1use crate::{
2 AssetSource, DevicePixels, IsZero, RenderImage, Result, SharedString, Size,
3 swap_rgba_pa_to_bgra,
4};
5use image::Frame;
6use resvg::tiny_skia::Pixmap;
7use smallvec::SmallVec;
8use std::{
9 hash::Hash,
10 sync::{Arc, LazyLock, OnceLock},
11};
12
13#[cfg(target_os = "macos")]
14const EMOJI_FONT_FAMILIES: &[&str] = &["Apple Color Emoji", ".AppleColorEmojiUI"];
15
16#[cfg(target_os = "windows")]
17const EMOJI_FONT_FAMILIES: &[&str] = &["Segoe UI Emoji", "Segoe UI Symbol"];
18
19#[cfg(any(target_os = "linux", target_os = "freebsd"))]
20const EMOJI_FONT_FAMILIES: &[&str] = &[
21 "Noto Color Emoji",
22 "Emoji One",
23 "Twitter Color Emoji",
24 "JoyPixels",
25];
26
27#[cfg(not(any(
28 target_os = "macos",
29 target_os = "windows",
30 target_os = "linux",
31 target_os = "freebsd",
32)))]
33const EMOJI_FONT_FAMILIES: &[&str] = &[];
34
35fn is_emoji_presentation(c: char) -> bool {
36 static EMOJI_PRESENTATION_REGEX: LazyLock<regex::Regex> =
37 LazyLock::new(|| regex::Regex::new("\\p{Emoji_Presentation}").unwrap());
38 let mut buf = [0u8; 4];
39 EMOJI_PRESENTATION_REGEX.is_match(c.encode_utf8(&mut buf))
40}
41
42fn font_has_char(db: &usvg::fontdb::Database, id: usvg::fontdb::ID, ch: char) -> bool {
43 db.with_face_data(id, |font_data, face_index| {
44 ttf_parser::Face::parse(font_data, face_index)
45 .ok()
46 .and_then(|face| face.glyph_index(ch))
47 .is_some()
48 })
49 .unwrap_or(false)
50}
51
52fn select_emoji_font(
53 ch: char,
54 fonts: &[usvg::fontdb::ID],
55 db: &usvg::fontdb::Database,
56 families: &[&str],
57) -> Option<usvg::fontdb::ID> {
58 for family_name in families {
59 let query = usvg::fontdb::Query {
60 families: &[usvg::fontdb::Family::Name(family_name)],
61 weight: usvg::fontdb::Weight(400),
62 stretch: usvg::fontdb::Stretch::Normal,
63 style: usvg::fontdb::Style::Normal,
64 };
65
66 let Some(id) = db.query(&query) else {
67 continue;
68 };
69
70 if fonts.contains(&id) || !font_has_char(db, id, ch) {
71 continue;
72 }
73
74 return Some(id);
75 }
76
77 None
78}
79
80pub const SMOOTH_SVG_SCALE_FACTOR: f32 = 2.;
82
83#[derive(Clone, PartialEq, Hash, Eq)]
84#[expect(missing_docs)]
85pub struct RenderSvgParams {
86 pub path: SharedString,
87 pub size: Size<DevicePixels>,
88}
89
90#[derive(Clone)]
91pub struct SvgRenderer {
93 asset_source: Arc<dyn AssetSource>,
94 usvg_options: Arc<usvg::Options<'static>>,
95}
96
97pub struct ParsedSvg(usvg::Tree);
104
105#[derive(Clone, Copy)]
107pub enum SvgSize {
108 Size(Size<DevicePixels>),
110 ExactSize(Size<DevicePixels>),
112 ScaleFactor(f32),
114}
115
116impl From<f32> for SvgSize {
117 fn from(scale_factor: f32) -> Self {
118 Self::ScaleFactor(scale_factor)
119 }
120}
121
122impl SvgRenderer {
123 pub fn new(asset_source: Arc<dyn AssetSource>) -> Self {
125 static SYSTEM_FONT_DB: LazyLock<Arc<usvg::fontdb::Database>> = LazyLock::new(|| {
126 let mut db = usvg::fontdb::Database::new();
127 db.load_system_fonts();
128 Arc::new(db)
129 });
130
131 let enriched_fontdb: Arc<OnceLock<Arc<usvg::fontdb::Database>>> = Arc::new(OnceLock::new());
136
137 let default_font_resolver = usvg::FontResolver::default_font_selector();
138 let font_resolver = Box::new({
139 let asset_source = asset_source.clone();
140 move |font: &usvg::Font, db: &mut Arc<usvg::fontdb::Database>| {
141 if db.is_empty() {
142 let fontdb = enriched_fontdb.get_or_init(|| {
143 let mut db = (**SYSTEM_FONT_DB).clone();
144 load_bundled_fonts(&*asset_source, &mut db);
145 fix_generic_font_families(&mut db);
146 Arc::new(db)
147 });
148 *db = fontdb.clone();
149 }
150 if let Some(id) = default_font_resolver(font, db) {
