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use std::{borrow::Cow, path::PathBuf};
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use crate::{
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compositor::{Callback, Component, Compositor, Context, Event, EventResult},
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ctrl, key, shift,
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};
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use tui::{buffer::Buffer as Surface, text::Spans, widgets::Table};
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pub use tui::widgets::{Cell, Row};
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use fuzzy_matcher::skim::SkimMatcherV2 as Matcher;
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use fuzzy_matcher::FuzzyMatcher;
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use helix_view::{graphics::Rect, Editor};
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use tui::layout::Constraint;
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pub trait Item {
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/// Additional editor state that is used for label calculation.
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type Data;
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fn label(&self, data: &Self::Data) -> Spans;
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fn sort_text(&self, data: &Self::Data) -> Cow<str> {
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let label: String = self.label(data).into();
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label.into()
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}
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fn filter_text(&self, data: &Self::Data) -> Cow<str> {
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let label: String = self.label(data).into();
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label.into()
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}
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fn row(&self, data: &Self::Data) -> Row {
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Row::new(vec![Cell::from(self.label(data))])
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}
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}
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impl Item for PathBuf {
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/// Root prefix to strip.
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type Data = PathBuf;
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fn label(&self, root_path: &Self::Data) -> Spans {
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self.strip_prefix(&root_path)
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.unwrap_or(self)
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.to_string_lossy()
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.into()
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}
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}
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pub struct Menu<T: Item> {
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options: Vec<T>,
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editor_data: T::Data,
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cursor: Option<usize>,
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matcher: Box<Matcher>,
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/// (index, score)
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matches: Vec<(usize, i64)>,
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widths: Vec<Constraint>,
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callback_fn: Box<dyn Fn(&mut Editor, Option<&T>, MenuEvent)>,
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scroll: usize,
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size: (u16, u16),
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viewport: (u16, u16),
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recalculate: bool,
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}
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impl<T: Item> Menu<T> {
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const LEFT_PADDING: usize = 1;
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// TODO: it's like a slimmed down picker, share code? (picker = menu + prompt with different
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// rendering)
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pub fn new(
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options: Vec<T>,
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sort: bool,
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editor_data: <T as Item>::Data,
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callback_fn: impl Fn(&mut Editor, Option<&T>, MenuEvent) + 'static,
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) -> Self {
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let mut menu = Self {
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options,
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editor_data,
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matcher: Box::new(Matcher::default()),
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matches: Vec::new(),
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cursor: None,
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widths: Vec::new(),
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callback_fn: Box::new(callback_fn),
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scroll: 0,
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size: (0, 0),
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viewport: (0, 0),
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recalculate: true,
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};
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if sort {
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// TODO: scoring on empty input should just use a fastpath
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menu.score("");
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} else {
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menu.matches = (0..menu.options.len()).map(|i| (i, 0)).collect();
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}
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menu
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}
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pub fn score(&mut self, pattern: &str) {
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// reuse the matches allocation
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self.matches.clear();
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self.matches.extend(
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self.options
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.iter()
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.enumerate()
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.filter_map(|(index, option)| {
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let text = option.filter_text(&self.editor_data);
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// TODO: using fuzzy_indices could give us the char idx for match highlighting
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self.matcher
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.fuzzy_match(&text, pattern)
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.map(|score| (index, score))
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}),
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);
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// matches.sort_unstable_by_key(|(_, score)| -score);
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self.matches.sort_unstable_by_key(|(index, _score)| {
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self.options[*index].sort_text(&self.editor_data)
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});
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// reset cursor position
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self.cursor = None;
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self.scroll = 0;
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self.recalculate = true;
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}
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pub fn clear(&mut self) {
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self.matches.clear();
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// reset cursor position
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self.cursor = None;
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self.scroll = 0;
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}
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pub fn move_up(&mut self) {
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let len = self.matches.len();
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let max_index = len.saturating_sub(1);
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let pos = self.cursor.map_or(max_index, |i| (i + max_index) % len) % len;
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self.cursor = Some(pos);
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self.adjust_scroll();
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}
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pub fn move_down(&mut self) {
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let len = self.matches.len();
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let pos = self.cursor.map_or(0, |i| i + 1) % len;
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self.cursor = Some(pos);
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self.adjust_scroll();
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}
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fn recalculate_size(&mut self, viewport: (u16, u16)) {
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let n = self
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.options
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.first()
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.map(|option| option.row(&self.editor_data).cells.len())
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.unwrap_or_default();
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let max_lens = self.options.iter().fold(vec![0; n], |mut acc, option| {
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let row = option.row(&self.editor_data);
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// maintain max for each column
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for (acc, cell) in acc.iter_mut().zip(row.cells.iter()) {
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let width = cell.content.width();
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if width > *acc {
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*acc = width;
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}
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}
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acc
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});
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let height = self.matches.len().min(10).min(viewport.1 as usize);
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// do all the matches fit on a single screen?
