Files
oak-gpui/crates/editor/src/code_context_menus.rs
T
Michael Sloan ab595b0d55 Resolve documentation for visible completions (#21705)
Release Notes:

- Improved LSP resolution of documentation for completions. It now
queries documentation for visible completions and avoids doing too many
redundant queries.

---

In #21286, documentation resolution was made more efficient by only
resolving the current completion. However, this meant that single line
documentation shown inline in the menu was missing until scrolled
to. This also meant that it would wait for navigation to resolve
completion docs, leading to lag for displaying documentation.

This change resolves this by attempting to fetch all the completions
that will be shown. It also mostly avoids re-resolving completions. It
intentionally re-resolves the current selection on navigation, as some
language servers will respond with more information later on.
2024-12-10 12:25:30 -07:00

964 lines
34 KiB
Rust

use std::{
cell::Cell,
cmp::{min, Reverse},
ops::Range,
sync::Arc,
};
use fuzzy::{StringMatch, StringMatchCandidate};
use gpui::{
div, px, uniform_list, AnyElement, BackgroundExecutor, Div, FontWeight, ListSizingBehavior,
Model, MouseButton, Pixels, ScrollStrategy, SharedString, StrikethroughStyle, StyledText,
UniformListScrollHandle, ViewContext, WeakView,
};
use language::Buffer;
use language::{CodeLabel, Documentation};
use lsp::LanguageServerId;
use multi_buffer::{Anchor, ExcerptId};
use ordered_float::OrderedFloat;
use parking_lot::{Mutex, RwLock};
use project::{CodeAction, Completion, TaskSourceKind};
use std::iter;
use task::ResolvedTask;
use ui::{
h_flex, ActiveTheme as _, Color, FluentBuilder as _, InteractiveElement as _, IntoElement,
Label, LabelCommon as _, LabelSize, ListItem, ParentElement as _, Popover, Selectable as _,
StatefulInteractiveElement as _, Styled, StyledExt as _,
};
use util::ResultExt as _;
use workspace::Workspace;
use crate::{
actions::{ConfirmCodeAction, ConfirmCompletion},
display_map::DisplayPoint,
render_parsed_markdown, split_words, styled_runs_for_code_label, CodeActionProvider,
CompletionId, CompletionProvider, DisplayRow, Editor, EditorStyle, ResolvedTasks,
};
pub enum CodeContextMenu {
Completions(CompletionsMenu),
CodeActions(CodeActionsMenu),
}
impl CodeContextMenu {
pub fn select_first(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) -> bool {
if self.visible() {
match self {
CodeContextMenu::Completions(menu) => menu.select_first(provider, cx),
CodeContextMenu::CodeActions(menu) => menu.select_first(cx),
}
true
} else {
false
}
}
pub fn select_prev(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) -> bool {
if self.visible() {
match self {
CodeContextMenu::Completions(menu) => menu.select_prev(provider, cx),
CodeContextMenu::CodeActions(menu) => menu.select_prev(cx),
}
true
} else {
false
}
}
pub fn select_next(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) -> bool {
if self.visible() {
match self {
CodeContextMenu::Completions(menu) => menu.select_next(provider, cx),
CodeContextMenu::CodeActions(menu) => menu.select_next(cx),
}
true
} else {
false
}
}
pub fn select_last(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) -> bool {
if self.visible() {
match self {
CodeContextMenu::Completions(menu) => menu.select_last(provider, cx),
CodeContextMenu::CodeActions(menu) => menu.select_last(cx),
}
true
} else {
false
}
}
pub fn visible(&self) -> bool {
match self {
CodeContextMenu::Completions(menu) => menu.visible(),
CodeContextMenu::CodeActions(menu) => menu.visible(),
}
}
pub fn render(
&self,
cursor_position: DisplayPoint,
style: &EditorStyle,
max_height: Pixels,
workspace: Option<WeakView<Workspace>>,
cx: &mut ViewContext<Editor>,
) -> (ContextMenuOrigin, AnyElement) {
match self {
CodeContextMenu::Completions(menu) => (
ContextMenuOrigin::EditorPoint(cursor_position),
menu.render(style, max_height, workspace, cx),
),
CodeContextMenu::CodeActions(menu) => {
menu.render(cursor_position, style, max_height, cx)
}
}
}
}
pub enum ContextMenuOrigin {
EditorPoint(DisplayPoint),
