mirror of
https://github.com/rust-lang/rust-analyzer
synced 2024-12-30 23:09:11 +00:00
759 lines
30 KiB
Rust
759 lines
30 KiB
Rust
//! The implementation of `RustIrDatabase` for Chalk, which provides information
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//! about the code that Chalk needs.
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use std::sync::Arc;
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use cov_mark::hit;
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use log::debug;
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use chalk_ir::{cast::Cast, fold::shift::Shift, CanonicalVarKinds};
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use chalk_solve::rust_ir::{self, OpaqueTyDatumBound, WellKnownTrait};
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use base_db::CrateId;
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use hir_def::{
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lang_item::{lang_attr, LangItemTarget},
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AssocContainerId, AssocItemId, GenericDefId, HasModule, Lookup, ModuleId, TypeAliasId,
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};
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use hir_expand::name::name;
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use crate::{
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db::HirDatabase,
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display::HirDisplay,
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from_assoc_type_id, from_chalk_trait_id, from_foreign_def_id, make_only_type_binders,
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mapping::{from_chalk, ToChalk, TypeAliasAsValue},
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method_resolution::{TraitImpls, TyFingerprint, ALL_FLOAT_FPS, ALL_INT_FPS},
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to_assoc_type_id, to_chalk_trait_id,
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traits::ChalkContext,
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utils::generics,
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AliasEq, AliasTy, BoundVar, CallableDefId, DebruijnIndex, FnDefId, Interner, ProjectionTy,
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ProjectionTyExt, QuantifiedWhereClause, Substitution, TraitRef, TraitRefExt, Ty, TyBuilder,
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TyExt, TyKind, WhereClause,
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};
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pub(crate) type AssociatedTyDatum = chalk_solve::rust_ir::AssociatedTyDatum<Interner>;
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pub(crate) type TraitDatum = chalk_solve::rust_ir::TraitDatum<Interner>;
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pub(crate) type StructDatum = chalk_solve::rust_ir::AdtDatum<Interner>;
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pub(crate) type ImplDatum = chalk_solve::rust_ir::ImplDatum<Interner>;
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pub(crate) type OpaqueTyDatum = chalk_solve::rust_ir::OpaqueTyDatum<Interner>;
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pub(crate) type AssocTypeId = chalk_ir::AssocTypeId<Interner>;
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pub(crate) type TraitId = chalk_ir::TraitId<Interner>;
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pub(crate) type AdtId = chalk_ir::AdtId<Interner>;
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pub(crate) type ImplId = chalk_ir::ImplId<Interner>;
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pub(crate) type AssociatedTyValueId = chalk_solve::rust_ir::AssociatedTyValueId<Interner>;
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pub(crate) type AssociatedTyValue = chalk_solve::rust_ir::AssociatedTyValue<Interner>;
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pub(crate) type FnDefDatum = chalk_solve::rust_ir::FnDefDatum<Interner>;
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pub(crate) type Variances = chalk_ir::Variances<Interner>;
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impl<'a> chalk_solve::RustIrDatabase<Interner> for ChalkContext<'a> {
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fn associated_ty_data(&self, id: AssocTypeId) -> Arc<AssociatedTyDatum> {
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self.db.associated_ty_data(id)
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}
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fn trait_datum(&self, trait_id: TraitId) -> Arc<TraitDatum> {
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self.db.trait_datum(self.krate, trait_id)
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}
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fn adt_datum(&self, struct_id: AdtId) -> Arc<StructDatum> {
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self.db.struct_datum(self.krate, struct_id)
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}
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fn adt_repr(&self, _struct_id: AdtId) -> Arc<rust_ir::AdtRepr<Interner>> {
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// FIXME: keep track of these
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Arc::new(rust_ir::AdtRepr { c: false, packed: false, int: None })
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}
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fn discriminant_type(&self, _ty: chalk_ir::Ty<Interner>) -> chalk_ir::Ty<Interner> {
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// FIXME: keep track of this
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chalk_ir::TyKind::Scalar(chalk_ir::Scalar::Uint(chalk_ir::UintTy::U32)).intern(&Interner)
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}
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fn impl_datum(&self, impl_id: ImplId) -> Arc<ImplDatum> {
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self.db.impl_datum(self.krate, impl_id)
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}
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fn fn_def_datum(
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&self,
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fn_def_id: chalk_ir::FnDefId<Interner>,
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) -> Arc<rust_ir::FnDefDatum<Interner>> {
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self.db.fn_def_datum(self.krate, fn_def_id)
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}
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fn impls_for_trait(
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&self,
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trait_id: TraitId,
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parameters: &[chalk_ir::GenericArg<Interner>],
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binders: &CanonicalVarKinds<Interner>,
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) -> Vec<ImplId> {
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debug!("impls_for_trait {:?}", trait_id);
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let trait_: hir_def::TraitId = from_chalk_trait_id(trait_id);
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let ty: Ty = parameters[0].assert_ty_ref(&Interner).clone();
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fn binder_kind(
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ty: &Ty,
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binders: &CanonicalVarKinds<Interner>,
