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Begin with the brush data structure
This patch also adds `extend` to `SharedVector`, for convenience.
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@ -37,6 +37,9 @@ pub use color::*;
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mod path;
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pub use path::*;
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mod brush;
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pub use brush::*;
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/// A resource is a reference to binary data, for example images. They can be accessible on the file
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/// system or embedded in the resulting binary. Or they might be URLs to a web server and a downloaded
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/// is necessary before they can be used.
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82
sixtyfps_runtime/corelib/graphics/brush.rs
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82
sixtyfps_runtime/corelib/graphics/brush.rs
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@ -0,0 +1,82 @@
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/* LICENSE BEGIN
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This file is part of the SixtyFPS Project -- https://sixtyfps.io
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Copyright (c) 2020 Olivier Goffart <olivier.goffart@sixtyfps.io>
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Copyright (c) 2020 Simon Hausmann <simon.hausmann@sixtyfps.io>
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SPDX-License-Identifier: GPL-3.0-only
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This file is also available under commercial licensing terms.
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Please contact info@sixtyfps.io for more information.
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LICENSE END */
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/*!
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This module contains brush related types for the run-time library.
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*/
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use super::Color;
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use crate::SharedVector;
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/// A brush is an opaque data structure that is used to describe how
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/// a shape, such as a rectangle, path or even text, shall be filled.
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/// A brush can also be applied to the outline of a shape, that means
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/// the fill of the outline itself.
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#[repr(transparent)]
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pub struct Brush(BrushInner);
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/// BrushInner is the variant for the `Brush` type that can be either
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/// a color or a linear gradient.
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#[repr(C)]
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pub enum BrushInner {
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/// The color variant of brush is a plain color that is to be used for the fill.
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Color(Color),
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/// The linear gradient variant of a brush describes the gradient stops for a fill
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/// where all color stops are along a line that's rotated by the specified angle.
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LinearGradient(LinearGradient),
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}
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/// The LinearGradient describes a way of filling a shape with different colors, which
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/// are interpolated between different stops. The colors are aligned with a line that's rotated
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/// by the LinearGradient's angle.
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#[repr(transparent)]
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pub struct LinearGradient(SharedVector<GradientStop>);
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impl LinearGradient {
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/// Creates a new linear gradient, described by the specified angle and the provided color stops.
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pub fn new(angle: f32, stops: impl IntoIterator<Item = GradientStop>) -> Self {
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let stop_iter = stops.into_iter();
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let mut encoded_angle_and_stops = SharedVector::with_capacity(stop_iter.size_hint().0 + 1);
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encoded_angle_and_stops.push(GradientStop { color: Default::default(), position: angle });
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encoded_angle_and_stops.extend(stop_iter);
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Self(encoded_angle_and_stops)
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}
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/// Returns the angle of the linear gradient in degrees.
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pub fn angle(&self) -> f32 {
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self.0[0].position
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}
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/// Returns the color stops of the linear gradient.
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pub fn stops<'a>(&'a self) -> impl Iterator<Item = &'a GradientStop> + 'a {
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self.0.iter().skip(1)
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}
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}
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/// GradientStop describes a single color stop in a gradient. The colors between multiple
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/// stops are interpolated.
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#[repr(C)]
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#[derive(Clone, Debug, PartialEq)]
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pub struct GradientStop {
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/// The color to draw at this stop.
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color: Color,
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/// The position of this stop on the entire shape, as a normalized value between 0 and 1.
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position: f32,
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}
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#[test]
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fn test_linear_gradient_encoding() {
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let stops: SharedVector<GradientStop> = [
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GradientStop { position: 0.0, color: Color::from_argb_u8(255, 255, 0, 0) },
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GradientStop { position: 0.5, color: Color::from_argb_u8(255, 0, 255, 0) },
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GradientStop { position: 1.0, color: Color::from_argb_u8(255, 0, 0, 255) },
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]
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.into();
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let grad = LinearGradient::new(256., stops.clone());
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assert_eq!(grad.angle(), 256.);
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assert!(grad.stops().eq(stops.iter()));
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}
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@ -314,6 +314,14 @@ impl<T> FromIterator<T> for SharedVector<T> {
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}
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}
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impl<T: Clone> Extend<T> for SharedVector<T> {
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fn extend<X: IntoIterator<Item = T>>(&mut self, iter: X) {
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for item in iter {
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self.push(item);
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}
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}
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}
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static SHARED_NULL: SharedVectorHeader =
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SharedVectorHeader { refcount: std::sync::atomic::AtomicIsize::new(-1), size: 0, capacity: 0 };
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@ -198,6 +198,7 @@ fn gen_corelib(include_dir: &Path) -> anyhow::Result<()> {
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.with_src(crate_dir.join("graphics.rs"))
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.with_src(crate_dir.join("graphics/color.rs"))
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.with_src(crate_dir.join("graphics/path.rs"))
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.with_src(crate_dir.join("graphics/brush.rs"))
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.with_src(crate_dir.join("animations.rs"))
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// .with_src(crate_dir.join("input.rs"))
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.with_src(crate_dir.join("item_rendering.rs"))
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