Some perf optimizations and logging
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32c447e179
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d954a8ee8e
@ -418,6 +418,7 @@ fn insert_into_error_cache(&mut self, index: usize) {
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/// be called in a loop until `outcome.stalled` is false.
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///
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/// This _cannot_ be unrolled (presently, at least).
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#[inline(never)]
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pub fn process_obligations<P, OUT>(&mut self, processor: &mut P) -> OUT
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where
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P: ObligationProcessor<Obligation = O>,
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@ -671,6 +672,7 @@ fn compress(&mut self, mut outcome_cb: impl FnMut(&O)) {
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self.reused_node_vec = node_rewrites;
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}
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#[inline(never)]
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fn apply_rewrites(&mut self, node_rewrites: &[usize]) {
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let orig_nodes_len = node_rewrites.len();
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@ -400,6 +400,7 @@ fn from(vid: ty::TyVid) -> Self {
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impl<'tcx> ut::UnifyKey for TyVidEqKey<'tcx> {
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type Value = TypeVariableValue<'tcx>;
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#[inline(always)]
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fn index(&self) -> u32 {
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self.vid.index
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}
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@ -167,6 +167,7 @@ impl<'tcx> TraitEngine<'tcx> for FulfillmentContext<'tcx> {
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/// `SomeTrait` or a where-clause that lets us unify `$0` with
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/// something concrete. If this fails, we'll unify `$0` with
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/// `projection_ty` again.
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#[tracing::instrument(level = "debug", skip(self, infcx, param_env, cause))]
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fn normalize_projection_type(
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&mut self,
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infcx: &InferCtxt<'_, 'tcx>,
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@ -174,8 +175,6 @@ fn normalize_projection_type(
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projection_ty: ty::ProjectionTy<'tcx>,
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cause: ObligationCause<'tcx>,
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) -> Ty<'tcx> {
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debug!(?projection_ty, "normalize_projection_type");
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debug_assert!(!projection_ty.has_escaping_bound_vars());
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// FIXME(#20304) -- cache
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@ -273,7 +273,7 @@ pub fn normalize_with_depth<'a, 'b, 'tcx, T>(
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Normalized { value, obligations }
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}
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#[instrument(level = "debug", skip(selcx, param_env, cause, obligations))]
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#[instrument(level = "info", skip(selcx, param_env, cause, obligations))]
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pub fn normalize_with_depth_to<'a, 'b, 'tcx, T>(
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selcx: &'a mut SelectionContext<'b, 'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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@ -285,6 +285,7 @@ pub fn normalize_with_depth_to<'a, 'b, 'tcx, T>(
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where
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T: TypeFoldable<'tcx>,
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{
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debug!(obligations.len = obligations.len());
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let mut normalizer = AssocTypeNormalizer::new(selcx, param_env, cause, depth, obligations);
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let result = ensure_sufficient_stack(|| normalizer.fold(value));
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debug!(?result, obligations.len = normalizer.obligations.len());
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@ -314,6 +315,7 @@ fn new(
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fn fold<T: TypeFoldable<'tcx>>(&mut self, value: T) -> T {
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let value = self.selcx.infcx().resolve_vars_if_possible(value);
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debug!(?value);
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assert!(
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!value.has_escaping_bound_vars(),
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@ -825,7 +827,7 @@ fn opt_normalize_projection_type<'a, 'b, 'tcx>(
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let cache_result = infcx.inner.borrow_mut().projection_cache().try_start(cache_key);
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match cache_result {
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Ok(()) => {}
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Ok(()) => debug!("no cache"),
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Err(ProjectionCacheEntry::Ambiguous) => {
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// If we found ambiguity the last time, that means we will continue
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// to do so until some type in the key changes (and we know it
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@ -852,6 +854,7 @@ fn opt_normalize_projection_type<'a, 'b, 'tcx>(
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return Err(InProgress);
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}
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Err(ProjectionCacheEntry::Recur) => {
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debug!("recur cache");
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return Err(InProgress);
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}
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Err(ProjectionCacheEntry::NormalizedTy(ty)) => {
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@ -1058,12 +1061,11 @@ fn with_addl_obligations(mut self, mut obligations: Vec<PredicateObligation<'tcx
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///
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/// IMPORTANT:
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/// - `obligation` must be fully normalized
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#[tracing::instrument(level = "info", skip(selcx))]
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fn project_type<'cx, 'tcx>(
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selcx: &mut SelectionContext<'cx, 'tcx>,
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obligation: &ProjectionTyObligation<'tcx>,
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) -> Result<ProjectedTy<'tcx>, ProjectionTyError<'tcx>> {
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debug!(?obligation, "project_type");
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if !selcx.tcx().recursion_limit().value_within_limit(obligation.recursion_depth) {
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debug!("project: overflow!");
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// This should really be an immediate error, but some existing code
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@ -65,7 +65,7 @@ fn normalize<T>(&self, value: T) -> Result<Normalized<'tcx, T>, NoSolution>
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};
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let result = value.fold_with(&mut normalizer);
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debug!(
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info!(
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"normalize::<{}>: result={:?} with {} obligations",
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std::any::type_name::<T>(),
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result,
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@ -1865,12 +1865,12 @@ fn rematch_impl(
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}
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}
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#[tracing::instrument(level = "debug", skip(self))]
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fn match_impl(
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&mut self,
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impl_def_id: DefId,
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obligation: &TraitObligation<'tcx>,
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) -> Result<Normalized<'tcx, SubstsRef<'tcx>>, ()> {
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debug!(?impl_def_id, ?obligation, "match_impl");
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let impl_trait_ref = self.tcx().impl_trait_ref(impl_def_id).unwrap();
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// Before we create the substitutions and everything, first
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@ -1888,6 +1888,8 @@ fn match_impl(
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let impl_trait_ref = impl_trait_ref.subst(self.tcx(), impl_substs);
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debug!(?impl_trait_ref);
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let Normalized { value: impl_trait_ref, obligations: mut nested_obligations } =
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ensure_sufficient_stack(|| {
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project::normalize_with_depth(
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@ -1915,7 +1917,7 @@ fn match_impl(
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return Err(());
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}
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debug!(?impl_substs, "match_impl: success");
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debug!(?impl_substs, ?nested_obligations, "match_impl: success");
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Ok(Normalized { value: impl_substs, obligations: nested_obligations })
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}
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@ -2068,6 +2070,7 @@ fn generator_trait_ref_unnormalized(
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/// impl or trait. The obligations are substituted and fully
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/// normalized. This is used when confirming an impl or default
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/// impl.
