
# Objective - Update winit dependency to 0.29 ## Changelog ### KeyCode changes - Removed `ScanCode`, as it was [replaced by KeyCode](https://github.com/rust-windowing/winit/blob/master/CHANGELOG.md#0292). - `ReceivedCharacter.char` is now a `SmolStr`, [relevant doc](https://docs.rs/winit/latest/winit/event/struct.KeyEvent.html#structfield.text). - Changed most `KeyCode` values, and added more. KeyCode has changed meaning. With this PR, it refers to physical position on keyboard rather than the printed letter on keyboard keys. In practice this means: - On QWERTY keyboard layouts, nothing changes - On any other keyboard layout, `KeyCode` no longer reflects the label on key. - This is "good". In bevy 0.12, when you used WASD for movement, users with non-QWERTY keyboards couldn't play your game! This was especially bad for non-latin keyboards. Now, WASD represents the physical keys. A French player will press the ZQSD keys, which are near each other, Kyrgyz players will use "Цфыв". - This is "bad" as well. You can't know in advance what the label of the key for input is. Your UI says "press WASD to move", even if in reality, they should be pressing "ZQSD" or "Цфыв". You also no longer can use `KeyCode` for text inputs. In any case, it was a pretty bad API for text input. You should use `ReceivedCharacter` now instead. ### Other changes - Use `web-time` rather than `instant` crate. (https://github.com/rust-windowing/winit/pull/2836) - winit did split `run_return` in `run_onDemand` and `pump_events`, I did the same change in bevy_winit and used `pump_events`. - Removed `return_from_run` from `WinitSettings` as `winit::run` now returns on supported platforms. - I left the example "return_after_run" as I think it's still useful. - This winit change is done partly to allow to create a new window after quitting all windows: https://github.com/emilk/egui/issues/1918 ; this PR doesn't address. - added `width` and `height` properties in the `canvas` from wasm example (https://github.com/bevyengine/bevy/pull/10702#discussion_r1420567168) ## Known regressions (important follow ups?) - Provide an API for reacting when a specific key from current layout was released. - possible solutions: use winit::Key from winit::KeyEvent ; mapping between KeyCode and Key ; or . - We don't receive characters through alt+numpad (e.g. alt + 151 = "ù") anymore ; reproduced on winit example "ime". maybe related to https://github.com/rust-windowing/winit/issues/2945 - (windows) Window content doesn't refresh at all when resizing. By reading https://github.com/rust-windowing/winit/issues/2900 ; I suspect we should just fire a `window.request_redraw();` from `AboutToWait`, and handle actual redrawing within `RedrawRequested`. I'm not sure how to move all that code so I'd appreciate it to be a follow up. - (windows) unreleased winit fix for using set_control_flow in AboutToWait https://github.com/rust-windowing/winit/issues/3215 ; ⚠️ I'm not sure what the implications are, but that feels bad 🤔 ## Follow up I'd like to avoid bloating this PR, here are a few follow up tasks worthy of a separate PR, or new issue to track them once this PR is closed, as they would either complicate reviews, or at risk of being controversial: - remove CanvasParentResizePlugin (https://github.com/bevyengine/bevy/pull/10702#discussion_r1417068856) - avoid mentionning explicitly winit in docs from bevy_window ? - NamedKey integration on bevy_input: https://github.com/rust-windowing/winit/pull/3143 introduced a new NamedKey variant. I implemented it only on the converters but we'd benefit making the same changes to bevy_input. - Add more info in KeyboardInput https://github.com/bevyengine/bevy/pull/10702#pullrequestreview-1748336313 - https://github.com/bevyengine/bevy/pull/9905 added a workaround on a bug allegedly fixed by winit 0.29. We should check if it's still necessary. - update to raw_window_handle 0.6 - blocked by wgpu - Rename `KeyCode` to `PhysicalKeyCode` https://github.com/bevyengine/bevy/pull/10702#discussion_r1404595015 - remove `instant` dependency, [replaced by](https://github.com/rust-windowing/winit/pull/2836) `web_time`), we'd need to update to : - fastrand >= 2.0 - [`async-executor`](https://github.com/smol-rs/async-executor) >= 1.7 - [`futures-lite`](https://github.com/smol-rs/futures-lite) >= 2.0 - Verify license, see [discussion](https://github.com/bevyengine/bevy/pull/8745#discussion_r1402439800) - we might be missing a short notice or description of changes made - Consider using https://github.com/rust-windowing/cursor-icon directly rather than vendoring it in bevy. - investigate [this unwrap](https://github.com/bevyengine/bevy/pull/8745#discussion_r1387044986) (`winit_window.canvas().unwrap();`) - Use more good things about winit's update - https://github.com/bevyengine/bevy/pull/10689#issuecomment-1823560428 ## Migration Guide This PR should have one.
