217 lines
9.8 KiB
C++
217 lines
9.8 KiB
C++
/*
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* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
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* Copyright (c) 2021, Tobias Christiansen <tobyase@serenityos.org>
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* Copyright (c) 2021-2023, Sam Atkins <atkinssj@serenityos.org>
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* Copyright (c) 2022-2023, MacDue <macdue@dueutil.tech>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include "RadialGradientStyleValue.h"
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namespace Web::CSS {
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ErrorOr<String> RadialGradientStyleValue::to_string() const
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{
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StringBuilder builder;
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if (is_repeating())
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TRY(builder.try_append("repeating-"sv));
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TRY(builder.try_appendff("radial-gradient({} "sv,
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m_properties.ending_shape == EndingShape::Circle ? "circle"sv : "ellipse"sv));
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TRY(m_properties.size.visit(
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[&](Extent extent) -> ErrorOr<void> {
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return builder.try_append([&] {
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switch (extent) {
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case Extent::ClosestCorner:
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return "closest-corner"sv;
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case Extent::ClosestSide:
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return "closest-side"sv;
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case Extent::FarthestCorner:
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return "farthest-corner"sv;
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case Extent::FarthestSide:
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return "farthest-side"sv;
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default:
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VERIFY_NOT_REACHED();
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}
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}());
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},
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[&](CircleSize const& circle_size) -> ErrorOr<void> {
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return builder.try_append(TRY(circle_size.radius.to_string()));
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},
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[&](EllipseSize const& ellipse_size) -> ErrorOr<void> {
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return builder.try_appendff("{} {}", TRY(ellipse_size.radius_a.to_string()), TRY(ellipse_size.radius_b.to_string()));
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}));
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if (m_properties.position != PositionValue::center()) {
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TRY(builder.try_appendff(" at "sv));
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TRY(m_properties.position.serialize(builder));
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}
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TRY(builder.try_append(", "sv));
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TRY(serialize_color_stop_list(builder, m_properties.color_stop_list));
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TRY(builder.try_append(')'));
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return builder.to_string();
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}
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Gfx::FloatSize RadialGradientStyleValue::resolve_size(Layout::Node const& node, Gfx::FloatPoint center, Gfx::FloatRect const& size) const
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{
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auto const side_shape = [&](auto distance_function) {
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auto const distance_from = [&](float v, float a, float b, auto distance_function) {
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return distance_function(fabs(a - v), fabs(b - v));
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};
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auto x_dist = distance_from(center.x(), size.left(), size.right(), distance_function);
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auto y_dist = distance_from(center.y(), size.top(), size.bottom(), distance_function);
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if (m_properties.ending_shape == EndingShape::Circle) {
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auto dist = distance_function(x_dist, y_dist);
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return Gfx::FloatSize { dist, dist };
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} else {
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return Gfx::FloatSize { x_dist, y_dist };
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}
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};
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auto const closest_side_shape = [&] {
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return side_shape(AK::min<float>);
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};
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auto const farthest_side_shape = [&] {
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return side_shape(AK::max<float>);
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};
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auto const corner_distance = [&](auto distance_compare, Gfx::FloatPoint& corner) {
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auto top_left_distance = size.top_left().distance_from(center);
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auto top_right_distance = size.top_right().distance_from(center);
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auto bottom_right_distance = size.bottom_right().distance_from(center);
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auto bottom_left_distance = size.bottom_left().distance_from(center);
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auto distance = top_left_distance;
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if (distance_compare(top_right_distance, distance)) {
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corner = size.top_right();
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distance = top_right_distance;
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}
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if (distance_compare(bottom_right_distance, distance)) {
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corner = size.top_right();
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distance = bottom_right_distance;
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}
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if (distance_compare(bottom_left_distance, distance)) {
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corner = size.top_right();
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distance = bottom_left_distance;
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}
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return distance;
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};
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auto const closest_corner_distance = [&](Gfx::FloatPoint& corner) {
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return corner_distance([](float a, float b) { return a < b; }, corner);
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};
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auto const farthest_corner_distance = [&](Gfx::FloatPoint& corner) {
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return corner_distance([](float a, float b) { return a > b; }, corner);
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};
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auto const corner_shape = [&](auto corner_distance, auto get_shape) {
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Gfx::FloatPoint corner {};
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auto distance = corner_distance(corner);
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if (m_properties.ending_shape == EndingShape::Ellipse) {
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auto shape = get_shape();
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auto aspect_ratio = shape.width() / shape.height();
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auto p = corner - center;
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auto radius_a = AK::sqrt(p.y() * p.y() * aspect_ratio * aspect_ratio + p.x() * p.x());
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auto radius_b = radius_a / aspect_ratio;
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return Gfx::FloatSize { radius_a, radius_b };
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}
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return Gfx::FloatSize { distance, distance };
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};
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// https://w3c.github.io/csswg-drafts/css-images/#radial-gradient-syntax
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auto resolved_size = m_properties.size.visit(
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[&](Extent extent) {
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switch (extent) {
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case Extent::ClosestSide:
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// The ending shape is sized so that it exactly meets the side of the gradient box closest to the gradient’s center.
