pub struct RustInterner<'tcx> {
    pub tcx: TyCtxt<'tcx>,
}

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§tcx: TyCtxt<'tcx>

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impl<'tcx> Clone for RustInterner<'tcx>

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fn clone(&self) -> RustInterner<'tcx>

Returns a copy of the value. Read more
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fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl Debug for RustInterner<'_>

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fn fmt(&self, f: &mut Formatter<'_>) -> Result

Formats the value using the given formatter. Read more
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impl<'tcx> HasInterner for RustInterner<'tcx>

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type Interner = RustInterner<'tcx>

The interner associated with the type.
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impl<'tcx> Hash for RustInterner<'tcx>

We don’t ever actually need this. It’s only required for derives.

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fn hash<H: Hasher>(&self, _state: &mut H)

Feeds this value into the given Hasher. Read more
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fn hash_slice<H>(data: &[Self], state: &mut H)where H: Hasher, Self: Sized,

Feeds a slice of this type into the given Hasher. Read more
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impl<'tcx> Interner for RustInterner<'tcx>

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type InternedType = Box<TyData<RustInterner<'tcx>>, Global>

“Interned” representation of types. In normal user code, Self::InternedType is not referenced. Instead, we refer to Ty<Self>, which wraps this type. Read more
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type InternedLifetime = Box<LifetimeData<RustInterner<'tcx>>, Global>

“Interned” representation of lifetimes. In normal user code, Self::InternedLifetime is not referenced. Instead, we refer to Lifetime<Self>, which wraps this type. Read more
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type InternedConst = Box<ConstData<RustInterner<'tcx>>, Global>

“Interned” representation of const expressions. In normal user code, Self::InternedConst is not referenced. Instead, we refer to Const<Self>, which wraps this type. Read more
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type InternedConcreteConst = ValTree<'tcx>

“Interned” representation of an evaluated const value. Self::InternedConcreteConst is not referenced. Instead, we refer to ConcreteConst<Self>, which wraps this type. Read more
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type InternedGenericArg = Box<GenericArgData<RustInterner<'tcx>>, Global>

“Interned” representation of a “generic parameter”, which can be either a type or a lifetime. In normal user code, Self::InternedGenericArg is not referenced. Instead, we refer to GenericArg<Self>, which wraps this type. Read more
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type InternedGoal = Box<GoalData<RustInterner<'tcx>>, Global>

“Interned” representation of a “goal”. In normal user code, Self::InternedGoal is not referenced. Instead, we refer to Goal<Self>, which wraps this type. Read more
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type InternedGoals = Vec<Goal<RustInterner<'tcx>>, Global>

“Interned” representation of a list of goals. In normal user code, Self::InternedGoals is not referenced. Instead, we refer to Goals<Self>, which wraps this type. Read more
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type InternedSubstitution = Vec<GenericArg<RustInterner<'tcx>>, Global>

“Interned” representation of a “substitution”. In normal user code, Self::InternedSubstitution is not referenced. Instead, we refer to Substitution<Self>, which wraps this type. Read more
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type InternedProgramClause = Box<ProgramClauseData<RustInterner<'tcx>>, Global>

“Interned” representation of a “program clause”. In normal user code, Self::InternedProgramClause is not referenced. Instead, we refer to ProgramClause<Self>, which wraps this type. Read more
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type InternedProgramClauses = Vec<ProgramClause<RustInterner<'tcx>>, Global>

“Interned” representation of a list of program clauses. In normal user code, Self::InternedProgramClauses is not referenced. Instead, we refer to ProgramClauses<Self>, which wraps this type. Read more
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type InternedQuantifiedWhereClauses = Vec<Binders<WhereClause<RustInterner<'tcx>>>, Global>

“Interned” representation of a list of quantified where clauses. In normal user code, Self::InternedQuantifiedWhereClauses is not referenced. Instead, we refer to QuantifiedWhereClauses<Self>, which wraps this type. Read more
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type InternedVariableKinds = Vec<VariableKind<RustInterner<'tcx>>, Global>

“Interned” representation of a list of variable kinds. In normal user code, Self::InternedVariableKinds is not referenced. Instead, we refer to VariableKinds<Self>, which wraps this type. Read more
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type InternedCanonicalVarKinds = Vec<WithKind<RustInterner<'tcx>, UniverseIndex>, Global>

