Advanced Bevy ECS patterns including complex queries, system scheduling, change detection, entity relationships, and performance optimization...
Advanced patterns and techniques for Bevy's Entity Component System, focusing on performance, maintainability, and complex game architectures.
| Use this skill when... | Use bevy-game-engine instead when... |
|---|---|
| Optimizing ECS query performance | Setting up a new Bevy project from scratch |
| Implementing complex entity relationships or hierarchies | Learning basic ECS concepts (components, systems, resources) |
| Designing system scheduling and ordering | Handling input, assets, or game states |
Using change detection (Changed<T>, Added<T>) |
Writing basic game logic or app structure |
Working with ParamSet, parallel iteration, or batch operations |
Configuring rendering, UI, or audio |
| Debugging archetype fragmentation or storage strategies | Adding plugins or common Bevy dependencies |
Advanced Queries
System Scheduling
Change Detection
Changed<T> and Added<T> filtersRef<T> for change trackingQuery Filters
use bevy::prelude::*;
// Multiple filters
fn targeting_system(
query: Query<
(&Transform, &mut Target),
(With<Enemy>, Without<Dead>, Changed<Health>)
>,
) {
for (transform, mut target) in &query {
// Only enemies that are alive and recently damaged
}
}
// Optional components
fn flexible_system(
query: Query<(&Transform, Option<&Velocity>, Option<&Acceleration>)>,
) {
for (transform, velocity, acceleration) in &query {
if let Some(vel) = velocity {
// Has velocity
}
}
}
// Or filters
fn pickup_system(
query: Query<Entity, Or<(With<HealthPickup>, With<AmmoPickup>)>>,
) {
for entity in &query {
// Process any pickup type
}
}
Multiple Queries with Conflicts
// Use ParamSet when queries have conflicting access
fn combat_system(
mut param_set: ParamSet<(
Query<&mut Health, With<Player>>,
Query<&mut Health, With<Enemy>>,
)>,
) {
// Access one query at a time
for mut health in param_set.p0().iter_mut() {
health.0 += 1.0; // Heal player
}
for mut health in param_set.p1().iter_mut() {
health.0 -= 10.0; // Damage enemies
}
}
// Query transmutation for flexible access
fn dynamic_query(
all_entities: Query<(Entity, &Transform)>,
players: Query<&Player>,
) {
for (entity, transform) in &all_entities {
if players.get(entity).is_ok() {
// This is a player
}
}
}
Entity Relationships
// Parent-child hierarchies
#[derive(Component)]
struct Inventory;
#[derive(Component)]
struct InventorySlot(usize);
fn spawn_inventory(mut commands: Commands) {
commands.spawn((Inventory, SpatialBundle::default()))
.with_children(|parent| {
for i in 0..10 {
parent.spawn((InventorySlot(i), SpriteBundle::default()));
}
});
}
// Query parent from child
fn child_system(
children: Query<(&InventorySlot, &Parent)>,
parents: Query<&Inventory>,
) {
for (slot, parent) in &children {
if let Ok(inventory) = parents.get(parent.get()) {
// Access parent inventory
}
}
}
// Query children from parent
fn parent_system(
parents: Query<&Children, With<Inventory>>,
slots: Query<&InventorySlot>,
) {
for children in &parents {
for &child in children.iter() {
if let Ok(slot) = slots.get(child) {
// Access child slot
}
}
}
}
| Context | Command |
|---|---|
| Quick compile check | cargo check 2>&1 | head -30 |
| Fast test run | cargo test --lib -- --test-threads=1 -q |
| Check ECS usage errors | cargo clippy -- -W clippy::all 2>&1 | head -50 |
| List components in project | grep -rn "derive(Component)" src/ --include="*.rs" |
| List systems in project | grep -rn "fn.*Query<" src/ --include="*.rs" |
| Find system ordering | grep -rn "\.add_systems|\.chain()|\.after(|\.before(" src/ --include="*.rs" |
| Check for ParamSet usage | grep -rn "ParamSet" src/ --include="*.rs" |
For system scheduling, change detection, performance patterns, custom entity commands, and design best practices, see REFERENCE.md.