706 lines
20 KiB
Rust
706 lines
20 KiB
Rust
//! This examples compares Tonemapping options
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use bevy::{
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core_pipeline::tonemapping::Tonemapping,
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math::vec2,
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pbr::CascadeShadowConfigBuilder,
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prelude::*,
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reflect::TypePath,
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render::{
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render_resource::{AsBindGroup, Extent3d, ShaderRef, TextureDimension, TextureFormat},
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texture::{ImageSampler, ImageSamplerDescriptor},
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view::ColorGrading,
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},
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utils::HashMap,
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};
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use std::f32::consts::PI;
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fn main() {
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App::new()
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.add_plugins((
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DefaultPlugins,
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MaterialPlugin::<ColorGradientMaterial>::default(),
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))
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.insert_resource(CameraTransform(
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Transform::from_xyz(0.7, 0.7, 1.0).looking_at(Vec3::new(0.0, 0.3, 0.0), Vec3::Y),
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))
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.init_resource::<PerMethodSettings>()
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.insert_resource(CurrentScene(1))
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.insert_resource(SelectedParameter { value: 0, max: 4 })
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.add_systems(
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Startup,
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(
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setup,
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setup_basic_scene,
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setup_color_gradient_scene,
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setup_image_viewer_scene,
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),
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)
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.add_systems(
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Update,
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(
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update_image_viewer,
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toggle_scene,
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toggle_tonemapping_method,
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update_color_grading_settings,
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update_ui,
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),
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)
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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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camera_transform: Res<CameraTransform>,
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) {
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// camera
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commands.spawn((
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Camera3dBundle {
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camera: Camera {
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hdr: true,
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..default()
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},
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transform: camera_transform.0,
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..default()
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},
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FogSettings {
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color: Color::rgba_u8(43, 44, 47, 255),
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falloff: FogFalloff::Linear {
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start: 1.0,
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end: 8.0,
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},
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..default()
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},
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EnvironmentMapLight {
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diffuse_map: asset_server.load("environment_maps/pisa_diffuse_rgb9e5_zstd.ktx2"),
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specular_map: asset_server.load("environment_maps/pisa_specular_rgb9e5_zstd.ktx2"),
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},
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));
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// ui
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commands.spawn(
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TextBundle::from_section(
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"",
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TextStyle {
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font_size: 18.0,
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..default()
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},
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)
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.with_style(Style {
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position_type: PositionType::Absolute,
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top: Val::Px(10.0),
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left: Val::Px(10.0),
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..default()