GutterIndicator(DisplayRow),
}
#[derive(Clone, Debug)]
pub struct CompletionsMenu {
pub id: CompletionId,
sort_completions: bool,
pub initial_position: Anchor,
pub buffer: Model<Buffer>,
pub completions: Arc<RwLock<Box<[Completion]>>>,
match_candidates: Arc<[StringMatchCandidate]>,
pub matches: Arc<[StringMatch]>,
pub selected_item: usize,
scroll_handle: UniformListScrollHandle,
resolve_completions: bool,
pub aside_was_displayed: Cell<bool>,
show_completion_documentation: bool,
last_rendered_range: Arc<Mutex<Option<Range<usize>>>>,
}
impl CompletionsMenu {
pub fn new(
id: CompletionId,
sort_completions: bool,
show_completion_documentation: bool,
initial_position: Anchor,
buffer: Model<Buffer>,
completions: Box<[Completion]>,
aside_was_displayed: bool,
) -> Self {
let match_candidates = completions
.iter()
.enumerate()
.map(|(id, completion)| {
StringMatchCandidate::new(
id,
completion.label.text[completion.label.filter_range.clone()].into(),
)
})
.collect();
Self {
id,
sort_completions,
initial_position,
buffer,
completions: Arc::new(RwLock::new(completions)),
match_candidates,
matches: Vec::new().into(),
selected_item: 0,
scroll_handle: UniformListScrollHandle::new(),
resolve_completions: true,
aside_was_displayed: Cell::new(aside_was_displayed),
show_completion_documentation,
last_rendered_range: Arc::new(Mutex::new(None)),
}
}
pub fn new_snippet_choices(
id: CompletionId,
sort_completions: bool,
choices: &Vec<String>,
selection: Range<Anchor>,
buffer: Model<Buffer>,
) -> Self {
let completions = choices
.iter()
.map(|choice| Completion {
old_range: selection.start.text_anchor..selection.end.text_anchor,
new_text: choice.to_string(),
label: CodeLabel {
text: choice.to_string(),
runs: Default::default(),
filter_range: Default::default(),
},
server_id: LanguageServerId(usize::MAX),
documentation: None,
lsp_completion: Default::default(),
confirm: None,
})
.collect();
let match_candidates = choices
.iter()
.enumerate()
.map(|(id, completion)| StringMatchCandidate::new(id, completion.to_string()))
.collect();
let matches = choices
.iter()
.enumerate()
.map(|(id, completion)| StringMatch {
candidate_id: id,
score: 1.,
positions: vec![],
string: completion.clone(),
})
.collect();
Self {
id,
sort_completions,
initial_position: selection.start,
buffer,
completions: Arc::new(RwLock::new(completions)),
match_candidates,
matches,
selected_item: 0,
scroll_handle: UniformListScrollHandle::new(),
resolve_completions: false,
aside_was_displayed: Cell::new(false),
show_completion_documentation: false,
last_rendered_range: Arc::new(Mutex::new(None)),
}
}
fn select_first(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) {
self.update_selection_index(0, provider, cx);
}
fn select_prev(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) {
self.update_selection_index(self.prev_match_index(), provider, cx);
}
fn select_next(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) {
self.update_selection_index(self.next_match_index(), provider, cx);
}
fn select_last(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) {
self.update_selection_index(self.matches.len() - 1, provider, cx);
}
fn update_selection_index(
&mut self,
match_index: usize,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) {
if self.selected_item != match_index {
self.selected_item = match_index;
self.scroll_handle
.scroll_to_item(self.selected_item, ScrollStrategy::Top);
self.resolve_visible_completions(provider, cx);
cx.notify();
}
}
fn prev_match_index(&self) -> usize {
if self.selected_item > 0 {
self.selected_item - 1
} else {
self.matches.len() - 1
}
}
fn next_match_index(&self) -> usize {
if self.selected_item + 1 < self.matches.len() {
self.selected_item + 1
} else {
0
}
}
pub fn resolve_visible_completions(
&mut self,
provider: Option<&dyn CompletionProvider>,
cx: &mut ViewContext<Editor>,
) {
if !self.resolve_completions {
return;
}
let Some(provider) = provider else {
return;
};
// Attempt to resolve completions for every item that will be displayed. This matters
// because single line documentation may be displayed inline with the completion.
