This pull request introduces a new `InlineCompletionProvider` trait,
which enables making `Editor` copilot-agnostic and lets us push all the
copilot functionality into the `copilot_ui` module. Long-term, I would
like to merge `copilot` and `copilot_ui`, but right now `project`
depends on `copilot`, which makes this impossible.
The reason for adding this new trait is so that we can experiment with
other inline completion providers and swap them at runtime using config
settings.
Please, note also that we renamed some of the existing copilot actions
to be more agnostic (see release notes below). We still kept the old
actions bound for backwards-compatibility, but we should probably remove
them at some later version.
Also, as a drive-by, we added new methods to the `Global` trait that let
you read or mutate a global directly, e.g.:
```rs
MyGlobal::update(cx, |global, cx| {
});
```
Release Notes:
- Renamed the `copilot::Suggest` action to
`editor::ShowInlineCompletion`
- Renamed the `copilot::NextSuggestion` action to
`editor::NextInlineCompletion`
- Renamed the `copilot::PreviousSuggestion` action to
`editor::PreviousInlineCompletion`
- Renamed the `editor::AcceptPartialCopilotSuggestion` action to
`editor::AcceptPartialInlineCompletion`
---------
Co-authored-by: Nathan <nathan@zed.dev>
Co-authored-by: Kyle <kylek@zed.dev>
Co-authored-by: Kyle Kelley <rgbkrk@gmail.com>
699 lines
26 KiB
Rust
699 lines
26 KiB
Rust
use anyhow::{anyhow, bail, Context, Result};
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use async_compression::futures::bufread::GzipDecoder;
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use async_trait::async_trait;
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use futures::{io::BufReader, StreamExt};
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use gpui::AsyncAppContext;
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pub use language::*;
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use lazy_static::lazy_static;
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use lsp::LanguageServerBinary;
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use project::project_settings::ProjectSettings;
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use regex::Regex;
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use settings::Settings;
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use smol::fs::{self, File};
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use std::{any::Any, borrow::Cow, env::consts, path::PathBuf, sync::Arc};
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use task::{
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static_source::{Definition, TaskDefinitions},
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TaskVariables,
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};
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use util::{
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fs::remove_matching,
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github::{latest_github_release, GitHubLspBinaryVersion},
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maybe, ResultExt,
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};
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pub struct RustLspAdapter;
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impl RustLspAdapter {
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const SERVER_NAME: &'static str = "rust-analyzer";
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}
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#[async_trait(?Send)]
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impl LspAdapter for RustLspAdapter {
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fn name(&self) -> LanguageServerName {
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LanguageServerName(Self::SERVER_NAME.into())
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}
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async fn check_if_user_installed(
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&self,
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_delegate: &dyn LspAdapterDelegate,
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cx: &AsyncAppContext,
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) -> Option<LanguageServerBinary> {
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let binary = cx
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.update(|cx| {
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ProjectSettings::get_global(cx)
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.lsp
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.get(Self::SERVER_NAME)
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.and_then(|s| s.binary.clone())
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})
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.ok()??;
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let path = binary.path?;
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Some(LanguageServerBinary {
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path: path.into(),
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arguments: binary
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.arguments
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.unwrap_or_default()
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.iter()
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.map(|arg| arg.into())
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.collect(),
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env: None,
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})
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}
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async fn fetch_latest_server_version(
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&self,
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delegate: &dyn LspAdapterDelegate,
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) -> Result<Box<dyn 'static + Send + Any>> {
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let release = latest_github_release(
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"rust-lang/rust-analyzer",
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true,
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false,
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delegate.http_client(),
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)
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.await?;
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let os = match consts::OS {
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"macos" => "apple-darwin",
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"linux" => "unknown-linux-gnu",
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"windows" => "pc-windows-msvc",
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other => bail!("Running on unsupported os: {other}"),
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};
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let asset_name = format!("rust-analyzer-{}-{os}.gz", consts::ARCH);
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let asset = release
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.assets
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.iter()
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.find(|asset| asset.name == asset_name)
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.with_context(|| format!("no asset found matching `{asset_name:?}`"))?;
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Ok(Box::new(GitHubLspBinaryVersion {
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name: release.tag_name,
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url: asset.browser_download_url.clone(),
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}))
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}
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async fn fetch_server_binary(
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&self,
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version: Box<dyn 'static + Send + Any>,
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container_dir: PathBuf,
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delegate: &dyn LspAdapterDelegate,
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) -> Result<LanguageServerBinary> {
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let version = version.downcast::<GitHubLspBinaryVersion>().unwrap();
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let destination_path = container_dir.join(format!("rust-analyzer-{}", version.name));
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if fs::metadata(&destination_path).await.is_err() {
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let mut response = delegate
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.http_client()
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.get(&version.url, Default::default(), true)
