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::SRGBA8; use core_types::list::List; use core_types::uuid::generate_uuid; use core_types::{ATTR_GRADIENT_FORM, ATTR_GRADIENT_SPREAD, ATTR_TRANSFORM, Color}; use glam::{DAffine2, DVec2}; use graphic_types::Graphic; use graphic_types::vector_types::gradient::GradientForm; use graphic_types::vector_types::vector::style::{PaintOrder, Stroke, StrokeAlign, StrokeCap, StrokeJoin}; use std::fmt::Write; use vector_types::Gradient; use vector_types::gradient::GradientSpread; #[derive(Copy, Clone, PartialEq)] pub enum PaintTarget { Fill, Stroke, } impl PaintTarget { fn paint_attr(self) -> &'static str { match self { Self::Fill => "fill", Self::Stroke => "stroke", } } fn opacity_attr(self) -> &'static str { match self { Self::Fill => "fill-opacity", Self::Stroke => "stroke-opacity", } } } pub trait RenderExt { type Output; #[allow(clippy::too_many_arguments)] fn render( &self, svg_defs: &mut String, item_transform: DAffine2, element_transform: DAffine2, stroke_transform: DAffine2, bounds: DAffine2, render_params: &RenderParams, target: PaintTarget, ) -> Self::Output; } impl RenderExt for List { type Output = String; fn render( &self, _svg_defs: &mut String, _item_transform: DAffine2, _element_transform: DAffine2, _stroke_transform: DAffine2, _bounds: DAffine2, _render_params: &RenderParams, target: PaintTarget, ) -> Self::Output { let Some(color) = self.element(0) else { return format!(r#" {}="none""#, target.paint_attr()); }; let mut result = format!(r##" {}="#{}""##, target.paint_attr(), SRGBA8::from(*color).to_rgb_hex()); if color.a() < 1. { let _ = write!(result, r#" {}="{}""#, target.opacity_attr(), (color.a() * 1000.).round() / 1000.); } result } } impl RenderExt for List { type Output = u64; /// Adds the gradient def through mutating the first argument, returning the gradient ID. fn render( &self, svg_defs: &mut String, item_transform: DAffine2, element_transform: DAffine2, _stroke_transform: DAffine2, _bounds: DAffine2, _render_params: &RenderParams, _target: PaintTarget, ) -> Self::Output { let mut stop = String::new(); let Some(stops) = self.element(0) else { return 0 }; let gradient_form: GradientForm = self.attribute_cloned_or_default(ATTR_GRADIENT_FORM, 0); let local_gradient_transform: DAffine2 = self.attribute_cloned_or_default(ATTR_TRANSFORM, 0); let gradient_spread: GradientSpread = self.attribute_cloned_or_default(ATTR_GRADIENT_SPREAD, 0); let (samples, _) = spread_adjusted_samples(stops, gradient_spread, gradient_form, ClearGuardPlacement::SvgStopOrder); for (position, color, original_midpoint) in samples { stop.push_str("") } // A gradient with no stops paints as solid black, matching `Gradient::evaluate` (a stopless def would otherwise render as no paint per the SVG spec) if stop.is_empty() { stop.push_str(r##""##); } // Need to cancel out the element's transform as it is already applied to the path itself. let element_transform_inverse = if transform_is_invertible(element_transform) { element_transform.inverse() } else { DAffine2::IDENTITY }; let document_transform = item_transform * local_gradient_transform; let placement = gradient_placement(document_transform, gradient_form); let gradient_transform = format_transform_matrix(element_transform_inverse * placement); let gradient_transform = if gradient_transform.is_empty() { String::new() } else { format!(r#" gradientTransform="{gradient_transform}""#) }; let gradient_spread = if matches!(gradient_spread, GradientSpread::Pad | GradientSpread::Clear) { String::new() } else { format!(r#" spreadMethod="{}""#, gradient_spread.svg_name()) }; let gradient_id = generate_uuid(); match gradient_form { GradientForm::Linear => { let _ = write!( svg_defs, r#"{}"#, gradient_id, stop ); } GradientForm::Radial => { let _ = write!( svg_defs, r#"{}"#, gradient_id, stop ); } } gradient_id } } impl RenderExt for Stroke { type Output = String; /// Provide the shape-related SVG attributes for the stroke. The paint-related attributes for the stroke are generated from `List.render` with `PaintTarget::Stroke`. fn render( &self, _svg_defs: &mut String, _item_transform: DAffine2, _element_transform: DAffine2, _stroke_transform: DAffine2, _bounds: DAffine2, render_params: &RenderParams, _target: PaintTarget, ) -> Self::Output { // Don't render a stroke at all if it would be invisible if !self.has_renderable_stroke() { return String::new(); } let default_weight = if self.align != StrokeAlign::Center && render_params.aligned_strokes { 1. / 2. } else { 1. }; // Set to None if the value is the SVG default let weight = (self.weight != default_weight).then_some(self.weight); let dash_array = (!self.dash_lengths.is_empty()).then_some(self.dash_lengths()); let dash_offset = (self.dash_offset != 0.).then_some(self.dash_offset); let stroke_cap = (self.cap != StrokeCap::Butt).then_some(self.cap); let stroke_join = (self.join != StrokeJoin::Miter).then_some(self.join); let stroke_join_miter_limit = (self.join_miter_limit != 4.).then_some(self.join_miter_limit); let stroke_align = (self.align != StrokeAlign::Center).then_some(self.align); let paint_order = (self.paint_order != PaintOrder::StrokeAbove || render_params.override_paint_order).then_some(PaintOrder::StrokeBelow); // Render the needed stroke attributes let mut attributes = String::new(); if let Some(mut weight) = weight { if stroke_align.is_some() && render_params.aligned_strokes { weight *= 2.; } let _ = write!(&mut attributes, r#" stroke-width="{weight}""#); } if let Some(dash_array) = dash_array { let _ = write!(&mut attributes, r#" stroke-dasharray="{dash_array}""#); } if let Some(dash_offset) = dash_offset { let _ = write!(&mut attributes, r#" stroke-dashoffset="{dash_offset}""#); } if let Some(stroke_cap) = stroke_cap { let _ = write!(&mut attributes, r#" stroke-linecap="{}""#, stroke_cap.svg_name()); } if let Some(stroke_join) = stroke_join { let _ = write!(&mut attributes, r#" stroke-linejoin="{}""#, stroke_join.svg_name()); } if let Some(stroke_join_miter_limit) = stroke_join_miter_limit { let _ = write!(&mut attributes, r#" stroke-miterlimit="{stroke_join_miter_limit}""#); } if paint_order.is_some() { let _ = write!(&mut attributes, r#" style="paint-order: stroke;" "#); } attributes } } impl RenderExt for List { type Output = String; fn render( &self, svg_defs: &mut String, item_transform: DAffine2, element_transform: DAffine2, stroke_transform: DAffine2, bounds: DAffine2, render_params: &RenderParams, target: PaintTarget, ) -> Self::Output { let fill_graphic = self.element(0); let paint_attr = target.paint_attr(); match fill_graphic { Some(Graphic::Color(color_list)) => color_list.render(svg_defs, item_transform, element_transform, stroke_transform, bounds, render_params, target), Some(Graphic::Gradient(gradient_list)) => { let gradient_id = gradient_list.render(svg_defs, item_transform, element_transform, stroke_transform, bounds, render_params, target); format!(r##" {paint_attr}="url(#{gradient_id})""##) } Some(Graphic::None) => format!(r#" {paint_attr}="none""#), Some(Graphic::Vector(_)) | Some(Graphic::RasterCPU(_)) | Some(Graphic::RasterGPU(_)) | Some(Graphic::Graphic(_)) | Some(Graphic::Text(_)) => { let bounds = if target == PaintTarget::Stroke { // To prevent a wraparound artefact occurring when the tile boundary and the stroke region are perfectly aligned, the local coordinate is expanded slightly. let inverse = |len: f64| if len > 0. { 1. / len } else { 0. }; let inflate = DVec2::new(inverse(item_transform.matrix2.x_axis.length()), inverse(item_transform.matrix2.y_axis.length())); let min = bounds.transform_point2(DVec2::ZERO) - inflate; let max = bounds.transform_point2(DVec2::ONE) + inflate; DAffine2::from_scale_angle_translation(max - min, 0., min) } else { bounds }; render_svg_pattern(svg_defs, self, stroke_transform, bounds, render_params) .map(|id| format!(r##" {paint_attr}="url(#{id})""##)) .unwrap_or_else(|| format!(r#" {paint_attr}="none""#)) } None => format!(r#" {paint_attr}="none""#), } } } /// Emits an SVG `` paint server into `svg_defs` that renders the given graphic list as the paint content, and returns the pattern ID. /// Currently, this function is only used for clipping-based filling and stroking, not considering tiling yet. fn render_svg_pattern(svg_defs: &mut String, fill_graphic_list: &List, stroke_transform: DAffine2, bounds: DAffine2, render_params: &RenderParams) -> Option { let min = bounds.transform_point2(DVec2::ZERO); let max = bounds.transform_point2(DVec2::ONE); let size = max - min; if size.x <= 0. || size.y <= 0. { return None; } // Render the pattern content recursively let mut content = SvgRender::new(); fill_graphic_list.render_svg(&mut content, &render_params.for_pattern()); // Unwrap the inner def element write!(svg_defs, "{}", content.svg_defs).unwrap(); let pattern_transform = stroke_transform * DAffine2::from_translation(min); let transform_str = format_transform_matrix(pattern_transform); let transform_attr = if transform_str.is_empty() { String::new() } else { format!(r#" patternTransform="{transform_str}""#) }; let pattern_id = format!("pattern-{}", generate_uuid()); write!( svg_defs, r##""##, size.x, size.y, ) .unwrap(); let content_shift = format_transform_matrix(DAffine2::from_translation(-min)); write!(svg_defs, r##"{}"##, content.svg.to_svg_string()).unwrap(); Some(pattern_id) }