“Interned” representation of a list of variable kinds with universe index. In normal user code, Self::InternedCanonicalVarKinds is not referenced. Instead, we refer to CanonicalVarKinds<Self>, which wraps this type. Read more
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type InternedVariances = Vec<Variance, Global>

“Interned” representation of a list of chalk_ir::Variance. In normal user code, Self::InternedVariances is not referenced. Instead, we refer to Variances<Self>, which wraps this type. Read more
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type InternedConstraints = Vec<InEnvironment<Constraint<RustInterner<'tcx>>>, Global>

“Interned” representation of a list of region constraints. In normal user code, Self::InternedConstraints is not referenced. Instead, we refer to Constraints<Self>, which wraps this type. Read more
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type DefId = DefId

The core “id” type used for trait-ids and the like.
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type InternedAdtId = AdtDef<'tcx>

The ID type for ADTs
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type Identifier = ()

Representation of identifiers.
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type FnAbi = Abi

Representation of function ABI (e.g. calling convention).
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fn debug_program_clause_implication( pci: &ProgramClauseImplication<Self>, fmt: &mut Formatter<'_> ) -> Option<Result>

Prints the debug representation of a ProgramClauseImplication. Returns None to fallback to the default debug output.
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fn debug_substitution( substitution: &Substitution<Self>, fmt: &mut Formatter<'_> ) -> Option<Result>

Prints the debug representation of a Substitution. Returns None to fallback to the default debug output.
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fn debug_separator_trait_ref( separator_trait_ref: &SeparatorTraitRef<'_, Self>, fmt: &mut Formatter<'_> ) -> Option<Result>

Prints the debug representation of a SeparatorTraitRef. Returns None to fallback to the default debug output.
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fn debug_quantified_where_clauses( clauses: &QuantifiedWhereClauses<Self>, fmt: &mut Formatter<'_> ) -> Option<Result>

Prints the debug representation of a QuantifiedWhereClauses. Returns None to fallback to the default debug output.
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fn debug_ty(ty: &Ty<Self>, fmt: &mut Formatter<'_>) -> Option<Result>

Prints the debug representation of a type. Returns None to fallback to the default debug output.
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fn debug_alias( alias_ty: &AliasTy<Self>, fmt: &mut Formatter<'_> ) -> Option<Result>

Prints the debug representation of an alias. To get good results, this requires inspecting TLS, and is difficult to code without reference to a specific interner (and hence fully known types). Read more
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fn debug_projection_ty( projection_ty: &ProjectionTy<Self>, fmt: &mut Formatter<'_> ) -> Option<Result>

Prints the debug representation of a ProjectionTy. Returns None to fallback to the default debug output.
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fn debug_opaque_ty( opaque_ty: &OpaqueTy<Self>, fmt: &mut Formatter<'_> ) -> Option<Result>

Prints the debug representation of an OpaqueTy. Returns None to fallback to the default debug output.
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fn intern_ty(self, ty: TyKind<Self>) -> Self::InternedType

Create an “interned” type from ty. This is not normally invoked directly; instead, you invoke TyKind::intern (which will ultimately call this method).
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fn ty_data(self, ty: &Self::InternedType) -> &TyData<Self>

Lookup the TyKind from an interned type.
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fn intern_lifetime(self, lifetime: LifetimeData<Self>) -> Self::InternedLifetime

Create an “interned” lifetime from lifetime. This is not normally invoked directly; instead, you invoke LifetimeData::intern (which will ultimately call this method).
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fn lifetime_data(self, lifetime: &Self::InternedLifetime) -> &LifetimeData<Self>

Lookup the LifetimeData that was interned to create a InternedLifetime.
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fn intern_const(self, constant: ConstData<Self>) -> Self::InternedConst

Create an “interned” const from const. This is not normally invoked directly; instead, you invoke ConstData::intern (which will ultimately call this method).
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fn const_data(self, constant: &Self::InternedConst) -> &ConstData<Self>

Lookup the ConstData that was interned to create a InternedConst.
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fn const_eq( self, _ty: &Self::InternedType, c1: &Self::InternedConcreteConst, c2: &Self::InternedConcreteConst ) -> bool