151 return Some(id);
152 }
153 let sans_query = usvg::fontdb::Query {
156 families: &[usvg::fontdb::Family::SansSerif],
157 ..Default::default()
158 };
159 db.query(&sans_query)
160 .or_else(|| db.faces().next().map(|f| f.id))
161 }
162 });
163 let default_fallback_selection = usvg::FontResolver::default_fallback_selector();
164 let fallback_selection = Box::new(
165 move |ch: char, fonts: &[usvg::fontdb::ID], db: &mut Arc<usvg::fontdb::Database>| {
166 if is_emoji_presentation(ch) {
167 if let Some(id) = select_emoji_font(ch, fonts, db.as_ref(), EMOJI_FONT_FAMILIES)
168 {
169 return Some(id);
170 }
171 }
172
173 default_fallback_selection(ch, fonts, db)
174 },
175 );
176 let options = usvg::Options {
177 font_resolver: usvg::FontResolver {
178 select_font: font_resolver,
179 select_fallback: fallback_selection,
180 },
181 ..Default::default()
182 };
183 Self {
184 asset_source,
185 usvg_options: Arc::new(options),
186 }
187 }
188
189 #[ztracing::instrument(skip_all)]
191 pub fn parse_svg(&self, bytes: &[u8]) -> Result<ParsedSvg, usvg::Error> {
192 usvg::Tree::from_data(bytes, &self.usvg_options).map(ParsedSvg)
193 }
194
195 #[ztracing::instrument(skip_all)]
197 pub fn render_parsed(
198 &self,
199 svg: &ParsedSvg,
200 size: impl Into<SvgSize>,
201 ) -> Result<Arc<RenderImage>, usvg::Error> {
202 let (size, image_scale_factor) = match size.into() {
203 SvgSize::Size(size) => (SvgSize::Size(size), 1.0),
204 SvgSize::ExactSize(size) => (SvgSize::ExactSize(size), 1.0),
205 SvgSize::ScaleFactor(scale_factor) => (
206 SvgSize::ScaleFactor(scale_factor * SMOOTH_SVG_SCALE_FACTOR),
207 SMOOTH_SVG_SCALE_FACTOR,
208 ),
209 };
210 let pixmap = rasterize_tree(&svg.0, size)?;
211 let mut buffer =
212 image::ImageBuffer::from_raw(pixmap.width(), pixmap.height(), pixmap.take()).unwrap();
213
214 for pixel in buffer.chunks_exact_mut(4) {
215 swap_rgba_pa_to_bgra(pixel);
216 }
217
218 let mut image = RenderImage::new(SmallVec::from_const([Frame::new(buffer)]));
219 image.scale_factor = image_scale_factor;
220 Ok(Arc::new(image))
221 }
222
223 pub fn render_single_frame(
225 &self,
226 bytes: &[u8],
227 scale_factor: f32,
228 ) -> Result<Arc<RenderImage>, usvg::Error> {
229 let svg = self.parse_svg(bytes)?;
230 self.render_parsed(&svg, scale_factor)
231 }
232
233 pub(crate) fn render_alpha_mask(
234 &self,
235 params: &RenderSvgParams,
236 bytes: Option<&[u8]>,
237 ) -> Result<Option<(Size<DevicePixels>, Vec<u8>)>> {
238 anyhow::ensure!(!params.size.is_zero(), "can't render at a zero size");
239
240 let render_pixmap = |bytes| {
241 let pixmap = self.render_pixmap(bytes, SvgSize::Size(params.size))?;
242
243 let size = Size::new(
245 DevicePixels(pixmap.width() as i32),
246 DevicePixels(pixmap.height() as i32),
247 );
248 let alpha_mask = pixmap
249 .pixels()
250 .iter()
251 .map(|p| p.alpha())
252 .collect::<Vec<_>>();
253
254 Ok(Some((size, alpha_mask)))
255 };
256
257 if let Some(bytes) = bytes {
258 render_pixmap(bytes)
259 } else if let Some(bytes) = self.asset_source.load(¶ms.path)? {
260 render_pixmap(&bytes)
261 } else {
262 Ok(None)
263 }
264 }
265
266 fn render_pixmap(&self, bytes: &[u8], size: SvgSize) -> Result<Pixmap, usvg::Error> {
267 let tree = usvg::Tree::from_data(bytes, &self.usvg_options)?;
268 rasterize_tree(&tree, size)
269 }
270}
271
272fn rasterize_tree(tree: &usvg::Tree, size: SvgSize) -> Result<Pixmap, usvg::Error> {
273 const MAX_SIZE: f32 = 8192.0;
276
277 let svg_size = tree.size();
278 let (mut width, mut height) = match size {
279 SvgSize::Size(size) => {
