mirror of
https://github.com/rust-lang/rust-analyzer
synced 2024-12-27 05:23:24 +00:00
364 lines
12 KiB
Rust
364 lines
12 KiB
Rust
use std::{
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sync::{
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Arc,
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atomic::{AtomicBool, Ordering::SeqCst},
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},
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fmt,
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collections::{HashSet, VecDeque},
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};
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use relative_path::RelativePath;
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use libeditor::{self, FileSymbol, LineIndex, find_node_at_offset, LocalEdit};
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use libsyntax2::{
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TextUnit, TextRange, SmolStr, File, AstNode,
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SyntaxKind::*,
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ast::{self, NameOwner},
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};
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use {
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FileId, FileResolver, Query, Diagnostic, SourceChange, SourceFileEdit, Position, FileSystemEdit,
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JobToken, CrateGraph, CrateId,
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module_map::{ModuleMap, Problem},
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roots::{SourceRoot, ReadonlySourceRoot, WritableSourceRoot},
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};
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#[derive(Clone, Debug)]
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pub(crate) struct FileResolverImp {
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inner: Arc<FileResolver>
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}
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impl FileResolverImp {
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pub(crate) fn new(inner: Arc<FileResolver>) -> FileResolverImp {
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FileResolverImp { inner }
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}
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pub(crate) fn file_stem(&self, file_id: FileId) -> String {
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self.inner.file_stem(file_id)
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}
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pub(crate) fn resolve(&self, file_id: FileId, path: &RelativePath) -> Option<FileId> {
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self.inner.resolve(file_id, path)
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}
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}
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impl Default for FileResolverImp {
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fn default() -> FileResolverImp {
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#[derive(Debug)]
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struct DummyResolver;
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impl FileResolver for DummyResolver {
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fn file_stem(&self, _file_: FileId) -> String {
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panic!("file resolver not set")
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}
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fn resolve(&self, _file_id: FileId, _path: &::relative_path::RelativePath) -> Option<FileId> {
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panic!("file resolver not set")
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}
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}
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FileResolverImp { inner: Arc::new(DummyResolver) }
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}
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}
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#[derive(Debug)]
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pub(crate) struct AnalysisHostImpl {
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data: Arc<WorldData>
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}
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impl AnalysisHostImpl {
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pub fn new() -> AnalysisHostImpl {
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AnalysisHostImpl {
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data: Arc::new(WorldData::default()),
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}
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}
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pub fn analysis(&self) -> AnalysisImpl {
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AnalysisImpl {
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needs_reindex: AtomicBool::new(false),
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data: self.data.clone(),
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}
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}
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pub fn change_files(&mut self, changes: &mut dyn Iterator<Item=(FileId, Option<String>)>) {
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let data = self.data_mut();
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for (file_id, text) in changes {
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data.root.update(file_id, text);
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}
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}
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pub fn set_file_resolver(&mut self, resolver: FileResolverImp) {
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let data = self.data_mut();
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data.file_resolver = resolver.clone();
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data.root.set_file_resolver(resolver);
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}
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pub fn set_crate_graph(&mut self, graph: CrateGraph) {
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let mut visited = HashSet::new();
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for &file_id in graph.crate_roots.values() {
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if !visited.insert(file_id) {
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panic!("duplicate crate root: {:?}", file_id);
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}
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}
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self.data_mut().crate_graph = graph;
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}
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pub fn add_library(&mut self, root: ReadonlySourceRoot) {
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self.data_mut().libs.push(Arc::new(root));
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}
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fn data_mut(&mut self) -> &mut WorldData {
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Arc::make_mut(&mut self.data)
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}
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}
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pub(crate) struct AnalysisImpl {
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needs_reindex: AtomicBool,
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data: Arc<WorldData>,
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}
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impl fmt::Debug for AnalysisImpl {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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(&*self.data).fmt(f)
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}
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}
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impl Clone for AnalysisImpl {
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fn clone(&self) -> AnalysisImpl {
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AnalysisImpl {
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needs_reindex: AtomicBool::new(self.needs_reindex.load(SeqCst)),
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data: Arc::clone(&self.data),
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}
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}
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}
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impl AnalysisImpl {
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fn root(&self, file_id: FileId) -> &SourceRoot {
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if self.data.root.contains(file_id) {