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) -> Option<chalk_ir::TyVariableKind> {
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if let TyKind::BoundVar(bv) = ty.kind(&Interner) {
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let binders = binders.as_slice(&Interner);
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if bv.debruijn == DebruijnIndex::INNERMOST {
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if let chalk_ir::VariableKind::Ty(tk) = binders[bv.index].kind {
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return Some(tk);
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}
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}
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}
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None
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}
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let self_ty_fp = TyFingerprint::for_trait_impl(&ty);
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let fps: &[TyFingerprint] = match binder_kind(&ty, binders) {
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Some(chalk_ir::TyVariableKind::Integer) => &ALL_INT_FPS,
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Some(chalk_ir::TyVariableKind::Float) => &ALL_FLOAT_FPS,
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_ => self_ty_fp.as_ref().map(std::slice::from_ref).unwrap_or(&[]),
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};
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fn local_impls(db: &dyn HirDatabase, module: ModuleId) -> Option<Arc<TraitImpls>> {
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let block = module.containing_block()?;
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hit!(block_local_impls);
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db.trait_impls_in_block(block)
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}
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// Note: Since we're using impls_for_trait, only impls where the trait
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// can be resolved should ever reach Chalk. impl_datum relies on that
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// and will panic if the trait can't be resolved.
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let in_deps = self.db.trait_impls_in_deps(self.krate);
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let in_self = self.db.trait_impls_in_crate(self.krate);
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let trait_module = trait_.module(self.db.upcast());
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let type_module = match self_ty_fp {
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Some(TyFingerprint::Adt(adt_id)) => Some(adt_id.module(self.db.upcast())),
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Some(TyFingerprint::ForeignType(type_id)) => {
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Some(from_foreign_def_id(type_id).module(self.db.upcast()))
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}
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Some(TyFingerprint::Dyn(trait_id)) => Some(trait_id.module(self.db.upcast())),
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_ => None,
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};
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let impl_maps = [
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Some(in_deps),
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Some(in_self),
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local_impls(self.db, trait_module),
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type_module.and_then(|m| local_impls(self.db, m)),
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];
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let id_to_chalk = |id: hir_def::ImplId| id.to_chalk(self.db);
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let result: Vec<_> = if fps.is_empty() {
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debug!("Unrestricted search for {:?} impls...", trait_);
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impl_maps
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.iter()
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.filter_map(|o| o.as_ref())
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.flat_map(|impls| impls.for_trait(trait_).map(id_to_chalk))
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.collect()
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} else {
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impl_maps
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.iter()
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.filter_map(|o| o.as_ref())
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.flat_map(|impls| {
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fps.iter().flat_map(move |fp| {
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impls.for_trait_and_self_ty(trait_, *fp).map(id_to_chalk)
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})
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})
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.collect()
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};
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debug!("impls_for_trait returned {} impls", result.len());
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result
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}
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fn impl_provided_for(&self, auto_trait_id: TraitId, kind: &chalk_ir::TyKind<Interner>) -> bool {
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debug!("impl_provided_for {:?}, {:?}", auto_trait_id, kind);
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false // FIXME
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}
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fn associated_ty_value(&self, id: AssociatedTyValueId) -> Arc<AssociatedTyValue> {
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self.db.associated_ty_value(self.krate, id)
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}
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fn custom_clauses(&self) -> Vec<chalk_ir::ProgramClause<Interner>> {
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vec![]
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}
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fn local_impls_to_coherence_check(&self, _trait_id: TraitId) -> Vec<ImplId> {
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// We don't do coherence checking (yet)
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unimplemented!()
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}
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fn interner(&self) -> &Interner {
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&Interner
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}
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fn well_known_trait_id(
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&self,
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well_known_trait: rust_ir::WellKnownTrait,
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) -> Option<chalk_ir::TraitId<Interner>> {
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let lang_attr = lang_attr_from_well_known_trait(well_known_trait);
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let trait_ = match self.db.lang_item(self.krate, lang_attr.into()) {
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Some(LangItemTarget::TraitId(trait_)) => trait_,
