mirror of
https://github.com/rust-lang/rust-analyzer.git
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129 lines
4.4 KiB
Rust
129 lines
4.4 KiB
Rust
use ra_db::FileId;
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use ra_syntax::{ast, SyntaxNode, TreeArc, AstNode};
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use crate::{
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Module, ModuleSource, Problem, Name,
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nameres::{ModuleId, ImportId},
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HirDatabase, PersistentHirDatabase,
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HirFileId, SourceItemId,
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};
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impl ModuleSource {
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pub(crate) fn new(
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db: &impl PersistentHirDatabase,
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file_id: Option<FileId>,
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decl_id: Option<SourceItemId>,
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) -> ModuleSource {
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match (file_id, decl_id) {
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(Some(file_id), _) => {
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let source_file = db.parse(file_id);
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ModuleSource::SourceFile(source_file)
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}
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(None, Some(item_id)) => {
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let module = db.file_item(item_id);
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let module = ast::Module::cast(&*module).unwrap();
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assert!(module.item_list().is_some(), "expected inline module");
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ModuleSource::Module(module.to_owned())
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}
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(None, None) => panic!(),
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}
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}
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}
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impl Module {
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fn with_module_id(&self, module_id: ModuleId) -> Module {
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Module { module_id, krate: self.krate }
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}
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pub(crate) fn name_impl(&self, db: &impl HirDatabase) -> Option<Name> {
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let def_map = db.crate_def_map(self.krate);
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let parent = def_map[self.module_id].parent?;
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def_map[parent].children.iter().find_map(|(name, module_id)| {
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if *module_id == self.module_id {
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Some(name.clone())
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} else {
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None
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}
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})
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}
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pub(crate) fn definition_source_impl(
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&self,
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db: &impl PersistentHirDatabase,
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) -> (HirFileId, ModuleSource) {
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let def_map = db.crate_def_map(self.krate);
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let decl_id = def_map[self.module_id].declaration;
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let file_id = def_map[self.module_id].definition;
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let module_source = ModuleSource::new(db, file_id, decl_id);
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let file_id = file_id.map(HirFileId::from).unwrap_or_else(|| decl_id.unwrap().file_id);
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(file_id, module_source)
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}
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pub(crate) fn declaration_source_impl(
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&self,
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db: &impl HirDatabase,
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) -> Option<(HirFileId, TreeArc<ast::Module>)> {
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let def_map = db.crate_def_map(self.krate);
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let decl = def_map[self.module_id].declaration?;
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let syntax_node = db.file_item(decl);
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let ast = ast::Module::cast(&syntax_node).unwrap().to_owned();
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Some((decl.file_id, ast))
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}
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pub(crate) fn import_source_impl(
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&self,
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db: &impl HirDatabase,
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import: ImportId,
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) -> TreeArc<ast::PathSegment> {
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let (file_id, source) = self.definition_source(db);
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let (_, source_map) = db.raw_items_with_source_map(file_id.original_file(db));
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source_map.get(&source, import)
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}
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pub(crate) fn crate_root_impl(&self, db: &impl PersistentHirDatabase) -> Module {
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let def_map = db.crate_def_map(self.krate);
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self.with_module_id(def_map.root())
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}
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/// Finds a child module with the specified name.
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pub(crate) fn child_impl(&self, db: &impl HirDatabase, name: &Name) -> Option<Module> {
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let def_map = db.crate_def_map(self.krate);
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let child_id = def_map[self.module_id].children.get(name)?;
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Some(self.with_module_id(*child_id))
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}
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/// Iterates over all child modules.
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pub(crate) fn children_impl(
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&self,
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db: &impl PersistentHirDatabase,
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) -> impl Iterator<Item = Module> {
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let def_map = db.crate_def_map(self.krate);
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let children = def_map[self.module_id]
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.children
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.iter()
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.map(|(_, module_id)| self.with_module_id(*module_id))
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.collect::<Vec<_>>();
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children.into_iter()
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}
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pub(crate) fn parent_impl(&self, db: &impl PersistentHirDatabase) -> Option<Module> {
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let def_map = db.crate_def_map(self.krate);
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let parent_id = def_map[self.module_id].parent?;
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Some(self.with_module_id(parent_id))
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}
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pub(crate) fn problems_impl(
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&self,
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db: &impl HirDatabase,
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) -> Vec<(TreeArc<SyntaxNode>, Problem)> {
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let def_map = db.crate_def_map(self.krate);
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let (my_file_id, _) = self.definition_source(db);
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// FIXME: not entirely corret filterint by module
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def_map
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.problems()
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.iter()
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.filter(|(source_item_id, _problem)| my_file_id == source_item_id.file_id)
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.map(|(source_item_id, problem)| (db.file_item(*source_item_id), problem.clone()))
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.collect()
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}
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}
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