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Try to use approximate placeholder regions when outputting an AscribeUserType error in borrowck
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@ -10,6 +10,8 @@ use rustc_infer::infer::RegionVariableOrigin;
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use rustc_infer::infer::{InferCtxt, RegionResolutionError, SubregionOrigin, TyCtxtInferExt as _};
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use rustc_infer::traits::ObligationCause;
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use rustc_middle::ty::error::TypeError;
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use rustc_middle::ty::RePlaceholder;
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use rustc_middle::ty::Region;
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use rustc_middle::ty::RegionVid;
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use rustc_middle::ty::UniverseIndex;
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use rustc_middle::ty::{self, Ty, TyCtxt, TypeFoldable};
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@ -205,6 +207,8 @@ trait TypeOpInfo<'tcx> {
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let span = cause.span;
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let nice_error = self.nice_error(mbcx, cause, placeholder_region, error_region);
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debug!(?nice_error);
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if let Some(nice_error) = nice_error {
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mbcx.buffer_error(nice_error);
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} else {
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@ -404,19 +408,41 @@ fn try_extract_error_from_region_constraints<'tcx>(
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mut region_var_origin: impl FnMut(RegionVid) -> RegionVariableOrigin,
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mut universe_of_region: impl FnMut(RegionVid) -> UniverseIndex,
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) -> Option<DiagnosticBuilder<'tcx, ErrorGuaranteed>> {
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let (sub_region, cause) =
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region_constraints.constraints.iter().find_map(|(constraint, cause)| {
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match *constraint {
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Constraint::RegSubReg(sub, sup) if sup == placeholder_region && sup != sub => {
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Some((sub, cause.clone()))
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}
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// FIXME: Should this check the universe of the var?
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Constraint::VarSubReg(vid, sup) if sup == placeholder_region => {
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Some((ty::Region::new_var(infcx.tcx, vid), cause.clone()))
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}
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_ => None,
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let matches =
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|a_region: Region<'tcx>, b_region: Region<'tcx>| match (a_region.kind(), b_region.kind()) {
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(RePlaceholder(a_p), RePlaceholder(b_p)) => a_p.bound == b_p.bound,
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_ => a_region == b_region,
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};
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let check = |constraint: &Constraint<'tcx>, cause: &SubregionOrigin<'tcx>, exact| {
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match *constraint {
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Constraint::RegSubReg(sub, sup)
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if ((exact && sup == placeholder_region)
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|| (!exact && matches(sup, placeholder_region)))
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&& sup != sub =>
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{
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Some((sub, cause.clone()))
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}
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})?;
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// FIXME: Should this check the universe of the var?
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Constraint::VarSubReg(vid, sup)
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if ((exact && sup == placeholder_region)
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|| (!exact && matches(sup, placeholder_region))) =>
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{
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Some((ty::Region::new_var(infcx.tcx, vid), cause.clone()))
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}
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_ => None,
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}
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};
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let mut info = region_constraints
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.constraints
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.iter()
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.find_map(|(constraint, cause)| check(constraint, cause, true));
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if info.is_none() {
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info = region_constraints
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.constraints
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.iter()
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.find_map(|(constraint, cause)| check(constraint, cause, false));
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}
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let (sub_region, cause) = info?;
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debug!(?sub_region, "cause = {:#?}", cause);
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let error = match (error_region, *sub_region) {
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@ -95,6 +95,12 @@ impl<'tcx> RegionErrors<'tcx> {
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}
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}
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impl std::fmt::Debug for RegionErrors<'_> {
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fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
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f.debug_tuple("RegionErrors").field(&self.0).finish()
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}
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}
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#[derive(Clone, Debug)]
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pub(crate) enum RegionErrorKind<'tcx> {
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/// A generic bound failure for a type test (`T: 'a`).
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@ -147,6 +147,7 @@ pub(crate) struct AppliedMemberConstraint {
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pub(crate) member_constraint_index: NllMemberConstraintIndex,
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}
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#[derive(Debug)]
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pub(crate) struct RegionDefinition<'tcx> {
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/// What kind of variable is this -- a free region? existential
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/// variable? etc. (See the `NllRegionVariableOrigin` for more
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@ -680,6 +681,9 @@ impl<'tcx> RegionInferenceContext<'tcx> {
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&mut errors_buffer,
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);
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debug!(?errors_buffer);
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debug!(?outlives_requirements);
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// In Polonius mode, the errors about missing universal region relations are in the output
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// and need to be emitted or propagated. Otherwise, we need to check whether the
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// constraints were too strong, and if so, emit or propagate those errors.
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@ -693,10 +697,14 @@ impl<'tcx> RegionInferenceContext<'tcx> {
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self.check_universal_regions(outlives_requirements.as_mut(), &mut errors_buffer);
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}
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debug!(?errors_buffer);
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if errors_buffer.is_empty() {
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self.check_member_constraints(infcx, &mut errors_buffer);
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}
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debug!(?errors_buffer);
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let outlives_requirements = outlives_requirements.unwrap_or_default();
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if outlives_requirements.is_empty() {
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@ -1450,6 +1458,7 @@ impl<'tcx> RegionInferenceContext<'tcx> {
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errors_buffer: &mut RegionErrors<'tcx>,
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) {
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for (fr, fr_definition) in self.definitions.iter_enumerated() {
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debug!(?fr, ?fr_definition);
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match fr_definition.origin {
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NllRegionVariableOrigin::FreeRegion => {
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// Go through each of the universal regions `fr` and check that
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@ -1181,7 +1181,7 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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self.infcx.tcx
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}
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#[instrument(skip(self, body, location), level = "debug")]
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#[instrument(skip(self, body), level = "debug")]
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fn check_stmt(&mut self, body: &Body<'tcx>, stmt: &Statement<'tcx>, location: Location) {
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let tcx = self.tcx();
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debug!("stmt kind: {:?}", stmt.kind);
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14
tests/ui/higher-ranked/higher-ranked-lifetime-error.rs
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14
tests/ui/higher-ranked/higher-ranked-lifetime-error.rs
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@ -0,0 +1,14 @@
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fn assert_all<F, T>(_f: F)
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where
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F: FnMut(&String) -> T,
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{
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}
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fn id(x: &String) -> &String {
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x
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}
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fn main() {
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assert_all::<_, &String>(id);
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//~^ mismatched types
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}
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12
tests/ui/higher-ranked/higher-ranked-lifetime-error.stderr
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12
tests/ui/higher-ranked/higher-ranked-lifetime-error.stderr
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@ -0,0 +1,12 @@
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error[E0308]: mismatched types
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--> $DIR/higher-ranked-lifetime-error.rs:12:5
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LL | assert_all::<_, &String>(id);
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| ^^^^^^^^^^^^^^^^^^^^^^^^ one type is more general than the other
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= note: expected reference `&String`
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found reference `&String`
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error: aborting due to previous error
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For more information about this error, try `rustc --explain E0308`.
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