rust/crates/ra_ide/src/impls.rs

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//! FIXME: write short doc here
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use hir::{Crate, ImplDef, Semantics};
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use ra_ide_db::RootDatabase;
use ra_syntax::{algo::find_node_at_offset, ast, AstNode};
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use crate::{display::ToNav, FilePosition, NavigationTarget, RangeInfo};
pub(crate) fn goto_implementation(
db: &RootDatabase,
position: FilePosition,
) -> Option<RangeInfo<Vec<NavigationTarget>>> {
let sema = Semantics::new(db);
let source_file = sema.parse(position.file_id);
let syntax = source_file.syntax().clone();
let krate = sema.to_module_def(position.file_id)?.krate();
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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().text_range(),
impls_for_def(&sema, &nominal_def, krate)?,
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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().text_range(),
impls_for_trait(&sema, &trait_def, krate)?,
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));
}
None
}
fn impls_for_def(
sema: &Semantics<RootDatabase>,
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node: &ast::NominalDef,
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krate: Crate,
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) -> Option<Vec<NavigationTarget>> {
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let ty = match node {
ast::NominalDef::StructDef(def) => sema.to_def(def)?.ty(sema.db),
ast::NominalDef::EnumDef(def) => sema.to_def(def)?.ty(sema.db),
ast::NominalDef::UnionDef(def) => sema.to_def(def)?.ty(sema.db),
};
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let impls = ImplDef::all_in_crate(sema.db, krate);
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Some(
impls
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.into_iter()
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.filter(|impl_def| ty.is_equal_for_find_impls(&impl_def.target_ty(sema.db)))
.map(|imp| imp.to_nav(sema.db))
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.collect(),
)
}
fn impls_for_trait(
sema: &Semantics<RootDatabase>,
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node: &ast::TraitDef,
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krate: Crate,
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) -> Option<Vec<NavigationTarget>> {
let tr = sema.to_def(node)?;
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let impls = ImplDef::for_trait(sema.db, krate, tr);
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Some(impls.into_iter().map(|imp| imp.to_nav(sema.db)).collect())
}
#[cfg(test)]
mod tests {
use crate::mock_analysis::analysis_and_position;
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fn check_goto(fixture: &str, expected: &[&str]) {
let (analysis, pos) = analysis_and_position(fixture);
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let mut navs = analysis.goto_implementation(pos).unwrap().unwrap().info;
assert_eq!(navs.len(), expected.len());
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navs.sort_by_key(|nav| (nav.file_id(), nav.full_range().start()));
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navs.into_iter().enumerate().for_each(|(i, nav)| nav.assert_match(expected[i]));
}
#[test]
fn goto_implementation_works() {
check_goto(
"
//- /lib.rs
struct Foo<|>;
impl Foo {}
",
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&["impl IMPL_DEF FileId(1) [12; 23)"],
);
}
#[test]
fn goto_implementation_works_multiple_blocks() {
check_goto(
"
//- /lib.rs
struct Foo<|>;
impl Foo {}
impl Foo {}
",
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&["impl IMPL_DEF FileId(1) [12; 23)", "impl IMPL_DEF FileId(1) [24; 35)"],
);
}
#[test]
fn goto_implementation_works_multiple_mods() {
check_goto(
"
//- /lib.rs
struct Foo<|>;
mod a {
impl super::Foo {}
}
mod b {
impl super::Foo {}
}
",
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&["impl IMPL_DEF FileId(1) [24; 42)", "impl IMPL_DEF FileId(1) [57; 75)"],
);
}
#[test]
fn goto_implementation_works_multiple_files() {
check_goto(
"
//- /lib.rs
struct Foo<|>;
mod a;
mod b;
//- /a.rs
impl crate::Foo {}
//- /b.rs
impl crate::Foo {}
",
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&["impl IMPL_DEF FileId(2) [0; 18)", "impl IMPL_DEF FileId(3) [0; 18)"],
);
}
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#[test]
fn goto_implementation_for_trait() {
check_goto(
"
//- /lib.rs
trait T<|> {}
struct Foo;
impl T for Foo {}
",
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&["impl IMPL_DEF FileId(1) [23; 40)"],
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);
}
#[test]
fn goto_implementation_for_trait_multiple_files() {
check_goto(
"
//- /lib.rs
trait T<|> {};
struct Foo;
mod a;
mod b;
//- /a.rs
impl crate::T for crate::Foo {}
//- /b.rs
impl crate::T for crate::Foo {}
",
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&["impl IMPL_DEF FileId(2) [0; 31)", "impl IMPL_DEF FileId(3) [0; 31)"],
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);
}
#[test]
fn goto_implementation_all_impls() {
check_goto(
"
//- /lib.rs
trait T {}
struct Foo<|>;
impl Foo {}
impl T for Foo {}
impl T for &Foo {}
",
&[
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"impl IMPL_DEF FileId(1) [23; 34)",
"impl IMPL_DEF FileId(1) [35; 52)",
"impl IMPL_DEF FileId(1) [53; 71)",
],
);
}
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#[test]
fn goto_implementation_to_builtin_derive() {
check_goto(
"
//- /lib.rs
#[derive(Copy)]
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struct Foo<|>;
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",
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&["impl IMPL_DEF FileId(1) [0; 15)"],
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);
}
}