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.await
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.map_err(|err| anyhow!("error downloading release: {}", err))?;
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let decompressed_bytes = GzipDecoder::new(BufReader::new(response.body_mut()));
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let mut file = File::create(&destination_path).await?;
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futures::io::copy(decompressed_bytes, &mut file).await?;
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// todo("windows")
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#[cfg(not(windows))]
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{
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fs::set_permissions(
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&destination_path,
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<fs::Permissions as fs::unix::PermissionsExt>::from_mode(0o755),
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)
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.await?;
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}
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remove_matching(&container_dir, |entry| entry != destination_path).await;
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}
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Ok(LanguageServerBinary {
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path: destination_path,
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env: None,
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arguments: Default::default(),
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})
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}
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async fn cached_server_binary(
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&self,
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container_dir: PathBuf,
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_: &dyn LspAdapterDelegate,
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) -> Option<LanguageServerBinary> {
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get_cached_server_binary(container_dir).await
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}
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async fn installation_test_binary(
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&self,
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container_dir: PathBuf,
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) -> Option<LanguageServerBinary> {
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get_cached_server_binary(container_dir)
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.await
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.map(|mut binary| {
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binary.arguments = vec!["--help".into()];
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binary
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})
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}
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fn disk_based_diagnostic_sources(&self) -> Vec<String> {
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vec!["rustc".into()]
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}
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fn disk_based_diagnostics_progress_token(&self) -> Option<String> {
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Some("rust-analyzer/flycheck".into())
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}
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fn process_diagnostics(&self, params: &mut lsp::PublishDiagnosticsParams) {
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lazy_static! {
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static ref REGEX: Regex = Regex::new("(?m)`([^`]+)\n`$").unwrap();
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}
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for diagnostic in &mut params.diagnostics {
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for message in diagnostic
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.related_information
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.iter_mut()
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.flatten()
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.map(|info| &mut info.message)
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.chain([&mut diagnostic.message])
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{
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if let Cow::Owned(sanitized) = REGEX.replace_all(message, "`$1`") {
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*message = sanitized;
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}
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}
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}
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}
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async fn label_for_completion(
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&self,
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completion: &lsp::CompletionItem,
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language: &Arc<Language>,
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) -> Option<CodeLabel> {
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match completion.kind {
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Some(lsp::CompletionItemKind::FIELD) if completion.detail.is_some() => {
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let detail = completion.detail.as_ref().unwrap();
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let name = &completion.label;
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let text = format!("{}: {}", name, detail);
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let source = Rope::from(format!("struct S {{ {} }}", text).as_str());
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let runs = language.highlight_text(&source, 11..11 + text.len());
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return Some(CodeLabel {
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text,
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runs,
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filter_range: 0..name.len(),
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});
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}
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Some(lsp::CompletionItemKind::CONSTANT | lsp::CompletionItemKind::VARIABLE)
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if completion.detail.is_some()
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&& completion.insert_text_format != Some(lsp::InsertTextFormat::SNIPPET) =>
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{
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let detail = completion.detail.as_ref().unwrap();
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let name = &completion.label;
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let text = format!("{}: {}", name, detail);
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let source = Rope::from(format!("let {} = ();", text).as_str());
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let runs = language.highlight_text(&source, 4..4 + text.len());
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return Some(CodeLabel {
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text,
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runs,
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filter_range: 0..name.len(),
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});
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}
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Some(lsp::CompletionItemKind::FUNCTION | lsp::CompletionItemKind::METHOD)
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if completion.detail.is_some() =>
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{
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lazy_static! {
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static ref REGEX: Regex = Regex::new("\\(…?\\)").unwrap();
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}
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let detail = completion.detail.as_ref().unwrap();
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const FUNCTION_PREFIXES: [&'static str; 2] = ["async fn", "fn"];
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let prefix = FUNCTION_PREFIXES
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.iter()
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.find_map(|prefix| detail.strip_prefix(*prefix).map(|suffix| (prefix, suffix)));
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// fn keyword should be followed by opening parenthesis.
