270 lines
9.3 KiB
Rust
270 lines
9.3 KiB
Rust
use std::cell::RefCell;
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use std::fmt::Debug;
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use super::FulfillmentContext;
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use super::TraitEngine;
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use crate::regions::InferCtxtRegionExt;
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use crate::solve::FulfillmentCtxt as NextFulfillmentCtxt;
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use crate::traits::error_reporting::TypeErrCtxtExt;
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use crate::traits::NormalizeExt;
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use rustc_data_structures::fx::FxIndexSet;
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use rustc_errors::ErrorGuaranteed;
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use rustc_hir::def_id::{DefId, LocalDefId};
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use rustc_infer::infer::at::ToTrace;
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use rustc_infer::infer::canonical::{
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Canonical, CanonicalQueryResponse, CanonicalVarValues, QueryResponse,
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};
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use rustc_infer::infer::outlives::env::OutlivesEnvironment;
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use rustc_infer::infer::{DefineOpaqueTypes, InferCtxt, InferOk};
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use rustc_infer::traits::{
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FulfillmentError, Obligation, ObligationCause, PredicateObligation, TraitEngineExt as _,
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};
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use rustc_middle::arena::ArenaAllocatable;
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use rustc_middle::traits::query::NoSolution;
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use rustc_middle::ty::error::TypeError;
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use rustc_middle::ty::ToPredicate;
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use rustc_middle::ty::TypeFoldable;
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use rustc_middle::ty::Variance;
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use rustc_middle::ty::{self, Ty, TyCtxt};
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#[extension(pub trait TraitEngineExt<'tcx>)]
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impl<'tcx> dyn TraitEngine<'tcx> {
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fn new(infcx: &InferCtxt<'tcx>) -> Box<Self> {
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if infcx.next_trait_solver() {
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Box::new(NextFulfillmentCtxt::new(infcx))
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} else {
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let new_solver_globally =
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infcx.tcx.sess.opts.unstable_opts.next_solver.map_or(false, |c| c.globally);
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assert!(
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!new_solver_globally,
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"using old solver even though new solver is enabled globally"
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);
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Box::new(FulfillmentContext::new(infcx))
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}
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}
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}
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/// Used if you want to have pleasant experience when dealing
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/// with obligations outside of hir or mir typeck.
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pub struct ObligationCtxt<'a, 'tcx> {
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pub infcx: &'a InferCtxt<'tcx>,
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engine: RefCell<Box<dyn TraitEngine<'tcx>>>,
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}
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impl<'a, 'tcx> ObligationCtxt<'a, 'tcx> {
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pub fn new(infcx: &'a InferCtxt<'tcx>) -> Self {
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Self { infcx, engine: RefCell::new(<dyn TraitEngine<'_>>::new(infcx)) }
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}
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pub fn register_obligation(&self, obligation: PredicateObligation<'tcx>) {
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self.engine.borrow_mut().register_predicate_obligation(self.infcx, obligation);
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}
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pub fn register_obligations(
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&self,
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obligations: impl IntoIterator<Item = PredicateObligation<'tcx>>,
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) {
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// Can't use `register_predicate_obligations` because the iterator
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// may also use this `ObligationCtxt`.
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for obligation in obligations {
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self.engine.borrow_mut().register_predicate_obligation(self.infcx, obligation)
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}
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}
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pub fn register_infer_ok_obligations<T>(&self, infer_ok: InferOk<'tcx, T>) -> T {
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let InferOk { value, obligations } = infer_ok;
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self.engine.borrow_mut().register_predicate_obligations(self.infcx, obligations);
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value
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}
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/// Requires that `ty` must implement the trait with `def_id` in
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/// the given environment. This trait must not have any type
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/// parameters (except for `Self`).
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pub fn register_bound(
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&self,
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cause: ObligationCause<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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ty: Ty<'tcx>,
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def_id: DefId,
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) {
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let tcx = self.infcx.tcx;
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let trait_ref = ty::TraitRef::new(tcx, def_id, [ty]);
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self.register_obligation(Obligation {
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cause,
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recursion_depth: 0,
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param_env,
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predicate: ty::Binder::dummy(trait_ref).to_predicate(tcx),
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});
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}
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pub fn normalize<T: TypeFoldable<TyCtxt<'tcx>>>(
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&self,
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cause: &ObligationCause<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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value: T,
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) -> T {
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let infer_ok = self.infcx.at(cause, param_env).normalize(value);
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self.register_infer_ok_obligations(infer_ok)
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}
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/// Makes `expected <: actual`.
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pub fn eq_exp<T>(
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&self,
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cause: &ObligationCause<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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a_is_expected: bool,
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a: T,
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b: T,
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) -> Result<(), TypeError<'tcx>>
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where
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T: ToTrace<'tcx>,
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{
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self.infcx
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.at(cause, param_env)
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.eq_exp(DefineOpaqueTypes::Yes, a_is_expected, a, b)
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.map(|infer_ok| self.register_infer_ok_obligations(infer_ok))
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}
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pub fn eq<T: ToTrace<'tcx>>(
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&self,
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cause: &ObligationCause<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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expected: T,
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actual: T,
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) -> Result<(), TypeError<'tcx>> {
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self.infcx
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.at(cause, param_env)
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.eq(DefineOpaqueTypes::Yes, expected, actual)
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.map(|infer_ok| self.register_infer_ok_obligations(infer_ok))
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}
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/// Checks whether `expected` is a subtype of `actual`: `expected <: actual`.