//
// When navigating to the very beginning or end of completions, `last_rendered_range` may
// have no overlap with the completions that will be displayed, so instead use a range based
// on the last rendered count.
const APPROXIMATE_VISIBLE_COUNT: usize = 12;
let last_rendered_range = self.last_rendered_range.lock().clone();
let visible_count = last_rendered_range
.clone()
.map_or(APPROXIMATE_VISIBLE_COUNT, |range| range.count());
let matches_range = if self.selected_item == 0 {
0..min(visible_count, self.matches.len())
} else if self.selected_item == self.matches.len() - 1 {
self.matches.len().saturating_sub(visible_count)..self.matches.len()
} else {
last_rendered_range.unwrap_or_else(|| self.selected_item..self.selected_item + 1)
};
// Expand the range to resolve more completions than are predicted to be visible, to reduce
// jank on navigation.
const EXTRA_TO_RESOLVE: usize = 4;
let matches_indices = util::iterate_expanded_and_wrapped_usize_range(
matches_range.clone(),
EXTRA_TO_RESOLVE,
EXTRA_TO_RESOLVE,
self.matches.len(),
);
// Avoid work by sometimes filtering out completions that already have documentation.
// This filtering doesn't happen if the completions are currently being updated.
let candidate_ids = matches_indices.map(|i| self.matches[i].candidate_id);
let candidate_ids = match self.completions.try_read() {
None => candidate_ids.collect::<Vec<usize>>(),
Some(completions) => candidate_ids
.filter(|i| completions[*i].documentation.is_none())
.collect::<Vec<usize>>(),
};
// Current selection is always resolved even if it already has documentation, to handle
// out-of-spec language servers that return more results later.
let selected_candidate_id = self.matches[self.selected_item].candidate_id;
let candidate_ids = iter::once(selected_candidate_id)
.chain(
candidate_ids
.into_iter()
.filter(|id| *id != selected_candidate_id),
)
.collect::<Vec<usize>>();
let resolve_task = provider.resolve_completions(
self.buffer.clone(),
candidate_ids,
self.completions.clone(),
cx,
);
cx.spawn(move |editor, mut cx| async move {
if let Some(true) = resolve_task.await.log_err() {
editor.update(&mut cx, |_, cx| cx.notify()).ok();
}
})
.detach();
}
fn visible(&self) -> bool {
!self.matches.is_empty()
}
fn render(
&self,
style: &EditorStyle,
max_height: Pixels,
workspace: Option<WeakView<Workspace>>,
cx: &mut ViewContext<Editor>,
) -> AnyElement {
let show_completion_documentation = self.show_completion_documentation;
let widest_completion_ix = self
.matches
.iter()
.enumerate()
.max_by_key(|(_, mat)| {
let completions = self.completions.read();
let completion = &completions[mat.candidate_id];
let documentation = &completion.documentation;
let mut len = completion.label.text.chars().count();
if let Some(Documentation::SingleLine(text)) = documentation {
if show_completion_documentation {
len += text.chars().count();
}
}
len
})
.map(|(ix, _)| ix);
let completions = self.completions.clone();
let matches = self.matches.clone();
let selected_item = self.selected_item;
let style = style.clone();
let multiline_docs = if show_completion_documentation {
let mat = &self.matches[selected_item];
match &self.completions.read()[mat.candidate_id].documentation {
Some(Documentation::MultiLinePlainText(text)) => {
Some(div().child(SharedString::from(text.clone())))
}
Some(Documentation::MultiLineMarkdown(parsed)) if !parsed.text.is_empty() => {
Some(div().child(render_parsed_markdown(
"completions_markdown",
parsed,
&style,
workspace,
cx,
)))
}
Some(Documentation::Undocumented) if self.aside_was_displayed.get() => {
Some(div().child("No documentation"))
}
_ => None,
}
} else {
None
};
let aside_contents = if let Some(multiline_docs) = multiline_docs {
Some(multiline_docs)
} else if self.aside_was_displayed.get() {
Some(div().child("Fetching documentation..."))
} else {
None
};
self.aside_was_displayed.set(aside_contents.is_some());
let aside_contents = aside_contents.map(|div| {
div.id("multiline_docs")
.max_h(max_height)
.flex_1()
.px_1p5()
.py_1()
.min_w(px(260.))
.max_w(px(640.))
.w(px(500.))