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}),
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);
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}
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fn setup_basic_scene(
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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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mut images: ResMut<Assets<Image>>,
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asset_server: Res<AssetServer>,
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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(50.0).into()),
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material: materials.add(Color::rgb(0.1, 0.2, 0.1).into()),
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..default()
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},
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SceneNumber(1),
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));
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// cubes
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let cube_material = materials.add(StandardMaterial {
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base_color_texture: Some(images.add(uv_debug_texture())),
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..default()
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});
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let cube_mesh = meshes.add(Mesh::from(shape::Cube { size: 0.25 }));
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for i in 0..5 {
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commands.spawn((
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PbrBundle {
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mesh: cube_mesh.clone(),
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material: cube_material.clone(),
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transform: Transform::from_xyz(i as f32 * 0.25 - 1.0, 0.125, -i as f32 * 0.5),
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..default()
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},
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SceneNumber(1),
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));
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}
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// spheres
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let sphere_mesh = meshes.add(Mesh::from(shape::UVSphere {
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radius: 0.125,
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..default()
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}));
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for i in 0..6 {
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let j = i % 3;
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let s_val = if i < 3 { 0.0 } else { 0.2 };
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let material = if j == 0 {
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materials.add(StandardMaterial {
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base_color: Color::rgb(s_val, s_val, 1.0),
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perceptual_roughness: 0.089,
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metallic: 0.0,
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..default()
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})
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} else if j == 1 {
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materials.add(StandardMaterial {
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base_color: Color::rgb(s_val, 1.0, s_val),
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perceptual_roughness: 0.089,
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metallic: 0.0,
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..default()
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})
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} else {
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materials.add(StandardMaterial {
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base_color: Color::rgb(1.0, s_val, s_val),
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perceptual_roughness: 0.089,
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metallic: 0.0,
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..default()
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})
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};
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commands.spawn((
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PbrBundle {
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mesh: sphere_mesh.clone(),
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material,
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transform: Transform::from_xyz(
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j as f32 * 0.25 + if i < 3 { -0.15 } else { 0.15 } - 0.4,
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0.125,
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-j as f32 * 0.25 + if i < 3 { -0.15 } else { 0.15 } + 0.4,
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),
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..default()
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},
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SceneNumber(1),
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));
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}
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// Flight Helmet
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commands.spawn((
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SceneBundle {
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scene: asset_server.load("models/FlightHelmet/FlightHelmet.gltf#Scene0"),
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transform: Transform::from_xyz(0.5, 0.0, -0.5)
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.with_rotation(Quat::from_rotation_y(-0.15 * PI)),
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..default()
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},