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_ => return None,
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};
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Some(to_chalk_trait_id(trait_))
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}
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fn program_clauses_for_env(
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&self,
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environment: &chalk_ir::Environment<Interner>,
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) -> chalk_ir::ProgramClauses<Interner> {
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self.db.program_clauses_for_chalk_env(self.krate, environment.clone())
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}
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fn opaque_ty_data(&self, id: chalk_ir::OpaqueTyId<Interner>) -> Arc<OpaqueTyDatum> {
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let full_id = self.db.lookup_intern_impl_trait_id(id.into());
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let bound = match full_id {
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crate::ImplTraitId::ReturnTypeImplTrait(func, idx) => {
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let datas = self
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.db
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.return_type_impl_traits(func)
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.expect("impl trait id without impl traits");
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let (datas, binders) = (*datas).as_ref().into_value_and_skipped_binders();
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let data = &datas.impl_traits[idx as usize];
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let bound = OpaqueTyDatumBound {
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bounds: make_only_type_binders(
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1,
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data.bounds.skip_binders().iter().cloned().collect(),
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),
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where_clauses: make_only_type_binders(0, vec![]),
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};
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chalk_ir::Binders::new(binders, bound)
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}
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crate::ImplTraitId::AsyncBlockTypeImplTrait(..) => {
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if let Some((future_trait, future_output)) = self
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.db
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.lang_item(self.krate, "future_trait".into())
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.and_then(|item| item.as_trait())
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.and_then(|trait_| {
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let alias =
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self.db.trait_data(trait_).associated_type_by_name(&name![Output])?;
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Some((trait_, alias))
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})
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{
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// Making up Symbol’s value as variable is void: AsyncBlock<T>:
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//
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// |--------------------OpaqueTyDatum-------------------|
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// |-------------OpaqueTyDatumBound--------------|
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// for<T> <Self> [Future<Self>, Future::Output<Self> = T]
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// ^1 ^0 ^0 ^0 ^1
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let impl_bound = WhereClause::Implemented(TraitRef {
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trait_id: to_chalk_trait_id(future_trait),
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// Self type as the first parameter.
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substitution: Substitution::from1(
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&Interner,
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TyKind::BoundVar(BoundVar {
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debruijn: DebruijnIndex::INNERMOST,
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index: 0,
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})
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.intern(&Interner),
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),
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});
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let proj_bound = WhereClause::AliasEq(AliasEq {
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alias: AliasTy::Projection(ProjectionTy {
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associated_ty_id: to_assoc_type_id(future_output),
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// Self type as the first parameter.
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substitution: Substitution::from1(
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&Interner,
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TyKind::BoundVar(BoundVar::new(DebruijnIndex::INNERMOST, 0))
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.intern(&Interner),
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),
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}),
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// The parameter of the opaque type.
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ty: TyKind::BoundVar(BoundVar { debruijn: DebruijnIndex::ONE, index: 0 })
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.intern(&Interner),
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});
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let bound = OpaqueTyDatumBound {
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bounds: make_only_type_binders(
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1,
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vec![
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crate::wrap_empty_binders(impl_bound),
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crate::wrap_empty_binders(proj_bound),
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],
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),
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where_clauses: make_only_type_binders(0, vec![]),
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};
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// The opaque type has 1 parameter.
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make_only_type_binders(1, bound)
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} else {
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// If failed to find Symbol’s value as variable is void: Future::Output, return empty bounds as fallback.
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let bound = OpaqueTyDatumBound {
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bounds: make_only_type_binders(0, vec![]),
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where_clauses: make_only_type_binders(0, vec![]),
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};
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// The opaque type has 1 parameter.
