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20 changes: 18 additions & 2 deletions compiler/src/dotty/tools/dotc/ast/TreeInfo.scala
Original file line number Diff line number Diff line change
Expand Up @@ -449,7 +449,7 @@ trait TypedTreeInfo extends TreeInfo[Type] { self: Trees.Instance[Type] =>
def isIdempotentRef(tree: Tree)(implicit ctx: Context): Boolean =
refPurity(tree) >= Idempotent

/** If `tree` is a constant expression, its value as a Literal,
/** (1) If `tree` is a constant expression, its value as a Literal,
* or `tree` itself otherwise.
*
* Note: Demanding idempotency instead of purity in literalize is strictly speaking too loose.
Expand Down Expand Up @@ -485,11 +485,27 @@ trait TypedTreeInfo extends TreeInfo[Type] { self: Trees.Instance[Type] =>
* Ident
* Select
* TypeApply
*
* (2) A primitive unary operator expression `pre.op` where `op` is one of `+`, `-`, `~`, `!`
* that has a constant type `ConstantType(v)` but that is not a constant expression
* (i.e. `pre` has side-effects) is translated to
*
* { pre; v }
*
* This avoids the situation where we have a Select node that does not have a symbol.
*/
def constToLiteral(tree: Tree)(implicit ctx: Context): Tree = {
val tree1 = ConstFold(tree)
tree1.tpe.widenTermRefExpr match {
case ConstantType(value) if isIdempotentExpr(tree1) => Literal(value)
case ConstantType(value) =>
if (isIdempotentExpr(tree1)) Literal(value)
else tree1 match {
case Select(qual, _) if tree1.tpe.isInstanceOf[ConstantType] =>
// it's a primitive unary operator; Simplify `pre.op` to `{ pre; v }` where `v` is the value of `pre.op`
Block(qual :: Nil, Literal(value))
case _ =>
tree1
}
case _ => tree1
}
}
Expand Down
34 changes: 34 additions & 0 deletions tests/pos/i5386.scala
Original file line number Diff line number Diff line change
@@ -0,0 +1,34 @@
object Test {

~{
println("!")
1
}

+{
println("!")
1
}

-{
println("!")
1
}

!{
println("!")
true
}

{ println("1"); 1 } + { println("2"); 2}

!(try true finally{()})


class C {
def foo: 1 = 1
}

{ println("!"); new C }.foo

}