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SceneNumber(1),
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));
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// light
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commands.spawn((
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DirectionalLightBundle {
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directional_light: DirectionalLight {
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shadows_enabled: true,
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illuminance: 50000.0,
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..default()
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},
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transform: Transform::from_rotation(Quat::from_euler(
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EulerRot::ZYX,
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0.0,
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PI * -0.15,
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PI * -0.15,
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)),
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cascade_shadow_config: CascadeShadowConfigBuilder {
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maximum_distance: 3.0,
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first_cascade_far_bound: 0.9,
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..default()
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}
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.into(),
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..default()
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},
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SceneNumber(1),
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));
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}
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fn setup_color_gradient_scene(
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mut commands: Commands,
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mut meshes: ResMut<Assets<Mesh>>,
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mut materials: ResMut<Assets<ColorGradientMaterial>>,
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camera_transform: Res<CameraTransform>,
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) {
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let mut transform = camera_transform.0;
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transform.translation += transform.forward();
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commands.spawn((
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MaterialMeshBundle {
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mesh: meshes.add(Mesh::from(shape::Quad {
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size: vec2(1.0, 1.0) * 0.7,
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flip: false,
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})),
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material: materials.add(ColorGradientMaterial {}),
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transform,
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visibility: Visibility::Hidden,
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..default()
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},
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SceneNumber(2),
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));
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}
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fn setup_image_viewer_scene(
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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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camera_transform: Res<CameraTransform>,
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) {
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let mut transform = camera_transform.0;
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transform.translation += transform.forward();
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// exr/hdr viewer (exr requires enabling bevy feature)
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commands.spawn((
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PbrBundle {
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mesh: meshes.add(Mesh::from(shape::Quad {
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size: vec2(1.0, 1.0),
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flip: false,
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})),
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material: materials.add(StandardMaterial {
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base_color_texture: None,
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unlit: true,
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..default()
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}),
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transform,
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visibility: Visibility::Hidden,
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..default()
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},
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SceneNumber(3),
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HDRViewer,
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));
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commands
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.spawn((
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TextBundle::from_section(
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"Drag and drop an HDR or EXR file",
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TextStyle {
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font_size: 36.0,
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color: Color::BLACK,
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..default()
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},
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)
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.with_text_justify(JustifyText::Center)
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.with_style(Style {
