bevy/examples/3d/spherical_area_lights.rs
JMS55 fcd7c0fc3d
Exposure settings (adopted) (#11347)
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>
2024-01-16 14:53:21 +00:00

74 lines
2.2 KiB
Rust

//! Demonstrates how lighting is affected by different radius of point lights.
use bevy::prelude::*;
fn main() {
App::new()
.add_plugins(DefaultPlugins)
.add_systems(Startup, setup)
.run();
}
fn setup(
mut commands: Commands,
mut meshes: ResMut<Assets<Mesh>>,
mut materials: ResMut<Assets<StandardMaterial>>,
) {
// camera
commands.spawn(Camera3dBundle {
transform: Transform::from_xyz(0.2, 1.5, 2.5).looking_at(Vec3::ZERO, Vec3::Y),
..default()
});
// plane
commands.spawn(PbrBundle {
mesh: meshes.add(shape::Plane::from_size(100.0)),
material: materials.add(StandardMaterial {
base_color: Color::rgb(0.2, 0.2, 0.2),
perceptual_roughness: 0.08,
..default()
}),
..default()
});
const COUNT: usize = 6;
let position_range = -2.0..2.0;
let radius_range = 0.0..0.4;
let pos_len = position_range.end - position_range.start;
let radius_len = radius_range.end - radius_range.start;
let mesh = meshes.add(shape::UVSphere {
sectors: 128,
stacks: 64,
..default()
});
for i in 0..COUNT {
let percent = i as f32 / COUNT as f32;
let radius = radius_range.start + percent * radius_len;
// sphere light
commands
.spawn(PbrBundle {
mesh: mesh.clone(),
material: materials.add(StandardMaterial {
base_color: Color::rgb(0.5, 0.5, 1.0),
unlit: true,
..default()
}),
transform: Transform::from_xyz(position_range.start + percent * pos_len, 0.3, 0.0)
.with_scale(Vec3::splat(radius)),
..default()
})
.with_children(|children| {
children.spawn(PointLightBundle {
point_light: PointLight {
intensity: 100_000.0,
radius,
color: Color::rgb(0.2, 0.2, 1.0),
..default()
},
..default()
});
});
}
}