2020-06-25 16:44:58 -05:00
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//! Project loading & configuration updates
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2020-06-26 10:28:04 -05:00
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use std::{mem, sync::Arc};
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2020-06-25 16:44:58 -05:00
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use crossbeam_channel::unbounded;
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use flycheck::FlycheckHandle;
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use ra_db::{CrateGraph, SourceRoot, VfsPath};
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use ra_ide::AnalysisChange;
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use ra_project_model::{PackageRoot, ProcMacroClient, ProjectWorkspace};
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use vfs::{file_set::FileSetConfig, AbsPath};
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use crate::{
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config::{Config, FilesWatcher, LinkedProject},
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2020-06-25 17:27:39 -05:00
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global_state::{GlobalState, Handle},
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2020-06-25 16:44:58 -05:00
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};
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impl GlobalState {
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2020-06-26 10:28:04 -05:00
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pub(crate) fn update_configuration(&mut self, config: Config) {
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let old_config = mem::replace(&mut self.config, config);
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if self.config.lru_capacity != old_config.lru_capacity {
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self.analysis_host.update_lru_capacity(old_config.lru_capacity);
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}
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2020-07-01 09:42:14 -05:00
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if self.config.linked_projects != old_config.linked_projects {
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self.reload()
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} else if self.config.flycheck != old_config.flycheck {
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2020-06-25 16:44:58 -05:00
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self.reload_flycheck();
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}
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}
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pub(crate) fn reload(&mut self) {
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2020-07-01 09:42:14 -05:00
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log::info!("reloading projects: {:?}", self.config.linked_projects);
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2020-07-02 09:06:00 -05:00
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if self.config.linked_projects.is_empty() && self.config.notifications.cargo_toml_not_found
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{
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self.show_message(
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lsp_types::MessageType::Error,
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"rust-analyzer failed to discover workspace".to_string(),
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);
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};
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2020-06-25 16:44:58 -05:00
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2020-07-02 09:06:00 -05:00
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let workspaces = {
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self.config
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.linked_projects
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.iter()
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2020-06-26 09:33:57 -05:00
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.map(|project| match project {
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LinkedProject::ProjectManifest(manifest) => {
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ra_project_model::ProjectWorkspace::load(
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manifest.clone(),
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&self.config.cargo,
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self.config.with_sysroot,
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)
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}
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LinkedProject::InlineJsonProject(it) => {
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Ok(ra_project_model::ProjectWorkspace::Json { project: it.clone() })
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}
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})
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.collect::<Vec<_>>()
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2020-06-26 09:33:57 -05:00
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.into_iter()
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.filter_map(|res| {
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res.map_err(|err| {
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log::error!("failed to load workspace: {:#}", err);
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self.show_message(
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lsp_types::MessageType::Error,
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format!("rust-analyzer failed to load workspace: {:#}", err),
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);
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})
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.ok()
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})
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.collect::<Vec<_>>()
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};
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if let FilesWatcher::Client = self.config.files.watcher {
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let registration_options = lsp_types::DidChangeWatchedFilesRegistrationOptions {
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watchers: workspaces
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.iter()
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.flat_map(ProjectWorkspace::to_roots)
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.filter(PackageRoot::is_member)
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.map(|root| format!("{}/**/*.rs", root.path().display()))
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.map(|glob_pattern| lsp_types::FileSystemWatcher { glob_pattern, kind: None })
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.collect(),
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};
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let registration = lsp_types::Registration {
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id: "workspace/didChangeWatchedFiles".to_string(),
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method: "workspace/didChangeWatchedFiles".to_string(),
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register_options: Some(serde_json::to_value(registration_options).unwrap()),
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};
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2020-06-26 10:07:14 -05:00
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self.send_request::<lsp_types::request::RegisterCapability>(
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lsp_types::RegistrationParams { registrations: vec![registration] },
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|_, _| (),
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);
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}
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let mut change = AnalysisChange::new();
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let project_folders = ProjectFolders::new(&workspaces);
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self.proc_macro_client = match &self.config.proc_macro_srv {
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None => ProcMacroClient::dummy(),
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Some((path, args)) => match ProcMacroClient::extern_process(path.into(), args) {
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Ok(it) => it,
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Err(err) => {
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log::error!(
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"Failed to run ra_proc_macro_srv from path {}, error: {:?}",
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path.display(),
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err
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);
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ProcMacroClient::dummy()
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}
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},
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};
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let watch = match self.config.files.watcher {
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FilesWatcher::Client => vec![],
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FilesWatcher::Notify => project_folders.watch,
