Add a Clear gradient spread that cuts off to transparency beyond the ends (#4410)

This commit is contained in:
Keavon Chambers
2026-08-05 00:27:18 -07:00
committed by Dennis Kobert
parent 344e24f0c2
commit c71f78edb5
6 changed files with 178 additions and 34 deletions

View File

@@ -1,4 +1,4 @@
use crate::renderer::{RenderParams, format_transform_matrix, gradient_placement, transform_is_invertible};
use crate::renderer::{ClearGuardPlacement, RenderParams, format_transform_matrix, gradient_placement, spread_adjusted_samples, transform_is_invertible};
use crate::{Render, RenderSvgSegmentList, SvgRender};
use core_types::Color;
use core_types::attribute::Transform;
@@ -112,7 +112,9 @@ pub fn render_gradient_paint<S: core_types::lane::LaneSource<Element = Gradient>
let local_gradient_transform: DAffine2 = source.attr::<Transform>(0);
let gradient_spread: GradientSpread = source.attr::<GradientSpreadAttr>(0);
for (position, color, original_midpoint) in stops.interpolated_samples() {
let (samples, _) = spread_adjusted_samples(stops, gradient_spread, gradient_form, ClearGuardPlacement::SvgStopOrder);
for (position, color, original_midpoint) in samples {
stop.push_str("<stop");
if position != 0. {
let _ = write!(stop, r#" offset="{}""#, (position * 1_000_000.).round() / 1_000_000.);
@@ -149,7 +151,7 @@ pub fn render_gradient_paint<S: core_types::lane::LaneSource<Element = Gradient>
format!(r#" gradientTransform="{gradient_transform}""#)
};
let gradient_spread = if gradient_spread == GradientSpread::Pad {
let gradient_spread = if matches!(gradient_spread, GradientSpread::Pad | GradientSpread::Clear) {
String::new()
} else {
format!(r#" spreadMethod="{}""#, gradient_spread.svg_name())

