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rgpui_wgpu/
cosmic_text_system.rs

1use anyhow::{Context as _, Ok, Result};
2use cosmic_text::{
3    Attrs, AttrsList, Ellipsize, Family, Font as CosmicTextFont,
4    FontFeatures as CosmicFontFeatures, FontSystem, ShapeBuffer, ShapeLine,
5};
6use rgpui::{
7    Bounds, DevicePixels, Font, FontFallbacks, FontFeatures, FontId, FontMetrics, FontRun, GlyphId,
8    LineLayout, Pixels, PlatformTextSystem, RenderGlyphParams, SUBPIXEL_VARIANTS_X,
9    SUBPIXEL_VARIANTS_Y, ShapedGlyph, ShapedRun, SharedString, Size, TextRenderingMode, point,
10    size,
11};
12use std::collections::HashMap;
13
14use itertools::Itertools;
15use parking_lot::RwLock;
16use smallvec::SmallVec;
17use std::{borrow::Cow, ops::Range, sync::Arc};
18use swash::{
19    scale::{Render, ScaleContext, Source, StrikeWith},
20    zeno::{Format, Vector},
21};
22use unicode_segmentation::UnicodeSegmentation;
23
24pub struct CosmicTextSystem(RwLock<CosmicTextSystemState>);
25
26#[derive(Debug, Clone, PartialEq, Eq, Hash)]
27struct FontKey {
28    family: SharedString,
29    features: FontFeatures,
30    fallbacks: Option<FontFallbacks>,
31}
32
33impl FontKey {
34    fn new(family: SharedString, features: FontFeatures, fallbacks: Option<FontFallbacks>) -> Self {
35        Self {
36            family,
37            features,
38            fallbacks,
39        }
40    }
41}
42
43struct CosmicTextSystemState {
44    font_system: FontSystem,
45    scratch: ShapeBuffer,
46    swash_scale_context: ScaleContext,
47    /// Contains all already loaded fonts, including all faces. Indexed by `FontId`.
48    loaded_fonts: Vec<LoadedFont>,
49    /// Caches the `FontId`s associated with a specific family to avoid iterating the font database
50    /// for every font face in a family.
51    font_ids_by_family_cache: HashMap<FontKey, SmallVec<[FontId; 4]>>,
52    system_font_fallback: String,
53}
54
55struct LoadedFont {
56    font: Arc<CosmicTextFont>,
57    features: CosmicFontFeatures,
58    is_known_emoji_font: bool,
59    /// resolved at load time so `layout_line` shares one chain across faces.
60    /// `Arc` keeps clone cheap on the per-run hot path.
61    user_fallback_chain: Arc<[(FontId, SharedString)]>,
62}
63
64impl CosmicTextSystem {
65    pub fn new(system_font_fallback: &str) -> Self {
66        let font_system = FontSystem::new();
67
68        Self(RwLock::new(CosmicTextSystemState {
69            font_system,
70            scratch: ShapeBuffer::default(),
71            swash_scale_context: ScaleContext::new(),
72            loaded_fonts: Vec::new(),
73            font_ids_by_family_cache: HashMap::default(),
74            system_font_fallback: system_font_fallback.to_string(),
75        }))
76    }
77
78    pub fn new_without_system_fonts(system_font_fallback: &str) -> Self {
79        let font_system = FontSystem::new_with_locale_and_db(
80            "en-US".to_string(),
81            cosmic_text::fontdb::Database::new(),
82        );
83
84        Self(RwLock::new(CosmicTextSystemState {
85            font_system,
86            scratch: ShapeBuffer::default(),
87            swash_scale_context: ScaleContext::new(),
88            loaded_fonts: Vec::new(),
89            font_ids_by_family_cache: HashMap::default(),
90            system_font_fallback: system_font_fallback.to_string(),
91        }))
92    }
93}
94
95impl PlatformTextSystem for CosmicTextSystem {
96    fn add_fonts(&self, fonts: Vec<Cow<'static, [u8]>>) -> Result<()> {
97        self.0.write().add_fonts(fonts)
98    }
99
100    fn all_font_names(&self) -> Vec<String> {
101        let mut result = self
102            .0
103            .read()
104            .font_system
105            .db()
106            .faces()
107            .filter_map(|face| face.families.first().map(|family| family.0.clone()))
108            .collect_vec();
109        result.sort_unstable();
110        result.dedup();
111        result
112    }
113
114    fn font_id(&self, font: &Font) -> Result<FontId> {
115        let mut state = self.0.write();
116        let key = FontKey::new(
117            font.family.clone(),
118            font.features.clone(),
119            font.fallbacks.clone(),
120        );
121        let candidates = if let Some(font_ids) = state.font_ids_by_family_cache.get(&key) {
122            font_ids.as_slice()
123        } else {
124            let font_ids =
125                state.load_family(&font.family, &font.features, font.fallbacks.as_ref())?;
126            state.font_ids_by_family_cache.insert(key.clone(), font_ids);
127            state.font_ids_by_family_cache[&key].as_ref()
128        };
129
130        let ix = find_best_match(font, candidates, &state)?;
131
132        Ok(candidates[ix])
133    }
134
135    fn font_metrics(&self, font_id: FontId) -> FontMetrics {
136        let metrics = self
137            .0
138            .read()
139            .loaded_font(font_id)
140            .font
141            .as_swash()
142            .metrics(&[]);
143
144        FontMetrics {
145            units_per_em: metrics.units_per_em as u32,
146            ascent: metrics.ascent,
147            descent: -metrics.descent,
148            line_gap: metrics.leading,
149            underline_position: metrics.underline_offset,
150            underline_thickness: metrics.stroke_size,
151            cap_height: metrics.cap_height,
152            x_height: metrics.x_height,
153            bounding_box: Bounds {
154                origin: point(0.0, 0.0),
155                size: size(metrics.max_width, metrics.ascent + metrics.descent),
156            },
157        }
158    }
159
160    fn typographic_bounds(&self, font_id: FontId, glyph_id: GlyphId) -> Result<Bounds<f32>> {
161        let lock = self.0.read();
162        let glyph_metrics = lock.loaded_font(font_id).font.as_swash().glyph_metrics(&[]);
163        let glyph_id = glyph_id.0 as u16;
164        Ok(Bounds {
165            origin: point(0.0, 0.0),
166            size: size(
167                glyph_metrics.advance_width(glyph_id),
168                glyph_metrics.advance_height(glyph_id),
169            ),
170        })
171    }
172
173    fn advance(&self, font_id: FontId, glyph_id: GlyphId) -> Result<Size<f32>> {
174        self.0.read().advance(font_id, glyph_id)
175    }
176
177    fn glyph_for_char(&self, font_id: FontId, ch: char) -> Option<GlyphId> {
178        self.0.read().glyph_for_char(font_id, ch)
179    }
180
181    fn glyph_raster_bounds(&self, params: &RenderGlyphParams) -> Result<Bounds<DevicePixels>> {
182        self.0.write().raster_bounds(params)
183    }
184
185    fn rasterize_glyph(
186        &self,
187        params: &RenderGlyphParams,
