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Signed-off-by: Sean Cross <sean@xobs.io>
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commit
4922d63c8c
12
Cargo.toml
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12
Cargo.toml
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[package]
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name = "rust-font-test"
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version = "0.1.0"
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authors = ["Sean Cross <sean@xobs.io>"]
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edition = "2018"
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# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
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[dependencies]
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fontdue = "0.0.1"
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stats_alloc = "0.1.8"
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rusttype = "0.8.1"
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BIN
resources/NotoSans-Regular.ttf
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BIN
resources/NotoSans-Regular.ttf
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Binary file not shown.
BIN
resources/WenQuanYiMicroHei-01.ttf
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BIN
resources/WenQuanYiMicroHei-01.ttf
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Binary file not shown.
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src/main.rs
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115
src/main.rs
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use rusttype::{point, FontCollection, PositionedGlyph, Scale};
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use std::io::Write;
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// Add an allocator that lets us keep track of the system
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extern crate stats_alloc;
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use stats_alloc::{StatsAlloc, Region, INSTRUMENTED_SYSTEM};
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use std::alloc::System;
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#[global_allocator]
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static GLOBAL: &StatsAlloc<System> = &INSTRUMENTED_SYSTEM;
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fn main() {
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let font = include_bytes!("../resources/WenQuanYiMicroHei-01.ttf");
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test_rusttype(font);
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test_fontdue(font);
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}
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fn test_fontdue(font: &[u8]) {
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let reg = Region::new(&GLOBAL);
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println!("start: {:#?}", reg.change());
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// Parse it into the font type.
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let mut font = fontdue::Font::from_bytes(font).unwrap();
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println!("from_bytes: {:#?}", reg.change());
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// Rasterize and get the layout metrics for the letter 'g' at 17px.
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let (metrics, bitmap) = font.rasterize('欢', 17.0);
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println!("font.rasterize: {:#?}", reg.change());
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// Used here to ensure that the value is not
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// dropped before we check the statistics
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::std::mem::size_of_val(&metrics);
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::std::mem::size_of_val(&bitmap);
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::std::mem::size_of_val(&font);
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}
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fn test_rusttype(font: &[u8]) {
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let reg = Region::new(&GLOBAL);
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let collection = FontCollection::from_bytes(font).unwrap_or_else(|e| {
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panic!("error constructing a FontCollection from bytes: {}", e);
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});
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println!("collection: {:#?}", reg.change());
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let font = collection
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.into_font() // only succeeds if collection consists of one font
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.unwrap_or_else(|e| {
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panic!("error turning FontCollection into a Font: {}", e);
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});
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// Desired font pixel height
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let height: f32 = 20.0; // to get 80 chars across (fits most terminals); adjust as desired
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let pixel_height = height.ceil() as usize;
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// 2x scale in x direction to counter the aspect ratio of monospace characters.
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let scale = Scale {
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x: height * 2.0,
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y: height,
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};
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// The origin of a line of text is at the baseline (roughly where
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// non-descending letters sit). We don't want to clip the text, so we shift
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// it down with an offset when laying it out. v_metrics.ascent is the
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// distance between the baseline and the highest edge of any glyph in
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// the font. That's enough to guarantee that there's no clipping.
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let v_metrics = font.v_metrics(scale);
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let offset = point(0.0, v_metrics.ascent);
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println!("metrics: {:#?}", reg.change());
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// Glyphs to draw for "RustType". Feel free to try other strings.
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let glyphs: Vec<PositionedGlyph<'_>> = font.layout("Xous:發啊你好", scale, offset).collect();
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println!("glyphs: {:#?}", reg.change());
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// Find the most visually pleasing width to display
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let width = glyphs
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.iter()
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.rev()
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.map(|g| g.position().x as f32 + g.unpositioned().h_metrics().advance_width)
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.next()
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.unwrap_or(0.0)
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.ceil() as usize;
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println!("width: {}, height: {}", width, pixel_height);
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// Rasterise directly into ASCII art.
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let mut pixel_data = vec![b'@'; width * pixel_height];
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let mapping = b"@%#x+=:-. "; // The approximation of greyscale
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let mapping_scale = (mapping.len() - 1) as f32;
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for g in glyphs {
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if let Some(bb) = g.pixel_bounding_box() {
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g.draw(|x, y, v| {
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// v should be in the range 0.0 to 1.0
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let i = (v * mapping_scale + 0.5) as usize;
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// so something's wrong if you get $ in the output.
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let c = mapping.get(i).cloned().unwrap_or(b'$');
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let x = x as i32 + bb.min.x;
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let y = y as i32 + bb.min.y;
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// There's still a possibility that the glyph clips the boundaries of the bitmap
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if x >= 0 && x < width as i32 && y >= 0 && y < pixel_height as i32 {
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let x = x as usize;
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let y = y as usize;
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pixel_data[(x + y * width)] = c;
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}
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})
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}
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}
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println!("rasterization: {:#?}", reg.change());
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// Print it out
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let stdout = ::std::io::stdout();
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let mut handle = stdout.lock();
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for j in 0..pixel_height {
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handle
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.write_all(&pixel_data[j * width..(j + 1) * width])
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.unwrap();
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handle.write_all(b"\n").unwrap();
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}
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}
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