0242acae53
This makes it more like the other code model types. Also make Module::definition_source/declaration_source return HirFileIds, to make them more like the other source functions.
179 lines
4.6 KiB
Rust
179 lines
4.6 KiB
Rust
use ra_db::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 hir::{db::HirDatabase, source_binder};
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use crate::{FilePosition, NavigationTarget, db::RootDatabase, RangeInfo};
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pub(crate) fn goto_implementation(
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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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let module = source_binder::module_from_position(db, position)?;
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if let Some(nominal_def) = find_node_at_offset::<ast::NominalDef>(syntax, position.offset) {
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return Some(RangeInfo::new(
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nominal_def.syntax().range(),
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impls_for_def(db, nominal_def, module)?,
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));
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} else if let Some(trait_def) = find_node_at_offset::<ast::TraitDef>(syntax, position.offset) {
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return Some(RangeInfo::new(
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trait_def.syntax().range(),
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impls_for_trait(db, trait_def, module)?,
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));
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}
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None
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}
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fn impls_for_def(
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db: &RootDatabase,
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node: &ast::NominalDef,
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module: hir::Module,
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) -> Option<Vec<NavigationTarget>> {
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let ty = match node.kind() {
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ast::NominalDefKind::StructDef(def) => {
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source_binder::struct_from_module(db, module, &def).ty(db)
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}
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ast::NominalDefKind::EnumDef(def) => {
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source_binder::enum_from_module(db, module, &def).ty(db)
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}
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};
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let krate = module.krate(db)?;
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let impls = db.impls_in_crate(krate);
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Some(
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impls
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.lookup_impl_blocks(&ty)
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.map(|imp| NavigationTarget::from_impl_block(db, imp))
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.collect(),
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)
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}
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fn impls_for_trait(
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db: &RootDatabase,
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node: &ast::TraitDef,
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module: hir::Module,
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) -> Option<Vec<NavigationTarget>> {
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let tr = source_binder::trait_from_module(db, module, node);
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let krate = module.krate(db)?;
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let impls = db.impls_in_crate(krate);
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Some(
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impls
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.lookup_impl_blocks_for_trait(&tr)
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.map(|imp| NavigationTarget::from_impl_block(db, imp))
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.collect(),
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)
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}
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#[cfg(test)]
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mod tests {
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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 navs = analysis.goto_implementation(pos).unwrap().unwrap().info;
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assert_eq!(navs.len(), expected.len());
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navs.into_iter().enumerate().for_each(|(i, nav)| nav.assert_match(expected[i]));
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}
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#[test]
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fn goto_implementation_works() {
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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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",
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&["impl IMPL_BLOCK FileId(1) [12; 23)"],
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);
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}
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#[test]
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fn goto_implementation_works_multiple_blocks() {
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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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impl Foo {}
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",
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&["impl IMPL_BLOCK FileId(1) [12; 23)", "impl IMPL_BLOCK FileId(1) [24; 35)"],
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);
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}
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#[test]
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fn goto_implementation_works_multiple_mods() {
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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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mod a {
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impl super::Foo {}
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}
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mod b {
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impl super::Foo {}
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}
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",
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&["impl IMPL_BLOCK FileId(1) [24; 42)", "impl IMPL_BLOCK FileId(1) [57; 75)"],
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);
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}
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#[test]
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fn goto_implementation_works_multiple_files() {
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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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mod a;
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mod b;
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//- /a.rs
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impl crate::Foo {}
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//- /b.rs
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impl crate::Foo {}
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",
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&["impl IMPL_BLOCK FileId(2) [0; 18)", "impl IMPL_BLOCK FileId(3) [0; 18)"],
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);
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}
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#[test]
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fn goto_implementation_for_trait() {
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check_goto(
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"
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//- /lib.rs
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trait T<|> {}
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struct Foo;
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impl T for Foo {}
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",
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&["impl IMPL_BLOCK FileId(1) [23; 40)"],
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);
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}
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#[test]
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fn goto_implementation_for_trait_multiple_files() {
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check_goto(
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"
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//- /lib.rs
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trait T<|> {};
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struct Foo;
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mod a;
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mod b;
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//- /a.rs
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impl crate::T for crate::Foo {}
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//- /b.rs
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impl crate::T for crate::Foo {}
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",
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&["impl IMPL_BLOCK FileId(2) [0; 31)", "impl IMPL_BLOCK FileId(3) [0; 31)"],
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);
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}
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}
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