mirror of
https://github.com/rust-lang/rust-analyzer
synced 2024-12-27 21:43:37 +00:00
450 lines
16 KiB
Rust
450 lines
16 KiB
Rust
//! Lookup hir elements using positions in the source code. This is a lossy
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//! transformation: in general, a single source might correspond to several
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//! modules, functions, etc, due to macros, cfgs and `#[path=]` attributes on
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//! modules.
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//!
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//! So, this modules should not be used during hir construction, it exists
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//! purely for "IDE needs".
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use std::sync::Arc;
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use either::Either;
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use hir_def::{
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body::{
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scope::{ExprScopes, ScopeId},
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BodySourceMap,
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},
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expr::{ExprId, PatId},
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resolver::{self, resolver_for_scope, Resolver, TypeNs, ValueNs},
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DefWithBodyId, TraitId,
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};
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use hir_expand::{
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hygiene::Hygiene, name::AsName, AstId, HirFileId, InFile, MacroCallId, MacroCallKind,
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};
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use hir_ty::{InEnvironment, InferenceResult, TraitEnvironment};
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use ra_syntax::{
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ast::{self, AstNode},
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AstPtr, SyntaxNode, SyntaxNodePtr, SyntaxToken, TextRange, TextUnit,
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};
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use rustc_hash::FxHashSet;
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use crate::{
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db::HirDatabase, Adt, Const, DefWithBody, EnumVariant, Function, Local, MacroDef, Name, Path,
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ScopeDef, Static, Struct, Trait, Type, TypeAlias, TypeParam,
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};
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/// `SourceAnalyzer` is a convenience wrapper which exposes HIR API in terms of
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/// original source files. It should not be used inside the HIR itself.
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#[derive(Debug)]
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pub struct SourceAnalyzer {
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file_id: HirFileId,
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resolver: Resolver,
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body_owner: Option<DefWithBody>,
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body_source_map: Option<Arc<BodySourceMap>>,
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infer: Option<Arc<InferenceResult>>,
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scopes: Option<Arc<ExprScopes>>,
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}
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub enum PathResolution {
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/// An item
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Def(crate::ModuleDef),
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/// A local binding (only value namespace)
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Local(Local),
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/// A generic parameter
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TypeParam(TypeParam),
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SelfType(crate::ImplBlock),
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Macro(MacroDef),
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AssocItem(crate::AssocItem),
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}
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub struct ScopeEntryWithSyntax {
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pub(crate) name: Name,
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pub(crate) ptr: Either<AstPtr<ast::Pat>, AstPtr<ast::SelfParam>>,
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}
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impl ScopeEntryWithSyntax {
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pub fn name(&self) -> &Name {
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&self.name
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}
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pub fn ptr(&self) -> Either<AstPtr<ast::Pat>, AstPtr<ast::SelfParam>> {
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self.ptr
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}
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}
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#[derive(Debug)]
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pub struct ReferenceDescriptor {
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pub range: TextRange,
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pub name: String,
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}
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#[derive(Debug)]
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pub struct Expansion {
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macro_call_id: MacroCallId,
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}
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impl Expansion {
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pub fn map_token_down(
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&self,
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db: &impl HirDatabase,
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token: InFile<&SyntaxToken>,
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) -> Option<InFile<SyntaxToken>> {
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let exp_info = self.file_id().expansion_info(db)?;
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exp_info.map_token_down(token)
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}
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pub fn file_id(&self) -> HirFileId {
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self.macro_call_id.as_file()
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}
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}
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impl SourceAnalyzer {
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pub fn new(
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db: &impl HirDatabase,
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node: InFile<&SyntaxNode>,
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offset: Option<TextUnit>,
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) -> SourceAnalyzer {
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crate::source_binder::SourceBinder::new(db).analyze(node, offset)
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}
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pub(crate) fn new_for_body(
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db: &impl HirDatabase,
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def: DefWithBodyId,
