Implement subpixel glyph positioning and scaling
The latest `cosmic-text` release performs bucketing calculations after layouting. This allows us to provide proper subpixel offsets, as well as scale any buffer thanks to its linear layout properties. See https://github.com/pop-os/cosmic-text/pull/143.
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595e09a497
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81dedbd042
4 changed files with 34 additions and 19 deletions
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@ -10,7 +10,7 @@ license = "MIT OR Apache-2.0 OR Zlib"
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[dependencies]
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wgpu = "0.16"
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etagere = "0.2.8"
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cosmic-text = "0.8"
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cosmic-text = "0.9"
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lru = "0.9"
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[dev-dependencies]
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@ -1,6 +1,6 @@
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use glyphon::{
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Attrs, Buffer, Color, Family, FontSystem, Metrics, Resolution, SwashCache, TextArea, TextAtlas,
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TextBounds, TextRenderer,
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Attrs, Buffer, Color, Family, FontSystem, Metrics, Resolution, Shaping, SwashCache, TextArea,
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TextAtlas, TextBounds, TextRenderer,
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};
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use wgpu::{
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CommandEncoderDescriptor, CompositeAlphaMode, DeviceDescriptor, Features, Instance,
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@ -73,7 +73,7 @@ async fn run() {
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let physical_height = (height as f64 * scale_factor) as f32;
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buffer.set_size(&mut font_system, physical_width, physical_height);
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buffer.set_text(&mut font_system, "Hello world! 👋\nThis is rendered with 🦅 glyphon 🦁\nThe text below should be partially clipped.\na b c d e f g h i j k l m n o p q r s t u v w x y z", Attrs::new().family(Family::SansSerif));
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buffer.set_text(&mut font_system, "Hello world! 👋\nThis is rendered with 🦅 glyphon 🦁\nThe text below should be partially clipped.\na b c d e f g h i j k l m n o p q r s t u v w x y z", Attrs::new().family(Family::SansSerif), Shaping::Advanced);
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buffer.shape_until_scroll(&mut font_system);
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event_loop.run(move |event, _, control_flow| {
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@ -103,8 +103,9 @@ async fn run() {
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},
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[TextArea {
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buffer: &buffer,
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left: 10,
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top: 10,
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left: 10.0,
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top: 10.0,
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scale: 1.0,
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bounds: TextBounds {
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left: 0,
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top: 0,
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@ -19,7 +19,8 @@ pub use cosmic_text::{
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self, fontdb, Action, Affinity, Attrs, AttrsList, AttrsOwned, Buffer, BufferLine, CacheKey,
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Color, Command, Cursor, Edit, Editor, Family, FamilyOwned, Font, FontSystem, LayoutCursor,
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LayoutGlyph, LayoutLine, LayoutRun, LayoutRunIter, Metrics, ShapeGlyph, ShapeLine, ShapeSpan,
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ShapeWord, Stretch, Style, SubpixelBin, SwashCache, SwashContent, SwashImage, Weight, Wrap,
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ShapeWord, Shaping, Stretch, Style, SubpixelBin, SwashCache, SwashContent, SwashImage, Weight,
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Wrap,
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};
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use etagere::AllocId;
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@ -101,9 +102,11 @@ pub struct TextArea<'a> {
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/// The buffer containing the text to be rendered.
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pub buffer: &'a Buffer,
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/// The left edge of the buffer.
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pub left: i32,
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pub left: f32,
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/// The top edge of the buffer.
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pub top: i32,
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pub top: f32,
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/// The scaling to apply to the buffer.
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pub scale: f32,
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/// The visible bounds of the text area. This is used to clip the text and doesn't have to
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/// match the `left` and `top` values.
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pub bounds: TextBounds,
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@ -93,13 +93,24 @@ impl TextRenderer {
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for text_area in text_areas {
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for run in text_area.buffer.layout_runs() {
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for glyph in run.glyphs.iter() {
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if atlas.mask_atlas.glyph_cache.contains(&glyph.cache_key) {
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atlas.mask_atlas.promote(glyph.cache_key);
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} else if atlas.color_atlas.glyph_cache.contains(&glyph.cache_key) {
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atlas.color_atlas.promote(glyph.cache_key);
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let physical_glyph =
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glyph.physical((text_area.left, text_area.top), text_area.scale);
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if atlas
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.mask_atlas
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.glyph_cache
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.contains(&physical_glyph.cache_key)
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{
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atlas.mask_atlas.promote(physical_glyph.cache_key);
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} else if atlas
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.color_atlas
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.glyph_cache
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.contains(&physical_glyph.cache_key)
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{
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atlas.color_atlas.promote(physical_glyph.cache_key);
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} else {
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let Some(image) = cache
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.get_image_uncached(font_system, glyph.cache_key) else { continue };
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.get_image_uncached(font_system, physical_glyph.cache_key) else { continue };
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let content_type = match image.content {
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SwashContent::Color => ContentType::Color,
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@ -178,7 +189,7 @@ impl TextRenderer {
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};
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inner.put(
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glyph.cache_key,
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physical_glyph.cache_key,
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GlyphDetails {
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width: width as u16,
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height: height as u16,
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@ -190,11 +201,11 @@ impl TextRenderer {
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);
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}
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let details = atlas.glyph(&glyph.cache_key).unwrap();
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let details = atlas.glyph(&physical_glyph.cache_key).unwrap();
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let mut x = glyph.x_int + details.left as i32 + text_area.left;
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let mut y =
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run.line_y as i32 + glyph.y_int - details.top as i32 + text_area.top;
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let mut x = physical_glyph.x + details.left as i32;
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let mut y = (run.line_y * text_area.scale).round() as i32 + physical_glyph.y
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- details.top as i32;
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let (mut atlas_x, mut atlas_y, content_type) = match details.gpu_cache {
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GpuCacheStatus::InAtlas { x, y, content_type } => (x, y, content_type),
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