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Support as casts in abstract consts
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@ -1,6 +1,6 @@
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//! A subset of a mir body used for const evaluatability checking.
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use crate::mir;
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use crate::ty;
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use crate::mir::{self, CastKind};
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use crate::ty::{self, Ty};
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rustc_index::newtype_index! {
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/// An index into an `AbstractConst`.
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@ -17,6 +17,7 @@ pub enum Node<'tcx> {
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Binop(mir::BinOp, NodeId, NodeId),
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UnaryOp(mir::UnOp, NodeId),
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FunctionCall(NodeId, &'tcx [NodeId]),
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Cast(CastKind, NodeId, Ty<'tcx>),
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}
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#[derive(Debug, Copy, Clone, PartialEq, Eq, HashStable, TyEncodable, TyDecodable)]
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@ -156,9 +156,10 @@ where
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let leaf = leaf.subst(tcx, ct.substs);
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self.visit_const(leaf)
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}
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ACNode::Binop(..) | ACNode::UnaryOp(..) | ACNode::FunctionCall(_, _) => {
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ControlFlow::CONTINUE
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}
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ACNode::Binop(..)
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| ACNode::UnaryOp(..)
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| ACNode::FunctionCall(_, _)
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| ACNode::Cast(_, _, _) => ControlFlow::CONTINUE,
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})
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}
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@ -97,9 +97,10 @@ pub fn is_const_evaluatable<'cx, 'tcx>(
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ControlFlow::CONTINUE
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}
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Node::Binop(_, _, _) | Node::UnaryOp(_, _) | Node::FunctionCall(_, _) => {
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ControlFlow::CONTINUE
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}
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Node::Binop(_, _, _)
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| Node::UnaryOp(_, _)
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| Node::FunctionCall(_, _)
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| Node::Cast(_, _, _) => ControlFlow::CONTINUE,
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});
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match failure_kind {
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@ -304,6 +305,9 @@ impl<'a, 'tcx> AbstractConstBuilder<'a, 'tcx> {
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self.nodes[func].used = true;
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nodes.iter().for_each(|&n| self.nodes[n].used = true);
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}
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Node::Cast(_, operand, _) => {
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self.nodes[operand].used = true;
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}
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}
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// Nodes start as unused.
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@ -408,6 +412,12 @@ impl<'a, 'tcx> AbstractConstBuilder<'a, 'tcx> {
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self.locals[local] = self.add_node(Node::UnaryOp(op, operand), span);
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Ok(())
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}
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Rvalue::Cast(cast_kind, ref operand, ty) => {
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let operand = self.operand_to_node(span, operand)?;
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self.locals[local] =
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self.add_node(Node::Cast(cast_kind, operand, ty), span);
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Ok(())
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}
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_ => self.error(Some(span), "unsupported rvalue")?,
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}
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}
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@ -594,6 +604,7 @@ where
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recurse(tcx, ct.subtree(func), f)?;
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args.iter().try_for_each(|&arg| recurse(tcx, ct.subtree(arg), f))
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}
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Node::Cast(_, operand, _) => recurse(tcx, ct.subtree(operand), f),
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}
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}
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@ -676,6 +687,11 @@ pub(super) fn try_unify<'tcx>(
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&& iter::zip(a_args, b_args)
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.all(|(&an, &bn)| try_unify(tcx, a.subtree(an), b.subtree(bn)))
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}
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(Node::Cast(a_cast_kind, a_operand, a_ty), Node::Cast(b_cast_kind, b_operand, b_ty))
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if (a_ty == b_ty) && (a_cast_kind == b_cast_kind) =>
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{
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try_unify(tcx, a.subtree(a_operand), b.subtree(b_operand))
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}
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_ => false,
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}
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}
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@ -838,9 +838,10 @@ fn contains_illegal_self_type_reference<'tcx, T: TypeFoldable<'tcx>>(
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let leaf = leaf.subst(self.tcx, ct.substs);
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self.visit_const(leaf)
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}
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Node::Binop(..) | Node::UnaryOp(..) | Node::FunctionCall(_, _) => {
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ControlFlow::CONTINUE
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}
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Node::Binop(..)
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| Node::UnaryOp(..)
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| Node::FunctionCall(_, _)
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| Node::Cast(_, _, _) => ControlFlow::CONTINUE,
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})
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} else {
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ControlFlow::CONTINUE
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@ -859,9 +860,10 @@ fn contains_illegal_self_type_reference<'tcx, T: TypeFoldable<'tcx>>(
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let leaf = leaf.subst(self.tcx, ct.substs);
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self.visit_const(leaf)
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}
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Node::Binop(..) | Node::UnaryOp(..) | Node::FunctionCall(_, _) => {
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ControlFlow::CONTINUE
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}
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Node::Binop(..)
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| Node::UnaryOp(..)
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| Node::FunctionCall(_, _)
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| Node::Cast(_, _, _) => ControlFlow::CONTINUE,
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})
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} else {
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ControlFlow::CONTINUE
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@ -0,0 +1,13 @@
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#![feature(const_evaluatable_checked, const_generics)]
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#![allow(incomplete_features)]
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trait Evaluatable<const N: u128> {}
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impl<const N: u128> Evaluatable<N> for () {}
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struct Foo<const N: u8>([u8; N as usize])
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//~^ Error: unconstrained generic constant
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//~| help: try adding a `where` bound using this expression: `where [(); N as usize]:`
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where
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(): Evaluatable<{N as u128}>;
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fn main() {}
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@ -0,0 +1,10 @@
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error: unconstrained generic constant
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--> $DIR/abstract-const-as-cast-2.rs:7:25
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LL | struct Foo<const N: u8>([u8; N as usize])
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| ^^^^^^^^^^^^^^^^
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= help: try adding a `where` bound using this expression: `where [(); N as usize]:`
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error: aborting due to previous error
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@ -0,0 +1,9 @@
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// check-pass
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#![feature(const_evaluatable_checked, const_generics)]
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#![allow(incomplete_features)]
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struct Foo<const N: u8>([u8; N as usize])
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where
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[(); N as usize]:;
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fn main() {}
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