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node: InFile<&SyntaxNode>,
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offset: Option<TextUnit>,
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) -> SourceAnalyzer {
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let (_body, source_map) = db.body_with_source_map(def);
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let scopes = db.expr_scopes(def);
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let scope = match offset {
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None => scope_for(&scopes, &source_map, node),
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Some(offset) => scope_for_offset(&scopes, &source_map, node.with_value(offset)),
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};
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let resolver = resolver_for_scope(db, def, scope);
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SourceAnalyzer {
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resolver,
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body_owner: Some(def.into()),
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body_source_map: Some(source_map),
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infer: Some(db.infer(def)),
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scopes: Some(scopes),
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file_id: node.file_id,
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}
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}
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pub(crate) fn new_for_resolver(
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resolver: Resolver,
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node: InFile<&SyntaxNode>,
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) -> SourceAnalyzer {
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SourceAnalyzer {
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resolver,
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body_owner: None,
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body_source_map: None,
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infer: None,
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scopes: None,
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file_id: node.file_id,
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}
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}
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pub fn module(&self) -> Option<crate::code_model::Module> {
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Some(crate::code_model::Module { id: self.resolver.module()? })
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}
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fn expr_id(&self, expr: &ast::Expr) -> Option<ExprId> {
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let src = InFile { file_id: self.file_id, value: expr };
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self.body_source_map.as_ref()?.node_expr(src)
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}
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fn pat_id(&self, pat: &ast::Pat) -> Option<PatId> {
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let src = InFile { file_id: self.file_id, value: pat };
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self.body_source_map.as_ref()?.node_pat(src)
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}
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fn expand_expr(
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&self,
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db: &impl HirDatabase,
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expr: InFile<&ast::Expr>,
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) -> Option<InFile<ast::Expr>> {
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let macro_call = ast::MacroCall::cast(expr.value.syntax().clone())?;
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let macro_file =
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self.body_source_map.as_ref()?.node_macro_file(expr.with_value(¯o_call))?;
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let expanded = db.parse_or_expand(macro_file)?;
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let kind = expanded.kind();
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let expr = InFile::new(macro_file, ast::Expr::cast(expanded)?);
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if ast::MacroCall::can_cast(kind) {
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self.expand_expr(db, expr.as_ref())
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} else {
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Some(expr)
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}
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}
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pub fn type_of(&self, db: &impl HirDatabase, expr: &ast::Expr) -> Option<Type> {
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let expr_id = if let Some(expr) = self.expand_expr(db, InFile::new(self.file_id, expr)) {
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self.body_source_map.as_ref()?.node_expr(expr.as_ref())?
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} else {
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self.expr_id(expr)?
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};
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let ty = self.infer.as_ref()?[expr_id].clone();
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let environment = TraitEnvironment::lower(db, &self.resolver);
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Some(Type { krate: self.resolver.krate()?, ty: InEnvironment { value: ty, environment } })
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}
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pub fn type_of_pat(&self, db: &impl HirDatabase, pat: &ast::Pat) -> Option<Type> {
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let pat_id = self.pat_id(pat)?;
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let ty = self.infer.as_ref()?[pat_id].clone();
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let environment = TraitEnvironment::lower(db, &self.resolver);
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Some(Type { krate: self.resolver.krate()?, ty: InEnvironment { value: ty, environment } })
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}
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pub fn resolve_method_call(&self, call: &ast::MethodCallExpr) -> Option<Function> {
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let expr_id = self.expr_id(&call.clone().into())?;
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self.infer.as_ref()?.method_resolution(expr_id).map(Function::from)
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}
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pub fn resolve_field(&self, field: &ast::FieldExpr) -> Option<crate::StructField> {
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let expr_id = self.expr_id(&field.clone().into())?;
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self.infer.as_ref()?.field_resolution(expr_id).map(|it| it.into())
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}
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pub fn resolve_record_field(&self, field: &ast::RecordField) -> Option<crate::StructField> {
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let expr_id = match field.expr() {
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Some(it) => self.expr_id(&it)?,
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None => {
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let src = InFile { file_id: self.file_id, value: field };
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self.body_source_map.as_ref()?.field_init_shorthand_expr(src)?