.overflow_y_scroll()
.occlude()
});
let last_rendered_range = self.last_rendered_range.clone();
let list = uniform_list(
cx.view().clone(),
"completions",
matches.len(),
move |_editor, range, cx| {
last_rendered_range.lock().replace(range.clone());
let start_ix = range.start;
let completions_guard = completions.read();
matches[range]
.iter()
.enumerate()
.map(|(ix, mat)| {
let item_ix = start_ix + ix;
let candidate_id = mat.candidate_id;
let completion = &completions_guard[candidate_id];
let documentation = if show_completion_documentation {
&completion.documentation
} else {
&None
};
let highlights = gpui::combine_highlights(
mat.ranges().map(|range| (range, FontWeight::BOLD.into())),
styled_runs_for_code_label(&completion.label, &style.syntax).map(
|(range, mut highlight)| {
// Ignore font weight for syntax highlighting, as we'll use it
// for fuzzy matches.
highlight.font_weight = None;
if completion.lsp_completion.deprecated.unwrap_or(false) {
highlight.strikethrough = Some(StrikethroughStyle {
thickness: 1.0.into(),
..Default::default()
});
highlight.color = Some(cx.theme().colors().text_muted);
}
(range, highlight)
},
),
);
let completion_label = StyledText::new(completion.label.text.clone())
.with_highlights(&style.text, highlights);
let documentation_label =
if let Some(Documentation::SingleLine(text)) = documentation {
if text.trim().is_empty() {
None
} else {
Some(
Label::new(text.clone())
.ml_4()
.size(LabelSize::Small)
.color(Color::Muted),
)
}
} else {
None
};
let color_swatch = completion
.color()
.map(|color| div().size_4().bg(color).rounded_sm());
div().min_w(px(220.)).max_w(px(540.)).child(
ListItem::new(mat.candidate_id)
.inset(true)
.selected(item_ix == selected_item)
.on_click(cx.listener(move |editor, _event, cx| {
cx.stop_propagation();
if let Some(task) = editor.confirm_completion(
&ConfirmCompletion {
item_ix: Some(item_ix),
},
cx,
) {
task.detach_and_log_err(cx)
}
}))
.start_slot::<Div>(color_swatch)
.child(h_flex().overflow_hidden().child(completion_label))
.end_slot::<Label>(documentation_label),
)
})
.collect()
},
)
.occlude()
.max_h(max_height)
.track_scroll(self.scroll_handle.clone())
.with_width_from_item(widest_completion_ix)
.with_sizing_behavior(ListSizingBehavior::Infer);
Popover::new()
.child(list)
.when_some(aside_contents, |popover, aside_contents| {
popover.aside(aside_contents)
})
.into_any_element()
}
pub async fn filter(&mut self, query: Option<&str>, executor: BackgroundExecutor) {
let mut matches = if let Some(query) = query {
fuzzy::match_strings(
&self.match_candidates,
query,
query.chars().any(|c| c.is_uppercase()),
100,
&Default::default(),
executor,
)
.await
} else {
self.match_candidates
.iter()
.enumerate()
.map(|(candidate_id, candidate)| StringMatch {
candidate_id,
score: Default::default(),
positions: Default::default(),
string: candidate.string.clone(),
})
.collect()
};
// Remove all candidates where the query's start does not match the start of any word in the candidate
if let Some(query) = query {
if let Some(query_start) = query.chars().next() {
matches.retain(|string_match| {
split_words(&string_match.string).any(|word| {
// Check that the first codepoint of the word as lowercase matches the first
// codepoint of the query as lowercase
word.chars()
.flat_map(|codepoint| codepoint.to_lowercase())
.zip(query_start.to_lowercase())
.all(|(word_cp, query_cp)| word_cp == query_cp)
})
});
}
}
let completions = self.completions.read();
if self.sort_completions {
matches.sort_unstable_by_key(|mat| {
// We do want to strike a balance here between what the language server tells us
// to sort by (the sort_text) and what are "obvious" good matches (i.e. when you type
// `Creat` and there is a local variable called `CreateComponent`).
// So what we do is: we bucket all matches into two buckets
// - Strong matches
// - Weak matches
// Strong matches are the ones with a high fuzzy-matcher score (the "obvious" matches)
// and the Weak matches are the rest.
//
// For the strong matches, we sort by our fuzzy-finder score first and for the weak
// matches, we prefer language-server sort_text first.
//
// The thinking behind that: we want to show strong matches first in order of relevance(fuzzy score).