188        raster_bounds: Bounds<DevicePixels>,
189    ) -> Result<(Size<DevicePixels>, Vec<u8>)> {
190        self.0.write().rasterize_glyph(params, raster_bounds)
191    }
192
193    fn layout_line(&self, text: &str, font_size: Pixels, runs: &[FontRun]) -> LineLayout {
194        self.0.write().layout_line(text, font_size, runs)
195    }
196
197    fn recommended_rendering_mode(
198        &self,
199        _font_id: FontId,
200        _font_size: Pixels,
201    ) -> TextRenderingMode {
202        TextRenderingMode::Subpixel
203    }
204}
205
206impl CosmicTextSystemState {
207    fn loaded_font(&self, font_id: FontId) -> &LoadedFont {
208        &self.loaded_fonts[font_id.0]
209    }
210
211    #[profiling::function]
212    fn add_fonts(&mut self, fonts: Vec<Cow<'static, [u8]>>) -> Result<()> {
213        let db = self.font_system.db_mut();
214        for bytes in fonts {
215            // 直接以二进制字体源加载,避免把内嵌字体重复拷贝为独立缓冲区
216            db.load_font_source(cosmic_text::fontdb::Source::Binary(Arc::new(bytes)));
217        }
218        Ok(())
219    }
220
221    #[profiling::function]
222    fn load_family(
223        &mut self,
224        name: &str,
225        features: &FontFeatures,
226        fallbacks: Option<&FontFallbacks>,
227    ) -> Result<SmallVec<[FontId; 4]>> {
228        // recurse with `fallbacks = None` so a fallback family cannot pull in
229        // another chain. missing fallback families are dropped so a typo in
230        // settings still lets the primary family load.
231        let user_fallback_chain: Arc<[(FontId, SharedString)]> = match fallbacks {
232            Some(fallbacks) if !fallbacks.fallback_list().is_empty() => {
233                let mut chain: Vec<(FontId, SharedString)> = Vec::new();
234                for fallback_name in fallbacks.fallback_list() {
235                    let fb_key = FontKey::new(
236                        SharedString::from(fallback_name.clone()),
237                        features.clone(),
238                        None,
239                    );
240                    let fb_ids = if let Some(cached) = self.font_ids_by_family_cache.get(&fb_key) {
241                        cached.clone()
242                    } else {
243                        let loaded = self.load_family(fallback_name, features, None)?;
244                        self.font_ids_by_family_cache
245                            .insert(fb_key.clone(), loaded.clone());
246                        loaded
247                    };
248                    let Some(&fb_id) = fb_ids.first() else {
249                        continue;
250                    };
251                    let db_id = self.loaded_fonts[fb_id.0].font.id();
252                    if let Some(face) = self.font_system.db().face(db_id)
253                        && let Some(family) = face.families.first()
254                    {
255                        chain.push((fb_id, SharedString::from(family.0.clone())));
256                    }
257                }
258                Arc::from(chain)
259            }
260            _ => Arc::from(Vec::new()),
261        };
262
263        let name = rgpui::font_name_with_fallbacks(name, &self.system_font_fallback);
264
265        let families = self
266            .font_system
267            .db()
268            .faces()
269            .filter(|face| face.families.iter().any(|family| *name == family.0))
270            .map(|face| (face.id, face.post_script_name.clone()))
271            .collect::<SmallVec<[_; 4]>>();
272
273        let cosmic_features = cosmic_font_features(features)?;
274
275        let mut loaded_font_ids = SmallVec::new();
276        for (font_id, postscript_name) in families {
277            let font = self
278                .font_system
279                .get_font(font_id, cosmic_text::Weight::NORMAL)
280                .context("Could not load font")?;
281
282            // HACK: To let the storybook run and render Windows caption icons. We should actually do better font fallback.
283            let allowed_bad_font_names = [
284                "SegoeFluentIcons", // NOTE: Segoe fluent icons postscript name is inconsistent
285                "Segoe Fluent Icons",
286            ];
287
288            if font.as_swash().charmap().map('m') == 0
289                && !allowed_bad_font_names.contains(&postscript_name.as_str())
290            {
291                self.font_system.db_mut().remove_face(font.id());
292                continue;
293            };
294
295            let font_id = FontId(self.loaded_fonts.len());
296            loaded_font_ids.push(font_id);
297            self.loaded_fonts.push(LoadedFont {
298                font,
299                features: cosmic_features.clone(),
300                is_known_emoji_font: check_is_known_emoji_font(&postscript_name),
301                user_fallback_chain: Arc::clone(&user_fallback_chain),
302            });
303        }
304
305        Ok(loaded_font_ids)
306    }
307
308    fn advance(&self, font_id: FontId, glyph_id: GlyphId) -> Result<Size<f32>> {
309        let glyph_metrics = self.loaded_font(font_id).font.as_swash().glyph_metrics(&[]);
310        Ok(Size {
311            width: glyph_metrics.advance_width(glyph_id.0 as u16),
312            height: glyph_metrics.advance_height(glyph_id.0 as u16),
313        })
314    }
315
316    fn glyph_for_char(&self, font_id: FontId, ch: char) -> Option<GlyphId> {
317        let glyph_id = self.loaded_font(font_id).font.as_swash().charmap().map(ch);
318        if glyph_id == 0 {
319            None
320        } else {
321            Some(GlyphId(glyph_id.into()))
322        }
323    }
324
325    fn raster_bounds(&mut self, params: &RenderGlyphParams) -> Result<Bounds<DevicePixels>> {
326        let image = self.render_glyph_image(params)?;
327        Ok(Bounds {
328            origin: point(image.placement.left.into(), (-image.placement.top).into()),
329            size: size(image.placement.width.into(), image.placement.height.into()),
330        })
331    }
332
333    #[profiling::function]
334    fn rasterize_glyph(
335        &mut self,
336        params: &RenderGlyphParams,
337        glyph_bounds: Bounds<DevicePixels>,
338    ) -> Result<(Size<DevicePixels>, Vec<u8>)> {
339        if glyph_bounds.size.width.0 == 0 || glyph_bounds.size.height.0 == 0 {
340            anyhow::bail!("glyph bounds are empty");
341        }
342
343        let mut image = self.render_glyph_image(params)?;
344        let bitmap_size = glyph_bounds.size;
345        match image.content {
346            swash::scale::image::Content::Color | swash::scale::image::Content::SubpixelMask => {
347                // Convert from RGBA to BGRA.
