mirror of
https://github.com/bevyengine/bevy
synced 2024-11-23 13:13:49 +00:00
644bd5dbc6
# Objective Reduce the catch-all grab-bag of functionality in bevy_core by minimally splitting off time functionality into bevy_time. Functionality like that provided by #3002 would increase the complexity of bevy_time, so this is a good candidate for pulling into its own unit. A step in addressing #2931 and splitting bevy_core into more specific locations. ## Solution Pull the time module of bevy_core into a new crate, bevy_time. # Migration guide - Time related types (e.g. `Time`, `Timer`, `Stopwatch`, `FixedTimestep`, etc.) should be imported from `bevy::time::*` rather than `bevy::core::*`. - If you were adding `CorePlugin` manually, you'll also want to add `TimePlugin` from `bevy::time`. - The `bevy::core::CorePlugin::Time` system label is replaced with `bevy::time::TimeSystem`. Co-authored-by: Carter Anderson <mcanders1@gmail.com>
275 lines
8.3 KiB
Rust
275 lines
8.3 KiB
Rust
//! This example provides a 2D benchmark.
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//!
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//! Usage: spawn more entities by clicking on the screen.
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use bevy::{
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diagnostic::{Diagnostics, FrameTimeDiagnosticsPlugin, LogDiagnosticsPlugin},
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prelude::*,
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time::FixedTimestep,
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window::PresentMode,
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};
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use rand::{thread_rng, Rng};
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const BIRDS_PER_SECOND: u32 = 10000;
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const GRAVITY: f32 = -9.8 * 100.0;
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const MAX_VELOCITY: f32 = 750.;
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const BIRD_SCALE: f32 = 0.15;
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const HALF_BIRD_SIZE: f32 = 256. * BIRD_SCALE * 0.5;
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struct BevyCounter {
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pub count: usize,
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pub color: Color,
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}
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#[derive(Component)]
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struct Bird {
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velocity: Vec3,
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}
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fn main() {
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App::new()
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.insert_resource(WindowDescriptor {
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title: "BevyMark".to_string(),
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width: 800.,
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height: 600.,
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present_mode: PresentMode::Immediate,
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resizable: true,
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..default()
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})
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.add_plugins(DefaultPlugins)
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.add_plugin(FrameTimeDiagnosticsPlugin::default())
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.add_plugin(LogDiagnosticsPlugin::default())
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.insert_resource(BevyCounter {
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count: 0,
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color: Color::WHITE,
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})
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.add_startup_system(setup)
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.add_system(mouse_handler)
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.add_system(movement_system)
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.add_system(collision_system)
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.add_system(counter_system)
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.add_system_set(
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SystemSet::new()
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.with_run_criteria(FixedTimestep::step(0.2))
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.with_system(scheduled_spawner),
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)
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.run();
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}
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struct BirdScheduled {
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wave: usize,
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per_wave: usize,
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}
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fn scheduled_spawner(
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mut commands: Commands,
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windows: Res<Windows>,
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mut scheduled: ResMut<BirdScheduled>,
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mut counter: ResMut<BevyCounter>,
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bird_texture: Res<BirdTexture>,
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) {
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if scheduled.wave > 0 {
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spawn_birds(
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&mut commands,
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&windows,
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&mut counter,
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scheduled.per_wave,
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bird_texture.clone_weak(),
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);
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let mut rng = thread_rng();
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counter.color = Color::rgb_linear(rng.gen(), rng.gen(), rng.gen());
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scheduled.wave -= 1;
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}
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}
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#[derive(Deref)]
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struct BirdTexture(Handle<Image>);
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#[derive(Component)]
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struct StatsText;
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fn setup(mut commands: Commands, asset_server: Res<AssetServer>) {
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let texture = asset_server.load("branding/icon.png");
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commands.spawn_bundle(OrthographicCameraBundle::new_2d());
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commands.spawn_bundle(UiCameraBundle::default());
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commands
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.spawn_bundle(TextBundle {
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text: Text {
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sections: vec![
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TextSection {
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value: "Bird Count: ".to_string(),
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style: TextStyle {
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font: asset_server.load("fonts/FiraSans-Bold.ttf"),
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font_size: 40.0,
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color: Color::rgb(0.0, 1.0, 0.0),
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},
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},
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TextSection {
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value: "".to_string(),
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style: TextStyle {
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font: asset_server.load("fonts/FiraSans-Bold.ttf"),
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font_size: 40.0,
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color: Color::rgb(0.0, 1.0, 1.0),
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},
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},
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TextSection {
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value: "\nAverage FPS: ".to_string(),
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style: TextStyle {
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font: asset_server.load("fonts/FiraSans-Bold.ttf"),
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font_size: 40.0,
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color: Color::rgb(0.0, 1.0, 0.0),
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},
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},
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TextSection {
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value: "".to_string(),
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style: TextStyle {
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font: asset_server.load("fonts/FiraSans-Bold.ttf"),
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font_size: 40.0,
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color: Color::rgb(0.0, 1.0, 1.0),
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},
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},
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],
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..default()
