2023-04-26 09:13:58 -05:00
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use syntax::{
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2023-05-15 10:38:25 -05:00
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ast::{self, make::impl_trait_type, HasGenericParams, HasName, HasTypeBounds},
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2023-04-26 09:13:58 -05:00
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ted, AstNode,
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};
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use crate::{AssistContext, AssistId, AssistKind, Assists};
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// Assist: replace_named_generic_with_impl
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//
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// Replaces named generic with an `impl Trait` in function argument.
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//
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// ```
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// fn new<P$0: AsRef<Path>>(location: P) -> Self {}
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// ```
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// ->
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// ```
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// fn new(location: impl AsRef<Path>) -> Self {}
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// ```
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pub(crate) fn replace_named_generic_with_impl(
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acc: &mut Assists,
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ctx: &AssistContext<'_>,
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) -> Option<()> {
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// finds `<P: AsRef<Path>>`
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let type_param = ctx.find_node_at_offset::<ast::TypeParam>()?;
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// The list of type bounds / traits: `AsRef<Path>`
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let type_bound_list = type_param.type_bound_list()?;
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// returns `P`
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let type_param_name = type_param.name()?;
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let fn_ = type_param.syntax().ancestors().find_map(ast::Fn::cast)?;
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let params = fn_
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.param_list()?
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.params()
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.filter_map(|param| {
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// function parameter type needs to match generic type name
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if let ast::Type::PathType(path_type) = param.ty()? {
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let left = path_type.path()?.segment()?.name_ref()?.ident_token()?.to_string();
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let right = type_param_name.to_string();
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if left == right {
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Some(param)
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} else {
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None
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}
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} else {
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None
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}
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})
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.collect::<Vec<_>>();
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if params.is_empty() {
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return None;
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}
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let target = type_param.syntax().text_range();
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acc.add(
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AssistId("replace_named_generic_with_impl", AssistKind::RefactorRewrite),
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"Replace named generic with impl",
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target,
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|edit| {
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let type_param = edit.make_mut(type_param);
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let fn_ = edit.make_mut(fn_);
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2023-05-15 10:38:25 -05:00
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// get all params
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let param_types = params
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.iter()
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.filter_map(|param| match param.ty() {
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Some(ast::Type::PathType(param_type)) => Some(edit.make_mut(param_type)),
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_ => None,
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})
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.collect::<Vec<_>>();
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if let Some(generic_params) = fn_.generic_param_list() {
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generic_params.remove_generic_param(ast::GenericParam::TypeParam(type_param));
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if generic_params.generic_params().count() == 0 {
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ted::remove(generic_params.syntax());
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}
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}
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2023-05-15 10:38:25 -05:00
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// get type bounds in signature type: `P` -> `impl AsRef<Path>`
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let new_bounds = impl_trait_type(type_bound_list);
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for param_type in param_types.iter().rev() {
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ted::replace(param_type.syntax(), new_bounds.clone_for_update().syntax());
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2023-04-26 09:13:58 -05:00
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}
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},
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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 super::*;
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use crate::tests::check_assist;
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#[test]
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fn replace_generic_moves_into_function() {
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check_assist(
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replace_named_generic_with_impl,
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r#"fn new<T$0: ToString>(input: T) -> Self {}"#,
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r#"fn new(input: impl ToString) -> Self {}"#,
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);
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}
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#[test]
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fn replace_generic_with_inner_associated_type() {
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check_assist(
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replace_named_generic_with_impl,
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r#"fn new<P$0: AsRef<Path>>(input: P) -> Self {}"#,
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r#"fn new(input: impl AsRef<Path>) -> Self {}"#,
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);
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}
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#[test]
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fn replace_generic_trait_applies_to_all_matching_params() {
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check_assist(
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replace_named_generic_with_impl,
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r#"fn new<T$0: ToString>(a: T, b: T) -> Self {}"#,
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r#"fn new(a: impl ToString, b: impl ToString) -> Self {}"#,
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);
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}
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#[test]
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fn replace_generic_with_multiple_generic_names() {
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check_assist(
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replace_named_generic_with_impl,
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r#"fn new<P: AsRef<Path>, T$0: ToString>(t: T, p: P) -> Self {}"#,
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r#"fn new<P: AsRef<Path>>(t: impl ToString, p: P) -> Self {}"#,
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);
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}
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#[test]
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fn replace_generic_with_multiple_trait_bounds() {
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check_assist(
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replace_named_generic_with_impl,
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r#"fn new<P$0: Send + Sync>(p: P) -> Self {}"#,
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r#"fn new(p: impl Send + Sync) -> Self {}"#,
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);
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}
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}
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