Showcase canvas image support in solar_system example
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0ceee1cf3a
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5 changed files with 40 additions and 22 deletions
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@ -7,7 +7,7 @@ publish = false
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[dependencies]
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[dependencies]
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iced.workspace = true
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iced.workspace = true
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iced.features = ["debug", "canvas", "tokio"]
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iced.features = ["debug", "canvas", "image", "tokio"]
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rand = "0.8.3"
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rand = "0.8.3"
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tracing-subscriber = "0.3"
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tracing-subscriber = "0.3"
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BIN
examples/solar_system/assets/earth.png
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BIN
examples/solar_system/assets/earth.png
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Binary file not shown.
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After Width: | Height: | Size: 90 KiB |
BIN
examples/solar_system/assets/moon.png
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BIN
examples/solar_system/assets/moon.png
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Binary file not shown.
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After Width: | Height: | Size: 103 KiB |
BIN
examples/solar_system/assets/sun.png
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BIN
examples/solar_system/assets/sun.png
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After Width: | Height: | Size: 112 KiB |
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@ -7,10 +7,9 @@
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//!
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//!
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//! [1]: https://developer.mozilla.org/en-US/docs/Web/API/Canvas_API/Tutorial/Basic_animations#An_animated_solar_system
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//! [1]: https://developer.mozilla.org/en-US/docs/Web/API/Canvas_API/Tutorial/Basic_animations#An_animated_solar_system
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use iced::mouse;
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use iced::mouse;
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use iced::widget::canvas;
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use iced::widget::canvas::gradient;
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use iced::widget::canvas::stroke::{self, Stroke};
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use iced::widget::canvas::stroke::{self, Stroke};
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use iced::widget::canvas::{Geometry, Path};
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use iced::widget::canvas::{Geometry, Path};
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use iced::widget::{canvas, image};
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use iced::window;
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use iced::window;
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use iced::{
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use iced::{
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Color, Element, Fill, Point, Rectangle, Renderer, Size, Subscription,
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Color, Element, Fill, Point, Rectangle, Renderer, Size, Subscription,
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@ -66,6 +65,9 @@ impl SolarSystem {
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#[derive(Debug)]
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#[derive(Debug)]
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struct State {
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struct State {
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sun: image::Handle,
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earth: image::Handle,
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moon: image::Handle,
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space_cache: canvas::Cache,
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space_cache: canvas::Cache,
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system_cache: canvas::Cache,
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system_cache: canvas::Cache,
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start: Instant,
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start: Instant,
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@ -85,6 +87,15 @@ impl State {
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let size = window::Settings::default().size;
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let size = window::Settings::default().size;
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State {
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State {
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sun: image::Handle::from_bytes(
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include_bytes!("../assets/sun.png").as_slice(),
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),
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earth: image::Handle::from_bytes(
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include_bytes!("../assets/earth.png").as_slice(),
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),
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moon: image::Handle::from_bytes(
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include_bytes!("../assets/moon.png").as_slice(),
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),
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space_cache: canvas::Cache::default(),
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space_cache: canvas::Cache::default(),
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system_cache: canvas::Cache::default(),
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system_cache: canvas::Cache::default(),
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start: now,
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start: now,
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@ -132,6 +143,8 @@ impl<Message> canvas::Program<Message> for State {
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let background =
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let background =
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self.space_cache.draw(renderer, bounds.size(), |frame| {
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self.space_cache.draw(renderer, bounds.size(), |frame| {
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frame.fill_rectangle(Point::ORIGIN, frame.size(), Color::BLACK);
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let stars = Path::new(|path| {
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let stars = Path::new(|path| {
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for (p, size) in &self.stars {
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for (p, size) in &self.stars {
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path.rectangle(*p, Size::new(*size, *size));
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path.rectangle(*p, Size::new(*size, *size));
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@ -144,17 +157,21 @@ impl<Message> canvas::Program<Message> for State {
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let system = self.system_cache.draw(renderer, bounds.size(), |frame| {
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let system = self.system_cache.draw(renderer, bounds.size(), |frame| {
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let center = frame.center();
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let center = frame.center();
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frame.translate(Vector::new(center.x, center.y));
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let sun = Path::circle(center, Self::SUN_RADIUS);
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frame.draw_image(
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let orbit = Path::circle(center, Self::ORBIT_RADIUS);
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&self.sun,
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Rectangle::with_radius(Self::SUN_RADIUS),
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image::FilterMethod::Linear,
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0,
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1.0,
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);
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frame.fill(&sun, Color::from_rgb8(0xF9, 0xD7, 0x1C));
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let orbit = Path::circle(Point::ORIGIN, Self::ORBIT_RADIUS);
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frame.stroke(
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frame.stroke(
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&orbit,
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&orbit,
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Stroke {
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Stroke {
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style: stroke::Style::Solid(Color::from_rgba8(
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style: stroke::Style::Solid(Color::WHITE.scale_alpha(0.1)),
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0, 153, 255, 0.1,
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)),
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width: 1.0,
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width: 1.0,
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line_dash: canvas::LineDash {
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line_dash: canvas::LineDash {
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offset: 0,
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offset: 0,
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@ -169,27 +186,28 @@ impl<Message> canvas::Program<Message> for State {
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+ (2.0 * PI / 60_000.0) * elapsed.subsec_millis() as f32;
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+ (2.0 * PI / 60_000.0) * elapsed.subsec_millis() as f32;
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frame.with_save(|frame| {
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frame.with_save(|frame| {
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frame.translate(Vector::new(center.x, center.y));
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frame.rotate(rotation);
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frame.rotate(rotation);
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frame.translate(Vector::new(Self::ORBIT_RADIUS, 0.0));
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frame.translate(Vector::new(Self::ORBIT_RADIUS, 0.0));
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let earth = Path::circle(Point::ORIGIN, Self::EARTH_RADIUS);
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frame.draw_image(
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&self.earth,
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let earth_fill = gradient::Linear::new(
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Rectangle::with_radius(Self::EARTH_RADIUS),
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Point::new(-Self::EARTH_RADIUS, 0.0),
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image::FilterMethod::Linear,
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Point::new(Self::EARTH_RADIUS, 0.0),
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rotation * 10.0,
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)
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1.0,
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.add_stop(0.2, Color::from_rgb(0.15, 0.50, 1.0))
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);
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.add_stop(0.8, Color::from_rgb(0.0, 0.20, 0.47));
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frame.fill(&earth, earth_fill);
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frame.with_save(|frame| {
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frame.with_save(|frame| {
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frame.rotate(rotation * 10.0);
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frame.rotate(rotation * 10.0);
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frame.translate(Vector::new(0.0, Self::MOON_DISTANCE));
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frame.translate(Vector::new(0.0, Self::MOON_DISTANCE));
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let moon = Path::circle(Point::ORIGIN, Self::MOON_RADIUS);
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frame.draw_image(
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frame.fill(&moon, Color::WHITE);
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&self.moon,
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Rectangle::with_radius(Self::MOON_RADIUS),
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image::FilterMethod::Linear,
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0,
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1.0,
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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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