280 let scale = i32::from(size.width) as f32 / svg_size.width();
281 (svg_size.width() * scale, svg_size.height() * scale)
282 }
283 SvgSize::ExactSize(size) => (i32::from(size.width) as f32, i32::from(size.height) as f32),
284 SvgSize::ScaleFactor(scale) => (svg_size.width() * scale, svg_size.height() * scale),
285 };
286
287 if width > MAX_SIZE {
288 log::warn!("Attempted to render pixmap where width ({width}) > MAX_SIZE ({MAX_SIZE})");
289 }
290 if height > MAX_SIZE {
291 log::warn!("Attempted to render pixmap where height ({height}) > MAX_SIZE ({MAX_SIZE})");
292 }
293 let scale = (MAX_SIZE / width).min(MAX_SIZE / height).min(1.0);
294 width *= scale;
295 height *= scale;
296
297 let mut pixmap = resvg::tiny_skia::Pixmap::new(width as u32, height as u32)
299 .ok_or(usvg::Error::InvalidSize)?;
300
301 let transform = resvg::tiny_skia::Transform::from_scale(
302 width / svg_size.width(),
303 height / svg_size.height(),
304 );
305
306 resvg::render(tree, transform, &mut pixmap.as_mut());
307
308 Ok(pixmap)
309}
310
311fn load_bundled_fonts(asset_source: &dyn AssetSource, db: &mut usvg::fontdb::Database) {
312 let font_paths = [
313 "fonts/ibm-plex-sans/IBMPlexSans-Regular.ttf",
314 "fonts/lilex/Lilex-Regular.ttf",
315 ];
316 for path in font_paths {
317 match asset_source.load(path) {
318 Ok(Some(data)) => db.load_font_data(data.into_owned()),
319 Ok(None) => log::warn!("Bundled font not found: {path}"),
320 Err(error) => log::warn!("Failed to load bundled font {path}: {error}"),
321 }
322 }
323}
324
325fn fix_generic_font_families(db: &mut usvg::fontdb::Database) {
329 use usvg::fontdb::{Family, Query};
330
331 let families_and_fallbacks: &[(Family<'_>, &str)] = &[
332 (Family::SansSerif, "IBM Plex Sans"),
333 (Family::Serif, "IBM Plex Sans"),
335 (Family::Monospace, "Lilex"),
336 (Family::Cursive, "IBM Plex Sans"),
337 (Family::Fantasy, "IBM Plex Sans"),
338 ];
339
340 for (family, fallback_name) in families_and_fallbacks {
341 let query = Query {
342 families: &[*family],
343 ..Default::default()
344 };
345 if db.query(&query).is_none() {
346 match family {
347 Family::SansSerif => db.set_sans_serif_family(*fallback_name),
348 Family::Serif => db.set_serif_family(*fallback_name),
349 Family::Monospace => db.set_monospace_family(*fallback_name),
350 Family::Cursive => db.set_cursive_family(*fallback_name),
351 Family::Fantasy => db.set_fantasy_family(*fallback_name),
352 _ => {}
353 }
354 }
355 }
356}
357
358#[cfg(test)]
359mod tests {
360 use super::*;
361 use usvg::fontdb::{Database, Family, Query};
362
363 const IBM_PLEX_REGULAR: &[u8] =
364 include_bytes!("../../../assets/fonts/ibm-plex-sans/IBMPlexSans-Regular.ttf");
365 const LILEX_REGULAR: &[u8] = include_bytes!("../../../assets/fonts/lilex/Lilex-Regular.ttf");
366
367 #[test]
368 fn renders_parsed_svg_at_requested_size() -> Result<()> {
369 let renderer = SvgRenderer::new(Arc::new(()));
370 let svg = renderer.parse_svg(
371 br#"<svg xmlns="http://www.w3.org/2000/svg" width="24pt" height="12pt"></svg>"#,
372 )?;
373 let requested_size = Size::new(DevicePixels(24), DevicePixels(12));
374 let image = renderer.render_parsed(&svg, SvgSize::ExactSize(requested_size))?;
375
376 assert_eq!(image.size(0), requested_size);
377 Ok(())
378 }
379
380 #[test]
381 fn preserves_aspect_ratio_for_width_constrained_size() -> Result<()> {
382 let renderer = SvgRenderer::new(Arc::new(()));
383 let svg = renderer.parse_svg(
384 br#"<svg xmlns="http://www.w3.org/2000/svg" width="24pt" height="12pt"></svg>"#,
385 )?;
386 let image = renderer.render_parsed(
387 &svg,