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}
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};
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self.infer.as_ref()?.record_field_resolution(expr_id).map(|it| it.into())
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}
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pub fn resolve_record_literal(&self, record_lit: &ast::RecordLit) -> Option<crate::VariantDef> {
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let expr_id = self.expr_id(&record_lit.clone().into())?;
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self.infer.as_ref()?.variant_resolution_for_expr(expr_id).map(|it| it.into())
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}
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pub fn resolve_record_pattern(&self, record_pat: &ast::RecordPat) -> Option<crate::VariantDef> {
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let pat_id = self.pat_id(&record_pat.clone().into())?;
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self.infer.as_ref()?.variant_resolution_for_pat(pat_id).map(|it| it.into())
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}
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pub fn resolve_macro_call(
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&self,
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db: &impl HirDatabase,
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macro_call: InFile<&ast::MacroCall>,
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) -> Option<MacroDef> {
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let hygiene = Hygiene::new(db, macro_call.file_id);
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let path = macro_call.value.path().and_then(|ast| Path::from_src(ast, &hygiene))?;
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self.resolver.resolve_path_as_macro(db, path.mod_path()).map(|it| it.into())
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}
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pub fn resolve_hir_path(
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&self,
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db: &impl HirDatabase,
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path: &crate::Path,
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) -> Option<PathResolution> {
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let types =
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self.resolver.resolve_path_in_type_ns_fully(db, path.mod_path()).map(|ty| match ty {
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TypeNs::SelfType(it) => PathResolution::SelfType(it.into()),
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TypeNs::GenericParam(id) => PathResolution::TypeParam(TypeParam { id }),
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TypeNs::AdtSelfType(it) | TypeNs::AdtId(it) => {
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PathResolution::Def(Adt::from(it).into())
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}
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TypeNs::EnumVariantId(it) => PathResolution::Def(EnumVariant::from(it).into()),
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TypeNs::TypeAliasId(it) => PathResolution::Def(TypeAlias::from(it).into()),
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TypeNs::BuiltinType(it) => PathResolution::Def(it.into()),
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TypeNs::TraitId(it) => PathResolution::Def(Trait::from(it).into()),
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});
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let values =
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self.resolver.resolve_path_in_value_ns_fully(db, path.mod_path()).and_then(|val| {
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let res = match val {
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ValueNs::LocalBinding(pat_id) => {
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let var = Local { parent: self.body_owner?, pat_id };
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PathResolution::Local(var)
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}
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ValueNs::FunctionId(it) => PathResolution::Def(Function::from(it).into()),
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ValueNs::ConstId(it) => PathResolution::Def(Const::from(it).into()),
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ValueNs::StaticId(it) => PathResolution::Def(Static::from(it).into()),
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ValueNs::StructId(it) => PathResolution::Def(Struct::from(it).into()),
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ValueNs::EnumVariantId(it) => PathResolution::Def(EnumVariant::from(it).into()),
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};
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Some(res)
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});
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let items = self
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.resolver
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.resolve_module_path_in_items(db, path.mod_path())
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.take_types()
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.map(|it| PathResolution::Def(it.into()));
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types.or(values).or(items).or_else(|| {
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self.resolver
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.resolve_path_as_macro(db, path.mod_path())
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.map(|def| PathResolution::Macro(def.into()))
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})
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}
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pub fn resolve_path(&self, db: &impl HirDatabase, path: &ast::Path) -> Option<PathResolution> {
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if let Some(path_expr) = path.syntax().parent().and_then(ast::PathExpr::cast) {
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let expr_id = self.expr_id(&path_expr.into())?;
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if let Some(assoc) = self.infer.as_ref()?.assoc_resolutions_for_expr(expr_id) {
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return Some(PathResolution::AssocItem(assoc.into()));
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}
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}
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if let Some(path_pat) = path.syntax().parent().and_then(ast::PathPat::cast) {
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let pat_id = self.pat_id(&path_pat.into())?;
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if let Some(assoc) = self.infer.as_ref()?.assoc_resolutions_for_pat(pat_id) {
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return Some(PathResolution::AssocItem(assoc.into()));
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}
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}
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// This must be a normal source file rather than macro file.
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let hir_path = crate::Path::from_ast(path.clone())?;
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self.resolve_hir_path(db, &hir_path)
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}
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fn resolve_local_name(&self, name_ref: &ast::NameRef) -> Option<ScopeEntryWithSyntax> {
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let name = name_ref.as_name();
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let source_map = self.body_source_map.as_ref()?;
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let scopes = self.scopes.as_ref()?;
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let scope = scope_for(scopes, source_map, InFile::new(self.file_id, name_ref.syntax()))?;
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let entry = scopes.resolve_name_in_scope(scope, &name)?;
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Some(ScopeEntryWithSyntax {
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name: entry.name().clone(),
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ptr: source_map.pat_syntax(entry.pat())?.value,
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})
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}
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pub fn process_all_names(&self, db: &impl HirDatabase, f: &mut dyn FnMut(Name, ScopeDef)) {
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self.resolver.process_all_names(db, &mut |name, def| {
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let def = match def {
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resolver::ScopeDef::PerNs(it) => it.into(),
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resolver::ScopeDef::ImplSelfType(it) => ScopeDef::ImplSelfType(it.into()),
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resolver::ScopeDef::AdtSelfType(it) => ScopeDef::AdtSelfType(it.into()),
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resolver::ScopeDef::GenericParam(id) => ScopeDef::GenericParam(TypeParam { id }),
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resolver::ScopeDef::Local(pat_id) => {
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let parent = self.resolver.body_owner().unwrap().into();
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ScopeDef::Local(Local { parent, pat_id })
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}
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};
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f(name, def)
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})
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}
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// FIXME: we only use this in `inline_local_variable` assist, ideally, we
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// should switch to general reference search infra there.