348                for pixel in image.data.chunks_exact_mut(4) {
349                    pixel.swap(0, 2);
350                }
351                Ok((bitmap_size, image.data))
352            }
353            swash::scale::image::Content::Mask => {
354                if params.subpixel_rendering {
355                    // We must always return RGBA data when subpixel rendering is requested.
356                    let expanded = image.data.iter().flat_map(|&a| [a, a, a, a]).collect();
357                    Ok((bitmap_size, expanded))
358                } else {
359                    Ok((bitmap_size, image.data))
360                }
361            }
362        }
363    }
364
365    fn render_glyph_image(
366        &mut self,
367        params: &RenderGlyphParams,
368    ) -> Result<swash::scale::image::Image> {
369        let loaded_font = &self.loaded_fonts[params.font_id.0];
370        let font_ref = loaded_font.font.as_swash();
371        let pixel_size = f32::from(params.font_size);
372
373        let subpixel_offset = Vector::new(
374            params.subpixel_variant.x as f32 / SUBPIXEL_VARIANTS_X as f32 / params.scale_factor,
375            params.subpixel_variant.y as f32 / SUBPIXEL_VARIANTS_Y as f32 / params.scale_factor,
376        );
377
378        let mut scaler = self
379            .swash_scale_context
380            .builder(font_ref)
381            .size(pixel_size * params.scale_factor)
382            .hint(true)
383            .build();
384
385        let sources: &[Source] = if params.is_emoji {
386            &[
387                Source::ColorOutline(0),
388                Source::ColorBitmap(StrikeWith::BestFit),
389                Source::Outline,
390            ]
391        } else {
392            &[Source::Bitmap(StrikeWith::ExactSize), Source::Outline]
393        };
394
395        let mut renderer = Render::new(sources);
396        if params.subpixel_rendering {
397            // There seems to be a bug in Swash where the B and R values are swapped.
398            renderer
399                .format(Format::subpixel_bgra())
400                .offset(subpixel_offset);
401        } else {
402            renderer.format(Format::Alpha).offset(subpixel_offset);
403        }
404
405        let glyph_id: u16 = params.glyph_id.0.try_into()?;
406        renderer
407            .render(&mut scaler, glyph_id)
408            .with_context(|| format!("unable to render glyph via swash for {params:?}"))
409    }
410
411    /// This is used when cosmic_text has chosen a fallback font instead of using the requested
412    /// font, typically to handle some unicode characters. When this happens, `loaded_fonts` may not
413    /// yet have an entry for this fallback font, and so one is added.
414    ///
415    /// Note that callers shouldn't use this `FontId` somewhere that will retrieve the corresponding
416    /// `LoadedFont.features`, as it will have an arbitrarily chosen or empty value. The only
417    /// current use of this field is for the *input* of `layout_line`, and so it's fine to use
418    /// `font_id_for_cosmic_id` when computing the *output* of `layout_line`.
419    fn font_id_for_cosmic_id(&mut self, id: cosmic_text::fontdb::ID) -> Result<FontId> {
420        if let Some(ix) = self
421            .loaded_fonts
422            .iter()
423            .position(|loaded_font| loaded_font.font.id() == id)
424        {
425            Ok(FontId(ix))
426        } else {
427            let font = self
428                .font_system
429                .get_font(id, cosmic_text::Weight::NORMAL)
430                .context("failed to get fallback font from cosmic-text font system")?;
431            let face = self
432                .font_system
433                .db()
434                .face(id)
435                .context("fallback font face not found in cosmic-text database")?;
436
437            let font_id = FontId(self.loaded_fonts.len());
438            self.loaded_fonts.push(LoadedFont {
439                font,
440                features: CosmicFontFeatures::new(),
441                is_known_emoji_font: check_is_known_emoji_font(&face.post_script_name),
442                user_fallback_chain: Arc::from(Vec::new()),
443            });
444
445            Ok(font_id)
446        }
447    }
448
449    #[profiling::function]
450    fn layout_line(&mut self, text: &str, font_size: Pixels, font_runs: &[FontRun]) -> LineLayout {
451        if contains_paragraph_separator(text) {
452            self.layout_line_with_separators(text, font_size, font_runs)
453        } else {
454            self.layout_line_no_separators(text, font_size, font_runs)
455        }
456    }
457
458    fn layout_line_with_separators(
459        &mut self,
460        text: &str,
461        font_size: Pixels,
462        font_runs: &[FontRun],
463    ) -> LineLayout {
464        let mut layout = LineLayout {
465            font_size,
466            len: text.len(),
467            ..Default::default()
468        };
469        let mut paragraph_start = 0;
470
471        for (separator_start, separator) in text
472            .char_indices()
473            .filter(|(_, character)| is_paragraph_separator(*character))
474        {
475            let separator_end = separator_start + separator.len_utf8();
476            self.shape_segment(
477                text,
478                paragraph_start..separator_start,
479                font_size,
480                font_runs,
481                &mut layout,
482            );
483            self.shape_segment(
484                text,
485                separator_start..separator_end,
486                font_size,
487                font_runs,
488                &mut layout,
489            );
490            paragraph_start = separator_end;
491        }
492
493        self.shape_segment(
494            text,
495            paragraph_start..text.len(),
496            font_size,
497            font_runs,
498            &mut layout,
499        );
500
501        layout
502    }
503
504    fn shape_segment(
505        &mut self,
506        text: &str,
507        range: Range<usize>,
508        font_size: Pixels,
509        font_runs: &[FontRun],
510        layout: &mut LineLayout,
511    ) {
512        if range.is_empty() {
513            return;
514        }
515
516        let segment_font_runs = clip_font_runs(font_runs, range.clone());
517        // `range` 正常来自 `char_indices`(已是边界);防御性吸附,
518        // 装饰 run 过期导致非边界时不 panic。
519        let start = text.floor_char_boundary(range.start.min(text.len()));
520        let end = text
