433 lines
13 KiB
Rust
433 lines
13 KiB
Rust
use crate::core::alignment;
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use crate::core::font::{self, Font};
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use crate::core::text::Hit;
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use crate::core::{Color, Point, Rectangle, Size};
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use rustc_hash::{FxHashMap, FxHashSet};
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use std::borrow::Cow;
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use std::cell::RefCell;
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use std::collections::hash_map;
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use std::hash::{BuildHasher, Hash, Hasher};
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use std::sync::Arc;
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#[allow(missing_debug_implementations)]
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pub struct Pipeline {
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font_system: RefCell<cosmic_text::FontSystem>,
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glyph_cache: GlyphCache,
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measurement_cache: RefCell<Cache>,
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render_cache: Cache,
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}
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impl Pipeline {
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pub fn new() -> Self {
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Pipeline {
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font_system: RefCell::new(cosmic_text::FontSystem::new_with_fonts(
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[cosmic_text::fontdb::Source::Binary(Arc::new(
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include_bytes!("../../wgpu/fonts/Iced-Icons.ttf")
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.as_slice(),
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))]
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.into_iter(),
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)),
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glyph_cache: GlyphCache::new(),
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measurement_cache: RefCell::new(Cache::new()),
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render_cache: Cache::new(),
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}
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}
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pub fn load_font(&mut self, bytes: Cow<'static, [u8]>) {
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self.font_system.get_mut().db_mut().load_font_source(
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cosmic_text::fontdb::Source::Binary(Arc::new(bytes.into_owned())),
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);
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}
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pub fn draw(
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&mut self,
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content: &str,
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bounds: Rectangle,
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color: Color,
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size: f32,
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font: Font,
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horizontal_alignment: alignment::Horizontal,
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vertical_alignment: alignment::Vertical,
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advanced_shape: bool,
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pixels: &mut tiny_skia::PixmapMut<'_>,
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clip_mask: Option<&tiny_skia::Mask>,
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) {
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let font_system = self.font_system.get_mut();
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let key = Key {
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bounds: {
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let size = bounds.size();
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// TODO: Reuse buffers from layouting
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Size::new(size.width.ceil(), size.height.ceil())
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},
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content,
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font,
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size,
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advanced_shape,
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};
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let (_, buffer) = self.render_cache.allocate(font_system, key);
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let (total_lines, max_width) = buffer
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.layout_runs()
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.enumerate()
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.fold((0, 0.0), |(_, max), (i, buffer)| {
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(i + 1, buffer.line_w.max(max))
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});
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let total_height = total_lines as f32 * size * 1.2;
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let x = match horizontal_alignment {
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alignment::Horizontal::Left => bounds.x,
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alignment::Horizontal::Center => bounds.x - max_width / 2.0,
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alignment::Horizontal::Right => bounds.x - max_width,
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};
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let y = match vertical_alignment {
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alignment::Vertical::Top => bounds.y,
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alignment::Vertical::Center => bounds.y - total_height / 2.0,
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alignment::Vertical::Bottom => bounds.y - total_height,
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};
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let mut swash = cosmic_text::SwashCache::new();
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for run in buffer.layout_runs() {
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for glyph in run.glyphs {
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if let Some((buffer, placement)) = self.glyph_cache.allocate(
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glyph.cache_key,
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color,
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font_system,
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&mut swash,
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) {
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let pixmap = tiny_skia::PixmapRef::from_bytes(
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buffer,
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placement.width,
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placement.height,
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)
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.expect("Create glyph pixel map");
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pixels.draw_pixmap(
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x as i32 + glyph.x_int + placement.left,
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y as i32 - glyph.y_int - placement.top
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+ run.line_y as i32,
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pixmap,
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&tiny_skia::PixmapPaint::default(),
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tiny_skia::Transform::identity(),
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clip_mask,
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);
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}
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}
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}
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}
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pub fn trim_cache(&mut self) {
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self.render_cache.trim();
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self.glyph_cache.trim();
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}
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pub fn measure(
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&self,
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content: &str,
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size: f32,
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font: Font,
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bounds: Size,
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advanced_shape: bool,
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) -> (f32, f32) {
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let mut measurement_cache = self.measurement_cache.borrow_mut();
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let (_, paragraph) = measurement_cache.allocate(
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&mut self.font_system.borrow_mut(),