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return &self.data.root;
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}
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&**self.data.libs.iter().find(|it| it.contains(file_id)).unwrap()
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}
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pub fn file_syntax(&self, file_id: FileId) -> &File {
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self.root(file_id).syntax(file_id)
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}
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pub fn file_line_index(&self, file_id: FileId) -> &LineIndex {
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self.root(file_id).lines(file_id)
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}
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pub fn world_symbols(&self, query: Query, token: &JobToken) -> Vec<(FileId, FileSymbol)> {
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self.reindex();
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let mut buf = Vec::new();
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if query.libs {
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self.data.libs.iter()
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.for_each(|it| it.symbols(&mut buf));
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} else {
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self.data.root.symbols(&mut buf);
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}
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query.search(&buf, token)
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}
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pub fn parent_module(&self, file_id: FileId) -> Vec<(FileId, FileSymbol)> {
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let root = self.root(file_id);
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let module_map = root.module_map();
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let id = module_map.file2module(file_id);
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module_map
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.parent_modules(id, &|file_id| root.syntax(file_id))
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.into_iter()
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.map(|(id, name, node)| {
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let id = module_map.module2file(id);
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let sym = FileSymbol {
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name,
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node_range: node.range(),
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kind: MODULE,
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};
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(id, sym)
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})
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.collect()
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}
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pub fn crate_for(&self, file_id: FileId) -> Vec<CrateId> {
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let module_map = self.root(file_id).module_map();
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let crate_graph = &self.data.crate_graph;
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let mut res = Vec::new();
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let mut work = VecDeque::new();
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work.push_back(file_id);
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let mut visited = HashSet::new();
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while let Some(id) = work.pop_front() {
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if let Some(crate_id) = crate_graph.crate_id_for_crate_root(id) {
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res.push(crate_id);
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continue;
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}
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let mid = module_map.file2module(id);
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let parents = module_map
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.parent_module_ids(mid, &|file_id| self.file_syntax(file_id))
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.into_iter()
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.map(|id| module_map.module2file(id))
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.filter(|&id| visited.insert(id));
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work.extend(parents);
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}
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res
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}
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pub fn crate_root(&self, crate_id: CrateId) -> FileId {
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self.data.crate_graph.crate_roots[&crate_id]
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}
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pub fn approximately_resolve_symbol(
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&self,
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file_id: FileId,
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offset: TextUnit,
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token: &JobToken,
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) -> Vec<(FileId, FileSymbol)> {
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let root = self.root(file_id);
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let module_map = root.module_map();
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let file = root.syntax(file_id);
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let syntax = file.syntax();
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if let Some(name_ref) = find_node_at_offset::<ast::NameRef>(syntax, offset) {
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return self.index_resolve(name_ref, token);
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}
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if let Some(name) = find_node_at_offset::<ast::Name>(syntax, offset) {
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if let Some(module) = name.syntax().parent().and_then(ast::Module::cast) {
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if module.has_semi() {
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let file_ids = self.resolve_module(module_map, file_id, module);
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let res = file_ids.into_iter().map(|id| {
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let name = module.name()
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.map(|n| n.text())
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.unwrap_or_else(|| SmolStr::new(""));
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let symbol = FileSymbol {
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name,
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node_range: TextRange::offset_len(0.into(), 0.into()),
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kind: MODULE,
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};
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(id, symbol)
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}).collect();
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return res;
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}
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}
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}
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vec![]
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}
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pub fn diagnostics(&self, file_id: FileId) -> Vec<Diagnostic> {
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let root = self.root(file_id);
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let module_map = root.module_map();
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let syntax = root.syntax(file_id);
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let mut res = libeditor::diagnostics(&syntax)
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.into_iter()
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.map(|d| Diagnostic { range: d.range, message: d.msg, fix: None })
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.collect::<Vec<_>>();
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module_map.problems(
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file_id,
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&|file_id| self.file_syntax(file_id),
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|name_node, problem| {
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let diag = match problem {
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Problem::UnresolvedModule { candidate } => {
