mirror of
https://github.com/bevyengine/bevy
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fcd7c0fc3d
Rebased and finished version of https://github.com/bevyengine/bevy/pull/8407. Huge thanks to @GitGhillie for adjusting all the examples, and the many other people who helped write this PR (@superdump , @coreh , among others) :) Fixes https://github.com/bevyengine/bevy/issues/8369 --- ## Changelog - Added a `brightness` control to `Skybox`. - Added an `intensity` control to `EnvironmentMapLight`. - Added `ExposureSettings` and `PhysicalCameraParameters` for controlling exposure of 3D cameras. - Removed the baked-in `DirectionalLight` exposure Bevy previously hardcoded internally. ## Migration Guide - If using a `Skybox` or `EnvironmentMapLight`, use the new `brightness` and `intensity` controls to adjust their strength. - All 3D scene will now have different apparent brightnesses due to Bevy implementing proper exposure controls. You will have to adjust the intensity of your lights and/or your camera exposure via the new `ExposureSettings` component to compensate. --------- Co-authored-by: Robert Swain <robert.swain@gmail.com> Co-authored-by: GitGhillie <jillisnoordhoek@gmail.com> Co-authored-by: Marco Buono <thecoreh@gmail.com> Co-authored-by: vero <email@atlasdostal.com> Co-authored-by: atlas dostal <rodol@rivalrebels.com>
76 lines
2.1 KiB
Rust
76 lines
2.1 KiB
Rust
//! This example demonstrates how to use the `Camera::viewport_to_world` method.
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use bevy::prelude::*;
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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, draw_cursor)
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.run();
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}
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fn draw_cursor(
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camera_query: Query<(&Camera, &GlobalTransform)>,
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ground_query: Query<&GlobalTransform, With<Ground>>,
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windows: Query<&Window>,
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mut gizmos: Gizmos,
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) {
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let (camera, camera_transform) = camera_query.single();
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let ground = ground_query.single();
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let Some(cursor_position) = windows.single().cursor_position() else {
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return;
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};
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// Calculate a ray pointing from the camera into the world based on the cursor's position.
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let Some(ray) = camera.viewport_to_world(camera_transform, cursor_position) else {
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return;
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};
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// Calculate if and where the ray is hitting the ground plane.
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let Some(distance) =
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ray.intersect_plane(ground.translation(), primitives::Plane3d::new(ground.up()))
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else {
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return;
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};
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let point = ray.get_point(distance);
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// Draw a circle just above the ground plane at that position.
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gizmos.circle(point + ground.up() * 0.01, ground.up(), 0.2, Color::WHITE);
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}
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#[derive(Component)]
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struct Ground;
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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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// plane
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commands.spawn((
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PbrBundle {
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mesh: meshes.add(shape::Plane::from_size(20.)),
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material: materials.add(Color::rgb(0.3, 0.5, 0.3)),
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..default()
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},
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Ground,
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));
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// light
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commands.spawn(DirectionalLightBundle {
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transform: Transform::from_translation(Vec3::ONE).looking_at(Vec3::ZERO, Vec3::Y),
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directional_light: DirectionalLight {
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illuminance: 2000.0,
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..default()
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},
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..default()
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});
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// camera
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commands.spawn(Camera3dBundle {
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transform: Transform::from_xyz(15.0, 5.0, 15.0).looking_at(Vec3::ZERO, Vec3::Y),
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..default()
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});
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}
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