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https://github.com/bevyengine/bevy
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# Objective Add a way to easily compute the up-to-date `GlobalTransform` of an entity. ## Solution Add the `TransformHelper`(Name pending) system parameter with the `compute_global_transform` method that takes an `Entity` and returns a `GlobalTransform` if successful. ## Changelog - Added the `TransformHelper` system parameter for computing the up-to-date `GlobalTransform` of an entity. --------- Co-authored-by: Alice Cecile <alice.i.cecile@gmail.com> Co-authored-by: Noah <noahshomette@gmail.com>
142 lines
4.6 KiB
Rust
142 lines
4.6 KiB
Rust
//! System parameter for computing up-to-date [`GlobalTransform`]s.
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use bevy_ecs::{
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prelude::Entity,
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query::QueryEntityError,
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system::{Query, SystemParam},
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};
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use bevy_hierarchy::{HierarchyQueryExt, Parent};
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use crate::components::{GlobalTransform, Transform};
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/// System parameter for computing up-to-date [`GlobalTransform`]s.
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///
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/// Computing an entity's [`GlobalTransform`] can be expensive so it is recommended
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/// you use the [`GlobalTransform`] component stored on the entity, unless you need
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/// a [`GlobalTransform`] that reflects the changes made to any [`Transform`]s since
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/// the last time the transform propagation systems ran.
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#[derive(SystemParam)]
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pub struct TransformHelper<'w, 's> {
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parent_query: Query<'w, 's, &'static Parent>,
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transform_query: Query<'w, 's, &'static Transform>,
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}
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impl<'w, 's> TransformHelper<'w, 's> {
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/// Computes the [`GlobalTransform`] of the given entity from the [`Transform`] component on it and its ancestors.
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pub fn compute_global_transform(
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&self,
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entity: Entity,
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) -> Result<GlobalTransform, ComputeGlobalTransformError> {
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let transform = self
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.transform_query
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.get(entity)
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.map_err(|err| map_error(err, false))?;
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let mut global_transform = GlobalTransform::from(*transform);
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for entity in self.parent_query.iter_ancestors(entity) {
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let transform = self
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.transform_query
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.get(entity)
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.map_err(|err| map_error(err, true))?;
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global_transform = *transform * global_transform;
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}
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Ok(global_transform)
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}
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}
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fn map_error(err: QueryEntityError, ancestor: bool) -> ComputeGlobalTransformError {
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use ComputeGlobalTransformError::*;
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match err {
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QueryEntityError::QueryDoesNotMatch(entity) => MissingTransform(entity),
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QueryEntityError::NoSuchEntity(entity) => {
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if ancestor {
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MalformedHierarchy(entity)
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} else {
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NoSuchEntity(entity)
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}
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}
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QueryEntityError::AliasedMutability(_) => unreachable!(),
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}
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}
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/// Error returned by [`TransformHelper::compute_global_transform`].
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#[derive(Debug)]
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pub enum ComputeGlobalTransformError {
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/// The entity or one of its ancestors is missing the [`Transform`] component.
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MissingTransform(Entity),
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/// The entity does not exist.
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NoSuchEntity(Entity),
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/// An ancestor is missing.
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/// This probably means that your hierarchy has been improperly maintained.
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MalformedHierarchy(Entity),
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}
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#[cfg(test)]
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mod tests {
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use std::f32::consts::TAU;
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use bevy_app::App;
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use bevy_ecs::system::SystemState;
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use bevy_hierarchy::BuildWorldChildren;
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use bevy_math::{Quat, Vec3};
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use crate::{
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components::{GlobalTransform, Transform},
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helper::TransformHelper,
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TransformBundle, TransformPlugin,
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};
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#[test]
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fn match_transform_propagation_systems() {
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// Single transform
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match_transform_propagation_systems_inner(vec![Transform::from_translation(Vec3::X)
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.with_rotation(Quat::from_rotation_y(TAU / 4.))
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.with_scale(Vec3::splat(2.))]);
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// Transform hierarchy
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match_transform_propagation_systems_inner(vec![
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Transform::from_translation(Vec3::X)
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.with_rotation(Quat::from_rotation_y(TAU / 4.))
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.with_scale(Vec3::splat(2.)),
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Transform::from_translation(Vec3::Y)
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.with_rotation(Quat::from_rotation_z(TAU / 3.))
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.with_scale(Vec3::splat(1.5)),
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Transform::from_translation(Vec3::Z)
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.with_rotation(Quat::from_rotation_x(TAU / 2.))
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.with_scale(Vec3::splat(0.3)),
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]);
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}
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fn match_transform_propagation_systems_inner(transforms: Vec<Transform>) {
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let mut app = App::new();
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app.add_plugins(TransformPlugin);
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let mut entity = None;
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for transform in transforms {
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let mut e = app.world.spawn(TransformBundle::from(transform));
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if let Some(entity) = entity {
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e.set_parent(entity);
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}
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entity = Some(e.id());
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}
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let leaf_entity = entity.unwrap();
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app.update();
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let transform = *app.world.get::<GlobalTransform>(leaf_entity).unwrap();
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let mut state = SystemState::<TransformHelper>::new(&mut app.world);
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let helper = state.get(&app.world);
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let computed_transform = helper.compute_global_transform(leaf_entity).unwrap();
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approx::assert_abs_diff_eq!(transform.affine(), computed_transform.affine());
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}
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}
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