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pub fn find_all_refs(&self, pat: &ast::BindPat) -> Vec<ReferenceDescriptor> {
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let fn_def = pat.syntax().ancestors().find_map(ast::FnDef::cast).unwrap();
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let ptr = Either::Left(AstPtr::new(&ast::Pat::from(pat.clone())));
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fn_def
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.syntax()
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.descendants()
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.filter_map(ast::NameRef::cast)
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.filter(|name_ref| match self.resolve_local_name(&name_ref) {
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None => false,
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Some(entry) => entry.ptr() == ptr,
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})
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.map(|name_ref| ReferenceDescriptor {
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name: name_ref.text().to_string(),
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range: name_ref.syntax().text_range(),
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})
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.collect()
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}
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/// Note: `FxHashSet<TraitId>` should be treated as an opaque type, passed into `Type
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pub fn traits_in_scope(&self, db: &impl HirDatabase) -> FxHashSet<TraitId> {
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self.resolver.traits_in_scope(db)
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}
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pub fn expand(
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&self,
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db: &impl HirDatabase,
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macro_call: InFile<&ast::MacroCall>,
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) -> Option<Expansion> {
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let def = self.resolve_macro_call(db, macro_call)?.id;
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let ast_id = AstId::new(
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macro_call.file_id,
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db.ast_id_map(macro_call.file_id).ast_id(macro_call.value),
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);
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Some(Expansion { macro_call_id: def.as_call_id(db, MacroCallKind::FnLike(ast_id)) })
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}
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}
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fn scope_for(
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scopes: &ExprScopes,
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source_map: &BodySourceMap,
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node: InFile<&SyntaxNode>,
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) -> Option<ScopeId> {
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node.value
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.ancestors()
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.filter_map(ast::Expr::cast)
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.filter_map(|it| source_map.node_expr(InFile::new(node.file_id, &it)))
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.find_map(|it| scopes.scope_for(it))
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}
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fn scope_for_offset(
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scopes: &ExprScopes,
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source_map: &BodySourceMap,
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offset: InFile<TextUnit>,
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) -> Option<ScopeId> {
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scopes
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.scope_by_expr()
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.iter()
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.filter_map(|(id, scope)| {
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let source = source_map.expr_syntax(*id)?;
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// FIXME: correctly handle macro expansion
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if source.file_id != offset.file_id {
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return None;
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}
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let syntax_node_ptr =
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source.value.either(|it| it.syntax_node_ptr(), |it| it.syntax_node_ptr());
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Some((syntax_node_ptr, scope))
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})
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// find containing scope
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.min_by_key(|(ptr, _scope)| {
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(
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!(ptr.range().start() <= offset.value && offset.value <= ptr.range().end()),
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ptr.range().len(),
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)
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})
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.map(|(ptr, scope)| {
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adjust(scopes, source_map, ptr, offset.file_id, offset.value).unwrap_or(*scope)
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})
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}
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// XXX: during completion, cursor might be outside of any particular
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// expression. Try to figure out the correct scope...
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fn adjust(
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scopes: &ExprScopes,
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source_map: &BodySourceMap,
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ptr: SyntaxNodePtr,
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file_id: HirFileId,
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offset: TextUnit,
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) -> Option<ScopeId> {
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let r = ptr.range();
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let child_scopes = scopes
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.scope_by_expr()
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.iter()
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.filter_map(|(id, scope)| {
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let source = source_map.expr_syntax(*id)?;
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// FIXME: correctly handle macro expansion
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if source.file_id != file_id {
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return None;
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}
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let syntax_node_ptr =
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source.value.either(|it| it.syntax_node_ptr(), |it| it.syntax_node_ptr());
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Some((syntax_node_ptr, scope))
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})
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.map(|(ptr, scope)| (ptr.range(), scope))
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.filter(|(range, _)| range.start() <= offset && range.is_subrange(&r) && *range != r);
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child_scopes
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.max_by(|(r1, _), (r2, _)| {
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if r2.is_subrange(&r1) {
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std::cmp::Ordering::Greater
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} else if r1.is_subrange(&r2) {
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std::cmp::Ordering::Less
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} else {
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r1.start().cmp(&r2.start())
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}
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})
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.map(|(_ptr, scope)| *scope)
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}
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