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make_only_type_binders(1, bound)
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}
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}
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};
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Arc::new(OpaqueTyDatum { opaque_ty_id: id, bound })
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}
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fn hidden_opaque_type(&self, _id: chalk_ir::OpaqueTyId<Interner>) -> chalk_ir::Ty<Interner> {
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// FIXME: actually provide the hidden type; it is relevant for auto traits
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TyKind::Error.intern(&Interner)
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}
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fn is_object_safe(&self, _trait_id: chalk_ir::TraitId<Interner>) -> bool {
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// FIXME: implement actual object safety
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true
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}
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fn closure_kind(
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&self,
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_closure_id: chalk_ir::ClosureId<Interner>,
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_substs: &chalk_ir::Substitution<Interner>,
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) -> rust_ir::ClosureKind {
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// Fn is the closure kind that implements all three traits
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rust_ir::ClosureKind::Fn
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}
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fn closure_inputs_and_output(
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&self,
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_closure_id: chalk_ir::ClosureId<Interner>,
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substs: &chalk_ir::Substitution<Interner>,
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) -> chalk_ir::Binders<rust_ir::FnDefInputsAndOutputDatum<Interner>> {
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let sig_ty = substs.at(&Interner, 0).assert_ty_ref(&Interner).clone();
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let sig = &sig_ty.callable_sig(self.db).expect("first closure param should be fn ptr");
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let io = rust_ir::FnDefInputsAndOutputDatum {
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argument_types: sig.params().iter().cloned().collect(),
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return_type: sig.ret().clone(),
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};
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make_only_type_binders(0, io.shifted_in(&Interner))
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}
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fn closure_upvars(
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&self,
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_closure_id: chalk_ir::ClosureId<Interner>,
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_substs: &chalk_ir::Substitution<Interner>,
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) -> chalk_ir::Binders<chalk_ir::Ty<Interner>> {
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let ty = TyBuilder::unit();
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make_only_type_binders(0, ty)
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}
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fn closure_fn_substitution(
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&self,
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_closure_id: chalk_ir::ClosureId<Interner>,
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_substs: &chalk_ir::Substitution<Interner>,
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) -> chalk_ir::Substitution<Interner> {
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Substitution::empty(&Interner)
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}
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fn trait_name(&self, trait_id: chalk_ir::TraitId<Interner>) -> String {
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let id = from_chalk_trait_id(trait_id);
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self.db.trait_data(id).name.to_string()