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align_self: AlignSelf::Center,
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margin: UiRect::all(Val::Auto),
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..default()
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}),
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SceneNumber(3),
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))
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.insert(Visibility::Hidden);
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}
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// ----------------------------------------------------------------------------
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#[allow(clippy::too_many_arguments)]
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fn update_image_viewer(
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image_mesh: Query<(&Handle<StandardMaterial>, &Handle<Mesh>), With<HDRViewer>>,
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text: Query<Entity, (With<Text>, With<SceneNumber>)>,
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mut materials: ResMut<Assets<StandardMaterial>>,
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mut meshes: ResMut<Assets<Mesh>>,
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images: Res<Assets<Image>>,
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mut drop_events: EventReader<FileDragAndDrop>,
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mut drop_hovered: Local<bool>,
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asset_server: Res<AssetServer>,
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mut image_events: EventReader<AssetEvent<Image>>,
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mut commands: Commands,
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) {
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let mut new_image: Option<Handle<Image>> = None;
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for event in drop_events.read() {
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match event {
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FileDragAndDrop::DroppedFile { path_buf, .. } => {
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new_image = Some(asset_server.load(&path_buf.to_string_lossy().to_string()));
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*drop_hovered = false;
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}
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FileDragAndDrop::HoveredFile { .. } => *drop_hovered = true,
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FileDragAndDrop::HoveredFileCanceled { .. } => *drop_hovered = false,
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}
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}
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for (mat_h, mesh_h) in &image_mesh {
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if let Some(mat) = materials.get_mut(mat_h) {
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if let Some(ref new_image) = new_image {
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mat.base_color_texture = Some(new_image.clone());
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if let Ok(text_entity) = text.get_single() {
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commands.entity(text_entity).despawn();
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}
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}
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for event in image_events.read() {
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let image_changed_id = *match event {
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AssetEvent::Added { id } | AssetEvent::Modified { id } => id,
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_ => continue,
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};
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if let Some(base_color_texture) = mat.base_color_texture.clone() {
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if image_changed_id == base_color_texture.id() {
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if let Some(image_changed) = images.get(image_changed_id) {
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let size = image_changed.size_f32().normalize_or_zero() * 1.4;
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// Resize Mesh
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let quad = Mesh::from(shape::Quad::new(size));
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meshes.insert(mesh_h, quad);
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}
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}
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}
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}
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}
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}
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}
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fn toggle_scene(
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keys: Res<ButtonInput<KeyCode>>,
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mut query: Query<(&mut Visibility, &SceneNumber)>,
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mut current_scene: ResMut<CurrentScene>,
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) {
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let mut pressed = None;
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if keys.just_pressed(KeyCode::KeyQ) {
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pressed = Some(1);
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} else if keys.just_pressed(KeyCode::KeyW) {
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pressed = Some(2);
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} else if keys.just_pressed(KeyCode::KeyE) {
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pressed = Some(3);
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}
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if let Some(pressed) = pressed {
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current_scene.0 = pressed;