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pub fn sub<T: ToTrace<'tcx>>(
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&self,
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cause: &ObligationCause<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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expected: T,
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actual: T,
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) -> Result<(), TypeError<'tcx>> {
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self.infcx
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.at(cause, param_env)
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.sub(DefineOpaqueTypes::Yes, expected, actual)
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.map(|infer_ok| self.register_infer_ok_obligations(infer_ok))
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}
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pub fn relate<T: ToTrace<'tcx>>(
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&self,
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cause: &ObligationCause<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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variance: Variance,
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expected: T,
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actual: T,
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) -> Result<(), TypeError<'tcx>> {
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self.infcx
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.at(cause, param_env)
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.relate(DefineOpaqueTypes::Yes, expected, variance, actual)
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.map(|infer_ok| self.register_infer_ok_obligations(infer_ok))
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}
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/// Checks whether `expected` is a supertype of `actual`: `expected :> actual`.
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pub fn sup<T: ToTrace<'tcx>>(
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&self,
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cause: &ObligationCause<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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expected: T,
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actual: T,
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) -> Result<(), TypeError<'tcx>> {
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self.infcx
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.at(cause, param_env)
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.sup(DefineOpaqueTypes::Yes, expected, actual)
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.map(|infer_ok| self.register_infer_ok_obligations(infer_ok))
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}
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#[must_use]
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pub fn select_where_possible(&self) -> Vec<FulfillmentError<'tcx>> {
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self.engine.borrow_mut().select_where_possible(self.infcx)
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}
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#[must_use]
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pub fn select_all_or_error(&self) -> Vec<FulfillmentError<'tcx>> {
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self.engine.borrow_mut().select_all_or_error(self.infcx)
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}
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/// Resolves regions and reports errors.
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///
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/// Takes ownership of the context as doing trait solving afterwards
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/// will result in region constraints getting ignored.
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pub fn resolve_regions_and_report_errors(
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self,
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generic_param_scope: LocalDefId,
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outlives_env: &OutlivesEnvironment<'tcx>,
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) -> Result<(), ErrorGuaranteed> {
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let errors = self.infcx.resolve_regions(outlives_env);
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if errors.is_empty() {
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Ok(())
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} else {
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Err(self.infcx.err_ctxt().report_region_errors(generic_param_scope, &errors))
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}
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}
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pub fn assumed_wf_types_and_report_errors(
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&self,
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param_env: ty::ParamEnv<'tcx>,
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def_id: LocalDefId,
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) -> Result<FxIndexSet<Ty<'tcx>>, ErrorGuaranteed> {
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self.assumed_wf_types(param_env, def_id)
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.map_err(|errors| self.infcx.err_ctxt().report_fulfillment_errors(errors))
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}
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pub fn assumed_wf_types(
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&self,
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param_env: ty::ParamEnv<'tcx>,
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def_id: LocalDefId,
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) -> Result<FxIndexSet<Ty<'tcx>>, Vec<FulfillmentError<'tcx>>> {
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let tcx = self.infcx.tcx;
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let mut implied_bounds = FxIndexSet::default();
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let mut errors = Vec::new();
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for &(ty, span) in tcx.assumed_wf_types(def_id) {
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// FIXME(@lcnr): rustc currently does not check wf for types
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// pre-normalization, meaning that implied bounds are sometimes
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// incorrect. See #100910 for more details.
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//
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// Not adding the unnormalized types here mostly fixes that, except
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// that there are projections which are still ambiguous in the item definition
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// but do normalize successfully when using the item, see #98543.
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//
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// Anyways, I will hopefully soon change implied bounds to make all of this
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// sound and then uncomment this line again.
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// implied_bounds.insert(ty);
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let cause = ObligationCause::misc(span, def_id);
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match self
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.infcx
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.at(&cause, param_env)
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.deeply_normalize(ty, &mut **self.engine.borrow_mut())
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{
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// Insert well-formed types, ignoring duplicates.
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Ok(normalized) => drop(implied_bounds.insert(normalized)),
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Err(normalization_errors) => errors.extend(normalization_errors),
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};
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}
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if errors.is_empty() { Ok(implied_bounds) } else { Err(errors) }
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}
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pub fn make_canonicalized_query_response<T>(
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&self,
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inference_vars: CanonicalVarValues<'tcx>,
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answer: T,
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) -> Result<CanonicalQueryResponse<'tcx, T>, NoSolution>
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where
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T: Debug + TypeFoldable<TyCtxt<'tcx>>,
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Canonical<'tcx, QueryResponse<'tcx, T>>: ArenaAllocatable<'tcx>,
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{
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self.infcx.make_canonicalized_query_response(
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inference_vars,
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answer,
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&mut **self.engine.borrow_mut(),
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)
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}
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}
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