mirror of
https://github.com/bevyengine/bevy
synced 2025-01-08 19:29:04 +00:00
326 lines
11 KiB
Rust
326 lines
11 KiB
Rust
use crate::prelude::{Children, LocalTransform, Parent, PreviousParent};
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use bevy_ecs::{Commands, CommandsInternal, Component, DynamicBundle, Entity, WorldWriter};
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use smallvec::SmallVec;
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pub struct InsertChildren {
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parent: Entity,
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children: SmallVec<[Entity; 8]>,
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index: usize,
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}
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impl WorldWriter for InsertChildren {
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fn write(self: Box<Self>, world: &mut bevy_ecs::World) {
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for child in self.children.iter() {
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world
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.insert(
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*child,
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(
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Parent(self.parent),
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PreviousParent(None),
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LocalTransform::default(),
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),
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)
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.unwrap();
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}
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{
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let mut added = false;
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if let Ok(mut children) = world.get_mut::<Children>(self.parent) {
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children.insert_from_slice(self.index, &self.children);
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added = true;
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}
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// NOTE: ideally this is just an else statement, but currently that _incorrectly_ fails borrow-checking
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if !added {
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world
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.insert_one(self.parent, Children(SmallVec::from(self.children)))
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.unwrap();
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}
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}
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}
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}
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pub struct PushChildren {
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parent: Entity,
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children: SmallVec<[Entity; 8]>,
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}
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pub struct ChildBuilder<'a> {
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commands: &'a mut CommandsInternal,
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push_children: PushChildren,
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}
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impl WorldWriter for PushChildren {
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fn write(self: Box<Self>, world: &mut bevy_ecs::World) {
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for child in self.children.iter() {
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world
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.insert(
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*child,
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(
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Parent(self.parent),
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PreviousParent(None),
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LocalTransform::default(),
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),
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)
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.unwrap();
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}
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{
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let mut added = false;
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if let Ok(mut children) = world.get_mut::<Children>(self.parent) {
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children.extend(self.children.iter().cloned());
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added = true;
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}
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// NOTE: ideally this is just an else statement, but currently that _incorrectly_ fails borrow-checking
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if !added {
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world
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.insert_one(self.parent, Children(SmallVec::from(self.children)))
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.unwrap();
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}
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}
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}
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}
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impl<'a> ChildBuilder<'a> {
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pub fn spawn(&mut self, components: impl DynamicBundle + Send + Sync + 'static) -> &mut Self {
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self.spawn_as_entity(Entity::new(), components)
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}
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pub fn spawn_as_entity(
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&mut self,
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entity: Entity,
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components: impl DynamicBundle + Send + Sync + 'static,
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) -> &mut Self {
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self.commands.spawn_as_entity(entity, components);
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self.push_children.children.push(entity);
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self
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}
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pub fn with_bundle(
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&mut self,
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components: impl DynamicBundle + Send + Sync + 'static,
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) -> &mut Self {
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self.commands.with_bundle(components);
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self
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}
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pub fn with(&mut self, component: impl Component) -> &mut Self {
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self.commands.with(component);
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self
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}
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pub fn for_current_entity(&mut self, mut func: impl FnMut(Entity)) -> &mut Self {
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let current_entity = self
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.commands
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.current_entity
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.expect("The 'current entity' is not set. You should spawn an entity first.");
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func(current_entity);
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self
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}
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}
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pub trait BuildChildren {
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fn with_children(&mut self, parent: impl FnMut(&mut ChildBuilder)) -> &mut Self;
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fn push_children(&mut self, parent: Entity, children: &[Entity]) -> &mut Self;
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fn insert_children(&mut self, parent: Entity, index: usize, children: &[Entity]) -> &mut Self;
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}
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impl BuildChildren for Commands {
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fn with_children(&mut self, mut parent: impl FnMut(&mut ChildBuilder)) -> &mut Self {
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{
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let mut commands = self.commands.lock().unwrap();
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let current_entity = commands.current_entity.expect("Cannot add children because the 'current entity' is not set. You should spawn an entity first.");
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commands.current_entity = None;
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let push_children = {
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let mut builder = ChildBuilder {
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commands: &mut commands,
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push_children: PushChildren {
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children: SmallVec::default(),
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parent: current_entity,
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},
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};
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parent(&mut builder);
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builder.push_children
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};
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commands.current_entity = Some(current_entity);
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commands.write_world(push_children);
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}
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self
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}
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fn push_children(&mut self, parent: Entity, children: &[Entity]) -> &mut Self {
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{
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let mut commands = self.commands.lock().unwrap();
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commands.write_world(PushChildren {
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children: SmallVec::from(children),
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parent,
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});
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}
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self
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}
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fn insert_children(&mut self, parent: Entity, index: usize, children: &[Entity]) -> &mut Self {
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{
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let mut commands = self.commands.lock().unwrap();
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commands.write_world(InsertChildren {