// Rest of the matches(weak) can be sorted as language-server expects.
#[derive(PartialEq, Eq, PartialOrd, Ord)]
enum MatchScore<'a> {
Strong {
score: Reverse<OrderedFloat<f64>>,
sort_text: Option<&'a str>,
sort_key: (usize, &'a str),
},
Weak {
sort_text: Option<&'a str>,
score: Reverse<OrderedFloat<f64>>,
sort_key: (usize, &'a str),
},
}
let completion = &completions[mat.candidate_id];
let sort_key = completion.sort_key();
let sort_text = completion.lsp_completion.sort_text.as_deref();
let score = Reverse(OrderedFloat(mat.score));
if mat.score >= 0.2 {
MatchScore::Strong {
score,
sort_text,
sort_key,
}
} else {
MatchScore::Weak {
sort_text,
score,
sort_key,
}
}
});
}
for mat in &mut matches {
let completion = &completions[mat.candidate_id];
mat.string.clone_from(&completion.label.text);
for position in &mut mat.positions {
*position += completion.label.filter_range.start;
}
}
drop(completions);
self.matches = matches.into();
self.selected_item = 0;
}
}
#[derive(Clone)]
pub struct AvailableCodeAction {
pub excerpt_id: ExcerptId,
pub action: CodeAction,
pub provider: Arc<dyn CodeActionProvider>,
}
#[derive(Clone)]
pub struct CodeActionContents {
pub tasks: Option<Arc<ResolvedTasks>>,
pub actions: Option<Arc<[AvailableCodeAction]>>,
}
impl CodeActionContents {
fn len(&self) -> usize {
match (&self.tasks, &self.actions) {
(Some(tasks), Some(actions)) => actions.len() + tasks.templates.len(),
(Some(tasks), None) => tasks.templates.len(),
(None, Some(actions)) => actions.len(),
(None, None) => 0,
}
}
fn is_empty(&self) -> bool {
match (&self.tasks, &self.actions) {
(Some(tasks), Some(actions)) => actions.is_empty() && tasks.templates.is_empty(),
(Some(tasks), None) => tasks.templates.is_empty(),
(None, Some(actions)) => actions.is_empty(),
(None, None) => true,
}
}
fn iter(&self) -> impl Iterator<Item = CodeActionsItem> + '_ {
self.tasks
.iter()
.flat_map(|tasks| {
tasks
.templates
.iter()
.map(|(kind, task)| CodeActionsItem::Task(kind.clone(), task.clone()))
})
.chain(self.actions.iter().flat_map(|actions| {
actions.iter().map(|available| CodeActionsItem::CodeAction {
excerpt_id: available.excerpt_id,
action: available.action.clone(),
provider: available.provider.clone(),
})
}))
}
pub fn get(&self, index: usize) -> Option<CodeActionsItem> {
match (&self.tasks, &self.actions) {
(Some(tasks), Some(actions)) => {
if index < tasks.templates.len() {
tasks
.templates
.get(index)
.cloned()
.map(|(kind, task)| CodeActionsItem::Task(kind, task))
} else {
actions.get(index - tasks.templates.len()).map(|available| {
CodeActionsItem::CodeAction {
excerpt_id: available.excerpt_id,
action: available.action.clone(),
provider: available.provider.clone(),
}
})
}
}
(Some(tasks), None) => tasks
.templates
.get(index)
.cloned()
.map(|(kind, task)| CodeActionsItem::Task(kind, task)),
(None, Some(actions)) => {
actions
.get(index)
.map(|available| CodeActionsItem::CodeAction {
excerpt_id: available.excerpt_id,
action: available.action.clone(),
provider: available.provider.clone(),
})
}
(None, None) => None,
}
}
}
#[allow(clippy::large_enum_variant)]
#[derive(Clone)]
pub enum CodeActionsItem {
Task(TaskSourceKind, ResolvedTask),
CodeAction {
excerpt_id: ExcerptId,
action: CodeAction,
provider: Arc<dyn CodeActionProvider>,
},
}
impl CodeActionsItem {
fn as_task(&self) -> Option<&ResolvedTask> {
let Self::Task(_, task) = self else {
return None;
};
Some(task)
}
fn as_code_action(&self) -> Option<&CodeAction> {
let Self::CodeAction { action, .. } = self else {
return None;
};
Some(action)
}
pub fn label(&self) -> String {
match self {
