444 lines
12 KiB
Rust
444 lines
12 KiB
Rust
use color_eyre::eyre::Result;
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use glam::Quat;
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use manifest_dir_macros::directory_relative_path;
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use mint::Vector3;
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use protostar::{
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application::Application,
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xdg::{get_desktop_files, parse_desktop_file, DesktopFile, Icon, IconType},
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};
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use stardust_xr_fusion::{
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client::{Client, FrameInfo, RootHandler},
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core::values::Transform,
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drawable::{Alignment, Bounds, MaterialParameter, Model, ResourceID, Text, TextFit, TextStyle},
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fields::BoxField,
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node::NodeError,
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node::NodeType,
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spatial::Spatial,
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};
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use stardust_xr_molecules::{touch_plane::TouchPlane, GrabData, Grabbable};
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use std::f32::consts::PI;
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use tween::TweenTime;
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use tween::{QuartInOut, Tweener};
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const APP_SIZE: f32 = 0.06;
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const PADDING: f32 = 0.005;
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const ACTIVATION_DISTANCE: f32 = 0.5;
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#[derive(Clone)]
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struct Hex {
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q: isize,
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r: isize,
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s: isize,
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}
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const HEX_CENTER: Hex = Hex { q: 0, r: 0, s: 0 };
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const HEX_DIRECTION_VECTORS: [Hex; 6] = [
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Hex { q: 1, r: 0, s: -1 },
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Hex { q: 1, r: -1, s: 0 },
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Hex { q: 0, r: -1, s: 1 },
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Hex { q: -1, r: 0, s: 1 },
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Hex { q: -1, r: 1, s: 0 },
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Hex { q: 0, r: 1, s: -1 },
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];
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impl Hex {
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fn new(q: isize, r: isize, s: isize) -> Self {
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Hex { q, r, s }
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}
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fn get_coords(&self) -> [f32; 3] {
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let x = 3.0 / 2.0 * (APP_SIZE + PADDING) / 2.0 * (-self.q - self.s).to_f32();
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let y = 3.0_f32.sqrt() * (APP_SIZE + PADDING) / 2.0
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* ((-self.q - self.s).to_f32() / 2.0 + self.s.to_f32());
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[x, y, 0.0]
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}
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fn add(self, vec: &Hex) -> Self {
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Hex::new(self.q + vec.q, self.r + vec.r, self.s + vec.s)
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}
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fn neighbor(self, direction: usize) -> Self {
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self.add(&HEX_DIRECTION_VECTORS[direction])
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}
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fn scale(self, factor: isize) -> Self {
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Hex::new(self.q * factor, self.r * factor, self.s * factor)
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}
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}
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#[tokio::main(flavor = "current_thread")]
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async fn main() -> Result<()> {
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color_eyre::install().unwrap();
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tracing_subscriber::fmt()
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.with_env_filter(tracing_subscriber::EnvFilter::from_default_env())
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.pretty()
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.init();
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let (client, event_loop) = Client::connect_with_async_loop().await?;
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client.set_base_prefixes(&[directory_relative_path!("res")]);
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let _root = client.wrap_root(AppHexGrid::new(&client))?;
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tokio::select! {
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_ = tokio::signal::ctrl_c() => (),
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e = event_loop => e??,
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};
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Ok(())
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}
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struct AppHexGrid {
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apps: Vec<App>,
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button: Button,
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}
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impl AppHexGrid {
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fn new(client: &Client) -> Self {
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let button = Button::new(client).unwrap();
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let mut desktop_files: Vec<DesktopFile> = get_desktop_files()
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.into_iter()
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.filter_map(|d| parse_desktop_file(d).ok())
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.filter(|d| !d.no_display)
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.collect();
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desktop_files.sort_by_key(|d| d.clone().name.unwrap());
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let mut apps = Vec::new();
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let mut radius = 1;
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while !desktop_files.is_empty() {
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let mut hex = HEX_CENTER.add(&HEX_DIRECTION_VECTORS[4].clone().scale(radius));
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for i in 0..6 {
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if desktop_files.is_empty() {
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break;
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};
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for _ in 0..radius {
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if desktop_files.is_empty() {
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break;
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};
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apps.push(
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App::create_from_desktop_file(
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button.grabbable.content_parent(),
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hex.get_coords(),
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desktop_files.pop().unwrap(),
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)
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.unwrap(),
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);
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hex = hex.neighbor(i);
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}
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}
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radius += 1;
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}
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AppHexGrid { apps, button }
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}
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}
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impl RootHandler for AppHexGrid {
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fn frame(&mut self, info: FrameInfo) {
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self.button.frame(info);
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if self.button.touch_plane.touch_started() {
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let color = [0.0, 1.0, 0.0, 1.0];
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self.button
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.model
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.model_part("Hex")
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.unwrap()
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.set_material_parameter("color", MaterialParameter::Color(color))
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.unwrap();
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for app in &mut self.apps {
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app.toggle();
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}
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} else if self.button.touch_plane.touch_stopped() {
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let color = [0.0, 0.0, 1.0, 1.0];
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self.button
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.model
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.model_part("Hex")
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.unwrap()
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.set_material_parameter("color", MaterialParameter::Color(color))