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if let Some((prefix, suffix)) = prefix {
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if suffix.starts_with('(') {
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let text = REGEX.replace(&completion.label, suffix).to_string();
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let source = Rope::from(format!("{prefix} {} {{}}", text).as_str());
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let run_start = prefix.len() + 1;
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let runs =
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language.highlight_text(&source, run_start..run_start + text.len());
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return Some(CodeLabel {
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filter_range: 0..completion.label.find('(').unwrap_or(text.len()),
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text,
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runs,
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});
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}
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}
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}
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Some(kind) => {
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let highlight_name = match kind {
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lsp::CompletionItemKind::STRUCT
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| lsp::CompletionItemKind::INTERFACE
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| lsp::CompletionItemKind::ENUM => Some("type"),
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lsp::CompletionItemKind::ENUM_MEMBER => Some("variant"),
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lsp::CompletionItemKind::KEYWORD => Some("keyword"),
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lsp::CompletionItemKind::VALUE | lsp::CompletionItemKind::CONSTANT => {
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Some("constant")
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}
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_ => None,
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};
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let highlight_id = language.grammar()?.highlight_id_for_name(highlight_name?)?;
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let mut label = CodeLabel::plain(completion.label.clone(), None);
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label.runs.push((
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0..label.text.rfind('(').unwrap_or(label.text.len()),
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highlight_id,
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));
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return Some(label);
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}
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_ => {}
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}
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None
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}
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async fn label_for_symbol(
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&self,
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name: &str,
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kind: lsp::SymbolKind,
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language: &Arc<Language>,
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) -> Option<CodeLabel> {
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let (text, filter_range, display_range) = match kind {
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lsp::SymbolKind::METHOD | lsp::SymbolKind::FUNCTION => {
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let text = format!("fn {} () {{}}", name);
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let filter_range = 3..3 + name.len();
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let display_range = 0..filter_range.end;
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(text, filter_range, display_range)
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}
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lsp::SymbolKind::STRUCT => {
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let text = format!("struct {} {{}}", name);
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let filter_range = 7..7 + name.len();
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let display_range = 0..filter_range.end;
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(text, filter_range, display_range)
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}
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lsp::SymbolKind::ENUM => {
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let text = format!("enum {} {{}}", name);
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let filter_range = 5..5 + name.len();
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let display_range = 0..filter_range.end;
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(text, filter_range, display_range)
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}
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lsp::SymbolKind::INTERFACE => {
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let text = format!("trait {} {{}}", name);
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let filter_range = 6..6 + name.len();
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let display_range = 0..filter_range.end;
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(text, filter_range, display_range)
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}
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lsp::SymbolKind::CONSTANT => {
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let text = format!("const {}: () = ();", name);
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let filter_range = 6..6 + name.len();
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let display_range = 0..filter_range.end;
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(text, filter_range, display_range)
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}
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lsp::SymbolKind::MODULE => {
