Rollup merge of #66883 - eddyb:we-cant-have-nice-things, r=oli-obk
rustc_typeck: gate AnonConst's generics on feature(const_generics). This PR employs the fix for #43408 when `#![feature(const_generics)]` is enabled, making the feature-gate the opt-in for all the possible breakage this may incur. For example, if this PR lands, this will cause a cycle error (due to #60471): ```rust #![feature(const_generics)] fn foo<T: Into<[u8; 4]>>() {} ``` And so will anything with type-level const expressions, in its bounds. Surprisingly, `impl`s don't seem to be affected (if they were, even libcore wouldn't compile). One thing I'm worried about is not knowing how much unstable code out there, using const-generics, will be broken. But types like `Foo<{N+1}>` never really worked, and do after this PR, just not in bounds - so ironically, it's type-level const expressions that don't depend on generics, which will break (in bounds). Also, if we do this, we'll have effectively blocked stabilization of const generics on #60471. r? @oli-obk cc @varkor @yodaldevoid @nikomatsakis
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commit
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@ -2330,22 +2330,43 @@ pub fn eval(
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tcx: TyCtxt<'tcx>,
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param_env: ParamEnv<'tcx>,
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) -> &Const<'tcx> {
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// FIXME(const_generics): this doesn't work right now,
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// because it tries to relate an `Infer` to a `Param`.
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let try_const_eval = |did, param_env: ParamEnv<'tcx>, substs| {
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let param_env_and_substs = param_env.with_reveal_all().and(substs);
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// Avoid querying `tcx.const_eval(...)` with any e.g. inference vars.
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if param_env_and_substs.has_local_value() {
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return None;
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}
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let (param_env, substs) = param_env_and_substs.into_parts();
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// try to resolve e.g. associated constants to their definition on an impl
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let instance = ty::Instance::resolve(tcx, param_env, did, substs)?;
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let gid = GlobalId {
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instance,
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promoted: None,
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};
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tcx.const_eval(param_env.and(gid)).ok()
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};
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match self.val {
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ConstKind::Unevaluated(did, substs) => {
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// if `substs` has no unresolved components, use and empty param_env
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let (param_env, substs) = param_env.with_reveal_all().and(substs).into_parts();
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// try to resolve e.g. associated constants to their definition on an impl
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let instance = match ty::Instance::resolve(tcx, param_env, did, substs) {
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Some(instance) => instance,
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None => return self,
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};
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let gid = GlobalId {
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instance,
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promoted: None,
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};
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tcx.const_eval(param_env.and(gid)).unwrap_or(self)
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// HACK(eddyb) when substs contain e.g. inference variables,
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// attempt using identity substs instead, that will succeed
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// when the expression doesn't depend on any parameters.
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// FIXME(eddyb) make `const_eval` a canonical query instead,
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// that would properly handle inference variables in `substs`.
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if substs.has_local_value() {
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let identity_substs = InternalSubsts::identity_for_item(tcx, did);
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// The `ParamEnv` needs to match the `identity_substs`.
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let identity_param_env = tcx.param_env(did);
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match try_const_eval(did, identity_param_env, identity_substs) {
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Some(ct) => ct.subst(tcx, substs),
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None => self,
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}
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} else {
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try_const_eval(did, param_env, substs).unwrap_or(self)
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}
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},
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_ => self,
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}
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@ -909,14 +909,12 @@ fn generics_of(tcx: TyCtxt<'_>, def_id: DefId) -> &ty::Generics {
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let parent_id = tcx.hir().get_parent_item(hir_id);
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Some(tcx.hir().local_def_id(parent_id))
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}
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// FIXME(#43408) enable this in all cases when we get lazy normalization.
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Node::AnonConst(&anon_const) => {
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// HACK(eddyb) this provides the correct generics when the workaround
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// for a const parameter `AnonConst` is being used elsewhere, as then
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// there won't be the kind of cyclic dependency blocking #43408.
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let expr = &tcx.hir().body(anon_const.body).value;
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let icx = ItemCtxt::new(tcx, def_id);
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if AstConv::const_param_def_id(&icx, expr).is_some() {
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// FIXME(#43408) enable this always when we get lazy normalization.
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Node::AnonConst(_) => {
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// HACK(eddyb) this provides the correct generics when
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// `feature(const_generics)` is enabled, so that const expressions
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// used with const generics, e.g. `Foo<{N+1}>`, can work at all.
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if tcx.features().const_generics {
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let parent_id = tcx.hir().get_parent_item(hir_id);
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Some(tcx.hir().local_def_id(parent_id))
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} else {
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