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Key {
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content,
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size,
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font,
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bounds,
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advanced_shape,
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},
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);
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let (total_lines, max_width) = paragraph
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.layout_runs()
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.enumerate()
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.fold((0, 0.0), |(_, max), (i, buffer)| {
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(i + 1, buffer.line_w.max(max))
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});
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(max_width, size * 1.2 * total_lines as f32)
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}
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pub fn hit_test(
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&self,
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content: &str,
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size: f32,
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font: Font,
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bounds: Size,
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point: Point,
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_nearest_only: bool,
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advanced_shape: bool,
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) -> Option<Hit> {
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let mut measurement_cache = self.measurement_cache.borrow_mut();
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let (_, paragraph) = measurement_cache.allocate(
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&mut self.font_system.borrow_mut(),
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Key {
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content,
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size,
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font,
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bounds,
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advanced_shape,
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},
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);
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let cursor = paragraph.hit(point.x, point.y)?;
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Some(Hit::CharOffset(cursor.index))
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}
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pub fn trim_measurement_cache(&mut self) {
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self.measurement_cache.borrow_mut().trim();
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}
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}
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fn to_family(family: font::Family) -> cosmic_text::Family<'static> {
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match family {
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font::Family::Name(name) => cosmic_text::Family::Name(name),
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font::Family::SansSerif => cosmic_text::Family::SansSerif,
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font::Family::Serif => cosmic_text::Family::Serif,
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font::Family::Cursive => cosmic_text::Family::Cursive,
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font::Family::Fantasy => cosmic_text::Family::Fantasy,
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font::Family::Monospace => cosmic_text::Family::Monospace,
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}
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}
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fn to_weight(weight: font::Weight) -> cosmic_text::Weight {
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match weight {
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font::Weight::Thin => cosmic_text::Weight::THIN,
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font::Weight::ExtraLight => cosmic_text::Weight::EXTRA_LIGHT,
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font::Weight::Light => cosmic_text::Weight::LIGHT,
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font::Weight::Normal => cosmic_text::Weight::NORMAL,
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font::Weight::Medium => cosmic_text::Weight::MEDIUM,
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font::Weight::Semibold => cosmic_text::Weight::SEMIBOLD,
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font::Weight::Bold => cosmic_text::Weight::BOLD,
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font::Weight::ExtraBold => cosmic_text::Weight::EXTRA_BOLD,
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font::Weight::Black => cosmic_text::Weight::BLACK,
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}
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}
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fn to_stretch(stretch: font::Stretch) -> cosmic_text::Stretch {
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match stretch {
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font::Stretch::UltraCondensed => cosmic_text::Stretch::UltraCondensed,
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font::Stretch::ExtraCondensed => cosmic_text::Stretch::ExtraCondensed,
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font::Stretch::Condensed => cosmic_text::Stretch::Condensed,
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font::Stretch::SemiCondensed => cosmic_text::Stretch::SemiCondensed,
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font::Stretch::Normal => cosmic_text::Stretch::Normal,
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font::Stretch::SemiExpanded => cosmic_text::Stretch::SemiExpanded,
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font::Stretch::Expanded => cosmic_text::Stretch::Expanded,
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font::Stretch::ExtraExpanded => cosmic_text::Stretch::ExtraExpanded,
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font::Stretch::UltraExpanded => cosmic_text::Stretch::UltraExpanded,
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}
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}
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#[derive(Debug, Clone, Default)]
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struct GlyphCache {
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entries: FxHashMap<
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(cosmic_text::CacheKey, [u8; 3]),
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(Vec<u32>, cosmic_text::Placement),
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>,
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recently_used: FxHashSet<(cosmic_text::CacheKey, [u8; 3])>,
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trim_count: usize,
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}
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impl GlyphCache {
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const TRIM_INTERVAL: usize = 300;
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fn new() -> Self {
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GlyphCache::default()
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}
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fn allocate(
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&mut self,
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cache_key: cosmic_text::CacheKey,
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color: Color,
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font_system: &mut cosmic_text::FontSystem,
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swash: &mut cosmic_text::SwashCache,
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) -> Option<(&[u8], cosmic_text::Placement)> {
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let [r, g, b, _a] = color.into_rgba8();
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let key = (cache_key, [r, g, b]);
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if let hash_map::Entry::Vacant(entry) = self.entries.entry(key) {
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// TODO: Outline support
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let image = swash.get_image_uncached(font_system, cache_key)?;
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let glyph_size = image.placement.width as usize
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* image.placement.height as usize;
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if glyph_size == 0 {
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return None;
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}
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let mut buffer = vec![0u32; glyph_size];
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match image.content {
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cosmic_text::SwashContent::Mask => {
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let mut i = 0;
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// TODO: Blend alpha
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for _y in 0..image.placement.height {