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}
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fn adt_name(&self, chalk_ir::AdtId(adt_id): AdtId) -> String {
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match adt_id {
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hir_def::AdtId::StructId(id) => self.db.struct_data(id).name.to_string(),
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hir_def::AdtId::EnumId(id) => self.db.enum_data(id).name.to_string(),
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hir_def::AdtId::UnionId(id) => self.db.union_data(id).name.to_string(),
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}
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}
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fn assoc_type_name(&self, assoc_ty_id: chalk_ir::AssocTypeId<Interner>) -> String {
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let id = self.db.associated_ty_data(assoc_ty_id).name;
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self.db.type_alias_data(id).name.to_string()
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}
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fn opaque_type_name(&self, opaque_ty_id: chalk_ir::OpaqueTyId<Interner>) -> String {
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format!("Opaque_{}", opaque_ty_id.0)
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}
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fn fn_def_name(&self, fn_def_id: chalk_ir::FnDefId<Interner>) -> String {
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format!("fn_{}", fn_def_id.0)
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}
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fn generator_datum(
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&self,
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_: chalk_ir::GeneratorId<Interner>,
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) -> std::sync::Arc<chalk_solve::rust_ir::GeneratorDatum<Interner>> {
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// FIXME
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unimplemented!()
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}
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fn generator_witness_datum(
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&self,
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_: chalk_ir::GeneratorId<Interner>,
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) -> std::sync::Arc<chalk_solve::rust_ir::GeneratorWitnessDatum<Interner>> {
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// FIXME
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unimplemented!()
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}
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fn unification_database(&self) -> &dyn chalk_ir::UnificationDatabase<Interner> {
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&self.db
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}
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}
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impl<'a> chalk_ir::UnificationDatabase<Interner> for &'a dyn HirDatabase {
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fn fn_def_variance(
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&self,
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fn_def_id: chalk_ir::FnDefId<Interner>,
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) -> chalk_ir::Variances<Interner> {
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HirDatabase::fn_def_variance(*self, fn_def_id)
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}
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fn adt_variance(&self, adt_id: chalk_ir::AdtId<Interner>) -> chalk_ir::Variances<Interner> {
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HirDatabase::adt_variance(*self, adt_id)
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}
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}
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pub(crate) fn program_clauses_for_chalk_env_query(
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db: &dyn HirDatabase,
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krate: CrateId,
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environment: chalk_ir::Environment<Interner>,
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) -> chalk_ir::ProgramClauses<Interner> {
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chalk_solve::program_clauses_for_env(&ChalkContext { db, krate }, &environment)