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let create_file = FileSystemEdit::CreateFile {
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anchor: file_id,
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path: candidate.clone(),
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};
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let fix = SourceChange {
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label: "create module".to_string(),
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source_file_edits: Vec::new(),
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file_system_edits: vec![create_file],
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cursor_position: None,
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};
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Diagnostic {
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range: name_node.syntax().range(),
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message: "unresolved module".to_string(),
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fix: Some(fix),
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}
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}
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Problem::NotDirOwner { move_to, candidate } => {
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let move_file = FileSystemEdit::MoveFile { file: file_id, path: move_to.clone() };
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let create_file = FileSystemEdit::CreateFile { anchor: file_id, path: move_to.join(candidate) };
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let fix = SourceChange {
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label: "move file and create module".to_string(),
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source_file_edits: Vec::new(),
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file_system_edits: vec![move_file, create_file],
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cursor_position: None,
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};
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Diagnostic {
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range: name_node.syntax().range(),
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message: "can't declare module at this location".to_string(),
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fix: Some(fix),
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}
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}
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};
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res.push(diag)
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}
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);
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res
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}
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pub fn assists(&self, file_id: FileId, range: TextRange) -> Vec<SourceChange> {
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let file = self.file_syntax(file_id);
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let offset = range.start();
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let actions = vec![
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("flip comma", libeditor::flip_comma(&file, offset).map(|f| f())),
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("add `#[derive]`", libeditor::add_derive(&file, offset).map(|f| f())),
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("add impl", libeditor::add_impl(&file, offset).map(|f| f())),
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("introduce variable", libeditor::introduce_variable(&file, range).map(|f| f())),
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];
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actions.into_iter()
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.filter_map(|(name, local_edit)| {
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Some(SourceChange::from_local_edit(
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file_id, name, local_edit?,
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))
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})
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.collect()
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}
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fn index_resolve(&self, name_ref: ast::NameRef, token: &JobToken) -> Vec<(FileId, FileSymbol)> {
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let name = name_ref.text();
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let mut query = Query::new(name.to_string());
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query.exact();
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query.limit(4);
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self.world_symbols(query, token)
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}
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fn resolve_module(&self, module_map: &ModuleMap, file_id: FileId, module: ast::Module) -> Vec<FileId> {
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let name = match module.name() {
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Some(name) => name.text(),
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None => return Vec::new(),
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};
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let id = module_map.file2module(file_id);
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module_map
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.child_module_by_name(
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id, name.as_str(),
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&|file_id| self.file_syntax(file_id),
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)
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.into_iter()
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.map(|id| module_map.module2file(id))
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.collect()
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}
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fn reindex(&self) {
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if self.needs_reindex.compare_and_swap(true, false, SeqCst) {
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self.data.root.reindex();
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}
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}
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}
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#[derive(Default, Clone, Debug)]
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struct WorldData {
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file_resolver: FileResolverImp,
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crate_graph: CrateGraph,
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root: WritableSourceRoot,
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libs: Vec<Arc<ReadonlySourceRoot>>,
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}
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impl SourceChange {
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pub(crate) fn from_local_edit(file_id: FileId, label: &str, edit: LocalEdit) -> SourceChange {
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let file_edit = SourceFileEdit {
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file_id,
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edits: edit.edit.into_atoms(),
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};
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SourceChange {
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label: label.to_string(),
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source_file_edits: vec![file_edit],
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file_system_edits: vec![],
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cursor_position: edit.cursor_position
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.map(|offset| Position { offset, file_id })
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}
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}
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}
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impl CrateGraph {
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fn crate_id_for_crate_root(&self, file_id: FileId) -> Option<CrateId> {
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let (&crate_id, _) = self.crate_roots
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.iter()
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.find(|(_crate_id, &root_id)| root_id == file_id)?;
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Some(crate_id)
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}
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}
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