/* * Copyright (c) 2022, Sam Atkins * * SPDX-License-Identifier: BSD-2-Clause */ #include "SVGCircleElement.h" #include #include namespace Web::SVG { SVGCircleElement::SVGCircleElement(DOM::Document& document, DOM::QualifiedName qualified_name) : SVGGeometryElement(document, qualified_name) { } void SVGCircleElement::parse_attribute(FlyString const& name, String const& value) { SVGGeometryElement::parse_attribute(name, value); if (name == SVG::AttributeNames::cx) { m_center_x = AttributeParser::parse_coordinate(value); m_path.clear(); } else if (name == SVG::AttributeNames::cy) { m_center_y = AttributeParser::parse_coordinate(value); m_path.clear(); } else if (name == SVG::AttributeNames::r) { m_radius = AttributeParser::parse_positive_length(value); m_path.clear(); } } Gfx::Path& SVGCircleElement::get_path() { if (m_path.has_value()) return m_path.value(); float cx = m_center_x.value_or(0); float cy = m_center_y.value_or(0); float r = m_radius.value_or(0); Gfx::Path path; // A zero radius disables rendering. if (r == 0) { m_path = move(path); return m_path.value(); } bool large_arc = false; bool sweep = true; // 1. A move-to command to the point cx+r,cy; path.move_to({ cx + r, cy }); // 2. arc to cx,cy+r; path.arc_to({ cx, cy + r }, r, large_arc, sweep); // 3. arc to cx-r,cy; path.arc_to({ cx - r, cy }, r, large_arc, sweep); // 4. arc to cx,cy-r; path.arc_to({ cx, cy - r }, r, large_arc, sweep); // 5. arc with a segment-completing close path operation. path.arc_to({ cx + r, cy }, r, large_arc, sweep); m_path = move(path); return m_path.value(); } }