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}
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pub(crate) fn associated_ty_data_query(
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db: &dyn HirDatabase,
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id: AssocTypeId,
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) -> Arc<AssociatedTyDatum> {
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debug!("associated_ty_data {:?}", id);
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let type_alias: TypeAliasId = from_assoc_type_id(id);
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let trait_ = match type_alias.lookup(db.upcast()).container {
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AssocContainerId::TraitId(t) => t,
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_ => panic!("associated type not in trait"),
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};
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// Lower bounds -- we could/should maybe move this to a separate query in `lower`
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let type_alias_data = db.type_alias_data(type_alias);
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let generic_params = generics(db.upcast(), type_alias.into());
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// let bound_vars = generic_params.bound_vars_subst(DebruijnIndex::INNERMOST);
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let resolver = hir_def::resolver::HasResolver::resolver(type_alias, db.upcast());
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let ctx = crate::TyLoweringContext::new(db, &resolver)
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.with_type_param_mode(crate::lower::TypeParamLoweringMode::Variable);
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let self_ty =
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TyKind::BoundVar(BoundVar::new(crate::DebruijnIndex::INNERMOST, 0)).intern(&Interner);
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let bounds = type_alias_data
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.bounds
|
||
.iter()
|
||
.flat_map(|bound| ctx.lower_type_bound(bound, self_ty.clone(), false))
|
||
.filter_map(|pred| generic_predicate_to_inline_bound(db, &pred, &self_ty))
|
||
.collect();
|
||
|
||
// FIXME: Re-enable where clauses on associated types when an upstream chalk bug is fixed.
|
||
// (rust-analyzer#9052)
|
||
// let where_clauses = convert_where_clauses(db, type_alias.into(), &bound_vars);
|
||
let bound_data = rust_ir::AssociatedTyDatumBound { bounds, where_clauses: vec![] };
|
||
let datum = AssociatedTyDatum {
|
||
trait_id: to_chalk_trait_id(trait_),
|
||
id,
|
||
name: type_alias,
|
||
binders: make_only_type_binders(generic_params.len(), bound_data),
|
||
};
|
||
Arc::new(datum)
|
||
}
|
||
|
||
pub(crate) fn trait_datum_query(
|
||
db: &dyn HirDatabase,
|
||
krate: CrateId,
|
||
trait_id: TraitId,
|
||
) -> Arc<TraitDatum> {
|
||
debug!("trait_datum {:?}", trait_id);
|
||
let trait_ = from_chalk_trait_id(trait_id);
|
||
let trait_data = db.trait_data(trait_);
|
||
debug!("trait {:?} = {:?}", trait_id, trait_data.name);
|
||
let generic_params = generics(db.upcast(), trait_.into());
|
||
let bound_vars = generic_params.bound_vars_subst(DebruijnIndex::INNERMOST);
|
||
let flags = rust_ir::TraitFlags {
|
||
auto: trait_data.is_auto,
|
||
upstream: trait_.lookup(db.upcast()).container.krate() != krate,
|
||
non_enumerable: true,
|
||
coinductive: false, // only relevant for Chalk testing
|
||
// FIXME: set these flags correctly
|
||
marker: false,
|
||
fundamental: false,
|
||
};
|
||
let where_clauses = convert_where_clauses(db, trait_.into(), &bound_vars);
|
||
let associated_ty_ids = trait_data.associated_types().map(to_assoc_type_id).collect();
|
||
let trait_datum_bound = rust_ir::TraitDatumBound { where_clauses };
|
||
let well_known =
|
||
lang_attr(db.upcast(), trait_).and_then(|name| well_known_trait_from_lang_attr(&name));
|
||
let trait_datum = TraitDatum {
|
||
id: trait_id,
|
||
binders: make_only_type_binders(bound_vars.len(&Interner), trait_datum_bound),
|
||
flags,
|
||
associated_ty_ids,
|
||
well_known,
|
||
};
|
||
Arc::new(trait_datum)
|
||
}
|
||
|
||
fn well_known_trait_from_lang_attr(name: &str) -> Option<WellKnownTrait> {
|
||
Some(match name {
|
||
"sized" => WellKnownTrait::Sized,
|
||
"copy" => WellKnownTrait::Copy,
|
||
"clone" => WellKnownTrait::Clone,
|
||
"drop" => WellKnownTrait::Drop,
