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https://github.com/rust-lang/rust-analyzer
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internal: pull_assignment_up uses mutable trees
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parent
e603090961
commit
1755b57e1a
2 changed files with 72 additions and 70 deletions
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@ -1,6 +1,6 @@
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use syntax::{
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ast::{self, edit::AstNodeEdit, make},
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AstNode,
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ast::{self, make},
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ted, AstNode,
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};
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use crate::{
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@ -44,96 +44,95 @@ pub(crate) fn pull_assignment_up(acc: &mut Assists, ctx: &AssistContext) -> Opti
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return None;
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}
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let name_expr = assign_expr.lhs()?;
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let mut collector = AssignmentsCollector {
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sema: &ctx.sema,
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common_lhs: assign_expr.lhs()?,
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assignments: Vec::new(),
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};
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let old_stmt: ast::Expr;
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let new_stmt: ast::Expr;
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if let Some(if_expr) = ctx.find_node_at_offset::<ast::IfExpr>() {
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new_stmt = exprify_if(&if_expr, &ctx.sema, &name_expr)?.indent(if_expr.indent_level());
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old_stmt = if_expr.into();
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let tgt: ast::Expr = if let Some(if_expr) = ctx.find_node_at_offset::<ast::IfExpr>() {
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collector.collect_if(&if_expr)?;
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if_expr.into()
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} else if let Some(match_expr) = ctx.find_node_at_offset::<ast::MatchExpr>() {
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new_stmt = exprify_match(&match_expr, &ctx.sema, &name_expr)?;
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old_stmt = match_expr.into()
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collector.collect_match(&match_expr)?;
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match_expr.into()
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} else {
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return None;
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};
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let expr_stmt = make::expr_stmt(new_stmt);
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acc.add(
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AssistId("pull_assignment_up", AssistKind::RefactorExtract),
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"Pull assignment up",
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old_stmt.syntax().text_range(),
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tgt.syntax().text_range(),
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move |edit| {
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edit.replace(old_stmt.syntax().text_range(), format!("{} = {};", name_expr, expr_stmt));
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let assignments: Vec<_> = collector
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.assignments
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.into_iter()
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.map(|(stmt, rhs)| (edit.make_ast_mut(stmt), rhs.clone_for_update()))
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.collect();
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let tgt = edit.make_ast_mut(tgt);
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for (stmt, rhs) in assignments {
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ted::replace(stmt.syntax(), rhs.syntax());
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}
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let assign_expr = make::expr_assignment(collector.common_lhs, tgt.clone());
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let assign_stmt = make::expr_stmt(assign_expr);
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ted::replace(tgt.syntax(), assign_stmt.syntax().clone_for_update());
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},
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)
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}
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fn exprify_match(
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match_expr: &ast::MatchExpr,
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sema: &hir::Semantics<ide_db::RootDatabase>,
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name: &ast::Expr,
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) -> Option<ast::Expr> {
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let new_arm_list = match_expr
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.match_arm_list()?
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.arms()
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.map(|arm| {
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if let ast::Expr::BlockExpr(block) = arm.expr()? {
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let new_block = exprify_block(&block, sema, name)?.indent(block.indent_level());
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Some(arm.replace_descendant(block, new_block))
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} else {
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None
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struct AssignmentsCollector<'a> {
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sema: &'a hir::Semantics<'a, ide_db::RootDatabase>,
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common_lhs: ast::Expr,
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assignments: Vec<(ast::ExprStmt, ast::Expr)>,
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}
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impl<'a> AssignmentsCollector<'a> {
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fn collect_match(&mut self, match_expr: &ast::MatchExpr) -> Option<()> {
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for arm in match_expr.match_arm_list()?.arms() {
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match arm.expr()? {
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ast::Expr::BlockExpr(block) => self.collect_block(&block)?,
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// TODO: Handle this while we are at it?
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_ => return None,
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}
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})
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.collect::<Option<Vec<_>>>()?;
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let new_arm_list = match_expr
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.match_arm_list()?
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.replace_descendants(match_expr.match_arm_list()?.arms().zip(new_arm_list));
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Some(make::expr_match(match_expr.expr()?, new_arm_list))
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}
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fn exprify_if(
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statement: &ast::IfExpr,
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sema: &hir::Semantics<ide_db::RootDatabase>,
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name: &ast::Expr,
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) -> Option<ast::Expr> {
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let then_branch = exprify_block(&statement.then_branch()?, sema, name)?;
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let else_branch = match statement.else_branch()? {
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ast::ElseBranch::Block(block) => ast::ElseBranch::Block(exprify_block(&block, sema, name)?),
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ast::ElseBranch::IfExpr(expr) => {
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cov_mark::hit!(test_pull_assignment_up_chained_if);
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ast::ElseBranch::IfExpr(ast::IfExpr::cast(
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exprify_if(&expr, sema, name)?.syntax().to_owned(),
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)?)
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}
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};
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Some(make::expr_if(statement.condition()?, then_branch, Some(else_branch)))
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}
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fn exprify_block(
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block: &ast::BlockExpr,
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sema: &hir::Semantics<ide_db::RootDatabase>,
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name: &ast::Expr,
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) -> Option<ast::BlockExpr> {
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if block.tail_expr().is_some() {
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return None;
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Some(())
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}
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fn collect_if(&mut self, if_expr: &ast::IfExpr) -> Option<()> {
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let then_branch = if_expr.then_branch()?;
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self.collect_block(&then_branch)?;
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let mut stmts: Vec<_> = block.statements().collect();
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let stmt = stmts.pop()?;
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if let ast::Stmt::ExprStmt(stmt) = stmt {
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if let ast::Expr::BinExpr(expr) = stmt.expr()? {
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if expr.op_kind()? == ast::BinOp::Assignment && is_equivalent(sema, &expr.lhs()?, name)
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{
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// The last statement in the block is an assignment to the name we want
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return Some(make::block_expr(stmts, Some(expr.rhs()?)));
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match if_expr.else_branch()? {
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ast::ElseBranch::Block(block) => self.collect_block(&block),
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ast::ElseBranch::IfExpr(expr) => {
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cov_mark::hit!(test_pull_assignment_up_chained_if);
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self.collect_if(&expr)
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}
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}
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}
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None
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fn collect_block(&mut self, block: &ast::BlockExpr) -> Option<()> {
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if block.tail_expr().is_some() {
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return None;
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}
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let last_stmt = block.statements().last()?;
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if let ast::Stmt::ExprStmt(stmt) = last_stmt {
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if let ast::Expr::BinExpr(expr) = stmt.expr()? {
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if expr.op_kind()? == ast::BinOp::Assignment
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&& is_equivalent(self.sema, &expr.lhs()?, &self.common_lhs)
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{
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self.assignments.push((stmt, expr.rhs()?));
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return Some(());
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}
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}
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}
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None
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}
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}
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fn is_equivalent(
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@ -275,6 +275,9 @@ pub fn expr_tuple(elements: impl IntoIterator<Item = ast::Expr>) -> ast::Expr {
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let expr = elements.into_iter().format(", ");
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expr_from_text(&format!("({})", expr))
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}
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pub fn expr_assignment(lhs: ast::Expr, rhs: ast::Expr) -> ast::Expr {
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expr_from_text(&format!("{} = {}", lhs, rhs))
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}
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fn expr_from_text(text: &str) -> ast::Expr {
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ast_from_text(&format!("const C: () = {};", text))
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}
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