2024-10-05 09:37:47 +02:00
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//! A simple 3D scene with light shining over a cube sitting on a plane.
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2024-10-05 08:41:37 +02:00
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use bevy::prelude::*;
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2024-10-05 12:17:55 +02:00
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//use bevy::render::*;
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2024-10-05 09:37:47 +02:00
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use bevy::math::*;
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2024-10-05 12:17:55 +02:00
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use std::fs::File;
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use std::io::Read;
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use serde::{Deserialize, Serialize};
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2024-10-05 12:55:18 +02:00
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use std::f64::consts::PI;
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2024-10-05 12:17:55 +02:00
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2024-10-05 14:12:31 +02:00
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#[derive(Serialize, Deserialize, Debug, Clone)]
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2024-10-05 12:17:55 +02:00
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struct StarData {
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#[serde(rename = "Dec")]
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dec: String,
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#[serde(rename = "HR")]
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hr: String,
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#[serde(rename = "K")]
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k: Option<String>,
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#[serde(rename = "RA")]
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ra: String,
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#[serde(rename = "V")]
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v: String,
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#[serde(rename = "C")]
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constellation: Option<String>, // Optional field
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#[serde(rename = "F")]
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f: Option<String>, // Optional field
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#[serde(rename = "B")]
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bayer_designation: Option<String>, // Optional field
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#[serde(rename = "N")]
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name: Option<String>, // Optional field
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}
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2024-10-05 16:21:57 +02:00
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#[derive(Resource, Default)]
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struct Sky {
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content: Vec<Constellation>, // or use a specific array size, e.g., [String; 10]
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}
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#[derive(Serialize, Deserialize, Debug, Clone)]
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struct Constellation {
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#[serde(rename = "Name")]
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name: String, // Name of the constellation
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#[serde(rename = "RAh")]
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rah: f64, // Right Ascension of the constellation in hours
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#[serde(rename = "DEd")]
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dec: f64, // Declination of the constellation in degrees
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stars: Vec<StarPos>, // List of stars in the constellation
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lines: Vec<[u32; 2]>, // Star connection lines as pairs of star IDs
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}
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#[derive(Serialize, Deserialize, Debug, Clone)]
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struct StarPos {
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id: usize,
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#[serde(rename = "bfID")]
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bfid: String,
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#[serde(rename = "RAh")]
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rah: f64,
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#[serde(rename = "DEd")]
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dec: f64,
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}
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2024-10-05 08:41:37 +02:00
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fn main() {
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App::new()
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.add_plugins(DefaultPlugins)
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.insert_resource(Sky::default())
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.add_systems(Startup, star_setup)
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.add_systems(Startup, cons_setup)
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.add_systems(Update, player_rotate)
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.run();
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}
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2024-10-05 09:46:57 +02:00
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#[derive(Component)]
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struct Star;
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#[derive(Component)]
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struct Player {
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target_rotation: Option<Quat>,
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}
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fn star_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.insert_resource(ClearColor(Color::BLACK));
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let stars = get_stars().unwrap();
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2024-10-05 14:12:31 +02:00
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let star_scale = 0.02;
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let sky_radius = 4.0;
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//let mesh = meshes.add(Cuboid::new(star_size, star_size, star_size));
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let star_mesh = meshes.add(Sphere::new(1.0).mesh().ico(3).unwrap());
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//let material = materials.add(Color::srgb(1.0, 1.0, 1.0));
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let star_material = materials.add(StandardMaterial {
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emissive: LinearRgba::rgb(1.0, 1.0, 1.0),
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..default()
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});
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for star in stars {
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let star_pos = star_position(star.clone()) * sky_radius;
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let star_mag = star.v.parse::<f32>().unwrap();
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let mut star_size = star_scale * 2.512f32.powf(-star_mag*0.5);
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if star.constellation.is_some() {