521            .floor_char_boundary(range.end.min(text.len()))
522            .max(start);
523        let segment =
524            self.layout_line_no_separators(&text[start..end], font_size, &segment_font_runs);
525
526        let mut segment_runs = segment.runs;
527        for run in &mut segment_runs {
528            for glyph in &mut run.glyphs {
529                glyph.index += start;
530                glyph.position.x += layout.width;
531            }
532        }
533
534        for mut run in segment_runs {
535            if let Some(same_run) = layout
536                .runs
537                .last_mut()
538                .filter(|last| last.font_id == run.font_id)
539            {
540                same_run.glyphs.append(&mut run.glyphs);
541            } else {
542                layout.runs.push(run);
543            }
544        }
545
546        layout.width += segment.width;
547        layout.ascent = layout.ascent.max(segment.ascent);
548        layout.descent = layout.descent.max(segment.descent);
549    }
550
551    fn layout_line_no_separators(
552        &mut self,
553        text: &str,
554        font_size: Pixels,
555        font_runs: &[FontRun],
556    ) -> LineLayout {
557        let mut attrs_list = AttrsList::new(&Attrs::new());
558        let mut offs = 0;
559        for run in font_runs {
560            let run_end = offs + run.len;
561
562            let loaded_font = self.loaded_font(run.font_id);
563            let Some(face) = self.font_system.db().face(loaded_font.font.id()) else {
564                log::warn!(
565                    "font face not found in database for font_id {:?}",
566                    run.font_id
567                );
568                offs = run_end;
569                continue;
570            };
571            let Some(first_family) = face.families.first() else {
572                log::warn!(
573                    "font face has no family names for font_id {:?}",
574                    run.font_id
575                );
576                offs = run_end;
577                continue;
578            };
579
580            let primary_family_name: SharedString = first_family.0.clone().into();
581            let primary_stretch = face.stretch;
582            let primary_style = face.style;
583            let primary_weight = face.weight;
584            let primary_features = loaded_font.features.clone();
585            let fallback_chain = Arc::clone(&loaded_font.user_fallback_chain);
586
587            // build one `Attrs` per slot up front. each clone of span attrs
588            // would otherwise re-allocate the `font_features` Vec.
589            let primary_attrs = Attrs::new()
590                .metadata(run.font_id.0)
591                .family(Family::Name(&primary_family_name))
592                .stretch(primary_stretch)
593                .style(primary_style)
594                .weight(primary_weight)
595                .font_features(primary_features.clone());
596            let fallback_attrs: SmallVec<[Attrs<'_>; 4]> = fallback_chain
597                .iter()
598                .map(|(fb_id, fb_name)| {
599                    Attrs::new()
600                        .metadata(fb_id.0)
601                        .family(Family::Name(fb_name))
602                        .stretch(primary_stretch)
603                        .style(primary_style)
604                        .weight(primary_weight)
605                        .font_features(primary_features.clone())
606                })
607                .collect();
608
609            let spans = if fallback_chain.is_empty() {
610                let mut spans = SmallVec::<[RunSpan; 4]>::new();
611                spans.push(RunSpan {
612                    start: offs,
613                    end: run_end,
614                    slot: None,
615                    font_id: run.font_id,
616                });
617                spans
618            } else {
619                let loaded_fonts = &self.loaded_fonts;
620                let covers = |id: FontId, ch: char| charmap_covers(loaded_fonts, id, ch);
621                compute_run_spans(text, offs, run.len, run.font_id, &fallback_chain, &covers)
622            };
623
624            for span in spans {
625                let attrs = match span.slot {
626                    None => &primary_attrs,
627                    Some(ix) => &fallback_attrs[ix],
628                };
629                attrs_list.add_span(span.start..span.end, attrs);
630            }
631            offs = run_end;
632        }
633
634        let line = ShapeLine::new(
635            &mut self.font_system,
636            text,
637            &attrs_list,
638            cosmic_text::Shaping::Advanced,
639            4,
640        );
641        let mut layout_lines = Vec::with_capacity(1);
642        line.layout_to_buffer(
643            &mut self.scratch,
644            f32::from(font_size),
645            None, // We do our own wrapping
646            cosmic_text::Wrap::None,
647            Ellipsize::None,
648            None,
649            &mut layout_lines,
650            None,
651            cosmic_text::Hinting::Disabled,
652        );
653
654        let Some(layout) = layout_lines.first() else {
655            return LineLayout {
656                font_size,
657                width: Pixels::ZERO,
658                ascent: Pixels::ZERO,
659                descent: Pixels::ZERO,
660                runs: Vec::new(),
661                len: text.len(),
662            };
663        };
664
665        let mut runs: Vec<ShapedRun> = Vec::new();
666        for glyph in &layout.glyphs {
667            let mut font_id = FontId(glyph.metadata);
668            let mut loaded_font = self.loaded_font(font_id);
669            if loaded_font.font.id() != glyph.font_id {
670                match self.font_id_for_cosmic_id(glyph.font_id) {
671                    std::result::Result::Ok(resolved_id) => {
672                        font_id = resolved_id;
673                        loaded_font = self.loaded_font(font_id);
674                    }
675                    Err(error) => {
676                        log::warn!(
677                            "failed to resolve cosmic font id {:?}: {error:#}",
678                            glyph.font_id
679                        );
680                        continue;
681                    }
682                }
683            }
684            let is_emoji = loaded_font.is_known_emoji_font;
685
686            // HACK: Prevent crash caused by variation selectors.