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},
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style: Style {
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position_type: PositionType::Absolute,
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position: UiRect {
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top: Val::Px(5.0),
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left: Val::Px(5.0),
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..default()
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},
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..default()
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},
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..default()
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})
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.insert(StatsText);
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commands.insert_resource(BirdTexture(texture));
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commands.insert_resource(BirdScheduled {
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per_wave: std::env::args()
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.nth(1)
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.and_then(|arg| arg.parse::<usize>().ok())
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.unwrap_or_default(),
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wave: std::env::args()
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.nth(2)
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.and_then(|arg| arg.parse::<usize>().ok())
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.unwrap_or(1),
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});
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}
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fn mouse_handler(
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mut commands: Commands,
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time: Res<Time>,
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mouse_button_input: Res<Input<MouseButton>>,
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windows: Res<Windows>,
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bird_texture: Res<BirdTexture>,
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mut counter: ResMut<BevyCounter>,
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) {
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if mouse_button_input.just_released(MouseButton::Left) {
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let mut rng = thread_rng();
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counter.color = Color::rgb_linear(rng.gen(), rng.gen(), rng.gen());
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}
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if mouse_button_input.pressed(MouseButton::Left) {
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let spawn_count = (BIRDS_PER_SECOND as f64 * time.delta_seconds_f64()) as usize;
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spawn_birds(
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&mut commands,
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&windows,
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&mut counter,
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spawn_count,
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bird_texture.clone_weak(),
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);
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}
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}
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fn spawn_birds(
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commands: &mut Commands,
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windows: &Windows,
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counter: &mut BevyCounter,
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spawn_count: usize,
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texture: Handle<Image>,
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) {
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let window = windows.primary();
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let bird_x = (window.width() as f32 / -2.) + HALF_BIRD_SIZE;
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let bird_y = (window.height() as f32 / 2.) - HALF_BIRD_SIZE;
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let mut rng = thread_rng();
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for count in 0..spawn_count {
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let bird_z = (counter.count + count) as f32 * 0.00001;
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commands
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.spawn_bundle(SpriteBundle {
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texture: texture.clone(),
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transform: Transform {
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translation: Vec3::new(bird_x, bird_y, bird_z),
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scale: Vec3::splat(BIRD_SCALE),
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..default()
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},
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sprite: Sprite {
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color: counter.color,
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..default()
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},
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..default()
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})
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.insert(Bird {
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velocity: Vec3::new(
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rng.gen::<f32>() * MAX_VELOCITY - (MAX_VELOCITY * 0.5),
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0.,
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0.,
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),
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});
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}
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counter.count += spawn_count;
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}
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fn movement_system(time: Res<Time>, mut bird_query: Query<(&mut Bird, &mut Transform)>) {
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for (mut bird, mut transform) in bird_query.iter_mut() {
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transform.translation.x += bird.velocity.x * time.delta_seconds();
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transform.translation.y += bird.velocity.y * time.delta_seconds();
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bird.velocity.y += GRAVITY * time.delta_seconds();
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}
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}
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fn collision_system(windows: Res<Windows>, mut bird_query: Query<(&mut Bird, &Transform)>) {
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let window = windows.primary();
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let half_width = window.width() as f32 * 0.5;
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let half_height = window.height() as f32 * 0.5;
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for (mut bird, transform) in bird_query.iter_mut() {
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let x_vel = bird.velocity.x;
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let y_vel = bird.velocity.y;
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let x_pos = transform.translation.x;
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let y_pos = transform.translation.y;
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if (x_vel > 0. && x_pos + HALF_BIRD_SIZE > half_width)
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|| (x_vel <= 0. && x_pos - HALF_BIRD_SIZE < -(half_width))
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{
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bird.velocity.x = -x_vel;
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}
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if y_vel < 0. && y_pos - HALF_BIRD_SIZE < -half_height {
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bird.velocity.y = -y_vel;
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}
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if y_pos + HALF_BIRD_SIZE > half_height && y_vel > 0.0 {
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bird.velocity.y = 0.0;
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}
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}
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}
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fn counter_system(
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diagnostics: Res<Diagnostics>,
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counter: Res<BevyCounter>,
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mut query: Query<&mut Text, With<StatsText>>,
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) {
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let mut text = query.single_mut();
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if counter.is_changed() {
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text.sections[1].value = format!("{}", counter.count);
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}
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if let Some(fps) = diagnostics.get(FrameTimeDiagnosticsPlugin::FPS) {
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if let Some(average) = fps.average() {
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text.sections[3].value = format!("{:.2}", average);
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}
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};
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}
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