|
||
"fn_once" => WellKnownTrait::FnOnce,
|
||
"fn_mut" => WellKnownTrait::FnMut,
|
||
"fn" => WellKnownTrait::Fn,
|
||
"unsize" => WellKnownTrait::Unsize,
|
||
"coerce_unsized" => WellKnownTrait::CoerceUnsized,
|
||
"discriminant_kind" => WellKnownTrait::DiscriminantKind,
|
||
_ => return None,
|
||
})
|
||
}
|
||
|
||
fn lang_attr_from_well_known_trait(attr: WellKnownTrait) -> &'static str {
|
||
match attr {
|
||
WellKnownTrait::Sized => "sized",
|
||
WellKnownTrait::Copy => "copy",
|
||
WellKnownTrait::Clone => "clone",
|
||
WellKnownTrait::Drop => "drop",
|
||
WellKnownTrait::FnOnce => "fn_once",
|
||
WellKnownTrait::FnMut => "fn_mut",
|
||
WellKnownTrait::Fn => "fn",
|
||
WellKnownTrait::Unsize => "unsize",
|
||
WellKnownTrait::Unpin => "unpin",
|
||
WellKnownTrait::CoerceUnsized => "coerce_unsized",
|
||
WellKnownTrait::DiscriminantKind => "discriminant_kind",
|
||
}
|
||
}
|
||
|
||
pub(crate) fn struct_datum_query(
|
||
db: &dyn HirDatabase,
|
||
krate: CrateId,
|
||
struct_id: AdtId,
|
||
) -> Arc<StructDatum> {
|
||
debug!("struct_datum {:?}", struct_id);
|
||
let chalk_ir::AdtId(adt_id) = struct_id;
|
||
let num_params = generics(db.upcast(), adt_id.into()).len();
|
||
let upstream = adt_id.module(db.upcast()).krate() != krate;
|
||
let where_clauses = {
|
||
let generic_params = generics(db.upcast(), adt_id.into());
|
||
let bound_vars = generic_params.bound_vars_subst(DebruijnIndex::INNERMOST);
|
||
convert_where_clauses(db, adt_id.into(), &bound_vars)
|
||
};
|
||
let flags = rust_ir::AdtFlags {
|
||
upstream,
|
||
// FIXME set fundamental and phantom_data flags correctly
|
||
fundamental: false,
|
||
phantom_data: false,
|
||
};
|
||
// FIXME provide enum variants properly (for auto traits)
|
||
let variant = rust_ir::AdtVariantDatum {
|
||
fields: Vec::new(), // FIXME add fields (only relevant for auto traits),
|
||
};
|
||
let struct_datum_bound = rust_ir::AdtDatumBound { variants: vec![variant], where_clauses };
|
||
let struct_datum = StructDatum {
|
||
// FIXME set ADT kind
|
||
kind: rust_ir::AdtKind::Struct,
|
||
id: struct_id,
|
||
binders: make_only_type_binders(num_params, struct_datum_bound),
|
||
flags,
|
||
};
|
||
Arc::new(struct_datum)
|
||
}
|
||
|
||
pub(crate) fn impl_datum_query(
|
||
db: &dyn HirDatabase,
|
||
krate: CrateId,
|
||
impl_id: ImplId,
|
||
) -> Arc<ImplDatum> {
|
||
let _p = profile::span("impl_datum");
|
||
debug!("impl_datum {:?}", impl_id);
|
||
let impl_: hir_def::ImplId = from_chalk(db, impl_id);
|
||
impl_def_datum(db, krate, impl_id, impl_)
|
||
}
|
||
|
||
fn impl_def_datum(
|
||
db: &dyn HirDatabase,
|
||
krate: CrateId,
|
||
chalk_id: ImplId,
|
||
impl_id: hir_def::ImplId,
|
||
) -> Arc<ImplDatum> {
|
||
let trait_ref = db
|
||
.impl_trait(impl_id)
|
||
// ImplIds for impls where the trait ref can't be resolved should never reach Chalk
|
||
.expect("invalid impl passed to Chalk")
|
||
.into_value_and_skipped_binders()
|
||
.0;
|
||
let impl_data = db.impl_data(impl_id);
|
||
|
||
let generic_params = generics(db.upcast(), impl_id.into());
|
||
let bound_vars = generic_params.bound_vars_subst(DebruijnIndex::INNERMOST);
|
||
let trait_ = trait_ref.hir_trait_id();
|
||
let impl_type = if impl_id.lookup(db.upcast()).container.krate() == krate {
|
||
rust_ir::ImplType::Local
|
||
} else {
|
||
rust_ir::ImplType::External
|
||
};
|
||
let where_clauses = convert_where_clauses(db, impl_id.into(), &bound_vars);
|
||
let negative = impl_data.is_negative;
|
||
debug!(
|
||
"impl {:?}: {}{} where {:?}",
|
||
chalk_id,
|
||
if negative { "!" } else { "" },
|
||
trait_ref.display(db),
|
||
where_clauses
|
||
);
|
||
|
||
let polarity = if negative { rust_ir::Polarity::Negative } else { rust_ir::Polarity::Positive };
|
||
|
||
let impl_datum_bound = rust_ir::ImplDatumBound { trait_ref, where_clauses };
|
||
let trait_data = db.trait_data(trait_);
|
||
let associated_ty_value_ids = impl_data
|
||
.items
|
||
.iter()
|
||
.filter_map(|item| match item {
|
||
AssocItemId::TypeAliasId(type_alias) => Some(*type_alias),
|
||
_ => None,
|
||
})
|
||
.filter(|&type_alias| {
|
||
// don't include associated types that don't exist in the trait
|
||
let name = &db.type_alias_data(type_alias).name;
|
||
trait_data.associated_type_by_name(name).is_some()
|
||
})
|
||
.map(|type_alias| TypeAliasAsValue(type_alias).to_chalk(db))
|
||
.collect();
|
||
debug!("impl_datum: {:?}", impl_datum_bound);
|
||
let impl_datum = ImplDatum {
|
||
binders: make_only_type_binders(bound_vars.len(&Interner), impl_datum_bound),
|
||
impl_type,
|
||