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};
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self.loader.handle.set_config(vfs::loader::Config { load: project_folders.load, watch });
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2020-06-25 16:44:58 -05:00
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// Create crate graph from all the workspaces
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let crate_graph = {
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let mut crate_graph = CrateGraph::default();
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let vfs = &mut self.vfs.write().0;
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let loader = &mut self.loader;
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let mut load = |path: &AbsPath| {
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let contents = loader.handle.load_sync(path);
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let path = vfs::VfsPath::from(path.to_path_buf());
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vfs.set_file_contents(path.clone(), contents);
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vfs.file_id(&path)
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};
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for ws in workspaces.iter() {
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crate_graph.extend(ws.to_crate_graph(
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self.config.cargo.target.as_deref(),
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&self.proc_macro_client,
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&mut load,
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));
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}
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crate_graph
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};
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change.set_crate_graph(crate_graph);
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self.source_root_config = project_folders.source_root_config;
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self.workspaces = Arc::new(workspaces);
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self.analysis_host.apply_change(change);
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self.process_changes();
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self.reload_flycheck();
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}
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fn reload_flycheck(&mut self) {
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let config = match self.config.flycheck.clone() {
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Some(it) => it,
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None => {
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self.flycheck = None;
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return;
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}
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};
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// FIXME: Figure out the multi-workspace situation
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self.flycheck = self.workspaces.iter().find_map(move |w| match w {
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ProjectWorkspace::Cargo { cargo, .. } => {
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let (sender, receiver) = unbounded();
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let sender = Box::new(move |msg| sender.send(msg).unwrap());
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let cargo_project_root = cargo.workspace_root().to_path_buf();
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let handle =
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FlycheckHandle::spawn(sender, config.clone(), cargo_project_root.into());
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Some(Handle { handle, receiver })
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}
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ProjectWorkspace::Json { .. } => {
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log::warn!("Cargo check watching only supported for cargo workspaces, disabling");
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None
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}
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})
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}
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}
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#[derive(Default)]
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pub(crate) struct ProjectFolders {
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pub(crate) load: Vec<vfs::loader::Entry>,
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pub(crate) watch: Vec<usize>,
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pub(crate) source_root_config: SourceRootConfig,
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}
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impl ProjectFolders {
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pub(crate) fn new(workspaces: &[ProjectWorkspace]) -> ProjectFolders {
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let mut res = ProjectFolders::default();
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let mut fsc = FileSetConfig::builder();
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let mut local_filesets = vec![];
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for root in workspaces.iter().flat_map(|it| it.to_roots()) {
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let path = root.path().to_owned();
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let mut file_set_roots: Vec<VfsPath> = vec![];
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let entry = if root.is_member() {
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vfs::loader::Entry::local_cargo_package(path.to_path_buf())
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} else {
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vfs::loader::Entry::cargo_package_dependency(path.to_path_buf())
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};
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res.load.push(entry);
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if root.is_member() {
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res.watch.push(res.load.len() - 1);
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}
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if let Some(out_dir) = root.out_dir() {
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let out_dir = out_dir.to_path_buf();
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res.load.push(vfs::loader::Entry::rs_files_recursively(out_dir.clone()));
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if root.is_member() {
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res.watch.push(res.load.len() - 1);
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}
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file_set_roots.push(out_dir.into());
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}
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file_set_roots.push(path.to_path_buf().into());
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if root.is_member() {
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local_filesets.push(fsc.len());
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}
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fsc.add_file_set(file_set_roots)
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}
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let fsc = fsc.build();
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res.source_root_config = SourceRootConfig { fsc, local_filesets };
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res
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}
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}
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#[derive(Default, Debug)]
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pub(crate) struct SourceRootConfig {
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pub(crate) fsc: FileSetConfig,
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pub(crate) local_filesets: Vec<usize>,
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}
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impl SourceRootConfig {
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pub(crate) fn partition(&self, vfs: &vfs::Vfs) -> Vec<SourceRoot> {
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self.fsc
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.partition(vfs)
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.into_iter()
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.enumerate()
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.map(|(idx, file_set)| {
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let is_local = self.local_filesets.contains(&idx);
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if is_local {
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SourceRoot::new_local(file_set)
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} else {
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SourceRoot::new_library(file_set)
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}
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})
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.collect()
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}
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}
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