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check_consts: fix error requesting feature gate when that gate is not actually needed
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@ -272,9 +272,18 @@ impl<'mir, 'tcx> Checker<'mir, 'tcx> {
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/// context.
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pub fn check_op_spanned<O: NonConstOp<'tcx>>(&mut self, op: O, span: Span) {
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let gate = match op.status_in_item(self.ccx) {
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Status::Unstable { gate, safe_to_expose_on_stable, is_function_call }
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if self.tcx.features().enabled(gate) =>
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{
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Status::Unstable {
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gate,
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safe_to_expose_on_stable,
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is_function_call,
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gate_already_checked,
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} if gate_already_checked || self.tcx.features().enabled(gate) => {
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if gate_already_checked {
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assert!(
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!safe_to_expose_on_stable,
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"setting `gate_already_checked` without `safe_to_expose_on_stable` makes no sense"
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);
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}
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// Generally this is allowed since the feature gate is enabled -- except
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// if this function wants to be safe-to-expose-on-stable.
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if !safe_to_expose_on_stable
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@ -745,7 +754,7 @@ impl<'tcx> Visitor<'tcx> for Checker<'_, 'tcx> {
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self.check_op(ops::IntrinsicUnstable {
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name: intrinsic.name,
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feature,
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const_stable: is_const_stable,
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const_stable_indirect: is_const_stable,
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});
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}
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Some(ConstStability { level: StabilityLevel::Stable { .. }, .. }) => {
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@ -800,6 +809,12 @@ impl<'tcx> Visitor<'tcx> for Checker<'_, 'tcx> {
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// We only honor `span.allows_unstable` aka `#[allow_internal_unstable]` if
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// the callee is safe to expose, to avoid bypassing recursive stability.
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// This is not ideal since it means the user sees an error, not the macro
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// author, but that's also the case if one forgets to set
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// `#[allow_internal_unstable]` in the first place. Note that this cannot be
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// integrated in the check below since we want to enforce
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// `callee_safe_to_expose_on_stable` even if
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// `!self.enforce_recursive_const_stability()`.
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if (self.span.allows_unstable(feature)
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|| implied_feature.is_some_and(|f| self.span.allows_unstable(f)))
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&& callee_safe_to_expose_on_stable
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@ -830,15 +845,13 @@ impl<'tcx> Visitor<'tcx> for Checker<'_, 'tcx> {
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&& issue == NonZero::new(27812)
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&& self.tcx.sess.opts.unstable_opts.force_unstable_if_unmarked
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};
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// We do *not* honor this if we are in the "danger zone": we have to enforce
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// recursive const-stability and the callee is not safe-to-expose. In that
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// case we need `check_op` to do the check.
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let danger_zone = !callee_safe_to_expose_on_stable
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&& self.enforce_recursive_const_stability();
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if danger_zone || !feature_enabled {
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// Even if the feature is enabled, we still need check_op to double-check
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// this if the callee is not safe to expose on stable.
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if !feature_enabled || !callee_safe_to_expose_on_stable {
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self.check_op(ops::FnCallUnstable {
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def_id: callee,
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feature,
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feature_enabled,
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safe_to_expose_on_stable: callee_safe_to_expose_on_stable,
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});
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}
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@ -28,6 +28,9 @@ pub enum Status {
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Unstable {
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/// The feature that must be enabled to use this operation.
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gate: Symbol,
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/// Whether the feature gate was already checked (because the logic is a bit more
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/// complicated than just checking a single gate).
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gate_already_checked: bool,
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/// Whether it is allowed to use this operation from stable `const fn`.
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/// This will usually be `false`.
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safe_to_expose_on_stable: bool,
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@ -82,6 +85,7 @@ impl<'tcx> NonConstOp<'tcx> for ConditionallyConstCall<'tcx> {
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// We use the `const_trait_impl` gate for all conditionally-const calls.
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Status::Unstable {
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gate: sym::const_trait_impl,
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gate_already_checked: false,
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safe_to_expose_on_stable: false,
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// We don't want the "mark the callee as `#[rustc_const_stable_indirect]`" hint
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is_function_call: false,
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@ -330,6 +334,9 @@ impl<'tcx> NonConstOp<'tcx> for FnCallNonConst<'tcx> {
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pub(crate) struct FnCallUnstable {
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pub def_id: DefId,
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pub feature: Symbol,
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/// If this is true, then the feature is enabled, but we need to still check if it is safe to
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/// expose on stable.
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pub feature_enabled: bool,
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pub safe_to_expose_on_stable: bool,
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}
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@ -337,12 +344,14 @@ impl<'tcx> NonConstOp<'tcx> for FnCallUnstable {
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fn status_in_item(&self, _ccx: &ConstCx<'_, 'tcx>) -> Status {
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Status::Unstable {
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gate: self.feature,
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gate_already_checked: self.feature_enabled,
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safe_to_expose_on_stable: self.safe_to_expose_on_stable,
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is_function_call: true,
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}
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}
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fn build_error(&self, ccx: &ConstCx<'_, 'tcx>, span: Span) -> Diag<'tcx> {
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assert!(!self.feature_enabled);
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let mut err = ccx.dcx().create_err(errors::UnstableConstFn {
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span,
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def_path: ccx.tcx.def_path_str(self.def_id),
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@ -376,14 +385,15 @@ impl<'tcx> NonConstOp<'tcx> for IntrinsicNonConst {
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pub(crate) struct IntrinsicUnstable {
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pub name: Symbol,
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pub feature: Symbol,
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pub const_stable: bool,
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pub const_stable_indirect: bool,
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}
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impl<'tcx> NonConstOp<'tcx> for IntrinsicUnstable {
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fn status_in_item(&self, _ccx: &ConstCx<'_, 'tcx>) -> Status {
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Status::Unstable {
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gate: self.feature,
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safe_to_expose_on_stable: self.const_stable,
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gate_already_checked: false,
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safe_to_expose_on_stable: self.const_stable_indirect,
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// We do *not* want to suggest to mark the intrinsic as `const_stable_indirect`,
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// that's not a trivial change!
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is_function_call: false,
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@ -410,6 +420,7 @@ impl<'tcx> NonConstOp<'tcx> for Coroutine {
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{
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Status::Unstable {
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gate: sym::const_async_blocks,
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gate_already_checked: false,
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safe_to_expose_on_stable: false,
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is_function_call: false,
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}
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@ -1,6 +1,6 @@
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//@ compile-flags: -Zforce-unstable-if-unmarked
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//@ edition: 2021
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#![feature(const_async_blocks, rustc_attrs, rustc_private)]
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#![feature(const_async_blocks, rustc_attrs)]
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pub const fn not_stably_const() {
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// We need to do something const-unstable here.
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