687            if glyph.glyph_id == 3 && is_emoji {
688                continue;
689            }
690
691            let shaped_glyph = ShapedGlyph {
692                id: GlyphId(glyph.glyph_id as u32),
693                position: point(glyph.x.into(), glyph.y.into()),
694                index: glyph.start,
695                is_emoji,
696            };
697
698            if let Some(last_run) = runs
699                .last_mut()
700                .filter(|last_run| last_run.font_id == font_id)
701            {
702                last_run.glyphs.push(shaped_glyph);
703            } else {
704                runs.push(ShapedRun {
705                    font_id,
706                    glyphs: vec![shaped_glyph],
707                });
708            }
709        }
710
711        LineLayout {
712            font_size,
713            width: layout.w.into(),
714            ascent: layout.max_ascent.into(),
715            descent: layout.max_descent.into(),
716            runs,
717            len: text.len(),
718        }
719    }
720}
721
722#[inline(always)]
723fn is_paragraph_separator(character: char) -> bool {
724    unicode_bidi::bidi_class(character) == unicode_bidi::BidiClass::B
725}
726
727fn contains_paragraph_separator(text: &str) -> bool {
728    if text
729        .bytes()
730        .any(|byte| matches!(byte, b'\n' | b'\r' | 0x1c | 0x1d | 0x1e))
731    {
732        return true;
733    }
734
735    !text.is_ascii() && text.chars().any(is_paragraph_separator)
736}
737
738fn clip_font_runs(font_runs: &[FontRun], range: Range<usize>) -> SmallVec<[FontRun; 4]> {
739    let mut clipped = SmallVec::new();
740    let mut offs = 0;
741    for run in font_runs {
742        let run_start = offs;
743        offs += run.len;
744        if offs <= range.start {
745            continue;
746        }
747        if run_start >= range.end {
748            break;
749        }
750        let start = run_start.max(range.start);
751        let end = offs.min(range.end);
752        if start < end {
753            clipped.push(FontRun {
754                len: end - start,
755                font_id: run.font_id,
756            });
757        }
758    }
759    clipped
760}
761
762#[cfg(feature = "font-kit")]
763fn find_best_match(
764    font: &Font,
765    candidates: &[FontId],
766    state: &CosmicTextSystemState,
767) -> Result<usize> {
768    let candidate_properties = candidates
769        .iter()
770        .map(|font_id| {
771            let database_id = state.loaded_font(*font_id).font.id();
772            let face_info = state
773                .font_system
774                .db()
775                .face(database_id)
776                .context("font face not found in database")?;
777            Ok(face_info_into_properties(face_info))
778        })
779        .collect::<Result<SmallVec<[_; 4]>>>()?;
780
781    let ix =
782        font_kit::matching::find_best_match(&candidate_properties, &font_into_properties(font))
783            .context("requested font family contains no font matching the other parameters")?;
784
785    Ok(ix)
786}
787
788#[cfg(not(feature = "font-kit"))]
789fn find_best_match(
790    font: &Font,
791    candidates: &[FontId],
792    state: &CosmicTextSystemState,
793) -> Result<usize> {
794    if candidates.is_empty() {
795        anyhow::bail!("requested font family contains no font matching the other parameters");
796    }
797    if candidates.len() == 1 {
798        return Ok(0);
799    }
800
801    let target_weight = font.weight.0;
802    let target_italic = matches!(
803        font.style,
804        rgpui::FontStyle::Italic | rgpui::FontStyle::Oblique
805    );
806
807    let mut best_index = 0;
808    let mut best_score = u32::MAX;
809
810    for (index, font_id) in candidates.iter().enumerate() {
811        let database_id = state.loaded_font(*font_id).font.id();
812        let face_info = state
813            .font_system
814            .db()
815            .face(database_id)
816            .context("font face not found in database")?;
817
818        let is_italic = matches!(
819            face_info.style,
820            cosmic_text::Style::Italic | cosmic_text::Style::Oblique
821        );
822        let style_penalty: u32 = if is_italic == target_italic { 0 } else { 1000 };
823        let weight_diff = (face_info.weight.0 as i32 - target_weight as i32).unsigned_abs();
824        let score = style_penalty + weight_diff;
825
826        if score < best_score {
827            best_score = score;
828            best_index = index;
829        }
830    }
831
832    Ok(best_index)
833}
834
835/// one contiguous slice of a `FontRun` that maps to a single slot. `slot` is
836/// `None` for the primary font and `Some(ix)` for `fallback_chain[ix]`.
837#[derive(Debug, Clone, Copy, PartialEq, Eq)]
838struct RunSpan {
839    start: usize,
840    end: usize,
841    slot: Option<usize>,
842    font_id: FontId,
843}
844
845/// walks `text[run_offset..run_offset + run_len]` and groups codepoints into
846/// spans. inheriting codepoints stay in the current span so shaping clusters
847/// like emoji zwj sequences and combining marks are not torn apart.
848fn compute_run_spans(
849    text: &str,
850    run_offset: usize,
851    run_len: usize,
852    primary: FontId,
853    fallback_chain: &[(FontId, SharedString)],
854    covers: &impl Fn(FontId, char) -> bool,
855) -> SmallVec<[RunSpan; 4]> {
856    let mut spans = SmallVec::new();
857    let run_end = run_offset + run_len;
858    if run_end <= run_offset {
859        return spans;
860    }
861    // 上游 run 区间理论上落在字符边界,但装饰/字体 run 过期错位时可能不是;
862    // 吸附后再切片,正常对齐时与原逻辑等价,错位时不 panic。
863    let run_offset = text.floor_char_boundary(run_offset.min(text.len()));
864    let run_end = text
865        .floor_char_boundary(run_end.min(text.len()))
866        .max(run_offset);
867    if run_end <= run_offset {
868        return spans;
869    }
870    if fallback_chain.is_empty() {
871        spans.push(RunSpan {
872            start: run_offset,
873            end: run_end,
874            slot: None,
875            font_id: primary,
876        });
877        return spans;
878    }
879    let run_text = &text[run_offset..run_end];
880    let mut span_start = run_offset;
881    let mut span_slot: Option<usize> = None;
882    let mut span_font_id = primary;
883    for (grapheme_idx, grapheme) in run_text.grapheme_indices(true) {
884        let abs = run_offset + grapheme_idx;