Determine whether two concrete const values are equal.
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fn intern_generic_arg( self, data: GenericArgData<Self> ) -> Self::InternedGenericArg

Create an “interned” parameter from data. This is not normally invoked directly; instead, you invoke GenericArgData::intern (which will ultimately call this method).
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fn generic_arg_data( self, data: &Self::InternedGenericArg ) -> &GenericArgData<Self>

Lookup the LifetimeData that was interned to create a InternedLifetime.
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fn intern_goal(self, goal: GoalData<Self>) -> Self::InternedGoal

Create an “interned” goal from data. This is not normally invoked directly; instead, you invoke GoalData::intern (which will ultimately call this method).
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fn goal_data(self, goal: &Self::InternedGoal) -> &GoalData<Self>

Lookup the GoalData that was interned to create a InternedGoal.
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fn intern_goals<E>( self, data: impl IntoIterator<Item = Result<Goal<Self>, E>> ) -> Result<Self::InternedGoals, E>

Create an “interned” goals from data. This is not normally invoked directly; instead, you invoke GoalsData::intern (which will ultimately call this method).
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fn goals_data(self, goals: &Self::InternedGoals) -> &[Goal<Self>]

Lookup the GoalsData that was interned to create a InternedGoals.
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fn intern_substitution<E>( self, data: impl IntoIterator<Item = Result<GenericArg<Self>, E>> ) -> Result<Self::InternedSubstitution, E>

Create an “interned” substitution from data. This is not normally invoked directly; instead, you invoke SubstitutionData::intern (which will ultimately call this method).
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fn substitution_data( self, substitution: &Self::InternedSubstitution ) -> &[GenericArg<Self>]

Lookup the SubstitutionData that was interned to create a InternedSubstitution.
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fn intern_program_clause( self, data: ProgramClauseData<Self> ) -> Self::InternedProgramClause

Create an “interned” program clause from data. This is not normally invoked directly; instead, you invoke ProgramClauseData::intern (which will ultimately call this method).
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fn program_clause_data( self, clause: &Self::InternedProgramClause ) -> &ProgramClauseData<Self>

Lookup the ProgramClauseData that was interned to create a ProgramClause.
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fn intern_program_clauses<E>( self, data: impl IntoIterator<Item = Result<ProgramClause<Self>, E>> ) -> Result<Self::InternedProgramClauses, E>

Create an “interned” program clauses from data. This is not normally invoked directly; instead, you invoke ProgramClauses::from_iter (which will ultimately call this method).
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fn program_clauses_data( self, clauses: &Self::InternedProgramClauses ) -> &[ProgramClause<Self>]

Lookup the ProgramClauseData that was interned to create a ProgramClause.
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fn intern_quantified_where_clauses<E>( self, data: impl IntoIterator<Item = Result<QuantifiedWhereClause<Self>, E>> ) -> Result<Self::InternedQuantifiedWhereClauses, E>

Create an “interned” quantified where clauses from data. This is not normally invoked directly; instead, you invoke QuantifiedWhereClauses::from_iter (which will ultimately call this method).
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fn quantified_where_clauses_data( self, clauses: &Self::InternedQuantifiedWhereClauses ) -> &[QuantifiedWhereClause<Self>]

Lookup the slice of QuantifiedWhereClause that was interned to create a QuantifiedWhereClauses.
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fn intern_generic_arg_kinds<E>( self, data: impl IntoIterator<Item = Result<VariableKind<Self>, E>> ) -> Result<Self::InternedVariableKinds, E>

Create an “interned” parameter kinds from data. This is not normally invoked directly; instead, you invoke VariableKinds::from_iter (which will ultimately call this method).
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fn variable_kinds_data( self, parameter_kinds: &Self::InternedVariableKinds ) -> &[VariableKind<Self>]

Lookup the slice of VariableKinds that was interned to create a VariableKinds.
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fn intern_canonical_var_kinds<E>( self, data: impl IntoIterator<Item = Result<CanonicalVarKind<Self>, E>> ) -> Result<Self::InternedCanonicalVarKinds, E>

Create “interned” variable kinds with universe index from data. This is not normally invoked directly; instead, you invoke CanonicalVarKinds::from_iter (which will ultimately call this method).
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fn canonical_var_kinds_data( self, canonical_var_kinds: &Self::InternedCanonicalVarKinds ) -> &[CanonicalVarKind<Self>]