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let text = format!("mod {} {{}}", name);
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let filter_range = 4..4 + name.len();
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let display_range = 0..filter_range.end;
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(text, filter_range, display_range)
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}
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lsp::SymbolKind::TYPE_PARAMETER => {
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let text = format!("type {} {{}}", name);
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let filter_range = 5..5 + name.len();
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let display_range = 0..filter_range.end;
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(text, filter_range, display_range)
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}
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_ => return None,
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};
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Some(CodeLabel {
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runs: language.highlight_text(&text.as_str().into(), display_range.clone()),
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text: text[display_range].to_string(),
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filter_range,
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})
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}
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}
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pub(crate) struct RustContextProvider;
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impl ContextProvider for RustContextProvider {
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fn build_context(
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&self,
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location: Location,
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cx: &mut gpui::AppContext,
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) -> Result<TaskVariables> {
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let mut context = SymbolContextProvider.build_context(location.clone(), cx)?;
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if let Some(path) = location.buffer.read(cx).file().and_then(|file| {
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let local_file = file.as_local()?.abs_path(cx);
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local_file.parent().map(PathBuf::from)
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}) {
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let Some(pkgid) = std::process::Command::new("cargo")
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.current_dir(path)
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.arg("pkgid")
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.output()
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.log_err()
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else {
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return Ok(context);
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};
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let package_name = String::from_utf8(pkgid.stdout)
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.map(|name| name.trim().to_owned())
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.ok();
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if let Some(package_name) = package_name {
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context.0.insert("ZED_PACKAGE".to_owned(), package_name);
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}
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}
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Ok(context)
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}
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fn associated_tasks(&self) -> Option<TaskDefinitions> {
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Some(TaskDefinitions(vec![
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Definition {
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label: "Rust: Test current crate".to_owned(),
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command: "cargo".into(),
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args: vec!["test".into(), "-p".into(), "$ZED_PACKAGE".into()],
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..Default::default()
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},
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Definition {
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label: "Rust: Test current function".to_owned(),
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command: "cargo".into(),
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args: vec![
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"test".into(),
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"-p".into(),
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"$ZED_PACKAGE".into(),
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"--".into(),
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"$ZED_SYMBOL".into(),
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],
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..Default::default()
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},
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Definition {
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label: "Rust: cargo run".into(),
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command: "cargo".into(),
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args: vec!["run".into()],
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..Default::default()
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},
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Definition {
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label: "Rust: cargo check current crate".into(),
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command: "cargo".into(),
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args: vec!["check".into(), "-p".into(), "$ZED_PACKAGE".into()],
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..Default::default()
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},
