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use crate::{
text, Choice, EventCtx, GfxCtx, Key, Line, Outcome, ScreenDims, ScreenPt, ScreenRectangle,
Style, Text, Widget, WidgetImpl, WidgetOutput,
};
use geom::Pt2D;
pub struct Menu<T> {
choices: Vec<Choice<T>>,
current_idx: usize,
pub(crate) top_left: ScreenPt,
dims: ScreenDims,
}
impl<T: 'static> Menu<T> {
pub fn new(ctx: &EventCtx, choices: Vec<Choice<T>>) -> Widget {
let mut m = Menu {
choices,
current_idx: 0,
top_left: ScreenPt::new(0.0, 0.0),
dims: ScreenDims::new(0.0, 0.0),
};
m.dims = m.calculate_txt(ctx.style()).dims(&ctx.prerender.assets);
Widget::new(Box::new(m))
}
pub fn take_current_choice(&mut self) -> T {
self.choices.remove(self.current_idx).data
}
fn calculate_txt(&self, style: &Style) -> Text {
let mut txt = Text::new();
for (idx, choice) in self.choices.iter().enumerate() {
if choice.active {
if let Some(ref key) = choice.hotkey {
txt.add_appended(vec![
Line(key.describe()).fg(style.hotkey_color),
Line(format!(" - {}", choice.label)).maybe_fg(choice.fg),
]);
} else {
txt.add(Line(&choice.label).maybe_fg(choice.fg));
}
} else {
if let Some(ref key) = choice.hotkey {
txt.add(
Line(format!("{} - {}", key.describe(), choice.label))
.fg(text::INACTIVE_CHOICE_COLOR),
);
} else {
txt.add(Line(&choice.label).fg(text::INACTIVE_CHOICE_COLOR));
}
}
if choice.tooltip.is_some() {
txt.append(Line(" (!)"));
}
if idx == self.current_idx {
txt.highlight_last_line(text::SELECTED_COLOR);
}
}
txt
}
}
impl<T: 'static> WidgetImpl for Menu<T> {
fn get_dims(&self) -> ScreenDims {
self.dims
}
fn set_pos(&mut self, top_left: ScreenPt) {
self.top_left = top_left;
}
fn event(&mut self, ctx: &mut EventCtx, output: &mut WidgetOutput) {
if self.choices.is_empty() {
return;
}
if ctx.redo_mouseover() {
if let Some(cursor) = ctx.canvas.get_cursor_in_screen_space() {
let mut top_left = self.top_left;
for idx in 0..self.choices.len() {
let rect = ScreenRectangle {
x1: top_left.x,
y1: top_left.y,
x2: top_left.x + self.dims.width,
y2: top_left.y + ctx.default_line_height(),
};
if rect.contains(cursor) && self.choices[idx].active {
self.current_idx = idx;
break;
}
top_left.y += ctx.default_line_height();
}
}
}
{
let choice = &self.choices[self.current_idx];
if ctx.normal_left_click() {
let mut top_left = self.top_left;
top_left.y += ctx.default_line_height() * (self.current_idx as f64);
let rect = ScreenRectangle {
x1: top_left.x,
y1: top_left.y,
x2: top_left.x + self.dims.width,
y2: top_left.y + ctx.default_line_height(),
};
if let Some(pt) = ctx.canvas.get_cursor_in_screen_space() {
if rect.contains(pt) && choice.active {
output.outcome = Outcome::Clicked(choice.label.clone());
return;
}
}
ctx.input.unconsume_event();
}
}
for (idx, choice) in self.choices.iter().enumerate() {
if !choice.active {
continue;
}
if ctx.input.pressed(choice.hotkey.clone()) {
self.current_idx = idx;
output.outcome = Outcome::Clicked(choice.label.clone());
return;
}
}
if ctx.input.pressed(Key::Enter) {
let choice = &self.choices[self.current_idx];
if choice.active {
output.outcome = Outcome::Clicked(choice.label.clone());
return;
} else {
return;
}
} else if ctx.input.pressed(Key::UpArrow) {
if self.current_idx > 0 {
self.current_idx -= 1;
}
} else if ctx.input.pressed(Key::DownArrow) {
if self.current_idx < self.choices.len() - 1 {
self.current_idx += 1;
}
}
}
fn draw(&self, g: &mut GfxCtx) {
if self.choices.is_empty() {
return;
}
let draw = g.upload(self.calculate_txt(g.style()).render(g));
g.fork(
Pt2D::new(0.0, 0.0),
self.top_left,
1.0,
Some(crate::drawing::MENU_Z),
);
g.redraw(&draw);
g.unfork();
if let Some(ref info) = self.choices[self.current_idx].tooltip {
let mut top_left = self.top_left;
top_left.y += g.default_line_height() * (self.current_idx as f64);
let rect = ScreenRectangle {
x1: top_left.x,
y1: top_left.y,
x2: top_left.x + self.dims.width,
y2: top_left.y + g.default_line_height(),
};
if let Some(pt) = g.canvas.get_cursor_in_screen_space() {
if rect.contains(pt) {
g.draw_mouse_tooltip(
Text::from(Line(info))
.inner_wrap_to_pct(0.3 * g.canvas.window_width, &g.prerender.assets),
);
}
}
}
}
}