Lookup the slice of CanonicalVariableKind that was interned to create a CanonicalVariableKinds.
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fn intern_constraints<E>( self, data: impl IntoIterator<Item = Result<InEnvironment<Constraint<Self>>, E>> ) -> Result<Self::InternedConstraints, E>

Create “interned” constraints from data. This is not normally invoked dirctly; instead, you invoke Constraints::from_iter (which will ultimately call this method).
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fn constraints_data( self, constraints: &Self::InternedConstraints ) -> &[InEnvironment<Constraint<Self>>]

Lookup the slice of Constraint that was interned to create a Constraints.
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fn intern_variances<E>( self, data: impl IntoIterator<Item = Result<Variance, E>> ) -> Result<Self::InternedVariances, E>

Create “interned” variances from data. This is not normally invoked directly; instead, you invoke Variances::from (which will ultimately call this method).
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fn variances_data(self, variances: &Self::InternedVariances) -> &[Variance]

Lookup the slice of Variance that was interned to create a Variances.
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fn debug_adt_id( adt_id: AdtId<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a type-kind-id. Returns None to fallback to the default debug output.
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fn debug_trait_id( trait_id: TraitId<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a type-kind-id. Returns None to fallback to the default debug output (e.g., if no info about current program is available from TLS).
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fn debug_assoc_type_id( type_id: AssocTypeId<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a type-kind-id. Returns None to fallback to the default debug output.
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fn debug_opaque_ty_id( opaque_ty_id: OpaqueTyId<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of an opaque type. Returns None to fallback to the default debug output.
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fn debug_fn_def_id( fn_def_id: FnDefId<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a function-def-id. Returns None to fallback to the default debug output.
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fn debug_closure_id( fn_def_id: ClosureId<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a closure id. Returns None to fallback to the default debug output.
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fn debug_foreign_def_id( foreign_def_id: ForeignDefId<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a foreign-def-id. Returns None to fallback to the default debug output.
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fn debug_generator_id( generator_id: GeneratorId<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of an alias. Returns None to fallback to the default debug output.
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fn debug_lifetime( lifetime: &Lifetime<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a lifetime. Returns None to fallback to the default debug output.
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fn debug_const( constant: &Const<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a const. Returns None to fallback to the default debug output.
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fn debug_generic_arg( generic_arg: &GenericArg<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of an parameter. Returns None to fallback to the default debug output.
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fn debug_variable_kinds( variable_kinds: &VariableKinds<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a parameter kinds list. Returns None to fallback to the default debug output.
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fn debug_variable_kinds_with_angles( variable_kinds: &VariableKinds<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a parameter kinds list, with angle brackets. Returns None to fallback to the default debug output.
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fn debug_canonical_var_kinds( canonical_var_kinds: &CanonicalVarKinds<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of an parameter kinds list with universe index. Returns None to fallback to the default debug output.
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fn debug_goal( goal: &Goal<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of an goal. Returns None to fallback to the default debug output.
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fn debug_goals( goals: &Goals<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a list of goals. Returns None to fallback to the default debug output.
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fn debug_program_clause( clause: &ProgramClause<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a ProgramClause. Returns None to fallback to the default debug output.
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fn debug_program_clauses( clauses: &ProgramClauses<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a ProgramClauses. Returns None to fallback to the default debug output.
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fn debug_constraints( clauses: &Constraints<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a Constraints. Returns None to fallback to the default debug output.
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fn debug_variances( variances: &Variances<Self>, fmt: &mut Formatter<'_> ) -> Option<Result<(), Error>>

Prints the debug representation of a Variances. Returns None to fallback to the default debug output.
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impl<'tcx> Ord for RustInterner<'tcx>

We don’t ever actually need this. It’s only required for derives.

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fn cmp(&self, _other: &Self) -> Ordering

This method returns an Ordering between self and other. Read more
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fn max(self, other: Self) -> Selfwhere Self: Sized,

Compares and returns the maximum of two values. Read more
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fn min(self, other: Self) -> Selfwhere Self: Sized,

Compares and returns the minimum of two values. Read more
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fn clamp(self, min: Self, max: Self) -> Selfwhere Self: Sized + PartialOrd<Self>,

Restrict a value to a certain interval. Read more
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impl<'tcx> PartialEq<RustInterner<'tcx>> for RustInterner<'tcx>

We don’t ever actually need this. It’s only required for derives.

