 b6a647cc01
			
		
	
	
		b6a647cc01
		
	
	
	
	
		
			
			Adds a `default()` shorthand for `Default::default()` ... because life is too short to constantly type `Default::default()`.
```rust
use bevy::prelude::*;
#[derive(Default)]
struct Foo {
  bar: usize,
  baz: usize,
}
// Normally you would do this:
let foo = Foo {
  bar: 10,
  ..Default::default()
};
// But now you can do this:
let foo = Foo {
  bar: 10,
  ..default()
};
```
The examples have been adapted to use `..default()`. I've left internal crates as-is for now because they don't pull in the bevy prelude, and the ergonomics of each case should be considered individually.
		
	
			
		
			
				
	
	
		
			241 lines
		
	
	
		
			7.4 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			241 lines
		
	
	
		
			7.4 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
| use bevy::prelude::*;
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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_startup_system(setup)
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|         .add_system(movement)
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|         .add_system(animate_light_direction)
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|         .run();
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| }
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| 
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| #[derive(Component)]
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| struct Movable;
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| 
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| /// set up a simple 3D scene
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| fn setup(
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|     mut commands: Commands,
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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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|     // ground plane
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|     commands.spawn_bundle(PbrBundle {
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|         mesh: meshes.add(Mesh::from(shape::Plane { size: 10.0 })),
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|         material: materials.add(StandardMaterial {
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|             base_color: Color::WHITE,
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|             perceptual_roughness: 1.0,
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|             ..default()
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|         }),
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|         ..default()
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|     });
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| 
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|     // left wall
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|     let mut transform = Transform::from_xyz(2.5, 2.5, 0.0);
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|     transform.rotate(Quat::from_rotation_z(std::f32::consts::FRAC_PI_2));
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|     commands.spawn_bundle(PbrBundle {
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|         mesh: meshes.add(Mesh::from(shape::Box::new(5.0, 0.15, 5.0))),
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|         transform,
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|         material: materials.add(StandardMaterial {
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|             base_color: Color::INDIGO,
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|             perceptual_roughness: 1.0,
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|             ..default()
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|         }),
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|         ..default()
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|     });
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|     // back (right) wall
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|     let mut transform = Transform::from_xyz(0.0, 2.5, -2.5);
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|     transform.rotate(Quat::from_rotation_x(std::f32::consts::FRAC_PI_2));
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|     commands.spawn_bundle(PbrBundle {
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|         mesh: meshes.add(Mesh::from(shape::Box::new(5.0, 0.15, 5.0))),
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|         transform,
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|         material: materials.add(StandardMaterial {
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|             base_color: Color::INDIGO,
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|             perceptual_roughness: 1.0,
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|             ..default()
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|         }),
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|         ..default()
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|     });
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| 
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|     // cube
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|     commands
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|         .spawn_bundle(PbrBundle {
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|             mesh: meshes.add(Mesh::from(shape::Cube { size: 1.0 })),
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|             material: materials.add(StandardMaterial {
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|                 base_color: Color::PINK,
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|                 ..default()
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|             }),
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|             transform: Transform::from_xyz(0.0, 0.5, 0.0),
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|             ..default()
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|         })
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|         .insert(Movable);
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|     // sphere
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|     commands
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|         .spawn_bundle(PbrBundle {
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|             mesh: meshes.add(Mesh::from(shape::UVSphere {
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|                 radius: 0.5,
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|                 ..default()
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|             })),
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|             material: materials.add(StandardMaterial {
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|                 base_color: Color::LIME_GREEN,
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|                 ..default()
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|             }),
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|             transform: Transform::from_xyz(1.5, 1.0, 1.5),
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|             ..default()
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|         })
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|         .insert(Movable);
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| 
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|     // ambient light
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|     commands.insert_resource(AmbientLight {
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|         color: Color::ORANGE_RED,
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|         brightness: 0.02,
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|     });
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| 
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|     // red point light
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|     commands
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|         .spawn_bundle(PointLightBundle {
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|             // transform: Transform::from_xyz(5.0, 8.0, 2.0),
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|             transform: Transform::from_xyz(1.0, 2.0, 0.0),
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|             point_light: PointLight {
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|                 intensity: 1600.0, // lumens - roughly a 100W non-halogen incandescent bulb
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|                 color: Color::RED,
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|                 shadows_enabled: true,
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|                 ..default()
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|             },
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|             ..default()
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|         })
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|         .with_children(|builder| {
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|             builder.spawn_bundle(PbrBundle {
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|                 mesh: meshes.add(Mesh::from(shape::UVSphere {
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|                     radius: 0.1,
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|                     ..default()
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|                 })),
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|                 material: materials.add(StandardMaterial {
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|                     base_color: Color::RED,
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|                     emissive: Color::rgba_linear(100.0, 0.0, 0.0, 0.0),
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|                     ..default()
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|                 }),
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|                 ..default()
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|             });
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|         });