Self::CodeAction { action, .. } => action.lsp_action.title.clone(),
Self::Task(_, task) => task.resolved_label.clone(),
}
}
}
pub struct CodeActionsMenu {
pub actions: CodeActionContents,
pub buffer: Model<Buffer>,
pub selected_item: usize,
pub scroll_handle: UniformListScrollHandle,
pub deployed_from_indicator: Option<DisplayRow>,
}
impl CodeActionsMenu {
fn select_first(&mut self, cx: &mut ViewContext<Editor>) {
self.selected_item = 0;
self.scroll_handle
.scroll_to_item(self.selected_item, ScrollStrategy::Top);
cx.notify()
}
fn select_prev(&mut self, cx: &mut ViewContext<Editor>) {
if self.selected_item > 0 {
self.selected_item -= 1;
} else {
self.selected_item = self.actions.len() - 1;
}
self.scroll_handle
.scroll_to_item(self.selected_item, ScrollStrategy::Top);
cx.notify();
}
fn select_next(&mut self, cx: &mut ViewContext<Editor>) {
if self.selected_item + 1 < self.actions.len() {
self.selected_item += 1;
} else {
self.selected_item = 0;
}
self.scroll_handle
.scroll_to_item(self.selected_item, ScrollStrategy::Top);
cx.notify();
}
fn select_last(&mut self, cx: &mut ViewContext<Editor>) {
self.selected_item = self.actions.len() - 1;
self.scroll_handle
.scroll_to_item(self.selected_item, ScrollStrategy::Top);
cx.notify()
}
fn visible(&self) -> bool {
!self.actions.is_empty()
}
fn render(
&self,
cursor_position: DisplayPoint,
_style: &EditorStyle,
max_height: Pixels,
cx: &mut ViewContext<Editor>,
) -> (ContextMenuOrigin, AnyElement) {
let actions = self.actions.clone();
let selected_item = self.selected_item;
let element = uniform_list(
cx.view().clone(),
"code_actions_menu",
self.actions.len(),
move |_this, range, cx| {
actions
.iter()
.skip(range.start)
.take(range.end - range.start)
.enumerate()
.map(|(ix, action)| {
let item_ix = range.start + ix;
let selected = selected_item == item_ix;
let colors = cx.theme().colors();
div()
.px_1()
.rounded_md()
.text_color(colors.text)
.when(selected, |style| {
style
.bg(colors.element_active)
.text_color(colors.text_accent)
})
.hover(|style| {
style
.bg(colors.element_hover)
.text_color(colors.text_accent)
})
.whitespace_nowrap()
.when_some(action.as_code_action(), |this, action| {
this.on_mouse_down(
MouseButton::Left,
cx.listener(move |editor, _, cx| {
cx.stop_propagation();
if let Some(task) = editor.confirm_code_action(
&ConfirmCodeAction {
item_ix: Some(item_ix),
},
cx,
) {
task.detach_and_log_err(cx)
}
}),
)
// TASK: It would be good to make lsp_action.title a SharedString to avoid allocating here.
.child(SharedString::from(
action.lsp_action.title.replace("\n", ""),
))
})
.when_some(action.as_task(), |this, task| {
this.on_mouse_down(
MouseButton::Left,
cx.listener(move |editor, _, cx| {
cx.stop_propagation();
if let Some(task) = editor.confirm_code_action(
&ConfirmCodeAction {
item_ix: Some(item_ix),
},
cx,
) {
task.detach_and_log_err(cx)
}
}),
)
.child(SharedString::from(task.resolved_label.replace("\n", "")))
})
})
.collect()
},
)
.elevation_1(cx)
.p_1()
.max_h(max_height)
.occlude()
.track_scroll(self.scroll_handle.clone())
.with_width_from_item(
self.actions
.iter()
.enumerate()
.max_by_key(|(_, action)| match action {
CodeActionsItem::Task(_, task) => task.resolved_label.chars().count(),
CodeActionsItem::CodeAction { action, .. } => {
action.lsp_action.title.chars().count()
}
})
.map(|(ix, _)| ix),
)
.with_sizing_behavior(ListSizingBehavior::Infer)
.into_any_element();
let cursor_position = if let Some(row) = self.deployed_from_indicator {
ContextMenuOrigin::GutterIndicator(row)
} else {
ContextMenuOrigin::EditorPoint(cursor_position)
};
(cursor_position, element)
}
}