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@@ -400,11 +400,79 @@ pub(crate) fn gradient_placement(transform: DAffine2, gradient_form: GradientFor
}
}
/// Texel count of the baked gradient ramp Vello samples stops through (`N_SAMPLES`/`GRADIENT_WIDTH` in vello_encoding).
const VELLO_GRADIENT_RAMP_TEXELS: f64 = 512.;
/// Renderable gradient samples of `(position, color, original midpoint)`, as produced by [`Gradient::interpolated_samples`].
type GradientSamples = Vec<(f64, Color, Option<f64>)>;
/// Where a renderer needs the transparent guard stops that emulate the `Clear` spread, which neither SVG nor Vello supports natively.
#[derive(Copy, Clone, PartialEq)]
pub(crate) enum ClearGuardPlacement {
/// Guards share the range ends' exact offsets, resolved against the visible colors by stop order alone.
SvgStopOrder,
/// Guards own the outermost ramp texel at each cleared end, since Vello's pad extension samples those texels for
/// everything beyond the ends and its ramp bake would tie-break a shared-offset guard away. The visible range
/// compresses inward by one texel per cleared end, costing about 0.4% of the ramp's color resolution.
VelloRampTexels,
}
/// The gradient's renderable samples plus the gradient-space span `(start, end)` the renderer's 0 to 1 offset range must cover, normally the unit interval with the samples unchanged.
///
/// The `Clear` spread brackets the samples with transparent guard stops placed per `guards`: the pad extension then
/// paints transparency outward while hard stops cut the paint off exactly at the unit range's boundaries. A radial
/// gradient's span still starts at zero, since its sampling distance never goes below the center.
pub(crate) fn spread_adjusted_samples(gradient: &Gradient, gradient_spread: GradientSpread, gradient_form: GradientForm, guards: ClearGuardPlacement) -> (GradientSamples, (f64, f64)) {
let samples = gradient.interpolated_samples();
if gradient_spread != GradientSpread::Clear {
return (samples, (0., 1.));
}
// The remapped offsets where the visible range's ends land, with the guards owning whatever lies outside them
let texel = 1. / (VELLO_GRADIENT_RAMP_TEXELS - 1.);
let (start_offset, end_offset) = match (guards, gradient_form) {
(ClearGuardPlacement::SvgStopOrder, _) => (0., 1.),
(ClearGuardPlacement::VelloRampTexels, GradientForm::Linear) => (texel, 1. - texel),
(ClearGuardPlacement::VelloRampTexels, GradientForm::Radial) => (0., 1. - texel),
};
let remap = |position: f64| (1. - position) * start_offset + position * end_offset;
// The geometric span grows to compensate for the compression, keeping the visible range at the unit interval
let scale = 1. / (end_offset - start_offset);
let span = (-start_offset * scale, (1. - start_offset) * scale);
// A stopless gradient paints solid black, matching `Gradient::evaluate`
let first_color = samples.first().map_or(Color::BLACK, |&(_, color, _)| color);
let last_color = samples.last().map_or(Color::BLACK, |&(_, color, _)| color);
let needs_start_anchor = samples.first().is_none_or(|&(position, ..)| position > 0.);
let needs_end_anchor = samples.last().is_none_or(|&(position, ..)| position < 1.);
let mut adjusted = Vec::with_capacity(samples.len() + 4);
// Lead with the transparent guard (linear only, a radial's center is already the sampling minimum), then anchor the visible range's start color
if gradient_form == GradientForm::Linear {
adjusted.push((0., Color::TRANSPARENT, None));
}
if needs_start_anchor {
adjusted.push((remap(0.), first_color, None));
}
adjusted.extend(samples.into_iter().map(|(position, color, midpoint)| (remap(position), color, midpoint)));
// Anchor the visible range's end color, then cut to the trailing transparent guard
if needs_end_anchor {
adjusted.push((remap(1.), last_color, None));
}
adjusted.push((1., Color::TRANSPARENT, None));
(adjusted, span)
}
/// Converts a gradient's renderer samples to peniko color stops, duplicating an off-zero first stop at position 0 since Vello ignores the first stop's position and always treats it as 0.
fn peniko_color_stops(gradient: &Gradient) -> peniko::ColorStops {
fn peniko_color_stops(samples: &[(f64, Color, Option<f64>)]) -> peniko::ColorStops {
let mut peniko_stops = peniko::ColorStops::new();
for (position, color, _) in gradient.interpolated_samples() {
for &(position, color, _) in samples {
let color = peniko::color::DynamicColor::from_alpha_color(SRGBA8::from(color).to_peniko_color());
if peniko_stops.is_empty() && position > 0. {
@@ -425,6 +493,15 @@ fn peniko_color_stops(gradient: &Gradient) -> peniko::ColorStops {
peniko_stops
}
/// The peniko extend mode for a spread; `Clear` rides pad, with the transparent guard stops from `spread_adjusted_samples` doing the clearing.
fn peniko_extend(gradient_spread: GradientSpread) -> peniko::Extend {
match gradient_spread {
GradientSpread::Pad | GradientSpread::Clear => peniko::Extend::Pad,
GradientSpread::Reflect => peniko::Extend::Reflect,
GradientSpread::Repeat => peniko::Extend::Repeat,
}
}
fn create_peniko_gradient_brush<S: LaneSource<Element = Gradient>>(gradient_list: &S, multiplied_transform: &DAffine2) -> Option<(peniko::Brush, DAffine2)> {
let stops = gradient_list.element(0)?;
@@ -432,10 +509,11 @@ fn create_peniko_gradient_brush<S: LaneSource<Element = Gradient>>(gradient_list
let gradient_transform: DAffine2 = gradient_list.attr::<Transform>(0);
let gradient_spread: GradientSpread = gradient_list.attr::<GradientSpreadAttr>(0);
let peniko_stops = peniko_color_stops(stops);
let (samples, span) = spread_adjusted_samples(stops, gradient_spread, gradient_form, ClearGuardPlacement::VelloRampTexels);
let peniko_stops = peniko_color_stops(&samples);
// The unit gradient is placed by the desheared frame so a non-uniform transform produces the intended ellipse
let (start, end, gradient_to_device) = (DVec2::ZERO, DVec2::X, gradient_placement(multiplied_transform * gradient_transform, gradient_form));
let (start, end, gradient_to_device) = (DVec2::X * span.0, DVec2::X * span.1, gradient_placement(multiplied_transform * gradient_transform, gradient_form));
let brush = peniko::Brush::Gradient(peniko::Gradient {
kind: match gradient_form {
@@ -452,11 +530,7 @@ fn create_peniko_gradient_brush<S: LaneSource<Element = Gradient>>(gradient_list
}
.into(),
},
extend: match gradient_spread {
GradientSpread::Pad => peniko::Extend::Pad,
GradientSpread::Reflect => peniko::Extend::Reflect,
GradientSpread::Repeat => peniko::Extend::Repeat,
},
extend: peniko_extend(gradient_spread),
stops: peniko_stops,
interpolation_alpha_space: peniko::InterpolationAlphaSpace::Premultiplied,
..Default::default()
@@ -2344,8 +2418,10 @@ fn render_gradient_svg<S: LaneSource<Element = Gradient>>(source: &S, render: &m
attributes.push("points", format!("{MAX},{MAX} -{MAX},{MAX} -{MAX},-{MAX} {MAX},-{MAX}"));
}
let (samples, _) = spread_adjusted_samples(gradient, gradient_spread, gradient_form, ClearGuardPlacement::SvgStopOrder);
let mut stop_string = String::new();
for (position, color, original_midpoint) in gradient.interpolated_samples() {
for (position, color, original_midpoint) in samples {
let _ = write!(stop_string, r##"<stop offset="{}" stop-color="#{}""##, position, SRGBA8::from(color).to_rgb_hex());
if color.a() < 1. {
let _ = write!(stop_string, r#" stop-opacity="{}""#, color.a());
@@ -2366,7 +2442,7 @@ fn render_gradient_svg<S: LaneSource<Element = Gradient>>(source: &S, render: &m
};
let gradient_id = generate_uuid();
let spread_method_attribute = if gradient_spread == GradientSpread::Pad {
let spread_method_attribute = if matches!(gradient_spread, GradientSpread::Pad | GradientSpread::Clear) {
String::new()
} else {
format!(r#" spreadMethod="{}""#, gradient_spread.svg_name())
@@ -2422,27 +2498,24 @@ fn render_gradient_vello<S: LaneSource<Element = Gradient>>(source: &S, scene: &
let blend_mode = blend_mode_attr.to_peniko();
let opacity = (opacity_attr * if render_params.for_mask { 1. } else { opacity_fill_attr }) as f32;
let stops = peniko_color_stops(gradient);
let (samples, span) = spread_adjusted_samples(gradient, gradient_spread, gradient_form, ClearGuardPlacement::VelloRampTexels);
let stops = peniko_color_stops(&samples);
let extend = match gradient_spread {
GradientSpread::Pad => peniko::Extend::Pad,
GradientSpread::Reflect => peniko::Extend::Reflect,
GradientSpread::Repeat => peniko::Extend::Repeat,
};
let extend = peniko_extend(gradient_spread);
// The unit gradient line is the +X unit vector in local space, before the item's transform is applied.
// For radial, the unit-radius circle at the origin scales out to the line's length once the brush transform applies.
let kind = match gradient_form {
GradientForm::Linear => peniko::LinearGradientPosition {
start: to_point(DVec2::ZERO),
end: to_point(DVec2::X),
start: to_point(DVec2::X * span.0),
end: to_point(DVec2::X * span.1),
}
.into(),
GradientForm::Radial => peniko::RadialGradientPosition {
start_center: to_point(DVec2::ZERO),
start_radius: 0.,
end_center: to_point(DVec2::ZERO),
end_radius: 1.,
end_radius: span.1 as f32,
}
.into(),
};
@@ -3161,3 +3234,51 @@ mod group_walk_tests {
assert_eq!(native_outlines, legacy);
}
}
#[cfg(test)]
mod spread_tests {
use super::*;
#[test]
fn spread_adjusted_samples_wraps_clear_in_transparent_guards() {
let gradient = Gradient::from(vec![Color::BLACK, Color::WHITE]);
let (samples, span) = spread_adjusted_samples(&gradient, GradientSpread::Repeat, GradientForm::Linear, ClearGuardPlacement::SvgStopOrder);
assert_eq!(span, (0., 1.));
assert_eq!(samples, gradient.interpolated_samples());
// SVG guards share the range ends' exact offsets, ordered so the pad extension resolves to the transparent outer stops
let (samples, span) = spread_adjusted_samples(&gradient, GradientSpread::Clear, GradientForm::Linear, ClearGuardPlacement::SvgStopOrder);
assert_eq!(span, (0., 1.));
assert_eq!(
samples,
vec![(0., Color::TRANSPARENT, None), (0., Color::BLACK, None), (1., Color::WHITE, None), (1., Color::TRANSPARENT, None)]
);
// Vello guards own the outermost ramp texels, with the visible range compressed inward to make room
let texel = 1. / (VELLO_GRADIENT_RAMP_TEXELS - 1.);
let (samples, span) = spread_adjusted_samples(&gradient, GradientSpread::Clear, GradientForm::Linear, ClearGuardPlacement::VelloRampTexels);
assert_eq!(
samples,
vec![
(0., Color::TRANSPARENT, None),
(texel, Color::BLACK, None),
(1. - texel, Color::WHITE, None),
(1., Color::TRANSPARENT, None)
]
);
assert!(span.0 < 0. && span.1 > 1., "the geometry must stretch to compensate for the compressed stops: {span:?}");
// A radial keeps its stops and span anchored at zero, with no guard below the center
let (samples, span) = spread_adjusted_samples(&gradient, GradientSpread::Clear, GradientForm::Radial, ClearGuardPlacement::VelloRampTexels);
assert_eq!(span.0, 0.);
assert_eq!(samples.first().unwrap(), &(0., Color::BLACK, None));
assert_eq!(samples.last().unwrap(), &(1., Color::TRANSPARENT, None));
}
#[test]
fn spread_adjusted_samples_keeps_a_stopless_clear_gradient_black_inside_the_range() {
let (samples, _) = spread_adjusted_samples(&Gradient::from(Vec::new()), GradientSpread::Clear, GradientForm::Linear, ClearGuardPlacement::SvgStopOrder);
let colors: Vec<Color> = samples.iter().map(|&(_, color, _)| color).collect();
assert_eq!(colors, vec![Color::TRANSPARENT, Color::BLACK, Color::BLACK, Color::TRANSPARENT]);
}
}