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children: SmallVec::from(children),
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index,
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parent,
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});
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}
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self
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}
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}
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impl<'a> BuildChildren for ChildBuilder<'a> {
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fn with_children(&mut self, mut spawn_children: impl FnMut(&mut ChildBuilder)) -> &mut Self {
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let current_entity = self.commands.current_entity.expect("Cannot add children because the 'current entity' is not set. You should spawn an entity first.");
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self.commands.current_entity = None;
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let push_children = {
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let mut builder = ChildBuilder {
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commands: self.commands,
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push_children: PushChildren {
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children: SmallVec::default(),
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parent: current_entity,
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},
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};
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spawn_children(&mut builder);
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builder.push_children
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};
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self.commands.current_entity = Some(current_entity);
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self.commands.write_world(push_children);
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self
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}
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fn push_children(&mut self, parent: Entity, children: &[Entity]) -> &mut Self {
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self.commands.write_world(PushChildren {
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children: SmallVec::from(children),
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parent,
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});
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self
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}
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fn insert_children(&mut self, parent: Entity, index: usize, children: &[Entity]) -> &mut Self {
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self.commands.write_world(InsertChildren {
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children: SmallVec::from(children),
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index,
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parent,
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});
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self
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}
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}
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#[cfg(test)]
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mod tests {
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use super::BuildChildren;
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use crate::prelude::{Children, LocalTransform, Parent, PreviousParent};
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use bevy_ecs::{Commands, Entity, Resources, World};
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use smallvec::{smallvec, SmallVec};
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#[test]
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fn build_children() {
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let mut world = World::default();
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let mut resources = Resources::default();
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let mut commands = Commands::default();
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let mut parent = None;
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let mut child1 = None;
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let mut child2 = None;
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commands
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.spawn((1,))
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.for_current_entity(|e| parent = Some(e))
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.with_children(|parent| {
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parent
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.spawn((2,))
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.for_current_entity(|e| child1 = Some(e))
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.spawn((3,))
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.for_current_entity(|e| child2 = Some(e));
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});
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commands.apply(&mut world, &mut resources);
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let parent = parent.expect("parent should exist");
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let child1 = child1.expect("child1 should exist");
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let child2 = child2.expect("child2 should exist");
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let expected_children: SmallVec<[Entity; 8]> = smallvec![child1, child2];
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assert_eq!(
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world.get::<Children>(parent).unwrap().0.clone(),
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expected_children
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);
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assert_eq!(*world.get::<Parent>(child1).unwrap(), Parent(parent));
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assert_eq!(*world.get::<Parent>(child2).unwrap(), Parent(parent));
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assert_eq!(
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*world.get::<PreviousParent>(child1).unwrap(),
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PreviousParent(None)
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);
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assert_eq!(
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*world.get::<PreviousParent>(child2).unwrap(),
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PreviousParent(None)
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);
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assert!(world.get::<LocalTransform>(child1).is_ok());
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assert!(world.get::<LocalTransform>(child2).is_ok());
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}
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#[test]
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fn push_and_insert_children() {
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let mut world = World::default();
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let mut resources = Resources::default();
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let mut commands = Commands::default();
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let entities = world
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.spawn_batch(vec![(1,), (2,), (3,), (4,), (5,)])
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.collect::<Vec<Entity>>();
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commands.push_children(entities[0], &entities[1..3]);
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commands.apply(&mut world, &mut resources);
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let parent = entities[0];
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let child1 = entities[1];
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let child2 = entities[2];
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let child3 = entities[3];
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let child4 = entities[4];
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let expected_children: SmallVec<[Entity; 8]> = smallvec![child1, child2];
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assert_eq!(
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world.get::<Children>(parent).unwrap().0.clone(),
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expected_children
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);
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assert_eq!(*world.get::<Parent>(child1).unwrap(), Parent(parent));
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assert_eq!(*world.get::<Parent>(child2).unwrap(), Parent(parent));
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assert_eq!(
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*world.get::<PreviousParent>(child1).unwrap(),
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PreviousParent(None)
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);
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assert_eq!(
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*world.get::<PreviousParent>(child2).unwrap(),
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PreviousParent(None)
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);
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assert!(world.get::<LocalTransform>(child1).is_ok());
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assert!(world.get::<LocalTransform>(child2).is_ok());
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commands.insert_children(parent, 1, &entities[3..]);
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commands.apply(&mut world, &mut resources);
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let expected_children: SmallVec<[Entity; 8]> = smallvec![child1, child3, child4, child2];
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assert_eq!(
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world.get::<Children>(parent).unwrap().0.clone(),
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expected_children
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);
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assert_eq!(*world.get::<Parent>(child3).unwrap(), Parent(parent));
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assert_eq!(*world.get::<Parent>(child4).unwrap(), Parent(parent));
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assert_eq!(
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*world.get::<PreviousParent>(child3).unwrap(),
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PreviousParent(None)
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);
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assert_eq!(
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*world.get::<PreviousParent>(child4).unwrap(),
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PreviousParent(None)
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);
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assert!(world.get::<LocalTransform>(child3).is_ok());
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assert!(world.get::<LocalTransform>(child4).is_ok());
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}
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}
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