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// If the shape is an ellipse, it exactly meets the closest side in each dimension.
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return closest_side_shape();
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case Extent::ClosestCorner:
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// The ending shape is sized so that it passes through the corner of the gradient box closest to the gradient’s center.
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// If the shape is an ellipse, the ending shape is given the same aspect-ratio it would have if closest-side were specified
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return corner_shape(closest_corner_distance, closest_side_shape);
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case Extent::FarthestCorner:
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// Same as closest-corner, except the ending shape is sized based on the farthest corner.
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// If the shape is an ellipse, the ending shape is given the same aspect ratio it would have if farthest-side were specified.
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return corner_shape(farthest_corner_distance, farthest_side_shape);
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case Extent::FarthestSide:
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// Same as closest-side, except the ending shape is sized based on the farthest side(s).
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return farthest_side_shape();
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default:
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VERIFY_NOT_REACHED();
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}
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},
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[&](CircleSize const& circle_size) {
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auto radius = circle_size.radius.to_px(node);
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return Gfx::FloatSize { radius, radius };
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},
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[&](EllipseSize const& ellipse_size) {
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auto radius_a = ellipse_size.radius_a.resolved(node, CSS::Length::make_px(size.width())).to_px(node);
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auto radius_b = ellipse_size.radius_b.resolved(node, CSS::Length::make_px(size.height())).to_px(node);
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return Gfx::FloatSize { radius_a, radius_b };
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});
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// Handle degenerate cases
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// https://w3c.github.io/csswg-drafts/css-images/#degenerate-radials
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constexpr auto arbitrary_small_number = 1e-10;
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constexpr auto arbitrary_large_number = 1e10;
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// If the ending shape is a circle with zero radius:
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if (m_properties.ending_shape == EndingShape::Circle && resolved_size.is_empty()) {
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// Render as if the ending shape was a circle whose radius was an arbitrary very small number greater than zero.
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// This will make the gradient continue to look like a circle.
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return Gfx::FloatSize { arbitrary_small_number, arbitrary_small_number };
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}
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// If the ending shape has zero width (regardless of the height):
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if (resolved_size.width() <= 0) {
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// Render as if the ending shape was an ellipse whose height was an arbitrary very large number
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// and whose width was an arbitrary very small number greater than zero.
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// This will make the gradient look similar to a horizontal linear gradient that is mirrored across the center of the ellipse.
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// It also means that all color-stop positions specified with a percentage resolve to 0px.
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return Gfx::FloatSize { arbitrary_small_number, arbitrary_large_number };
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}
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// Otherwise, if the ending shape has zero height:
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if (resolved_size.height() <= 0) {
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// Render as if the ending shape was an ellipse whose width was an arbitrary very large number and whose height
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// was an arbitrary very small number greater than zero. This will make the gradient look like a solid-color image equal
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// to the color of the last color-stop, or equal to the average color of the gradient if it’s repeating.
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return Gfx::FloatSize { arbitrary_large_number, arbitrary_small_number };
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}
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return resolved_size;
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}
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void RadialGradientStyleValue::resolve_for_size(Layout::Node const& node, CSSPixelSize paint_size) const
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{
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CSSPixelRect gradient_box { { 0, 0 }, paint_size };
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auto center = m_properties.position.resolved(node, gradient_box).to_type<float>();
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auto gradient_size = resolve_size(node, center, gradient_box.to_type<float>());
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if (m_resolved.has_value() && m_resolved->gradient_size == gradient_size)
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return;
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m_resolved = ResolvedData {
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Painting::resolve_radial_gradient_data(node, gradient_size.to_type<CSSPixels>(), *this),
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gradient_size,
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center,
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};
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}
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bool RadialGradientStyleValue::equals(StyleValue const& other) const
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{
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if (type() != other.type())
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return false;
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auto& other_gradient = other.as_radial_gradient();
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return m_properties == other_gradient.m_properties;
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}
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void RadialGradientStyleValue::paint(PaintContext& context, DevicePixelRect const& dest_rect, CSS::ImageRendering) const
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{
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VERIFY(m_resolved.has_value());
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Painting::paint_radial_gradient(context, dest_rect, m_resolved->data,
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context.rounded_device_point(m_resolved->center.to_type<CSSPixels>()),
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context.rounded_device_size(m_resolved->gradient_size.to_type<CSSPixels>()));
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}
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}
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