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let fits = self.matches.len() <= height;
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let mut len = max_lens.iter().sum::<usize>() + n;
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if !fits {
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len += 1; // +1: reserve some space for scrollbar
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}
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len += Self::LEFT_PADDING;
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let width = len.min(viewport.0 as usize);
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self.widths = max_lens
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.into_iter()
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.map(|len| Constraint::Length(len as u16))
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.collect();
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self.size = (width as u16, height as u16);
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// adjust scroll offsets if size changed
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self.adjust_scroll();
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self.recalculate = false;
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}
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fn adjust_scroll(&mut self) {
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let win_height = self.size.1 as usize;
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if let Some(cursor) = self.cursor {
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let mut scroll = self.scroll;
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if cursor > (win_height + scroll).saturating_sub(1) {
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// scroll down
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scroll += cursor - (win_height + scroll).saturating_sub(1)
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} else if cursor < scroll {
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// scroll up
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scroll = cursor
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}
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self.scroll = scroll;
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}
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}
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pub fn selection(&self) -> Option<&T> {
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self.cursor.and_then(|cursor| {
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self.matches
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.get(cursor)
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.map(|(index, _score)| &self.options[*index])
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})
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}
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pub fn is_empty(&self) -> bool {
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self.matches.is_empty()
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}
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pub fn len(&self) -> usize {
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self.matches.len()
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}
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}
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use super::PromptEvent as MenuEvent;
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impl<T: Item + 'static> Component for Menu<T> {
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fn handle_event(&mut self, event: &Event, cx: &mut Context) -> EventResult {
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let event = match event {
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Event::Key(event) => *event,
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_ => return EventResult::Ignored(None),
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};
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let close_fn: Option<Callback> = Some(Box::new(|compositor: &mut Compositor, _| {
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// remove the layer
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compositor.pop();
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}));
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match event {
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// esc or ctrl-c aborts the completion and closes the menu
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key!(Esc) | ctrl!('c') => {
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(self.callback_fn)(cx.editor, self.selection(), MenuEvent::Abort);
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return EventResult::Consumed(close_fn);
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}
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// arrow up/ctrl-p/shift-tab prev completion choice (including updating the doc)
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shift!(Tab) | key!(Up) | ctrl!('p') | ctrl!('k') => {
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self.move_up();
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(self.callback_fn)(cx.editor, self.selection(), MenuEvent::Update);
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return EventResult::Consumed(None);
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}
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key!(Tab) | key!(Down) | ctrl!('n') | ctrl!('j') => {
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// arrow down/ctrl-n/tab advances completion choice (including updating the doc)
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self.move_down();
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(self.callback_fn)(cx.editor, self.selection(), MenuEvent::Update);
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return EventResult::Consumed(None);
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}
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key!(Enter) => {
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if let Some(selection) = self.selection() {
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(self.callback_fn)(cx.editor, Some(selection), MenuEvent::Validate);
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return EventResult::Consumed(close_fn);
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} else {
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return EventResult::Ignored(close_fn);
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}
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}
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// KeyEvent {
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// code: KeyCode::Char(c),
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// modifiers: KeyModifiers::NONE,
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// } => {
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// self.insert_char(c);
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// (self.callback_fn)(cx.editor, &self.line, MenuEvent::Update);
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// }
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// / -> edit_filter?
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//
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// enter confirms the match and closes the menu
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// typing filters the menu
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// if we run out of options the menu closes itself
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_ => (),
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}
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// for some events, we want to process them but send ignore, specifically all input except
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// tab/enter/ctrl-k or whatever will confirm the selection/ ctrl-n/ctrl-p for scroll.
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// EventResult::Consumed(None)
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EventResult::Ignored(None)
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}
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fn required_size(&mut self, viewport: (u16, u16)) -> Option<(u16, u16)> {
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if viewport != self.viewport || self.recalculate {
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self.recalculate_size(viewport);
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}
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Some(self.size)
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}
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fn render(&mut self, area: Rect, surface: &mut Surface, cx: &mut Context) {
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let theme = &cx.editor.theme;
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let style = theme
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.try_get("ui.menu")
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.unwrap_or_else(|| theme.get("ui.text"));
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let selected = theme.get("ui.menu.selected");
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surface.clear_with(area, style);
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let scroll = self.scroll;
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let options: Vec<_> = self
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.matches
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.iter()
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.map(|(index, _score)| {
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// (index, self.options.get(*index).unwrap()) // get_unchecked
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&self.options[*index] // get_unchecked
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})
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.collect();
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let len = options.len();
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let win_height = area.height as usize;
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const fn div_ceil(a: usize, b: usize) -> usize {
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(a + b - 1) / b
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}
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let scroll_height = std::cmp::min(div_ceil(win_height.pow(2), len), win_height as usize);
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let scroll_line = (win_height - scroll_height) * scroll
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/ std::cmp::max(1, len.saturating_sub(win_height));
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let rows = options.iter().map(|option| option.row(&self.editor_data));
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let table = Table::new(rows)
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.style(style)
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.highlight_style(selected)
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.column_spacing(1)
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.widths(&self.widths);
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use tui::widgets::TableState;
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table.render_table(
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area.clip_left(Self::LEFT_PADDING as u16).clip_right(1),
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surface,
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&mut TableState {
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offset: scroll,
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selected: self.cursor,
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},
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);
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if let Some(cursor) = self.cursor {
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let offset_from_top = cursor - scroll;
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let left = &mut surface[(area.left(), area.y + offset_from_top as u16)];
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left.set_style(selected);
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let right = &mut surface[(
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area.right().saturating_sub(1),
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area.y + offset_from_top as u16,
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)];
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right.set_style(selected);
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}
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let fits = len <= win_height;
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let scroll_style = theme.get("ui.menu.scroll");
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for (i, _) in (scroll..(scroll + win_height).min(len)).enumerate() {
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let cell = &mut surface[(area.x + area.width - 1, area.y + i as u16)];
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if !fits {
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|
|
// Draw scroll track
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cell.set_symbol("▐"); // right half block
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cell.set_fg(scroll_style.bg.unwrap_or(helix_view::theme::Color::Reset));
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}
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|
let is_marked = i >= scroll_line && i < scroll_line + scroll_height;
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|
|
if !fits && is_marked {
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|
|
// Draw scroll thumb
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|
|
cell.set_fg(scroll_style.fg.unwrap_or(helix_view::theme::Color::Reset));
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|
|
}
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|
|
}
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|
}
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|
|
}
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