388 SvgSize::Size(Size::new(DevicePixels(24), DevicePixels(24))),
389 )?;
390
391 assert_eq!(image.size(0), Size::new(DevicePixels(24), DevicePixels(12)));
392 Ok(())
393 }
394
395 fn db_with_bundled_fonts() -> Database {
396 let mut db = Database::new();
397 db.load_font_data(IBM_PLEX_REGULAR.to_vec());
398 db.load_font_data(LILEX_REGULAR.to_vec());
399 db
400 }
401
402 #[test]
403 fn text_with_split_glyph_clusters_in_mixed_fonts_does_not_panic() {
404 let mut db = Database::new();
405 db.load_font_data(IBM_PLEX_REGULAR.to_vec());
406 db.load_font_data(LILEX_REGULAR.to_vec());
407 let options = usvg::Options {
408 fontdb: std::sync::Arc::new(db),
409 ..Default::default()
410 };
411
412 let zalgo = "e\u{0301}\u{0302}\u{0303}\u{0304}\u{0306}\u{0307}\u{0308}\u{030a}";
417 let svg = format!(
418 r#"<svg viewBox="0 0 200 200" xmlns="http://www.w3.org/2000/svg"><text font-family="Lilex" font-size="32">{zalgo}<tspan font-family="IBM Plex Sans">{zalgo}</tspan></text></svg>"#
419 );
420
421 usvg::Tree::from_data(svg.as_bytes(), &options)
424 .expect("SVG with mixed-font text should parse");
425 }
426
427 #[test]
428 fn test_is_emoji_presentation() {
429 let cases = [
430 ("a", false),
431 ("Z", false),
432 ("1", false),
433 ("#", false),
434 ("*", false),
435 ("漢", false),
436 ("中", false),
437 ("カ", false),
438 ("©", false),
439 ("♥", false),
440 ("😀", true),
441 ("✅", true),
442 ("🇺🇸", true),
443 ("©️", false),
445 ("♥️", false),
446 ("1️⃣", false),
447 ];
448 for (s, expected) in cases {
449 assert_eq!(
450 is_emoji_presentation(s.chars().next().unwrap()),
451 expected,
452 "for char {:?}",
453 s
454 );
455 }
456 }
457
458 #[test]
459 fn fix_generic_font_families_sets_all_families() {
460 let mut db = db_with_bundled_fonts();
461 fix_generic_font_families(&mut db);
462
463 let families = [
464 Family::SansSerif,
465 Family::Serif,
466 Family::Monospace,
467 Family::Cursive,
468 Family::Fantasy,
469 ];
470
471 for family in families {
472 let query = Query {
473 families: &[family],
474 ..Default::default()
475 };
476 assert!(
477 db.query(&query).is_some(),
478 "Expected generic family {family:?} to resolve after fix_generic_font_families"
479 );
480 }
481 }
482
483 #[test]
484 fn test_select_emoji_font_skips_family_without_glyph() {
485 let mut db = db_with_bundled_fonts();
486
487 let ibm_plex_sans = db
488 .query(&usvg::fontdb::Query {
489 families: &[usvg::fontdb::Family::Name("IBM Plex Sans")],
490 weight: usvg::fontdb::Weight(400),
491 stretch: usvg::fontdb::Stretch::Normal,
492 style: usvg::fontdb::Style::Normal,
493 })
494 .unwrap();
495 let lilex = db
496 .query(&usvg::fontdb::Query {
497 families: &[usvg::fontdb::Family::Name("Lilex")],
498 weight: usvg::fontdb::Weight(400),
499 stretch: usvg::fontdb::Stretch::Normal,
500 style: usvg::fontdb::Style::Normal,
501 })
502 .unwrap();
503 let selected = select_emoji_font('│', &[], &db, &["IBM Plex Sans", "Lilex"]).unwrap();
504
505 assert_eq!(selected, lilex);
506 assert!(!font_has_char(&db, ibm_plex_sans, '│'));
507 assert!(font_has_char(&db, selected, '│'));
508 }
509
510 #[test]
511 fn fix_generic_font_families_monospace_resolves_to_lilex() {
512 let mut db = db_with_bundled_fonts();
513 fix_generic_font_families(&mut db);
514
515 let query = Query {
516 families: &[Family::Monospace],
517 ..Default::default()
518 };
519 let id = db.query(&query).expect("Monospace should resolve");
520 let face = db.face(id).expect("Face should exist");
521 assert!(
522 face.families.iter().any(|(name, _)| name.contains("Lilex")),
523 "Monospace should map to Lilex, got {:?}",
524 face.families
525 );
526 }
527}