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.unwrap();
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}
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for app in &mut self.apps {
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app.frame(info);
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}
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}
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}
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struct Button {
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touch_plane: TouchPlane,
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grabbable: Grabbable,
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model: Model,
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}
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impl Button {
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fn new(client: &Client) -> Result<Self, NodeError> {
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let field = BoxField::create(client.get_root(), Transform::default(), [APP_SIZE; 3])?;
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let grabbable = Grabbable::create(
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client.get_root(),
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Transform::default(),
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&field,
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GrabData {
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max_distance: 0.01,
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..Default::default()
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},
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)?;
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field.set_spatial_parent(grabbable.content_parent())?;
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let touch_plane = TouchPlane::create(
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grabbable.content_parent(),
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Transform::default(),
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[(APP_SIZE + PADDING) / 2.0; 2],
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(APP_SIZE + PADDING) / 2.0,
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0.0..1.0,
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0.0..1.0,
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)?;
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let model = Model::create(
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grabbable.content_parent(),
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Transform::from_rotation_scale(
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Quat::from_rotation_x(PI / 2.0) * Quat::from_rotation_y(PI),
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[0.03, 0.03, 0.03],
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),
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&ResourceID::new_namespaced("protostar", "hexagon/hexagon"),
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)?;
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model
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.model_part("Hex")?
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.set_material_parameter("color", MaterialParameter::Color([0.0, 0.0, 1.0, 1.0]))?;
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Ok(Button {
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touch_plane,
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grabbable,
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model,
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})
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}
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}
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impl RootHandler for Button {
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fn frame(&mut self, info: FrameInfo) {
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let _ = self.grabbable.update(&info);
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if self.grabbable.grab_action().actor_started() {
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let _ = self.touch_plane.set_enabled(false);
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}
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if self.grabbable.grab_action().actor_stopped() {
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let _ = self.touch_plane.set_enabled(true);
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}
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self.touch_plane.update();
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}
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}
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fn model_from_icon(parent: &Spatial, icon: &Icon) -> Result<Model> {
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return match &icon.icon_type {
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IconType::Png => {
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let t = Transform::from_rotation_scale(
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Quat::from_rotation_x(PI / 2.0) * Quat::from_rotation_y(PI),
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[APP_SIZE * 0.5; 3],
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);
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let model = Model::create(
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parent,
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t,
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&ResourceID::new_namespaced("protostar", "hexagon/hexagon"),
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)?;
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model
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.model_part("Hex")?
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.set_material_parameter("color", MaterialParameter::Color([0.0, 1.0, 1.0, 1.0]))?;
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model.model_part("Icon")?.set_material_parameter(
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"diffuse",
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MaterialParameter::Texture(ResourceID::Direct(icon.path.clone())),
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)?;
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Ok(model)
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}
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IconType::Gltf => Ok(Model::create(
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parent,
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Transform::from_scale([0.05; 3]),
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&ResourceID::new_direct(icon.path.clone())?,
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)?),
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_ => panic!("Invalid Icon Type"),
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};
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}
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pub struct App {
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application: Application,
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parent: Spatial,
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position: Vector3<f32>,
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grabbable: Grabbable,
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_field: BoxField,
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icon: Model,
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label: Option<Text>,
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grabbable_shrink: Option<Tweener<f32, f64, QuartInOut>>,
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grabbable_grow: Option<Tweener<f32, f64, QuartInOut>>,
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grabbable_move: Option<Tweener<f32, f64, QuartInOut>>,
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currently_shown: bool,
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}
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impl App {
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pub fn create_from_desktop_file(
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parent: &Spatial,
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position: impl Into<Vector3<f32>>,
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desktop_file: DesktopFile,
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) -> Result<Self> {
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let position = position.into();
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let field = BoxField::create(parent, Transform::default(), [APP_SIZE; 3])?;
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let application = Application::create(&parent.client()?, desktop_file)?;
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let icon = application.icon(128, false);
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let grabbable = Grabbable::create(
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parent,
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Transform::from_position(position),
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&field,
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GrabData {
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max_distance: 0.01,
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frame_cancel_threshold: 50,
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..Default::default()
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},
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)?;
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grabbable.content_parent().set_spatial_parent(parent)?;
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field.set_spatial_parent(grabbable.content_parent())?;
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let icon = icon
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.map(|i| model_from_icon(grabbable.content_parent(), &i))
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.unwrap_or_else(|| {
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Ok(Model::create(
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grabbable.content_parent(),
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Transform::from_rotation_scale(
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Quat::from_rotation_x(PI / 2.0) * Quat::from_rotation_y(PI),
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[APP_SIZE * 0.5; 3],
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),
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&ResourceID::new_namespaced("protostar", "hexagon/hexagon"),
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)?)