885        let ch = grapheme.chars().next().unwrap_or('\0');
886        let next_slot = pick_covering_slot(ch, span_slot, primary, fallback_chain, covers);
887        if next_slot == span_slot {
888            continue;
889        }
890        if abs > span_start {
891            spans.push(RunSpan {
892                start: span_start,
893                end: abs,
894                slot: span_slot,
895                font_id: span_font_id,
896            });
897        }
898        span_start = abs;
899        span_slot = next_slot;
900        span_font_id = slot_font_id(next_slot, primary, fallback_chain);
901    }
902    if span_start < run_end {
903        spans.push(RunSpan {
904            start: span_start,
905            end: run_end,
906            slot: span_slot,
907            font_id: span_font_id,
908        });
909    }
910    spans
911}
912
913fn slot_font_id(
914    slot: Option<usize>,
915    primary: FontId,
916    fallback_chain: &[(FontId, SharedString)],
917) -> FontId {
918    match slot {
919        None => primary,
920        Some(ix) => fallback_chain[ix].0,
921    }
922}
923
924fn pick_covering_slot(
925    ch: char,
926    current: Option<usize>,
927    primary: FontId,
928    fallback_chain: &[(FontId, SharedString)],
929    covers: &impl Fn(FontId, char) -> bool,
930) -> Option<usize> {
931    if (ch as u32) <= 0x7F {
932        return None;
933    }
934    if covers(primary, ch) {
935        return None;
936    }
937    let current_id = slot_font_id(current, primary, fallback_chain);
938    if covers(current_id, ch) {
939        return current;
940    }
941
942    fallback_chain
943        .iter()
944        .position(|(fb_id, _)| covers(*fb_id, ch))
945}
946
947fn charmap_covers(loaded_fonts: &[LoadedFont], id: FontId, ch: char) -> bool {
948    loaded_fonts
949        .get(id.0)
950        .is_some_and(|loaded| loaded.font.as_swash().charmap().map(ch) != 0)
951}
952
953fn cosmic_font_features(features: &FontFeatures) -> Result<CosmicFontFeatures> {
954    let mut result = CosmicFontFeatures::new();
955    for feature in features.0.iter() {
956        let name_bytes: [u8; 4] = feature
957            .0
958            .as_bytes()
959            .try_into()
960            .context("Incorrect feature flag format")?;
961
962        let tag = cosmic_text::FeatureTag::new(&name_bytes);
963
964        result.set(tag, feature.1);
965    }
966    Ok(result)
967}
968
969#[cfg(feature = "font-kit")]
970fn font_into_properties(font: &rgpui::Font) -> font_kit::properties::Properties {
971    font_kit::properties::Properties {
972        style: match font.style {
973            rgpui::FontStyle::Normal => font_kit::properties::Style::Normal,
974            rgpui::FontStyle::Italic => font_kit::properties::Style::Italic,
975            rgpui::FontStyle::Oblique => font_kit::properties::Style::Oblique,
976        },
977        weight: font_kit::properties::Weight(font.weight.0),
978        stretch: Default::default(),
979    }
980}
981
982#[cfg(feature = "font-kit")]
983fn face_info_into_properties(
984    face_info: &cosmic_text::fontdb::FaceInfo,
985) -> font_kit::properties::Properties {
986    font_kit::properties::Properties {
987        style: match face_info.style {
988            cosmic_text::Style::Normal => font_kit::properties::Style::Normal,
989            cosmic_text::Style::Italic => font_kit::properties::Style::Italic,
990            cosmic_text::Style::Oblique => font_kit::properties::Style::Oblique,
991        },
992        weight: font_kit::properties::Weight(face_info.weight.0.into()),
993        stretch: match face_info.stretch {
994            cosmic_text::Stretch::Condensed => font_kit::properties::Stretch::CONDENSED,
995            cosmic_text::Stretch::Expanded => font_kit::properties::Stretch::EXPANDED,
996            cosmic_text::Stretch::ExtraCondensed => font_kit::properties::Stretch::EXTRA_CONDENSED,
997            cosmic_text::Stretch::ExtraExpanded => font_kit::properties::Stretch::EXTRA_EXPANDED,
998            cosmic_text::Stretch::Normal => font_kit::properties::Stretch::NORMAL,
999            cosmic_text::Stretch::SemiCondensed => font_kit::properties::Stretch::SEMI_CONDENSED,
1000            cosmic_text::Stretch::SemiExpanded => font_kit::properties::Stretch::SEMI_EXPANDED,
1001            cosmic_text::Stretch::UltraCondensed => font_kit::properties::Stretch::ULTRA_CONDENSED,
1002            cosmic_text::Stretch::UltraExpanded => font_kit::properties::Stretch::ULTRA_EXPANDED,
1003        },
1004    }
1005}
1006
1007fn check_is_known_emoji_font(postscript_name: &str) -> bool {
1008    // TODO: Include other common emoji fonts
1009    postscript_name == "NotoColorEmoji"
1010}
1011
1012#[cfg(test)]
1013mod tests {
1014    use super::*;
1015
1016    fn fid(i: usize) -> FontId {
1017        FontId(i)
1018    }
1019
1020    fn chain(ids: &[usize]) -> SmallVec<[(FontId, SharedString); 4]> {
1021        ids.iter()
1022            .map(|&i| (fid(i), SharedString::from(format!("fb{i}"))))
1023            .collect()
1024    }
1025
1026    fn span(start: usize, end: usize, slot: Option<usize>, font_id: FontId) -> RunSpan {
1027        RunSpan {
1028            start,
1029            end,
1030            slot,
1031            font_id,
1032        }
1033    }
1034
1035    const IBM_PLEX: &[u8] =
1036        include_bytes!("../../../assets/fonts/ibm-plex-sans/IBMPlexSans-Regular.ttf");
1037
1038    /// Every code point of `Bidi_Class=B`, each of which starts a new bidi
1039    /// paragraph and so can split one line into mixed-direction paragraphs.
1040    const SEPARATORS: &[char] = &[
1041        '\u{000a}', '\u{000d}', '\u{001c}', '\u{001d}', '\u{001e}', '\u{0085}', '\u{2029}',
1042    ];
1043
1044    fn text_system() -> Result<CosmicTextSystem> {
1045        let text_system = CosmicTextSystem::new_without_system_fonts("IBM Plex Sans");
1046        text_system.add_fonts(vec![Cow::Borrowed(IBM_PLEX)])?;
1047        Ok(text_system)
1048    }
1049
1050    fn layout_text(text_system: &CosmicTextSystem, text: &str) -> Result<LineLayout> {
1051        let font_id = text_system.font_id(&rgpui::font("IBM Plex Sans"))?;
1052        let runs = [FontRun {
1053            len: text.len(),
1054            font_id,
1055        }];
1056        Ok(text_system.layout_line(text, rgpui::px(14.0), &runs))
1057    }
1058
1059    /// Mirrors the original crash: mixed-direction text reaching the shaper
1060    /// through `shape_text`, which only splits lines on `\n`.