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@@ -612,6 +612,12 @@ impl Gradient {
let cycle = t.rem_euclid(2.);
if cycle > 1. { 2. - cycle } else { cycle }
}
GradientSpread::Clear => {
if !(0. ..=1.).contains(&t) {
return Color::TRANSPARENT;
}
t
}
};
let stops = self.normalized_stops();
@@ -798,7 +804,9 @@ pub enum GradientSpread {
/// Loops the gradient as copies of itself.
#[icon("GradientSpreadRepeat")]
Repeat,
// TODO: Add a "Clear" variant that returns transparent black outside the gradient's range
/// Cuts off to transparency beyond the ends.
#[icon("GradientSpreadClear")]
Clear,
}
impl GradientSpread {
@@ -807,6 +815,8 @@ impl GradientSpread {
GradientSpread::Pad => "pad",
GradientSpread::Reflect => "reflect",
GradientSpread::Repeat => "repeat",
// SVG has no clear mode; renderers emulate it over pad with transparent guard stops
GradientSpread::Clear => "pad",
}
}
@@ -948,6 +958,22 @@ mod tests {
);
}
#[test]
fn clear_spread_evaluates_to_transparency_outside_the_unit_range() {
let gradient = Gradient::from(vec![Color::BLACK, Color::WHITE]);
assert_eq!(gradient.evaluate(-0.25, GradientSpread::Clear), Color::TRANSPARENT);
assert_eq!(gradient.evaluate(1.25, GradientSpread::Clear), Color::TRANSPARENT);
for t in [0., 0.25, 1.] {
assert_eq!(
gradient.evaluate(t, GradientSpread::Clear),
gradient.evaluate(t, GradientSpread::Pad),
"inside the range Clear must match Pad at t = {t}"
);
}
}
#[test]
fn gradient_ui_write_back_elides_default_attributes() {
let mut gradient = Gradient::from(vec![Color::BLACK, Color::WHITE, Color::RED]);