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for (mut visibility, scene) in query.iter_mut() {
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if scene.0 == pressed {
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*visibility = Visibility::Visible;
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} else {
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*visibility = Visibility::Hidden;
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}
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}
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}
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}
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fn toggle_tonemapping_method(
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keys: Res<ButtonInput<KeyCode>>,
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mut tonemapping: Query<&mut Tonemapping>,
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mut color_grading: Query<&mut ColorGrading>,
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per_method_settings: Res<PerMethodSettings>,
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) {
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let mut method = tonemapping.single_mut();
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let mut color_grading = color_grading.single_mut();
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if keys.just_pressed(KeyCode::Digit1) {
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*method = Tonemapping::None;
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} else if keys.just_pressed(KeyCode::Digit2) {
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*method = Tonemapping::Reinhard;
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} else if keys.just_pressed(KeyCode::Digit3) {
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*method = Tonemapping::ReinhardLuminance;
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} else if keys.just_pressed(KeyCode::Digit4) {
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*method = Tonemapping::AcesFitted;
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} else if keys.just_pressed(KeyCode::Digit5) {
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*method = Tonemapping::AgX;
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} else if keys.just_pressed(KeyCode::Digit6) {
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*method = Tonemapping::SomewhatBoringDisplayTransform;
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} else if keys.just_pressed(KeyCode::Digit7) {
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*method = Tonemapping::TonyMcMapface;
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} else if keys.just_pressed(KeyCode::Digit8) {
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*method = Tonemapping::BlenderFilmic;
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}
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*color_grading = *per_method_settings
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.settings
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.get::<Tonemapping>(&method)
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.unwrap();
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}
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#[derive(Resource)]
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struct SelectedParameter {
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value: i32,
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max: i32,
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}
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impl SelectedParameter {
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fn next(&mut self) {
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self.value = (self.value + 1).rem_euclid(self.max);
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}
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fn prev(&mut self) {
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self.value = (self.value - 1).rem_euclid(self.max);
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}
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}
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fn update_color_grading_settings(
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keys: Res<ButtonInput<KeyCode>>,
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time: Res<Time>,
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mut per_method_settings: ResMut<PerMethodSettings>,
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tonemapping: Query<&Tonemapping>,
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current_scene: Res<CurrentScene>,
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mut selected_parameter: ResMut<SelectedParameter>,
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) {
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let method = tonemapping.single();
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let color_grading = per_method_settings.settings.get_mut(method).unwrap();
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let mut dt = time.delta_seconds() * 0.25;
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if keys.pressed(KeyCode::ArrowLeft) {
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dt = -dt;
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}
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if keys.just_pressed(KeyCode::ArrowDown) {
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selected_parameter.next();
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}
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if keys.just_pressed(KeyCode::ArrowUp) {
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selected_parameter.prev();
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}
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if keys.pressed(KeyCode::ArrowLeft) || keys.pressed(KeyCode::ArrowRight) {
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match selected_parameter.value {
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0 => {
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|
color_grading.exposure += dt;
|
|
}
|
|
1 => {
|
|