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star_size *= 1.5;
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}
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star_size = star_size.min(0.63*star_scale);
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commands.spawn((
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PbrBundle {
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mesh: star_mesh.clone(),
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material: star_material.clone(),
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transform: Transform::from_xyz(star_pos.x, star_pos.y, star_pos.z)
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.with_scale(Vec3::splat(star_size)),
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..default()
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},
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Star,
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));
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}
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2024-10-05 09:37:47 +02:00
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// camera
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commands.spawn((
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Camera3dBundle {
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transform: Transform::from_xyz(0.0, 0.0, 0.0),
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..default()
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},
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Player {
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target_rotation: Some(Quat::from_rotation_y(-1.5))
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},
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));
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}
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fn cons_setup(mut sky: ResMut<Sky>) {
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info!("setup");
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sky.content = get_cons().unwrap();
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}
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fn get_stars() -> std::io::Result<Vec<StarData>> {
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let mut file = File::open("data/stars.json")?;
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let mut data = String::new();
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file.read_to_string(&mut data)?;
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info!("###");
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2024-10-05 12:17:55 +02:00
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let stars: Vec<StarData> = serde_json::from_str(&data).unwrap();
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Ok(stars)
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}
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2024-10-05 16:21:57 +02:00
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fn get_cons() -> std::io::Result<Vec<Constellation>> {
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let mut file = File::open("data/constellations.json")?;
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let mut data = String::new();
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file.read_to_string(&mut data)?;
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info!("###");
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let sky_data: Vec<Constellation> = serde_json::from_str(&data).unwrap();
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Ok(sky_data)
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}
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2024-10-05 12:55:18 +02:00
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fn star_position(star_data: StarData) -> Vec3 {
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// Convert declination to decimal degrees
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let text_ra = star_data.ra;
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let text_dec = star_data.dec;
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let ra_seconds: f64 = 3600.0 * text_ra[0..2].parse::<f64>().unwrap()
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+ 60.0 * text_ra[4..6].parse::<f64>().unwrap()
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+ text_ra[8..12].parse::<f64>().unwrap();
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2024-10-05 12:55:18 +02:00
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// Parse Dec
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let formated_dec = text_dec
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.replace("°", " ")
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.replace("′", " ")
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.replace("″", " ");
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let dec_parts: Vec<&str> = formated_dec.split_whitespace().collect();
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let dec_deg: f64 = dec_parts[0].parse::<f64>().unwrap()
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+ dec_parts[1].parse::<f64>().unwrap() / 60.0
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+ dec_parts[2].parse::<f64>().unwrap() / 3600.0;
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2024-10-05 14:15:28 +02:00
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celestial_to_cartesian(ra_seconds/3600.0, dec_deg)
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}
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fn celestial_to_cartesian(rah: f64, ded: f64) -> Vec3 {
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let y_rot = 2.0 * PI * rah / 24.0;
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let x_rot = 2.0 * PI * ded / 360.0;
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let x : f32 = (y_rot.sin() * x_rot.cos()) as f32;
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let y : f32 = x_rot.sin() as f32;
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let z : f32 = (y_rot.cos() * x_rot.cos()) as f32;
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Vec3::new(x, y, z)
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}
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2024-10-05 16:21:57 +02:00
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fn player_rotate(
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keys: Res<ButtonInput<KeyCode>>,
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mut query: Query<(&Player, &Transform)>,
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mut commands: Commands,
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) {
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for (mut player, mut transform) in query.iter_mut() {
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if keys.just_pressed(KeyCode::Space) {
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info!("space");
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let target_rotation = Quat::from_euler(EulerRot::YXZ, 0.1, 0.5, 0.2);
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// Store the target rotation in a resource
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//player.target_rotation = Some(target_rotation);
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}
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// if let Some(target_rotation) = target_rotation {
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// // let current_rotation = transform.rotation;
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// // transform.rotation = current_rotation.slerp(target_rotation.0, 0.1);
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// info!("rotate");
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// }
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}
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}
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