1061    #[test]
1062    fn shape_text_with_mixed_direction_paragraphs() -> Result<()> {
1063        let platform_text_system = Arc::new(text_system()?);
1064        let text_system = Arc::new(rgpui::TextSystem::new(platform_text_system));
1065        let window_text_system = rgpui::WindowTextSystem::new(text_system);
1066
1067        let text: SharedString = "first line\n\u{05d0}\u{001c}A".into();
1068        let runs = [rgpui::TextRun {
1069            len: text.len(),
1070            font: rgpui::font("IBM Plex Sans"),
1071            ..Default::default()
1072        }];
1073
1074        let lines = window_text_system.shape_text(text, rgpui::px(14.0), &runs, None, None)?;
1075
1076        assert_eq!(lines.len(), 2);
1077        assert_eq!(lines[1].len(), "\u{05d0}\u{001c}A".len());
1078        assert!(lines[1].width() > Pixels::ZERO);
1079        Ok(())
1080    }
1081
1082    #[test]
1083    fn layout_line_with_mixed_direction_paragraphs() -> Result<()> {
1084        let text_system = text_system()?;
1085
1086        for separator in SEPARATORS {
1087            for text in [
1088                format!("\u{05d0}{separator}A"),
1089                format!("A{separator}\u{05d0}"),
1090            ] {
1091                let layout = layout_text(&text_system, &text)?;
1092
1093                assert_eq!(layout.len, text.len(), "{text:?}");
1094                assert!(layout.width > Pixels::ZERO, "{text:?}");
1095                assert!(
1096                    layout.runs.iter().any(|run| !run.glyphs.is_empty()),
1097                    "{text:?}"
1098                );
1099            }
1100        }
1101
1102        Ok(())
1103    }
1104
1105    #[test]
1106    fn layout_line_with_separators_at_line_edges() -> Result<()> {
1107        let text_system = text_system()?;
1108
1109        for text in [
1110            "\u{001c}",
1111            "\u{001c}\u{001c}",
1112            "\u{001c}\u{05d0}",
1113            "\u{05d0}\u{001c}",
1114            "\u{05d0}\u{001c}\u{001c}A",
1115            "\u{001c}\u{05d0}\u{001c}A\u{001c}",
1116        ] {
1117            let layout = layout_text(&text_system, text)?;
1118            assert_eq!(layout.len, text.len(), "{text:?}");
1119        }
1120
1121        Ok(())
1122    }
1123
1124    /// Glyph indices must stay absolute and positions ordered across segment
1125    /// boundaries, otherwise cursor placement and hit testing desync. Uses
1126    /// single-direction text so visual order matches logical order.
1127    #[test]
1128    fn layout_line_keeps_indices_and_positions_ordered_across_paragraphs() -> Result<()> {
1129        let text_system = text_system()?;
1130        let text = "ab\u{001c}cd\u{2029}ef";
1131        let layout = layout_text(&text_system, text)?;
1132
1133        let glyphs: Vec<_> = layout.runs.iter().flat_map(|run| &run.glyphs).collect();
1134        assert!(!glyphs.is_empty());
1135
1136        for glyph in &glyphs {
1137            assert!(glyph.index < text.len(), "{:?}", glyph.index);
1138            assert!(text.is_char_boundary(glyph.index), "{:?}", glyph.index);
1139        }
1140        for pair in glyphs.windows(2) {
1141            assert!(pair[0].index < pair[1].index);
1142            assert!(pair[0].position.x <= pair[1].position.x);
1143        }
1144
1145        // Every segment contributes width, so the whole line is wider than its
1146        // leading paragraph alone.
1147        assert!(layout.width > layout_text(&text_system, "ab")?.width);
1148        Ok(())
1149    }
1150
1151    /// A font run boundary that does not line up with a paragraph boundary must
1152    /// still be clipped to the right segments.
1153    #[test]
1154    fn layout_line_with_font_run_straddling_a_separator() -> Result<()> {
1155        let text_system = text_system()?;
1156        let font_id = text_system.font_id(&rgpui::font("IBM Plex Sans"))?;
1157        let text = "ab\u{001c}\u{05d0}\u{05d1}";
1158
1159        // The run boundary falls inside the trailing RTL paragraph.
1160        let runs = [
1161            FontRun {
1162                len: "ab\u{001c}\u{05d0}".len(),
1163                font_id,
1164            },
1165            FontRun {
1166                len: "\u{05d1}".len(),
1167                font_id,
1168            },
1169        ];
1170        let layout = text_system.layout_line(text, rgpui::px(14.0), &runs);
1171
1172        assert_eq!(layout.len, text.len());
1173        assert!(layout.width > Pixels::ZERO);
1174        Ok(())
1175    }
1176
1177    /// Lines with no separator take the fast path and must be shaped exactly as
1178    /// they were before paragraph splitting existed.
1179    #[test]
1180    fn layout_line_without_separators_takes_fast_path() -> Result<()> {
1181        let text_system = text_system()?;
1182
1183        for text in [
1184            "hello world",
1185            "\u{05d0}\u{05d1}\u{05d2}",
1186            "mixed \u{05d0}\u{05d1}",
1187        ] {
1188            assert!(!contains_paragraph_separator(text), "{text:?}");
1189            let layout = layout_text(&text_system, text)?;
1190            assert_eq!(layout.len, text.len(), "{text:?}");
1191            assert!(layout.width > Pixels::ZERO, "{text:?}");
1192        }
1193
1194        Ok(())
1195    }
1196
1197    #[test]
1198    fn paragraph_separator_detection() {
1199        for separator in SEPARATORS {
1200            assert!(is_paragraph_separator(*separator), "{separator:?}");
1201            assert!(contains_paragraph_separator(&format!("a{separator}b")));
1202        }
1203
1204        for text in [
1205            "",
1206            "plain ascii",
1207            "\u{05d0}",
1208            "tab\there",
1209            "emoji \u{1f600}",
1210        ] {
1211            assert!(!contains_paragraph_separator(text), "{text:?}");
1212        }
1213    }
1214
1215    #[test]
1216    fn font_runs_are_clipped_to_segment() {
1217        let runs = [
1218            FontRun {
1219                len: 3,
1220                font_id: fid(1),
1221            },
1222            FontRun {
1223                len: 4,
1224                font_id: fid(2),
1225            },
1226        ];
1227
1228        assert_eq!(clip_font_runs(&runs, 0..7).as_slice(), &runs);
1229        assert_eq!(
1230            clip_font_runs(&runs, 2..5).as_slice(),
1231            &[
1232                FontRun {
1233                    len: 1,
1234                    font_id: fid(1)
1235                },
1236                FontRun {
1237                    len: 2,
1238                    font_id: fid(2)
1239                },
1240            ]
1241        );
1242        assert_eq!(
1243            clip_font_runs(&runs, 3..7).as_slice(),
1244            &[FontRun {
1245                len: 4,
1246                font_id: fid(2)
1247            }]
1248        );
1249        assert!(clip_font_runs(&runs, 5..5).is_empty());
1250    }
1251
1252    #[test]
1253    fn primary_wins_over_current_fallback_when_primary_covers() {
1254        let primary = fid(0);
1255        let fb = chain(&[1, 2]);
1256        let covers = |id: FontId, _: char| id == fid(0) || id == fid(1);
1257        assert_eq!(
1258            pick_covering_slot('a', Some(0), primary, &fb, &covers),
1259            None
1260        );
1261    }
1262
1263    #[test]
1264    fn primary_preferred_over_fallback_when_both_cover() {
1265        let primary = fid(0);
1266        let fb = chain(&[1]);
1267        let covers = |_: FontId, _: char| true;
1268        assert_eq!(pick_covering_slot('a', None, primary, &fb, &covers), None);
1269    }
1270
1271    #[test]
1272    fn falls_through_chain_in_order() {
1273        let primary = fid(0);
1274        let fb = chain(&[1, 2, 3]);
1275        // only fallback 2 at index 1 covers.