color_grading.gamma += dt;
|
|
}
|
|
2 => {
|
|
color_grading.pre_saturation += dt;
|
|
}
|
|
3 => {
|
|
color_grading.post_saturation += dt;
|
|
}
|
|
_ => {}
|
|
}
|
|
}
|
|
|
|
if keys.just_pressed(KeyCode::Space) {
|
|
for (_, grading) in per_method_settings.settings.iter_mut() {
|
|
*grading = ColorGrading::default();
|
|
}
|
|
}
|
|
|
|
if keys.just_pressed(KeyCode::Enter) && current_scene.0 == 1 {
|
|
for (mapper, grading) in per_method_settings.settings.iter_mut() {
|
|
*grading = PerMethodSettings::basic_scene_recommendation(*mapper);
|
|
}
|
|
}
|
|
}
|
|
|
|
fn update_ui(
|
|
mut text: Query<&mut Text, Without<SceneNumber>>,
|
|
settings: Query<(&Tonemapping, &ColorGrading)>,
|
|
current_scene: Res<CurrentScene>,
|
|
selected_parameter: Res<SelectedParameter>,
|
|
mut hide_ui: Local<bool>,
|
|
keys: Res<ButtonInput<KeyCode>>,
|
|
) {
|
|
let (method, color_grading) = settings.single();
|
|
let method = *method;
|
|
|
|
let mut text = text.single_mut();
|
|
let text = &mut text.sections[0].value;
|
|
|
|
if keys.just_pressed(KeyCode::KeyH) {
|
|
*hide_ui = !*hide_ui;
|
|
}
|
|
text.clear();
|
|
if *hide_ui {
|
|
return;
|
|
}
|
|
|
|
let scn = current_scene.0;
|
|
text.push_str("(H) Hide UI\n\n");
|
|
text.push_str("Test Scene: \n");
|
|
text.push_str(&format!(
|
|
"(Q) {} Basic Scene\n",
|
|
if scn == 1 { ">" } else { "" }
|
|
));
|
|
text.push_str(&format!(
|
|
"(W) {} Color Sweep\n",
|
|
if scn == 2 { ">" } else { "" }
|
|
));
|
|
text.push_str(&format!(
|
|
"(E) {} Image Viewer\n",
|
|
if scn == 3 { ">" } else { "" }
|
|
));
|
|
|
|
text.push_str("\n\nTonemapping Method:\n");
|
|
text.push_str(&format!(
|
|
"(1) {} Disabled\n",
|
|
if method == Tonemapping::None { ">" } else { "" }
|
|
));
|
|
text.push_str(&format!(
|
|
"(2) {} Reinhard\n",
|
|
if method == Tonemapping::Reinhard {
|
|
"> "
|
|
} else {
|
|
""
|
|
}
|
|
));
|
|
text.push_str(&format!(
|
|
"(3) {} Reinhard Luminance\n",
|
|
if method == Tonemapping::ReinhardLuminance {
|
|
">"
|
|
} else {
|
|
""
|
|
}
|
|
));
|
|
text.push_str(&format!(
|
|
"(4) {} ACES Fitted\n",
|
|
if method == Tonemapping::AcesFitted {
|
|
">"
|
|
} else {
|
|
""
|
|
}
|
|
));
|
|
text.push_str(&format!(
|
|
"(5) {} AgX\n",
|
|
if method == Tonemapping::AgX { ">" } else { "" }
|
|
));
|
|
text.push_str(&format!(
|
|
"(6) {} SomewhatBoringDisplayTransform\n",
|
|
if method == Tonemapping::SomewhatBoringDisplayTransform {
|
|
">"
|
|
} else {
|
|
""
|
|
}
|
|
));
|
|
text.push_str(&format!(
|
|
"(7) {} TonyMcMapface\n",
|
|
if method == Tonemapping::TonyMcMapface {
|
|
">"
|
|
} else {
|
|
""
|
|
}
|
|
));
|
|
text.push_str(&format!(
|
|
"(8) {} Blender Filmic\n",
|
|
if method == Tonemapping::BlenderFilmic {
|
|
">"
|
|
} else {
|
|
""
|
|
}
|
|
));
|
|
|
|
text.push_str("\n\nColor Grading:\n");
|
|
text.push_str("(arrow keys)\n");
|
|
if selected_parameter.value == 0 {
|
|
text.push_str("> ");
|
|
}
|
|
text.push_str(&format!("Exposure: {}\n", color_grading.exposure));
|
|
if selected_parameter.value == 1 {
|
|
text.push_str("> ");
|
|
}
|
|
text.push_str(&format!("Gamma: {}\n", color_grading.gamma));
|
|
if selected_parameter.value == 2 {
|
|
text.push_str("> ");
|
|
}
|
|
text.push_str(&format!(
|
|
"PreSaturation: {}\n",
|
|
color_grading.pre_saturation
|
|
));
|
|
if selected_parameter.value == 3 {
|
|
text.push_str("> ");
|
|
}
|
|
text.push_str(&format!(
|
|
"PostSaturation: {}\n",
|
|
color_grading.post_saturation
|
|
));
|
|
text.push_str("(Space) Reset all to default\n");
|
|
|
|
if current_scene.0 == 1 {
|
|
text.push_str("(Enter) Reset all to scene recommendation\n");
|
|
}
|
|
}
|
|
|
|
// ----------------------------------------------------------------------------
|
|
|
|
#[derive(Resource)]
|
|
struct PerMethodSettings {
|
|
settings: HashMap<Tonemapping, ColorGrading>,
|
|
}
|
|
|
|
impl PerMethodSettings {
|
|
fn basic_scene_recommendation(method: Tonemapping) -> ColorGrading {
|
|
match method {
|
|
Tonemapping::Reinhard | Tonemapping::ReinhardLuminance => ColorGrading {
|
|
exposure: 0.5,
|
|
..default()
|
|
},
|
|
Tonemapping::AcesFitted => ColorGrading {
|
|
exposure: 0.35,
|
|
..default()
|
|
},
|
|
Tonemapping::AgX => ColorGrading {
|
|
exposure: -0.2,
|
|
gamma: 1.0,
|
|
pre_saturation: 1.1,
|
|
post_saturation: 1.1,
|
|
},
|
|
_ => ColorGrading::default(),
|
|
}
|
|
}
|
|
}
|
|
|
|
impl Default for PerMethodSettings {
|
|
fn default() -> Self {
|
|
let mut settings = HashMap::new();
|
|
|
|
for method in [
|
|
Tonemapping::None,
|
|
Tonemapping::Reinhard,
|
|
Tonemapping::ReinhardLuminance,
|
|
Tonemapping::AcesFitted,
|
|
Tonemapping::AgX,
|
|
Tonemapping::SomewhatBoringDisplayTransform,
|
|
Tonemapping::TonyMcMapface,
|
|
Tonemapping::BlenderFilmic,
|
|
] {
|
|
settings.insert(
|
|
method,
|
|
PerMethodSettings::basic_scene_recommendation(method),
|
|
);
|
|
}
|
|
|
|
Self { settings }
|
|
}
|
|
}
|
|
|
|
/// Creates a colorful test pattern
|
|
fn uv_debug_texture() -> Image {
|
|
const TEXTURE_SIZE: usize = 8;
|
|
|
|
let mut palette: [u8; 32] = [
|
|
255, 102, 159, 255, 255, 159, 102, 255, 236, 255, 102, 255, 121, 255, 102, 255, 102, 255,
|
|
198, 255, 102, 198, 255, 255, 121, 102, 255, 255, 236, 102, 255, 255,
|
|
];
|
|
|
|
let mut texture_data = [0; TEXTURE_SIZE * TEXTURE_SIZE * 4];
|
|
for y in 0..TEXTURE_SIZE {
|
|
let offset = TEXTURE_SIZE * y * 4;
|
|
texture_data[offset..(offset + TEXTURE_SIZE * 4)].copy_from_slice(&palette);
|
|
palette.rotate_right(4);
|
|
}
|
|
|
|
let mut img = Image::new_fill(
|
|
Extent3d {
|
|
width: TEXTURE_SIZE as u32,
|
|
height: TEXTURE_SIZE as u32,
|
|
depth_or_array_layers: 1,
|
|
},
|
|
TextureDimension::D2,
|
|
&texture_data,
|
|
TextureFormat::Rgba8UnormSrgb,
|
|
);
|
|
img.sampler = ImageSampler::Descriptor(ImageSamplerDescriptor::default());
|
|
img
|
|
}
|
|
|
|
impl Material for ColorGradientMaterial {
|
|
fn fragment_shader() -> ShaderRef {
|
|
"shaders/tonemapping_test_patterns.wgsl".into()
|
|
}
|
|
}
|
|
|
|
#[derive(Asset, TypePath, AsBindGroup, Debug, Clone)]
|
|
pub struct ColorGradientMaterial {}
|
|
|
|
#[derive(Resource)]
|
|
struct CameraTransform(Transform);
|
|
|
|
#[derive(Resource)]
|
|
struct CurrentScene(u32);
|
|
|
|
#[derive(Component)]
|
|
struct SceneNumber(u32);
|
|
|
|
#[derive(Component)]
|
|
struct HDRViewer;
|