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@@ -4,7 +4,7 @@
use core_types::attribute::Attribute;
core_types::attribute! {
/// Gradient's spread behavior past its endpoints (`Pad`, `Reflect`, or `Repeat`).
/// Gradient's spread behavior past its endpoints (`Pad`, `Reflect`, `Repeat`, or `Clear`).
pub GradientSpread("gradient_spread"): crate::gradient::GradientSpread;
/// Gradient's shape (`Linear` or `Radial`).
pub GradientForm("gradient_form"): crate::gradient::GradientForm;

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@@ -1208,7 +1208,7 @@ fn gradient_form(_: impl Ctx, gradient: Gradient, gradient_form: vector_types::G
(gradient, Attr(gradient_form))
}
/// Sets how each gradient in the input list extends past its endpoints: Pad, Reflect, or Repeat.
/// Sets how each gradient in the input list extends past its endpoints: Pad, Reflect, Repeat, or Clear.
#[node_macro::node(category("Gradient"))]
fn gradient_spread(_: impl Ctx, gradient: Gradient, gradient_spread: vector_types::GradientSpread) -> (Gradient, Attr<GradientSpreadAttr>) {
(gradient, Attr(gradient_spread))
@@ -1236,7 +1236,7 @@ fn gradient_midpoints(_: impl Ctx, mut gradient: Gradient, midpoints: IList<f64>
gradient
}
/// Evaluates the color at the specified position along the gradient, given a position from 0 (left) to 1 (right). Positions beyond that range follow the gradient's `gradient_spread` attribute: Pad (default), Reflect, or Repeat.
/// Evaluates the color at the specified position along the gradient, given a position from 0 (left) to 1 (right). Positions beyond that range follow the gradient's `gradient_spread` attribute: Pad (default), Reflect, Repeat, or Clear.
#[node_macro::node(category("Color"))]
fn sample_gradient(
ctx: impl Ctx + ExtractIndex + InjectIndex + Copy,