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| 
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|     // green point light
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|     commands
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|         .spawn_bundle(PointLightBundle {
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|             // transform: Transform::from_xyz(5.0, 8.0, 2.0),
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|             transform: Transform::from_xyz(-1.0, 2.0, 0.0),
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|             point_light: PointLight {
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|                 intensity: 1600.0, // lumens - roughly a 100W non-halogen incandescent bulb
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|                 color: Color::GREEN,
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|                 shadows_enabled: true,
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|                 ..default()
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|             },
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|             ..default()
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|         })
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|         .with_children(|builder| {
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|             builder.spawn_bundle(PbrBundle {
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|                 mesh: meshes.add(Mesh::from(shape::UVSphere {
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|                     radius: 0.1,
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|                     ..default()
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|                 })),
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|                 material: materials.add(StandardMaterial {
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|                     base_color: Color::GREEN,
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|                     emissive: Color::rgba_linear(0.0, 100.0, 0.0, 0.0),
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|                     ..default()
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|                 }),
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|                 ..default()
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|             });
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|         });
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| 
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|     // blue point light
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|     commands
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|         .spawn_bundle(PointLightBundle {
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|             // transform: Transform::from_xyz(5.0, 8.0, 2.0),
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|             transform: Transform::from_xyz(0.0, 4.0, 0.0),
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|             point_light: PointLight {
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|                 intensity: 1600.0, // lumens - roughly a 100W non-halogen incandescent bulb
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|                 color: Color::BLUE,
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|                 shadows_enabled: true,
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|                 ..default()
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|             },
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|             ..default()
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|         })
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|         .with_children(|builder| {
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|             builder.spawn_bundle(PbrBundle {
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|                 mesh: meshes.add(Mesh::from(shape::UVSphere {
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|                     radius: 0.1,
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|                     ..default()
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|                 })),
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|                 material: materials.add(StandardMaterial {
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|                     base_color: Color::BLUE,
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|                     emissive: Color::rgba_linear(0.0, 0.0, 100.0, 0.0),
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|                     ..default()
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|                 }),
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|                 ..default()
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|             });
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|         });
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| 
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|     // directional 'sun' light
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|     const HALF_SIZE: f32 = 10.0;
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|     commands.spawn_bundle(DirectionalLightBundle {
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|         directional_light: DirectionalLight {
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|             // Configure the projection to better fit the scene
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|             shadow_projection: OrthographicProjection {
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|                 left: -HALF_SIZE,
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|                 right: HALF_SIZE,
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|                 bottom: -HALF_SIZE,
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|                 top: HALF_SIZE,
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|                 near: -10.0 * HALF_SIZE,
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|                 far: 10.0 * HALF_SIZE,
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|                 ..default()
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|             },
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|             shadows_enabled: true,
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|             ..default()
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|         },
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|         transform: Transform {
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|             translation: Vec3::new(0.0, 2.0, 0.0),
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|             rotation: Quat::from_rotation_x(-std::f32::consts::FRAC_PI_4),
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|             ..default()
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|         },
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|         ..default()
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|     });
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| 
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|     // camera
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|     commands.spawn_bundle(PerspectiveCameraBundle {
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|         transform: Transform::from_xyz(-2.0, 2.5, 5.0).looking_at(Vec3::ZERO, Vec3::Y),
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|         ..default()
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|     });
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| }
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| 
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| fn animate_light_direction(
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|     time: Res<Time>,
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|     mut query: Query<&mut Transform, With<DirectionalLight>>,
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| ) {
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|     for mut transform in query.iter_mut() {
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|         transform.rotate(Quat::from_rotation_y(time.delta_seconds() * 0.5));
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|     }
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| }
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| 
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| fn movement(
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|     input: Res<Input<KeyCode>>,
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|     time: Res<Time>,
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|     mut query: Query<&mut Transform, With<Movable>>,
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| ) {
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|     for mut transform in query.iter_mut() {
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|         let mut direction = Vec3::ZERO;
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|         if input.pressed(KeyCode::Up) {
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|             direction.y += 1.0;
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|         }
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|         if input.pressed(KeyCode::Down) {
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|             direction.y -= 1.0;
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|         }
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|         if input.pressed(KeyCode::Left) {
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|             direction.x -= 1.0;
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|         }
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|         if input.pressed(KeyCode::Right) {
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|             direction.x += 1.0;
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|         }
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| 
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|         transform.translation += time.delta_seconds() * 2.0 * direction;
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|     }
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| }
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