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for _x in 0..image.placement.width {
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buffer[i] = tiny_skia::ColorU8::from_rgba(
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b,
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g,
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r,
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image.data[i],
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)
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.premultiply()
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.get();
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i += 1;
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}
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}
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}
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cosmic_text::SwashContent::Color => {
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let mut i = 0;
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for _y in 0..image.placement.height {
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for _x in 0..image.placement.width {
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// TODO: Blend alpha
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buffer[i >> 2] = tiny_skia::ColorU8::from_rgba(
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image.data[i + 2],
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image.data[i + 1],
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image.data[i],
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image.data[i + 3],
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)
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.premultiply()
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.get();
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i += 4;
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}
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}
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}
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cosmic_text::SwashContent::SubpixelMask => {
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// TODO
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}
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}
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entry.insert((buffer, image.placement));
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}
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self.recently_used.insert(key);
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self.entries.get(&key).map(|(buffer, placement)| {
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(bytemuck::cast_slice(buffer.as_slice()), *placement)
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})
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}
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pub fn trim(&mut self) {
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if self.trim_count > Self::TRIM_INTERVAL {
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self.entries
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.retain(|key, _| self.recently_used.contains(key));
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self.recently_used.clear();
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self.trim_count = 0;
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} else {
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self.trim_count += 1;
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}
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}
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}
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struct Cache {
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entries: FxHashMap<KeyHash, cosmic_text::Buffer>,
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recently_used: FxHashSet<KeyHash>,
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hasher: HashBuilder,
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trim_count: usize,
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}
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#[cfg(not(target_arch = "wasm32"))]
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type HashBuilder = twox_hash::RandomXxHashBuilder64;
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#[cfg(target_arch = "wasm32")]
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type HashBuilder = std::hash::BuildHasherDefault<twox_hash::XxHash64>;
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impl Cache {
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const TRIM_INTERVAL: usize = 300;
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fn new() -> Self {
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Self {
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entries: FxHashMap::default(),
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recently_used: FxHashSet::default(),
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hasher: HashBuilder::default(),
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trim_count: 0,
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}
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}
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fn allocate(
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&mut self,
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font_system: &mut cosmic_text::FontSystem,
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key: Key<'_>,
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) -> (KeyHash, &mut cosmic_text::Buffer) {
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let hash = {
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let mut hasher = self.hasher.build_hasher();
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key.content.hash(&mut hasher);
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key.size.to_bits().hash(&mut hasher);
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key.font.hash(&mut hasher);
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key.bounds.width.to_bits().hash(&mut hasher);
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key.bounds.height.to_bits().hash(&mut hasher);
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hasher.finish()
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};
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if let hash_map::Entry::Vacant(entry) = self.entries.entry(hash) {
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let metrics = cosmic_text::Metrics::new(key.size, key.size * 1.2);
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let mut buffer = cosmic_text::Buffer::new(font_system, metrics);
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buffer.set_size(
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font_system,
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key.bounds.width,
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key.bounds.height.max(key.size * 1.2),
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);
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buffer.set_text(
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font_system,
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key.content,
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cosmic_text::Attrs::new()
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.family(to_family(key.font.family))
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.weight(to_weight(key.font.weight))
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.stretch(to_stretch(key.font.stretch)),
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!key.advanced_shape,
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);
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let _ = entry.insert(buffer);
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}
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let _ = self.recently_used.insert(hash);
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(hash, self.entries.get_mut(&hash).unwrap())
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}
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fn trim(&mut self) {
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if self.trim_count > Self::TRIM_INTERVAL {
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self.entries
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.retain(|key, _| self.recently_used.contains(key));
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self.recently_used.clear();
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self.trim_count = 0;
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} else {
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self.trim_count += 1;
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}
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}
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}
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#[derive(Debug, Clone, Copy)]
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struct Key<'a> {
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content: &'a str,
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size: f32,
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font: Font,
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bounds: Size,
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advanced_shape: bool,
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}
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type KeyHash = u64;
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