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fn eq(&self, _other: &Self) -> bool

This method tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

This method tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl<'tcx> PartialOrd<RustInterner<'tcx>> for RustInterner<'tcx>

We don’t ever actually need this. It’s only required for derives.

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fn partial_cmp(&self, _other: &Self) -> Option<Ordering>

This method returns an ordering between self and other values if one exists. Read more
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fn lt(&self, other: &Rhs) -> bool

This method tests less than (for self and other) and is used by the < operator. Read more
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fn le(&self, other: &Rhs) -> bool

This method tests less than or equal to (for self and other) and is used by the <= operator. Read more
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fn gt(&self, other: &Rhs) -> bool

This method tests greater than (for self and other) and is used by the > operator. Read more
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fn ge(&self, other: &Rhs) -> bool

This method tests greater than or equal to (for self and other) and is used by the >= operator. Read more
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impl<'tcx> Copy for RustInterner<'tcx>

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impl<'tcx> Eq for RustInterner<'tcx>

We don’t ever actually need this. It’s only required for derives.

Auto Trait Implementations§

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impl<'tcx> !RefUnwindSafe for RustInterner<'tcx>

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impl<'tcx> !Send for RustInterner<'tcx>

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impl<'tcx> !Sync for RustInterner<'tcx>

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impl<'tcx> Unpin for RustInterner<'tcx>

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impl<'tcx> !UnwindSafe for RustInterner<'tcx>

Blanket Implementations§

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impl<T> Aligned for T

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const ALIGN: Alignment = Alignment::of::<Self>()

Alignment of Self.
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impl<T> Any for Twhere T: 'static + ?Sized,

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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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impl<'tcx, T> ArenaAllocatable<'tcx, IsCopy> for Twhere T: Copy,

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fn allocate_on<'a>(self, arena: &'a Arena<'tcx>) -> &'a mut T

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fn allocate_from_iter<'a>( arena: &'a Arena<'tcx>, iter: impl IntoIterator<Item = T> ) -> &'a mut [T]

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impl<T> AsAny for Twhere T: Any,

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fn as_any(&self) -> &(dyn Any + 'static)

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impl<T> Borrow<T> for Twhere T: ?Sized,

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fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
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impl<T> BorrowMut<T> for Twhere T: ?Sized,

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fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
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impl<T, R> CollectAndApply<T, R> for T

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fn collect_and_apply<I, F>(iter: I, f: F) -> Rwhere I: Iterator<Item = T>, F: FnOnce(&[T]) -> R,

Equivalent to f(&iter.collect::<Vec<_>>()).

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type Output = R

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impl<T> From<T> for T

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fn from(t: T) -> T

Returns the argument unchanged.

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impl<T, U> Into<U> for Twhere U: From<T>,

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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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impl<P> IntoQueryParam<P> for P

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impl<T> MaybeResult<T> for T

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type Error = !

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fn from(_: Result<T, <T as MaybeResult<T>>::Error>) -> T

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fn to_result(self) -> Result<T, <T as MaybeResult<T>>::Error>

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impl<T> ToOwned for Twhere T: Clone,

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type Owned = T

The resulting type after obtaining ownership.
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fn to_owned(&self) -> T

Creates owned data from borrowed data, usually by cloning. Read more
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fn clone_into(&self, target: &mut T)

Uses borrowed data to replace owned data, usually by cloning. Read more
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impl<'tcx, T> ToPredicate<'tcx, T> for T

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fn to_predicate(self, _tcx: TyCtxt<'tcx>) -> T

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impl<T, U> TryFrom<U> for Twhere U: Into<T>,

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type Error = Infallible

The type returned in the event of a conversion error.
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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<T, U> TryInto<U> for Twhere U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.
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impl<Tcx, T, D> Value<Tcx, D> for Twhere Tcx: DepContext, D: DepKind,

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default fn from_cycle_error(tcx: Tcx, _: &[QueryInfo<D>]) -> T

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Note: Most layout information is completely unstable and may even differ between compilations. The only exception is types with certain repr(...) attributes. Please see the Rust Reference’s “Type Layout” chapter for details on type layout guarantees.

Size:8 bytes