199 lines
4.0 KiB
Rust
199 lines
4.0 KiB
Rust
use itertools::Itertools;
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use rustc_hash::FxHashMap;
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use hir::{PathResolution, Semantics};
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use ide_db::RootDatabase;
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use syntax::{
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algo,
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ast::{self, NameOwner},
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AstNode,
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};
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use crate::{AssistContext, AssistId, AssistKind, Assists};
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// Assist: reorder_impl
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//
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// Reorder the methods of an `impl Trait`. The methods will be ordered
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// in the same order as in the trait definition.
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//
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// ```
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// trait Foo {
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// fn a() {}
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// fn b() {}
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// fn c() {}
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// }
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//
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// struct Bar;
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// $0impl Foo for Bar {
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// fn b() {}
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// fn c() {}
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// fn a() {}
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// }
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// ```
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// ->
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// ```
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// trait Foo {
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// fn a() {}
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// fn b() {}
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// fn c() {}
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// }
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//
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// struct Bar;
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// impl Foo for Bar {
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// fn a() {}
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// fn b() {}
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// fn c() {}
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// }
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// ```
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//
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pub(crate) fn reorder_impl(acc: &mut Assists, ctx: &AssistContext) -> Option<()> {
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let impl_ast = ctx.find_node_at_offset::<ast::Impl>()?;
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let items = impl_ast.assoc_item_list()?;
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let methods = get_methods(&items);
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let path = impl_ast
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.trait_()
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.and_then(|t| match t {
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ast::Type::PathType(path) => Some(path),
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_ => None,
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})?
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.path()?;
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let ranks = compute_method_ranks(&path, ctx)?;
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let sorted: Vec<_> = methods
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.iter()
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.cloned()
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.sorted_by_key(|f| {
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f.name().and_then(|n| ranks.get(&n.to_string()).copied()).unwrap_or(usize::max_value())
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})
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.collect();
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// Don't edit already sorted methods:
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if methods == sorted {
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cov_mark::hit!(not_applicable_if_sorted);
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return None;
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}
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let target = items.syntax().text_range();
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acc.add(AssistId("reorder_impl", AssistKind::RefactorRewrite), "Sort methods", target, |edit| {
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let mut rewriter = algo::SyntaxRewriter::default();
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for (old, new) in methods.iter().zip(&sorted) {
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rewriter.replace(old.syntax(), new.syntax());
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}
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edit.rewrite(rewriter);
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})
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}
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fn compute_method_ranks(path: &ast::Path, ctx: &AssistContext) -> Option<FxHashMap<String, usize>> {
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let td = trait_definition(path, &ctx.sema)?;
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Some(
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td.items(ctx.db())
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.iter()
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.flat_map(|i| match i {
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hir::AssocItem::Function(f) => Some(f),
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_ => None,
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})
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.enumerate()
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.map(|(idx, func)| ((func.name(ctx.db()).to_string(), idx)))
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.collect(),
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)
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}
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fn trait_definition(path: &ast::Path, sema: &Semantics<RootDatabase>) -> Option<hir::Trait> {
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match sema.resolve_path(path)? {
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PathResolution::Def(hir::ModuleDef::Trait(trait_)) => Some(trait_),
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_ => None,
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}
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}
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fn get_methods(items: &ast::AssocItemList) -> Vec<ast::Fn> {
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items
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.assoc_items()
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.flat_map(|i| match i {
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ast::AssocItem::Fn(f) => Some(f),
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_ => None,
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})
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.filter(|f| f.name().is_some())
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.collect()
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}
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#[cfg(test)]
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mod tests {
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use crate::tests::{check_assist, check_assist_not_applicable};
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use super::*;
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#[test]
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fn not_applicable_if_sorted() {
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cov_mark::check!(not_applicable_if_sorted);
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check_assist_not_applicable(
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reorder_impl,
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r#"
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trait Bar {
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fn a() {}
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fn z() {}
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fn b() {}
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}
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struct Foo;
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$0impl Bar for Foo {
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fn a() {}
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fn z() {}
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fn b() {}
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}
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"#,
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)
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}
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#[test]
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fn not_applicable_if_empty() {
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check_assist_not_applicable(
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reorder_impl,
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r#"
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trait Bar {};
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struct Foo;
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$0impl Bar for Foo {}
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"#,
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)
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}
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#[test]
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fn reorder_impl_trait_methods() {
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check_assist(
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reorder_impl,
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r#"
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trait Bar {
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fn a() {}
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fn c() {}
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fn b() {}
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fn d() {}
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}
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struct Foo;
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$0impl Bar for Foo {
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fn d() {}
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fn b() {}
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fn c() {}
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fn a() {}
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}
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"#,
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r#"
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trait Bar {
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fn a() {}
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fn c() {}
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fn b() {}
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fn d() {}
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}
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struct Foo;
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impl Bar for Foo {
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fn a() {}
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fn c() {}
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fn b() {}
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fn d() {}
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}
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"#,
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)
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}
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}
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