# Objective Contributes to #18238 Updates the `sprite_slice`, `spatial_audio_3d` and `spatial_audio_2d` examples to use the `children!` macro. ## Solution Updates examples to use the Improved Spawning API merged in https://github.com/bevyengine/bevy/pull/17521 ## Testing - Did you test these changes? If so, how? - Opened the examples before and after and verified the same behavior was observed. I did this on Ubuntu 24.04.2 LTS using `--features wayland`. - Are there any parts that need more testing? - Other OS's and features can't hurt, but this is such a small change it shouldn't be a problem. - How can other people (reviewers) test your changes? Is there anything specific they need to know? - Run the examples yourself with and without these changes. - If relevant, what platforms did you test these changes on, and are there any important ones you can't test? - see above --- ## Showcase n/a ## Migration Guide n/a
		
			
				
	
	
		
			140 lines
		
	
	
		
			4.0 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			140 lines
		
	
	
		
			4.0 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
//! This example illustrates how to load and play an audio file, and control where the sounds seems to come from.
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use bevy::{
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    color::palettes::basic::{BLUE, LIME, RED},
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    prelude::*,
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    time::Stopwatch,
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};
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fn main() {
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    App::new()
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        .add_plugins(DefaultPlugins)
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        .add_systems(Startup, setup)
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        .add_systems(Update, update_positions)
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        .add_systems(Update, update_listener)
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        .add_systems(Update, mute)
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        .run();
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}
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fn setup(
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    mut commands: Commands,
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    asset_server: Res<AssetServer>,
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    mut meshes: ResMut<Assets<Mesh>>,
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    mut materials: ResMut<Assets<StandardMaterial>>,
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) {
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    // Space between the two ears
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    let gap = 4.0;
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    // sound emitter
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    commands.spawn((
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        Mesh3d(meshes.add(Sphere::new(0.2).mesh().uv(32, 18))),
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        MeshMaterial3d(materials.add(Color::from(BLUE))),
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        Transform::from_xyz(0.0, 0.0, 0.0),
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        Emitter::default(),
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        AudioPlayer::new(asset_server.load("sounds/Windless Slopes.ogg")),
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        PlaybackSettings::LOOP.with_spatial(true),
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    ));
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    let listener = SpatialListener::new(gap);
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    commands.spawn((
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        Transform::default(),
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        Visibility::default(),
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        listener.clone(),
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        children![
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            // left ear indicator
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            (
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                Mesh3d(meshes.add(Cuboid::new(0.2, 0.2, 0.2))),
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                MeshMaterial3d(materials.add(Color::from(RED))),
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                Transform::from_translation(listener.left_ear_offset),
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            ),
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            // right ear indicator
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            (
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                Mesh3d(meshes.add(Cuboid::new(0.2, 0.2, 0.2))),
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                MeshMaterial3d(materials.add(Color::from(LIME))),
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                Transform::from_translation(listener.right_ear_offset),
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            )
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        ],
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    ));
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    // light
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    commands.spawn((
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        DirectionalLight::default(),
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        Transform::from_xyz(4.0, 8.0, 4.0).looking_at(Vec3::ZERO, Vec3::Y),
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    ));
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    // example instructions
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    commands.spawn((
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        Text::new(
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            "Up/Down/Left/Right: Move Listener\nSpace: Toggle Emitter Movement\nM: Toggle Mute",
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        ),
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        Node {
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            position_type: PositionType::Absolute,
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            bottom: Val::Px(12.0),
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            left: Val::Px(12.0),
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            ..default()
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        },
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    ));
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    // camera
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    commands.spawn((
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        Camera3d::default(),
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        Transform::from_xyz(0.0, 5.0, 5.0).looking_at(Vec3::ZERO, Vec3::Y),
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    ));
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}
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#[derive(Component, Default)]
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struct Emitter {
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    stopwatch: Stopwatch,
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}
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fn update_positions(
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    time: Res<Time>,
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    mut emitters: Query<(&mut Transform, &mut Emitter), With<Emitter>>,
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    keyboard: Res<ButtonInput<KeyCode>>,
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) {
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    for (mut emitter_transform, mut emitter) in emitters.iter_mut() {
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        if keyboard.just_pressed(KeyCode::Space) {
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            if emitter.stopwatch.is_paused() {
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                emitter.stopwatch.unpause();
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            } else {
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                emitter.stopwatch.pause();
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            }
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        }
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        emitter.stopwatch.tick(time.delta());
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        if !emitter.stopwatch.is_paused() {
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            emitter_transform.translation.x = ops::sin(emitter.stopwatch.elapsed_secs()) * 3.0;
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            emitter_transform.translation.z = ops::cos(emitter.stopwatch.elapsed_secs()) * 3.0;
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        }
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    }
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}
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fn update_listener(
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    keyboard: Res<ButtonInput<KeyCode>>,
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    time: Res<Time>,
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    mut listeners: Single<&mut Transform, With<SpatialListener>>,
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) {
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    let speed = 2.;
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    if keyboard.pressed(KeyCode::ArrowRight) {
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        listeners.translation.x += speed * time.delta_secs();
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    }
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    if keyboard.pressed(KeyCode::ArrowLeft) {
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        listeners.translation.x -= speed * time.delta_secs();
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    }
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    if keyboard.pressed(KeyCode::ArrowDown) {
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        listeners.translation.z += speed * time.delta_secs();
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    }
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    if keyboard.pressed(KeyCode::ArrowUp) {
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        listeners.translation.z -= speed * time.delta_secs();
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    }
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}
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fn mute(keyboard_input: Res<ButtonInput<KeyCode>>, mut sinks: Query<&mut SpatialAudioSink>) {
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    if keyboard_input.just_pressed(KeyCode::KeyM) {
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        for mut sink in sinks.iter_mut() {
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            sink.toggle_mute();
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        }
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    }
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}
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