1276        let covers = |id: FontId, _: char| id == fid(2);
1277        assert_eq!(
1278            pick_covering_slot('瀛', None, primary, &fb, &covers),
1279            Some(1)
1280        );
1281    }
1282
1283    #[test]
1284    fn no_coverage_returns_primary() {
1285        let primary = fid(0);
1286        let fb = chain(&[1, 2]);
1287        let covers = |_: FontId, _: char| false;
1288        // nothing covers. return `None` so the `cosmic-text` built in script
1289        // fallback can take over during shaping.
1290        assert_eq!(
1291            pick_covering_slot('\u{1F600}', Some(1), primary, &fb, &covers),
1292            None
1293        );
1294    }
1295
1296    #[test]
1297    fn empty_chain_always_returns_primary() {
1298        let primary = fid(0);
1299        let fb: SmallVec<[(FontId, SharedString); 4]> = SmallVec::new();
1300        let covers = |_: FontId, _: char| false;
1301        assert_eq!(pick_covering_slot('a', None, primary, &fb, &covers), None);
1302    }
1303
1304    #[test]
1305    fn slot_font_id_resolution() {
1306        let primary = fid(7);
1307        let fb = chain(&[10, 20]);
1308        assert_eq!(slot_font_id(None, primary, &fb), fid(7));
1309        assert_eq!(slot_font_id(Some(0), primary, &fb), fid(10));
1310        assert_eq!(slot_font_id(Some(1), primary, &fb), fid(20));
1311    }
1312
1313    #[test]
1314    fn run_spans_with_no_chain_emit_one_primary_span() {
1315        let primary = fid(0);
1316        let fb: SmallVec<[(FontId, SharedString); 4]> = SmallVec::new();
1317        let covers = |_: FontId, _: char| false;
1318        let text = "hello";
1319        let spans = compute_run_spans(text, 0, text.len(), primary, &fb, &covers);
1320        assert_eq!(spans.as_slice(), &[span(0, text.len(), None, primary)]);
1321    }
1322
1323    #[test]
1324    fn run_spans_use_byte_offsets_for_multibyte_chars() {
1325        let primary = fid(0);
1326        let fb = chain(&[1]);
1327        // primary covers ascii. fallback covers cjk.
1328        let covers = |id: FontId, ch: char| {
1329            if id == primary {
1330                ch.is_ascii()
1331            } else {
1332                !ch.is_ascii()
1333            }
1334        };
1335        let text = "a瀛b";
1336        let spans = compute_run_spans(text, 0, text.len(), primary, &fb, &covers);
1337        // '瀛' is 3 bytes so split is at 1 then 4.
1338        assert_eq!(
1339            spans.as_slice(),
1340            &[
1341                span(0, 1, None, primary),
1342                span(1, 4, Some(0), fid(1)),
1343                span(4, 5, None, primary),
1344            ]
1345        );
1346    }
1347
1348    #[test]
1349    fn run_spans_respect_run_offset() {
1350        let primary = fid(0);
1351        let fb = chain(&[1]);
1352        let covers = |id: FontId, ch: char| {
1353            if id == primary {
1354                ch.is_ascii()
1355            } else {
1356                !ch.is_ascii()
1357            }
1358        };
1359        // outer text has a prefix that is not part of this run.
1360        let text = "xx瀛x";
1361        let run_offset = 2;
1362        let run_len = text.len() - run_offset;
1363        let spans = compute_run_spans(text, run_offset, run_len, primary, &fb, &covers);
1364        assert_eq!(
1365            spans.as_slice(),
1366            &[span(2, 5, Some(0), fid(1)), span(5, 6, None, primary)]
1367        );
1368    }
1369
1370    #[test]
1371    fn run_spans_keep_combining_marks_with_base_in_fallback() {
1372        let primary = fid(0);
1373        let fb = chain(&[1]);
1374        // primary covers ascii only. fallback covers the base char.
1375        // combining mark must stay in the fallback span even when fallback
1376        // does not advertise coverage of it.
1377        let covers = |id: FontId, ch: char| {
1378            if id == primary {
1379                ch.is_ascii()
1380            } else {
1381                ch == '\u{0905}'
1382            }
1383        };
1384        // \u{0905} devanagari short a + \u{0902} candrabindu mark.
1385        let text = "\u{0905}\u{0902}";
1386        let spans = compute_run_spans(text, 0, text.len(), primary, &fb, &covers);
1387        assert_eq!(spans.as_slice(), &[span(0, text.len(), Some(0), fid(1))]);
1388    }
1389
1390    #[test]
1391    fn run_spans_keep_zwj_inside_emoji_cluster() {
1392        let primary = fid(0);
1393        let fb = chain(&[1]);
1394        // only fallback covers the emoji codepoints. zwj must not split.
1395        let covers = |id: FontId, ch: char| id == fid(1) && ch != '\u{200D}';
1396        // family zwj sequence woman zwj girl.
1397        let text = "\u{1F469}\u{200D}\u{1F467}";
1398        let spans = compute_run_spans(text, 0, text.len(), primary, &fb, &covers);
1399        assert_eq!(spans.as_slice(), &[span(0, text.len(), Some(0), fid(1))]);
1400    }
1401
1402    #[test]
1403    fn run_spans_collapse_adjacent_same_slot() {
1404        let primary = fid(0);
1405        let fb = chain(&[1]);
1406        let covers = |id: FontId, ch: char| {
1407            if id == primary {
1408                ch.is_ascii()
1409            } else {
1410                !ch.is_ascii()
1411            }
1412        };
1413        let text = "测试文本";
1414        let spans = compute_run_spans(text, 0, text.len(), primary, &fb, &covers);
1415        assert_eq!(spans.as_slice(), &[span(0, text.len(), Some(0), fid(1))]);
1416    }
1417
1418    #[test]
1419    fn run_spans_empty_run_returns_no_spans() {
1420        let primary = fid(0);
1421        let fb = chain(&[1]);
1422        let covers = |_: FontId, _: char| true;
1423        let spans = compute_run_spans("anything", 3, 0, primary, &fb, &covers);
1424        assert!(spans.is_empty());
1425    }
1426}