235 lines
7.1 KiB
Rust
235 lines
7.1 KiB
Rust
use ra_db::{FileId, SourceDatabase};
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use ra_syntax::{
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AstNode, ast,
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algo::find_node_at_offset,
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};
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use test_utils::tested_by;
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use hir::Resolution;
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use crate::{FilePosition, NavigationTarget, db::RootDatabase, RangeInfo};
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pub(crate) fn goto_definition(
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db: &RootDatabase,
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position: FilePosition,
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) -> Option<RangeInfo<Vec<NavigationTarget>>> {
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let file = db.parse(position.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, position.offset) {
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let navs = reference_definition(db, position.file_id, name_ref).to_vec();
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return Some(RangeInfo::new(name_ref.syntax().range(), navs.to_vec()));
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}
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if let Some(name) = find_node_at_offset::<ast::Name>(syntax, position.offset) {
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let navs = name_definition(db, position.file_id, name)?;
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return Some(RangeInfo::new(name.syntax().range(), navs));
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}
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None
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}
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pub(crate) enum ReferenceResult {
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Exact(NavigationTarget),
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Approximate(Vec<NavigationTarget>),
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}
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impl ReferenceResult {
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fn to_vec(self) -> Vec<NavigationTarget> {
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use self::ReferenceResult::*;
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match self {
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Exact(target) => vec![target],
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Approximate(vec) => vec,
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}
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}
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}
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pub(crate) fn reference_definition(
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db: &RootDatabase,
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file_id: FileId,
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name_ref: &ast::NameRef,
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) -> ReferenceResult {
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use self::ReferenceResult::*;
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if let Some(function) =
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hir::source_binder::function_from_child_node(db, file_id, name_ref.syntax())
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{
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// Check if it is a method
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if let Some(method_call) = name_ref.syntax().parent().and_then(ast::MethodCallExpr::cast) {
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tested_by!(goto_definition_works_for_methods);
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let infer_result = function.infer(db);
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let syntax_mapping = function.body_syntax_mapping(db);
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let expr = ast::Expr::cast(method_call.syntax()).unwrap();
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if let Some(func) =
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syntax_mapping.node_expr(expr).and_then(|it| infer_result.method_resolution(it))
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{
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return Exact(NavigationTarget::from_function(db, func));
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};
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}
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// It could also be a field access
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if let Some(field_expr) = name_ref.syntax().parent().and_then(ast::FieldExpr::cast) {
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tested_by!(goto_definition_works_for_fields);
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let infer_result = function.infer(db);
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let syntax_mapping = function.body_syntax_mapping(db);
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let expr = ast::Expr::cast(field_expr.syntax()).unwrap();
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if let Some(field) =
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syntax_mapping.node_expr(expr).and_then(|it| infer_result.field_resolution(it))
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{
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return Exact(NavigationTarget::from_field(db, field));
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};
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}
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}
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// Try name resolution
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let resolver = hir::source_binder::resolver_for_node(db, file_id, name_ref.syntax());
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if let Some(path) =
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name_ref.syntax().ancestors().find_map(ast::Path::cast).and_then(hir::Path::from_ast)
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{
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let resolved = resolver.resolve_path(db, &path);
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match resolved.clone().take_types().or_else(|| resolved.take_values()) {
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Some(Resolution::Def(def)) => return Exact(NavigationTarget::from_def(db, def)),
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Some(Resolution::LocalBinding(pat)) => {
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let body = resolver.body().expect("no body for local binding");
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let syntax_mapping = body.syntax_mapping(db);
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let ptr =
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syntax_mapping.pat_syntax(pat).expect("pattern not found in syntax mapping");
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let name =
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path.as_ident().cloned().expect("local binding from a multi-segment path");
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let nav = NavigationTarget::from_scope_entry(file_id, name, ptr);
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return Exact(nav);
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}
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Some(Resolution::GenericParam(..)) => {
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// TODO: go to the generic param def
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}
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Some(Resolution::SelfType(_impl_block)) => {
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// TODO: go to the implemented type
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}
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None => {}
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}
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}
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// If that fails try the index based approach.
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let navs = crate::symbol_index::index_resolve(db, name_ref)
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.into_iter()
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.map(NavigationTarget::from_symbol)
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.collect();
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Approximate(navs)
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}
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fn name_definition(
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db: &RootDatabase,
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file_id: FileId,
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name: &ast::Name,
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) -> Option<Vec<NavigationTarget>> {
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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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if let Some(child_module) =
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hir::source_binder::module_from_declaration(db, file_id, module)
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{
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let nav = NavigationTarget::from_module(db, child_module);
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return Some(vec![nav]);
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}
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}
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}
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None
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}
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#[cfg(test)]
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mod tests {
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use test_utils::covers;
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use crate::mock_analysis::analysis_and_position;
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fn check_goto(fixture: &str, expected: &str) {
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let (analysis, pos) = analysis_and_position(fixture);
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let mut navs = analysis.goto_definition(pos).unwrap().unwrap().info;
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assert_eq!(navs.len(), 1);
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let nav = navs.pop().unwrap();
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nav.assert_match(expected);
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}
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#[test]
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fn goto_definition_works_in_items() {
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check_goto(
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"
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//- /lib.rs
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struct Foo;
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enum E { X(Foo<|>) }
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",
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"Foo STRUCT_DEF FileId(1) [0; 11) [7; 10)",
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);
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}
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#[test]
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fn goto_definition_resolves_correct_name() {
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check_goto(
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"
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//- /lib.rs
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use a::Foo;
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mod a;
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mod b;
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enum E { X(Foo<|>) }
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//- /a.rs
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struct Foo;
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//- /b.rs
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struct Foo;
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",
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"Foo STRUCT_DEF FileId(2) [0; 11) [7; 10)",
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);
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}
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#[test]
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fn goto_definition_works_for_module_declaration() {
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check_goto(
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"
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//- /lib.rs
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mod <|>foo;
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//- /foo.rs
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// empty
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",
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"foo SOURCE_FILE FileId(2) [0; 10)",
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);
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check_goto(
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"
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//- /lib.rs
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mod <|>foo;
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//- /foo/mod.rs
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// empty
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",
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"foo SOURCE_FILE FileId(2) [0; 10)",
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);
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}
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#[test]
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fn goto_definition_works_for_methods() {
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covers!(goto_definition_works_for_methods);
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check_goto(
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"
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//- /lib.rs
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struct Foo;
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impl Foo {
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fn frobnicate(&self) { }
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}
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fn bar(foo: &Foo) {
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foo.frobnicate<|>();
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}
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",
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"frobnicate FN_DEF FileId(1) [27; 52) [30; 40)",
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);
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}
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#[test]
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fn goto_definition_works_for_fields() {
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covers!(goto_definition_works_for_fields);
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check_goto(
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"
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//- /lib.rs
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struct Foo {
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spam: u32,
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}
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fn bar(foo: &Foo) {
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foo.spam<|>;
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}
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",
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"spam NAMED_FIELD_DEF FileId(1) [17; 26) [17; 21)",
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);
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}
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}
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