Files
map-editor/src-tauri/tests/curve.rs
T
2026-07-09 12:58:47 +08:00

106 lines
2.6 KiB
Rust

use std::ops::{Add, Mul};
use map_editor_lib::util::BezierCurve;
use color_eyre::Result;
use crossterm::event;
use ratatui::Frame;
use ratatui::style::{Color, Stylize};
use ratatui::layout::{Constraint, Layout, Rect};
use ratatui::symbols::Marker;
use ratatui::text::{Line as TextLine, Span};
use ratatui::widgets::canvas::{Canvas, Line, Points};
#[test]
fn curve_test_full() -> Result<()> {
color_eyre::install()?;
ratatui::run(|terminal| loop {
terminal.draw(render)?;
if event::read()?.is_key_press() {
break Ok(());
}
})
}
/// Render the UI with a canvas widget.
fn render(frame: &mut Frame) {
let vertical = Layout::vertical([Constraint::Length(1), Constraint::Fill(1)]).spacing(1);
let horizontal = Layout::horizontal([Constraint::Percentage(100)]).spacing(1);
let [top, main] = frame.area().layout(&vertical);
let [area] = main.layout(&horizontal);
let title = TextLine::from_iter([
Span::from("Canvas Widget").bold(),
Span::from(" (Press 'q' to quit)"),
]);
frame.render_widget(title.centered(), top);
render_canvas(frame, area);
}
/// Renders the canvas widget with various shapes and a map.
pub fn render_canvas(frame: &mut Frame, area: Rect) {
let sample_t = vec![
0.0,
0.2,
0.4,
0.6,
0.8,
1.0,
];
let curve = BezierCurve::new(vec![
Point::new(-50.0, -50.0),
Point::new(-50.0, 50.0),
Point::new(50.0, 50.0),
]);
let canvas = Canvas::default()
.x_bounds([-180.0, 180.0])
.y_bounds([-90.0, 90.0])
.marker(Marker::Braille)
.paint(|ctx| {
ctx.draw(&Points::new(&[
(-50.0, -50.0),
(-50.0, 50.0),
(50.0, 50.0),
], Color::Black));
// sample_t.windows(2)
// .map_while(|a| {
// curve.fetch_point(a[0]).zip(curve.fetch_point(a[1]))
// })
// .for_each(|(x, y)| {
// ctx.draw(&Line::new(x.x, x.y, y.x, y.y, Color::Blue));
// });
});
frame.render_widget(canvas, area);
}
const EPSILON: f64 = 1e-6;
#[derive(Clone, Copy)]
struct Point {
x: f64,
y: f64,
}
impl Point {
pub fn new(x: f64, y: f64) -> Self {
Self { x, y }
}
}
impl Add for Point {
type Output = Self;
fn add(self, rhs: Self) -> Self {
Self { x: self.x + rhs.x, y: self.y + rhs.y }
}
}
impl Mul<f64> for Point {
type Output = Self;
fn mul(self, rhs: f64) -> Self {
Self { x: self.x * rhs, y: self.y * rhs }
}
}