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#[tracing::instrument(level = "debug", skip(self, cause, param_env))]
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fn impl_or_trait_obligations(
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&mut self,
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cause: ObligationCause<'tcx>,
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@ -2076,7 +2079,6 @@ fn impl_or_trait_obligations(
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def_id: DefId, // of impl or trait
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substs: SubstsRef<'tcx>, // for impl or trait
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) -> Vec<PredicateObligation<'tcx>> {
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debug!(?def_id, "impl_or_trait_obligations");
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let tcx = self.tcx();
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// To allow for one-pass evaluation of the nested obligation,
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@ -2094,9 +2096,11 @@ fn impl_or_trait_obligations(
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// `$1: Copy`, so we must ensure the obligations are emitted in
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// that order.
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let predicates = tcx.predicates_of(def_id);
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debug!(?predicates);
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assert_eq!(predicates.parent, None);
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let mut obligations = Vec::with_capacity(predicates.predicates.len());
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for (predicate, _) in predicates.predicates {
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debug!(?predicate);
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let predicate = normalize_with_depth_to(
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self,
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param_env,
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@ -85,6 +85,7 @@ pub fn trait_obligations<'a, 'tcx>(
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let mut wf =
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WfPredicates { infcx, param_env, body_id, span, out: vec![], recursion_depth: 0, item };
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wf.compute_trait_ref(trait_ref, Elaborate::All);
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debug!(obligations = ?wf.out);
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wf.normalize()
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}
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@ -1578,6 +1578,7 @@ fn inferred_kind(
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}
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/// Add all the obligations that are required, substituting and normalized appropriately.
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#[tracing::instrument(level = "debug", skip(self, span, def_id, substs))]
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fn add_required_obligations(&self, span: Span, def_id: DefId, substs: &SubstsRef<'tcx>) {
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let (bounds, spans) = self.instantiate_bounds(span, def_id, &substs);
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@ -179,6 +179,7 @@ pub(super) fn normalize_associated_types_in_with_cause<T>(
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T: TypeFoldable<'tcx>,
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{
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let ok = self.partially_normalize_associated_types_in(cause, param_env, value);
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debug!(?ok);
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self.register_infer_ok_obligations(ok)
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}
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}
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@ -379,14 +379,13 @@ fn check_param_wf(tcx: TyCtxt<'_>, param: &hir::GenericParam<'_>) {
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}
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}
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#[tracing::instrument(level = "debug", skip(tcx, span, sig_if_method))]
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fn check_associated_item(
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tcx: TyCtxt<'_>,
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item_id: hir::HirId,
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span: Span,
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sig_if_method: Option<&hir::FnSig<'_>>,
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) {
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debug!("check_associated_item: {:?}", item_id);
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let code = ObligationCauseCode::WellFormed(Some(item_id));
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for_id(tcx, item_id, span).with_fcx(|fcx| {
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let item = fcx.tcx.associated_item(fcx.tcx.hir().local_def_id(item_id));
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@ -650,14 +649,13 @@ fn check_item_type(tcx: TyCtxt<'_>, item_id: hir::HirId, ty_span: Span, allow_fo
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});
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}
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#[tracing::instrument(level = "debug", skip(tcx, ast_self_ty, ast_trait_ref))]
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fn check_impl<'tcx>(
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tcx: TyCtxt<'tcx>,
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item: &'tcx hir::Item<'tcx>,
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ast_self_ty: &hir::Ty<'_>,
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ast_trait_ref: &Option<hir::TraitRef<'_>>,
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) {
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debug!("check_impl: {:?}", item);
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for_item(tcx, item).with_fcx(|fcx| {
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match *ast_trait_ref {
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Some(ref ast_trait_ref) => {
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@ -675,6 +673,7 @@ fn check_impl<'tcx>(
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ast_trait_ref.path.span,
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Some(item),
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);
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debug!(?obligations);
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for obligation in obligations {
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fcx.register_predicate(obligation);
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}
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