use anyhow::{anyhow, Context, Result}; use async_compression::futures::bufread::GzipDecoder; use async_tar::Archive; use async_trait::async_trait; use futures::{io::BufReader, StreamExt}; use gpui::{AsyncAppContext, Task}; use language::{LanguageServerName, LspAdapter, LspAdapterDelegate}; use lsp::LanguageServerBinary; use smol::fs; use std::env::consts::{ARCH, OS}; use std::ffi::OsString; use std::sync::Arc; use std::{any::Any, path::PathBuf}; use util::async_maybe; use util::github::latest_github_release; use util::{github::GitHubLspBinaryVersion, ResultExt}; pub struct ZlsAdapter; #[async_trait] impl LspAdapter for ZlsAdapter { fn name(&self) -> LanguageServerName { LanguageServerName("zls".into()) } fn short_name(&self) -> &'static str { "zls" } async fn fetch_latest_server_version( &self, delegate: &dyn LspAdapterDelegate, ) -> Result> { let release = latest_github_release("zigtools/zls", true, false, delegate.http_client()).await?; let asset_name = format!("zls-{ARCH}-{OS}.tar.gz"); let asset = release .assets .iter() .find(|asset| asset.name == asset_name) .ok_or_else(|| anyhow!("no asset found matching {:?}", asset_name))?; let version = GitHubLspBinaryVersion { name: release.tag_name, url: asset.browser_download_url.clone(), }; Ok(Box::new(version) as Box<_>) } fn check_if_user_installed( &self, delegate: &Arc, cx: &mut AsyncAppContext, ) -> Option>> { let delegate = delegate.clone(); Some(cx.spawn(|cx| async move { match cx.update(|cx| delegate.which_command(OsString::from("zls"), cx)) { Ok(task) => task.await.map(|(path, env)| LanguageServerBinary { path, arguments: vec![], env: Some(env), }), Err(_) => None, } })) } async fn fetch_server_binary( &self, version: Box, container_dir: PathBuf, delegate: &dyn LspAdapterDelegate, ) -> Result { let version = version.downcast::().unwrap(); let binary_path = container_dir.join("bin/zls"); if fs::metadata(&binary_path).await.is_err() { let mut response = delegate .http_client() .get(&version.url, Default::default(), true) .await .context("error downloading release")?; let decompressed_bytes = GzipDecoder::new(BufReader::new(response.body_mut())); let archive = Archive::new(decompressed_bytes); archive.unpack(container_dir).await?; } // todo!("windows") #[cfg(not(windows))] { fs::set_permissions( &binary_path, ::from_mode(0o755), ) .await?; } Ok(LanguageServerBinary { path: binary_path, env: None, arguments: vec![], }) } async fn cached_server_binary( &self, container_dir: PathBuf, _: &dyn LspAdapterDelegate, ) -> Option { get_cached_server_binary(container_dir).await } async fn installation_test_binary( &self, container_dir: PathBuf, ) -> Option { get_cached_server_binary(container_dir) .await .map(|mut binary| { binary.arguments = vec!["--help".into()]; binary }) } } async fn get_cached_server_binary(container_dir: PathBuf) -> Option { async_maybe!({ let mut last_binary_path = None; let mut entries = fs::read_dir(&container_dir).await?; while let Some(entry) = entries.next().await { let entry = entry?; if entry.file_type().await?.is_file() && entry .file_name() .to_str() .map_or(false, |name| name == "zls") { last_binary_path = Some(entry.path()); } } if let Some(path) = last_binary_path { Ok(LanguageServerBinary { path, env: None, arguments: Vec::new(), }) } else { Err(anyhow!("no cached binary")) } }) .await .log_err() }