2020-01-10 11:26:18 -06:00
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//! `AstTransformer`s are functions that replace nodes in an AST and can be easily combined.
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use std::collections::HashMap;
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use hir::{db::HirDatabase, InFile, PathResolution};
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use ra_syntax::ast::{self, make, AstNode};
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pub trait AstTransform<'a> {
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fn get_substitution(
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&self,
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node: InFile<&ra_syntax::SyntaxNode>,
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) -> Option<ra_syntax::SyntaxNode>;
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fn chain_before(self, other: Box<dyn AstTransform<'a> + 'a>) -> Box<dyn AstTransform<'a> + 'a>;
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fn or<T: AstTransform<'a> + 'a>(self, other: T) -> Box<dyn AstTransform<'a> + 'a>
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where
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Self: Sized + 'a,
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{
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self.chain_before(Box::new(other))
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}
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}
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struct NullTransformer;
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impl<'a> AstTransform<'a> for NullTransformer {
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fn get_substitution(
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&self,
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_node: InFile<&ra_syntax::SyntaxNode>,
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) -> Option<ra_syntax::SyntaxNode> {
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None
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}
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fn chain_before(self, other: Box<dyn AstTransform<'a> + 'a>) -> Box<dyn AstTransform<'a> + 'a> {
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other
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}
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}
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pub struct SubstituteTypeParams<'a, DB: HirDatabase> {
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db: &'a DB,
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substs: HashMap<hir::TypeParam, ast::TypeRef>,
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previous: Box<dyn AstTransform<'a> + 'a>,
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}
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impl<'a, DB: HirDatabase> SubstituteTypeParams<'a, DB> {
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pub fn for_trait_impl(
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db: &'a DB,
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trait_: hir::Trait,
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impl_block: ast::ImplBlock,
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) -> SubstituteTypeParams<'a, DB> {
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let substs = get_syntactic_substs(impl_block).unwrap_or_default();
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let generic_def: hir::GenericDef = trait_.into();
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let substs_by_param: HashMap<_, _> = generic_def
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.params(db)
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.into_iter()
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// this is a trait impl, so we need to skip the first type parameter -- this is a bit hacky
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.skip(1)
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.zip(substs.into_iter())
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.collect();
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return SubstituteTypeParams {
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db,
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substs: substs_by_param,
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previous: Box::new(NullTransformer),
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};
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2020-01-10 11:40:45 -06:00
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// FIXME: It would probably be nicer if we could get this via HIR (i.e. get the
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// trait ref, and then go from the types in the substs back to the syntax)
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2020-01-10 11:26:18 -06:00
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fn get_syntactic_substs(impl_block: ast::ImplBlock) -> Option<Vec<ast::TypeRef>> {
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let target_trait = impl_block.target_trait()?;
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let path_type = match target_trait {
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ast::TypeRef::PathType(path) => path,
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_ => return None,
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};
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let type_arg_list = path_type.path()?.segment()?.type_arg_list()?;
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let mut result = Vec::new();
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for type_arg in type_arg_list.type_args() {
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let type_arg: ast::TypeArg = type_arg;
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result.push(type_arg.type_ref()?);
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}
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Some(result)
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}
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}
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fn get_substitution_inner(
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&self,
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node: InFile<&ra_syntax::SyntaxNode>,
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) -> Option<ra_syntax::SyntaxNode> {
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let type_ref = ast::TypeRef::cast(node.value.clone())?;
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let path = match &type_ref {
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ast::TypeRef::PathType(path_type) => path_type.path()?,
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_ => return None,
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};
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let analyzer = hir::SourceAnalyzer::new(self.db, node, None);
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let resolution = analyzer.resolve_path(self.db, &path)?;
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match resolution {
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hir::PathResolution::TypeParam(tp) => Some(self.substs.get(&tp)?.syntax().clone()),
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_ => None,
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}
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}
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}
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impl<'a, DB: HirDatabase> AstTransform<'a> for SubstituteTypeParams<'a, DB> {
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fn get_substitution(
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&self,
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node: InFile<&ra_syntax::SyntaxNode>,
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) -> Option<ra_syntax::SyntaxNode> {
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self.get_substitution_inner(node).or_else(|| self.previous.get_substitution(node))
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}
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fn chain_before(self, other: Box<dyn AstTransform<'a> + 'a>) -> Box<dyn AstTransform<'a> + 'a> {
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Box::new(SubstituteTypeParams { previous: other, ..self })
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}
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}
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pub struct QualifyPaths<'a, DB: HirDatabase> {
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db: &'a DB,
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from: Option<hir::Module>,
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previous: Box<dyn AstTransform<'a> + 'a>,
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}
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impl<'a, DB: HirDatabase> QualifyPaths<'a, DB> {
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pub fn new(db: &'a DB, from: Option<hir::Module>) -> Self {
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Self { db, from, previous: Box::new(NullTransformer) }
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}
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fn get_substitution_inner(
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&self,
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node: InFile<&ra_syntax::SyntaxNode>,
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) -> Option<ra_syntax::SyntaxNode> {
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// FIXME handle value ns?
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let from = self.from?;
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let p = ast::Path::cast(node.value.clone())?;
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if p.segment().and_then(|s| s.param_list()).is_some() {
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// don't try to qualify `Fn(Foo) -> Bar` paths, they are in prelude anyway
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return None;
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}
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let analyzer = hir::SourceAnalyzer::new(self.db, node, None);
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let resolution = analyzer.resolve_path(self.db, &p)?;
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match resolution {
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PathResolution::Def(def) => {
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2020-01-10 11:40:45 -06:00
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let found_path = from.find_use_path(self.db, def)?;
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2020-01-10 11:26:18 -06:00
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let args = p
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.segment()
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.and_then(|s| s.type_arg_list())
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.map(|arg_list| apply(self, node.with_value(arg_list)));
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2020-01-10 11:40:45 -06:00
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Some(make::path_with_type_arg_list(path_to_ast(found_path), args).syntax().clone())
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2020-01-10 11:26:18 -06:00
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}
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PathResolution::Local(_)
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| PathResolution::TypeParam(_)
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| PathResolution::SelfType(_) => None,
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PathResolution::Macro(_) => None,
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PathResolution::AssocItem(_) => None,
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}
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}
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}
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pub fn apply<'a, N: AstNode>(transformer: &dyn AstTransform<'a>, node: InFile<N>) -> N {
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let syntax = node.value.syntax();
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let result = ra_syntax::algo::replace_descendants(syntax, &|element| match element {
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ra_syntax::SyntaxElement::Node(n) => {
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let replacement = transformer.get_substitution(node.with_value(&n))?;
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Some(replacement.into())
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}
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_ => None,
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});
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N::cast(result).unwrap()
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}
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impl<'a, DB: HirDatabase> AstTransform<'a> for QualifyPaths<'a, DB> {
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fn get_substitution(
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&self,
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node: InFile<&ra_syntax::SyntaxNode>,
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) -> Option<ra_syntax::SyntaxNode> {
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self.get_substitution_inner(node).or_else(|| self.previous.get_substitution(node))
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}
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fn chain_before(self, other: Box<dyn AstTransform<'a> + 'a>) -> Box<dyn AstTransform<'a> + 'a> {
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Box::new(QualifyPaths { previous: other, ..self })
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}
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}
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2020-01-10 11:40:45 -06:00
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fn path_to_ast(path: hir::ModPath) -> ast::Path {
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let parse = ast::SourceFile::parse(&path.to_string());
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parse.tree().syntax().descendants().find_map(ast::Path::cast).unwrap()
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}
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