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Definition {
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label: "Rust: cargo check workspace".into(),
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command: "cargo".into(),
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args: vec!["check".into(), "--workspace".into()],
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..Default::default()
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},
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]))
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}
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}
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|
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async fn get_cached_server_binary(container_dir: PathBuf) -> Option<LanguageServerBinary> {
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maybe!(async {
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let mut last = None;
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let mut entries = fs::read_dir(&container_dir).await?;
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while let Some(entry) = entries.next().await {
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last = Some(entry?.path());
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}
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anyhow::Ok(LanguageServerBinary {
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path: last.ok_or_else(|| anyhow!("no cached binary"))?,
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env: None,
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arguments: Default::default(),
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})
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})
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.await
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.log_err()
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}
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|
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#[cfg(test)]
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mod tests {
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use std::num::NonZeroU32;
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|
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use super::*;
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use crate::language;
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use gpui::{BorrowAppContext, Context, Hsla, TestAppContext};
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use language::language_settings::AllLanguageSettings;
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use settings::SettingsStore;
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use text::BufferId;
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use theme::SyntaxTheme;
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|
|
#[gpui::test]
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async fn test_process_rust_diagnostics() {
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let mut params = lsp::PublishDiagnosticsParams {
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uri: lsp::Url::from_file_path("/a").unwrap(),
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version: None,
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diagnostics: vec![
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// no newlines
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lsp::Diagnostic {
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message: "use of moved value `a`".to_string(),
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..Default::default()
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},
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// newline at the end of a code span
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lsp::Diagnostic {
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message: "consider importing this struct: `use b::c;\n`".to_string(),
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..Default::default()
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|
},
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|
// code span starting right after a newline
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lsp::Diagnostic {
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message: "cannot borrow `self.d` as mutable\n`self` is a `&` reference"
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.to_string(),
|
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..Default::default()
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},
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],
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};
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RustLspAdapter.process_diagnostics(&mut params);
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|
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assert_eq!(params.diagnostics[0].message, "use of moved value `a`");
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|
|
// remove trailing newline from code span
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|
assert_eq!(
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params.diagnostics[1].message,
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"consider importing this struct: `use b::c;`"
|
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);
|
|
|
|
// do not remove newline before the start of code span
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assert_eq!(
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params.diagnostics[2].message,
|
|
"cannot borrow `self.d` as mutable\n`self` is a `&` reference"
|
|
);
|
|
}
|
|
|
|
#[gpui::test]
|
|
async fn test_rust_label_for_completion() {
|
|
let adapter = Arc::new(RustLspAdapter);
|
|
let language = language("rust", tree_sitter_rust::language());
|
|
let grammar = language.grammar().unwrap();
|
|
let theme = SyntaxTheme::new_test([
|
|
("type", Hsla::default()),
|
|
("keyword", Hsla::default()),
|
|
("function", Hsla::default()),
|
|
("property", Hsla::default()),
|
|
]);
|
|
|
|
language.set_theme(&theme);
|
|
|
|
let highlight_function = grammar.highlight_id_for_name("function").unwrap();
|
|
let highlight_type = grammar.highlight_id_for_name("type").unwrap();
|
|
