= &skipped_systems;
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self.completed_systems |= skipped_systems;
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}
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for system_index in 0..schedule.systems.len() {
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@ -333,15 +333,18 @@ impl Schedule {
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.unwrap_or_else(|e| panic!("Error when initializing schedule {:?}: {e}", self.label));
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#[cfg(not(feature = "bevy_debug_stepping"))]
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let skip_systems = None;
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self.executor.run(&mut self.executable, world, None);
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#[cfg(feature = "bevy_debug_stepping")]
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let skip_systems = match world.get_resource_mut::<Stepping>() {
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None => None,
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Some(mut stepping) => stepping.skipped_systems(self),
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};
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{
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let skip_systems = match world.get_resource_mut::<Stepping>() {
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None => None,
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Some(mut stepping) => stepping.skipped_systems(self),
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};
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self.executor.run(&mut self.executable, skip_systems, world);
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self.executor
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.run(&mut self.executable, world, skip_systems.as_ref());
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}
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}
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/// Initializes any newly-added systems and conditions, rebuilds the executable schedule,
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