mirror of
https://github.com/rust-lang/rust-analyzer
synced 2025-01-04 01:08:47 +00:00
181 lines
5.4 KiB
Rust
181 lines
5.4 KiB
Rust
//! See [`FamousDefs`].
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use base_db::{CrateOrigin, LangCrateOrigin, SourceDatabase};
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use hir::{Crate, Enum, Macro, Module, ScopeDef, Semantics, Trait};
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use crate::RootDatabase;
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/// Helps with finding well-know things inside the standard library. This is
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/// somewhat similar to the known paths infra inside hir, but it different; We
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/// want to make sure that IDE specific paths don't become interesting inside
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/// the compiler itself as well.
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///
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/// Note that, by default, rust-analyzer tests **do not** include core or std
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/// libraries. If you are writing tests for functionality using [`FamousDefs`],
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/// you'd want to include minicore (see `test_utils::MiniCore`) declaration at
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/// the start of your tests:
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///
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/// ```
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/// //- minicore: iterator, ord, derive
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/// ```
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pub struct FamousDefs<'a, 'b>(pub &'a Semantics<'b, RootDatabase>, pub Crate);
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#[allow(non_snake_case)]
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impl FamousDefs<'_, '_> {
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pub fn std(&self) -> Option<Crate> {
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self.find_lang_crate(LangCrateOrigin::Std)
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}
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pub fn core(&self) -> Option<Crate> {
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self.find_lang_crate(LangCrateOrigin::Core)
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}
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pub fn alloc(&self) -> Option<Crate> {
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self.find_lang_crate(LangCrateOrigin::Alloc)
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}
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pub fn test(&self) -> Option<Crate> {
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self.find_lang_crate(LangCrateOrigin::Test)
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}
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pub fn proc_macro(&self) -> Option<Crate> {
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self.find_lang_crate(LangCrateOrigin::ProcMacro)
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}
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pub fn core_cmp_Ord(&self) -> Option<Trait> {
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self.find_trait("core:cmp:Ord")
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}
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pub fn core_convert_From(&self) -> Option<Trait> {
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self.find_trait("core:convert:From")
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}
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pub fn core_convert_Into(&self) -> Option<Trait> {
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self.find_trait("core:convert:Into")
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}
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pub fn core_option_Option(&self) -> Option<Enum> {
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self.find_enum("core:option:Option")
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}
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pub fn core_result_Result(&self) -> Option<Enum> {
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self.find_enum("core:result:Result")
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}
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pub fn core_default_Default(&self) -> Option<Trait> {
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self.find_trait("core:default:Default")
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}
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pub fn core_iter_Iterator(&self) -> Option<Trait> {
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self.find_trait("core:iter:traits:iterator:Iterator")
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}
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pub fn core_iter_IntoIterator(&self) -> Option<Trait> {
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self.find_trait("core:iter:traits:collect:IntoIterator")
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}
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pub fn core_iter(&self) -> Option<Module> {
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self.find_module("core:iter")
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}
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pub fn core_ops_Deref(&self) -> Option<Trait> {
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self.find_trait("core:ops:Deref")
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}
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pub fn core_convert_AsRef(&self) -> Option<Trait> {
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self.find_trait("core:convert:AsRef")
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}
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pub fn core_ops_ControlFlow(&self) -> Option<Enum> {
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self.find_enum("core:ops:ControlFlow")
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}
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pub fn core_ops_Drop(&self) -> Option<Trait> {
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self.find_trait("core:ops:Drop")
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}
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pub fn core_marker_Copy(&self) -> Option<Trait> {
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self.find_trait("core:marker:Copy")
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}
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pub fn core_macros_builtin_derive(&self) -> Option<Macro> {
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self.find_macro("core:macros:builtin:derive")
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}
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pub fn builtin_crates(&self) -> impl Iterator<Item = Crate> {
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IntoIterator::into_iter([
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self.std(),
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self.core(),
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self.alloc(),
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self.test(),
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self.proc_macro(),
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])
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.flatten()
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}
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fn find_trait(&self, path: &str) -> Option<Trait> {
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match self.find_def(path)? {
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hir::ScopeDef::ModuleDef(hir::ModuleDef::Trait(it)) => Some(it),
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_ => None,
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}
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}
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fn find_macro(&self, path: &str) -> Option<Macro> {
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match self.find_def(path)? {
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hir::ScopeDef::ModuleDef(hir::ModuleDef::Macro(it)) => Some(it),
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_ => None,
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}
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}
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fn find_enum(&self, path: &str) -> Option<Enum> {
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match self.find_def(path)? {
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hir::ScopeDef::ModuleDef(hir::ModuleDef::Adt(hir::Adt::Enum(it))) => Some(it),
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_ => None,
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}
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}
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fn find_module(&self, path: &str) -> Option<Module> {
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match self.find_def(path)? {
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hir::ScopeDef::ModuleDef(hir::ModuleDef::Module(it)) => Some(it),
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_ => None,
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}
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}
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fn find_lang_crate(&self, origin: LangCrateOrigin) -> Option<Crate> {
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let krate = self.1;
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let db = self.0.db;
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let crate_graph = self.0.db.crate_graph();
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let res = krate
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.dependencies(db)
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.into_iter()
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.find(|dep| crate_graph[dep.krate.into()].origin == CrateOrigin::Lang(origin))?
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.krate;
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Some(res)
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}
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fn find_def(&self, path: &str) -> Option<ScopeDef> {
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let db = self.0.db;
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let mut path = path.split(':');
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let trait_ = path.next_back()?;
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let lang_crate = path.next()?;
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let lang_crate = match LangCrateOrigin::from(lang_crate) {
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LangCrateOrigin::Other => return None,
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lang_crate => lang_crate,
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};
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let std_crate = self.find_lang_crate(lang_crate)?;
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let mut module = std_crate.root_module(db);
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for segment in path {
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module = module.children(db).find_map(|child| {
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let name = child.name(db)?;
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if name.to_smol_str() == segment {
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Some(child)
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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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let def =
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module.scope(db, None).into_iter().find(|(name, _def)| name.to_smol_str() == trait_)?.1;
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Some(def)
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}
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}
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