let highlight_keyword = grammar.highlight_id_for_name("keyword").unwrap();
|
|
let highlight_field = grammar.highlight_id_for_name("property").unwrap();
|
|
|
|
assert_eq!(
|
|
adapter
|
|
.label_for_completion(
|
|
&lsp::CompletionItem {
|
|
kind: Some(lsp::CompletionItemKind::FUNCTION),
|
|
label: "hello(…)".to_string(),
|
|
detail: Some("fn(&mut Option<T>) -> Vec<T>".to_string()),
|
|
..Default::default()
|
|
},
|
|
&language
|
|
)
|
|
.await,
|
|
Some(CodeLabel {
|
|
text: "hello(&mut Option<T>) -> Vec<T>".to_string(),
|
|
filter_range: 0..5,
|
|
runs: vec![
|
|
(0..5, highlight_function),
|
|
(7..10, highlight_keyword),
|
|
(11..17, highlight_type),
|
|
(18..19, highlight_type),
|
|
(25..28, highlight_type),
|
|
(29..30, highlight_type),
|
|
],
|
|
})
|
|
);
|
|
assert_eq!(
|
|
adapter
|
|
.label_for_completion(
|
|
&lsp::CompletionItem {
|
|
kind: Some(lsp::CompletionItemKind::FUNCTION),
|
|
label: "hello(…)".to_string(),
|
|
detail: Some("async fn(&mut Option<T>) -> Vec<T>".to_string()),
|
|
..Default::default()
|
|
},
|
|
&language
|
|
)
|
|
.await,
|
|
Some(CodeLabel {
|
|
text: "hello(&mut Option<T>) -> Vec<T>".to_string(),
|
|
filter_range: 0..5,
|
|
runs: vec![
|
|
(0..5, highlight_function),
|
|
(7..10, highlight_keyword),
|
|
(11..17, highlight_type),
|
|
(18..19, highlight_type),
|
|
(25..28, highlight_type),
|
|
(29..30, highlight_type),
|
|
],
|
|
})
|
|
);
|
|
assert_eq!(
|
|
adapter
|
|
.label_for_completion(
|
|
&lsp::CompletionItem {
|
|
kind: Some(lsp::CompletionItemKind::FIELD),
|
|
label: "len".to_string(),
|
|
detail: Some("usize".to_string()),
|
|
..Default::default()
|
|
},
|
|
&language
|
|
)
|
|
.await,
|
|
Some(CodeLabel {
|
|
text: "len: usize".to_string(),
|
|
filter_range: 0..3,
|
|
runs: vec![(0..3, highlight_field), (5..10, highlight_type),],
|
|
})
|
|
);
|
|
|
|
assert_eq!(
|
|
adapter
|
|
.label_for_completion(
|
|
&lsp::CompletionItem {
|
|
kind: Some(lsp::CompletionItemKind::FUNCTION),
|
|
label: "hello(…)".to_string(),
|
|
detail: Some("fn(&mut Option<T>) -> Vec<T>".to_string()),
|
|
..Default::default()
|
|
},
|
|
&language
|
|
)
|
|
.await,
|
|
Some(CodeLabel {
|
|
text: "hello(&mut Option<T>) -> Vec<T>".to_string(),
|
|
filter_range: 0..5,
|
|
runs: vec![
|
|
(0..5, highlight_function),
|
|
(7..10, highlight_keyword),
|
|
(11..17, highlight_type),
|
|
(18..19, highlight_type),
|
|
(25..28, highlight_type),
|
|
(29..30, highlight_type),
|
|
],
|
|
})
|
|
);
|
|
}
|
|
|
|
#[gpui::test]
|
|
async fn test_rust_label_for_symbol() {
|
|
let adapter = Arc::new(RustLspAdapter);
|
|
let language = language("rust", tree_sitter_rust::language());
|
|
let grammar = language.grammar().unwrap();
|
|
let theme = SyntaxTheme::new_test([
|
|
("type", Hsla::default()),
|
|
("keyword", Hsla::default()),
|
|
("function", Hsla::default()),
|
|
("property", Hsla::default()),
|
|
]);
|
|
|
|
language.set_theme(&theme);
|
|
|
|
let highlight_function = grammar.highlight_id_for_name("function").unwrap();
|
|
let highlight_type = grammar.highlight_id_for_name("type").unwrap();
|
|
let highlight_keyword = grammar.highlight_id_for_name("keyword").unwrap();
|
|
|
|
assert_eq!(
|
|
adapter
|
|
.label_for_symbol("hello", lsp::SymbolKind::FUNCTION, &language)
|
|
.await,
|
|
Some(CodeLabel {
|
|
text: "fn hello".to_string(),
|
|
filter_range: 3..8,
|
|
runs: vec![(0..2, highlight_keyword), (3..8, highlight_function)],
|
|
})
|
|
);
|
|
|
|
assert_eq!(
|
|
adapter
|
|
.label_for_symbol("World", lsp::SymbolKind::TYPE_PARAMETER, &language)
|
|
.await,
|
|
Some(CodeLabel {
|
|
text: "type World".to_string(),
|
|
filter_range: 5..10,
|
|
runs: vec![(0..4, highlight_keyword), (5..10, highlight_type)],
|
|
})
|
|
);
|
|
}
|
|
|
|
#[gpui::test]
|
|
async fn test_rust_autoindent(cx: &mut TestAppContext) {
|
|
// cx.executor().set_block_on_ticks(usize::MAX..=usize::MAX);
|
|
cx.update(|cx| {
|
|
let test_settings = SettingsStore::test(cx);
|
|
cx.set_global(test_settings);
|
|
language::init(cx);
|
|
cx.update_global::<SettingsStore, _>(|store, cx| {
|
|
store.update_user_settings::<AllLanguageSettings>(cx, |s| {
|
|
s.defaults.tab_size = NonZeroU32::new(2);
|
|
});
|
|
});
|
|
});
|
|
|
|
let language = crate::language("rust", tree_sitter_rust::language());
|
|
|
|
cx.new_model(|cx| {
|
|
let mut buffer = Buffer::new(0, BufferId::new(cx.entity_id().as_u64()).unwrap(), "")
|
|
.with_language(language, cx);
|
|
|
|
// indent between braces
|
|
buffer.set_text("fn a() {}", cx);
|
|
let ix = buffer.len() - 1;
|
|
buffer.edit([(ix..ix, "\n\n")], Some(AutoindentMode::EachLine), cx);
|
|
assert_eq!(buffer.text(), "fn a() {\n \n}");
|
|
|
|
// indent between braces, even after empty lines
|
|
buffer.set_text("fn a() {\n\n\n}", cx);
|
|
let ix = buffer.len() - 2;
|
|
buffer.edit([(ix..ix, "\n")], Some(AutoindentMode::EachLine), cx);
|
|
assert_eq!(buffer.text(), "fn a() {\n\n\n \n}");
|
|
|
|
// indent a line that continues a field expression
|
|
buffer.set_text("fn a() {\n \n}", cx);
|
|
let ix = buffer.len() - 2;
|
|
buffer.edit([(ix..ix, "b\n.c")], Some(AutoindentMode::EachLine), cx);
|
|
assert_eq!(buffer.text(), "fn a() {\n b\n .c\n}");
|
|
|
|
// indent further lines that continue the field expression, even after empty lines
|
|
let ix = buffer.len() - 2;
|
|
buffer.edit([(ix..ix, "\n\n.d")], Some(AutoindentMode::EachLine), cx);
|
|
assert_eq!(buffer.text(), "fn a() {\n b\n .c\n \n .d\n}");
|
|
|
|
// dedent the line after the field expression
|
|
let ix = buffer.len() - 2;
|
|
buffer.edit([(ix..ix, ";\ne")], Some(AutoindentMode::EachLine), cx);
|
|
assert_eq!(
|
|
buffer.text(),
|
|
"fn a() {\n b\n .c\n \n .d;\n e\n}"
|
|
);
|
|
|
|
// indent inside a struct within a call
|
|
buffer.set_text("const a: B = c(D {});", cx);
|
|
let ix = buffer.len() - 3;
|
|
buffer.edit([(ix..ix, "\n\n")], Some(AutoindentMode::EachLine), cx);
|
|
assert_eq!(buffer.text(), "const a: B = c(D {\n \n});");
|
|
|
|
// indent further inside a nested call
|
|
let ix = buffer.len() - 4;
|
|
buffer.edit([(ix..ix, "e: f(\n\n)")], Some(AutoindentMode::EachLine), cx);
|
|
assert_eq!(buffer.text(), "const a: B = c(D {\n e: f(\n \n )\n});");
|
|
|
|
// keep that indent after an empty line
|
|
let ix = buffer.len() - 8;
|
|
buffer.edit([(ix..ix, "\n")], Some(AutoindentMode::EachLine), cx);
|
|
assert_eq!(
|
|
buffer.text(),
|
|
"const a: B = c(D {\n e: f(\n \n \n )\n});"
|
|
);
|
|
|
|
buffer
|
|
});
|
|
}
|
|
}
|