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})?;
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let label_style = TextStyle {
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character_height: APP_SIZE * 2.0,
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bounds: Some(Bounds {
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bounds: [1.0; 2].into(),
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fit: TextFit::Wrap,
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bounds_align: Alignment::XCenter | Alignment::YCenter,
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}),
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text_align: Alignment::Center.into(),
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..Default::default()
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};
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let label = application.name().and_then(|name| {
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Text::create(
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&icon,
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Transform::from_position_rotation(
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[0.0, 0.1, -(APP_SIZE * 4.0)],
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Quat::from_rotation_x(PI * 0.5),
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),
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name,
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label_style,
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)
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.ok()
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});
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Ok(App {
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parent: parent.alias(),
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position,
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grabbable,
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_field: field,
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label,
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application,
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icon,
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grabbable_shrink: None,
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grabbable_grow: None,
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grabbable_move: None,
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currently_shown: true,
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})
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}
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pub fn content_parent(&self) -> &Spatial {
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self.grabbable.content_parent()
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}
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pub fn toggle(&mut self) {
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self.grabbable.set_enabled(!self.currently_shown).unwrap();
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if self.currently_shown {
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self.grabbable_move = Some(Tweener::quart_in_out(1.0, 0.0001, 0.25)); //TODO make the scale a parameter
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} else {
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self.icon.set_enabled(true).unwrap();
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self.label.as_ref().map(|l| l.set_enabled(true).unwrap());
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self.grabbable_move = Some(Tweener::quart_in_out(0.0001, 1.0, 0.25));
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}
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self.currently_shown = !self.currently_shown;
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}
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}
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impl RootHandler for App {
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fn frame(&mut self, info: FrameInfo) {
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let _ = self.grabbable.update(&info);
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if let Some(grabbable_move) = &mut self.grabbable_move {
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if !grabbable_move.is_finished() {
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let scale = grabbable_move.move_by(info.delta);
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self.grabbable
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.content_parent()
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.set_position(
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Some(&self.parent),
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[
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self.position.x * scale,
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self.position.y * scale,
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self.position.z * scale,
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],
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)
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.unwrap();
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} else {
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if grabbable_move.final_value() == 0.0001 {
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self.icon.set_enabled(false).unwrap();
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self.label.as_ref().map(|l| l.set_enabled(false).unwrap());
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}
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self.grabbable_move = None;
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}
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}
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if let Some(grabbable_shrink) = &mut self.grabbable_shrink {
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if !grabbable_shrink.is_finished() {
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let scale = grabbable_shrink.move_by(info.delta);
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self.grabbable
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.content_parent()
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.set_scale(Some(&self.parent), Vector3::from([scale; 3]))
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.unwrap();
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} else {
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self.grabbable
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.content_parent()
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.set_spatial_parent(&self.parent)
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.unwrap();
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if self.currently_shown {
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self.grabbable_grow = Some(Tweener::quart_in_out(0.0001, 1.0, 0.25));
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self.grabbable.cancel_angular_velocity();
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self.grabbable.cancel_linear_velocity();
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}
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self.grabbable_shrink = None;
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self.grabbable
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.content_parent()
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.set_position(Some(&self.parent), self.position)
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.unwrap();
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self.grabbable
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.content_parent()
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.set_rotation(Some(&self.parent), Quat::default())
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.unwrap();
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self.icon
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.set_rotation(
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None,
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Quat::from_rotation_x(PI / 2.0) * Quat::from_rotation_y(PI),
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)
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.unwrap();
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}
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} else if let Some(grabbable_grow) = &mut self.grabbable_grow {
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if !grabbable_grow.is_finished() {
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let scale = grabbable_grow.move_by(info.delta);
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self.grabbable
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.content_parent()
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.set_scale(Some(&self.parent), Vector3::from([scale; 3]))
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.unwrap();
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} else {
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self.grabbable
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.content_parent()
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.set_spatial_parent(&self.parent)
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.unwrap();
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self.grabbable_grow = None;
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}
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} else if self.grabbable.valid() && self.grabbable.grab_action().actor_stopped() {
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self.grabbable_shrink = Some(Tweener::quart_in_out(APP_SIZE * 0.5, 0.0001, 0.25));
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let Ok(distance_future) = self.grabbable
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.content_parent()
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.get_position_rotation_scale(&self.parent)
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else {return};
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let application = self.application.clone();
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let space = self.content_parent().alias();
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//TODO: split the executable string for the args
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tokio::task::spawn(async move {
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let distance_vector = distance_future.await.ok().unwrap().0;
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let distance = ((distance_vector.x.powi(2) + distance_vector.y.powi(2)).sqrt()
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+ distance_vector.z.powi(2))
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.sqrt();
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if dbg!(distance) > ACTIVATION_DISTANCE {
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let _ = application.launch(&space);
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}
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});
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}
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}
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}
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