polarity,
|
||
associated_ty_value_ids,
|
||
};
|
||
Arc::new(impl_datum)
|
||
}
|
||
|
||
pub(crate) fn associated_ty_value_query(
|
||
db: &dyn HirDatabase,
|
||
krate: CrateId,
|
||
id: AssociatedTyValueId,
|
||
) -> Arc<AssociatedTyValue> {
|
||
let type_alias: TypeAliasAsValue = from_chalk(db, id);
|
||
type_alias_associated_ty_value(db, krate, type_alias.0)
|
||
}
|
||
|
||
fn type_alias_associated_ty_value(
|
||
db: &dyn HirDatabase,
|
||
_krate: CrateId,
|
||
type_alias: TypeAliasId,
|
||
) -> Arc<AssociatedTyValue> {
|
||
let type_alias_data = db.type_alias_data(type_alias);
|
||
let impl_id = match type_alias.lookup(db.upcast()).container {
|
||
AssocContainerId::ImplId(it) => it,
|
||
_ => panic!("assoc ty value should be in impl"),
|
||
};
|
||
|
||
let trait_ref = db
|
||
.impl_trait(impl_id)
|
||
.expect("assoc ty value should not exist")
|
||
.into_value_and_skipped_binders()
|
||
.0; // we don't return any assoc ty values if the impl'd trait can't be resolved
|
||
|
||
let assoc_ty = db
|
||
.trait_data(trait_ref.hir_trait_id())
|
||
.associated_type_by_name(&type_alias_data.name)
|
||
.expect("assoc ty value should not exist"); // validated when building the impl data as well
|
||
let (ty, binders) = db.ty(type_alias.into()).into_value_and_skipped_binders();
|
||
let value_bound = rust_ir::AssociatedTyValueBound { ty };
|
||
let value = rust_ir::AssociatedTyValue {
|
||
impl_id: impl_id.to_chalk(db),
|
||
associated_ty_id: to_assoc_type_id(assoc_ty),
|
||
value: chalk_ir::Binders::new(binders, value_bound),
|
||
};
|
||
Arc::new(value)
|
||
}
|
||
|
||
pub(crate) fn fn_def_datum_query(
|
||
db: &dyn HirDatabase,
|
||
_krate: CrateId,
|
||
fn_def_id: FnDefId,
|
||
) -> Arc<FnDefDatum> {
|
||
let callable_def: CallableDefId = from_chalk(db, fn_def_id);
|
||
let generic_params = generics(db.upcast(), callable_def.into());
|
||
let (sig, binders) = db.callable_item_signature(callable_def).into_value_and_skipped_binders();
|
||
let bound_vars = generic_params.bound_vars_subst(DebruijnIndex::INNERMOST);
|
||
let where_clauses = convert_where_clauses(db, callable_def.into(), &bound_vars);
|
||
let bound = rust_ir::FnDefDatumBound {
|
||
// Note: Chalk doesn't actually use this information yet as far as I am aware, but we provide it anyway
|
||
inputs_and_output: make_only_type_binders(
|
||
0,
|
||
rust_ir::FnDefInputsAndOutputDatum {
|
||
argument_types: sig.params().iter().cloned().collect(),
|
||
return_type: sig.ret().clone(),
|
||
}
|
||
.shifted_in(&Interner),
|
||
),
|
||
where_clauses,
|
||
};
|
||
let datum = FnDefDatum {
|
||
id: fn_def_id,
|
||
sig: chalk_ir::FnSig { abi: (), safety: chalk_ir::Safety::Safe, variadic: sig.is_varargs },
|
||
binders: chalk_ir::Binders::new(binders, bound),
|
||
};
|
||
Arc::new(datum)
|
||
}
|
||
|
||
pub(crate) fn fn_def_variance_query(db: &dyn HirDatabase, fn_def_id: FnDefId) -> Variances {
|
||
let callable_def: CallableDefId = from_chalk(db, fn_def_id);
|
||
let generic_params = generics(db.upcast(), callable_def.into());
|
||
Variances::from_iter(
|
||
&Interner,
|
||
std::iter::repeat(chalk_ir::Variance::Invariant).take(generic_params.len()),
|
||
)
|
||
}
|
||
|
||
pub(crate) fn adt_variance_query(
|
||
db: &dyn HirDatabase,
|
||
chalk_ir::AdtId(adt_id): AdtId,
|
||
) -> Variances {
|
||
let generic_params = generics(db.upcast(), adt_id.into());
|
||
Variances::from_iter(
|
||
&Interner,
|
||
std::iter::repeat(chalk_ir::Variance::Invariant).take(generic_params.len()),
|
||
)
|
||
}
|
||
|
||
pub(super) fn convert_where_clauses(
|
||
db: &dyn HirDatabase,
|
||
def: GenericDefId,
|
||
substs: &Substitution,
|
||
) -> Vec<chalk_ir::QuantifiedWhereClause<Interner>> {
|
||
let generic_predicates = db.generic_predicates(def);
|
||
let mut result = Vec::with_capacity(generic_predicates.len());
|
||
for pred in generic_predicates.iter() {
|
||
result.push(pred.clone().substitute(&Interner, substs));
|
||
}
|
||
result
|
||
}
|
||
|
||
pub(super) fn generic_predicate_to_inline_bound(
|
||
db: &dyn HirDatabase,
|
||
pred: &QuantifiedWhereClause,
|
||
self_ty: &Ty,
|
||
) -> Option<chalk_ir::Binders<rust_ir::InlineBound<Interner>>> {
|
||
// An InlineBound is like a GenericPredicate, except the self type is left out.
|
||
// We don't have a special type for this, but Chalk does.
|
||
let self_ty_shifted_in = self_ty.clone().shifted_in_from(&Interner, DebruijnIndex::ONE);
|
||
let (pred, binders) = pred.as_ref().into_value_and_skipped_binders();
|
||
match pred {
|
||
WhereClause::Implemented(trait_ref) => {
|
||
if trait_ref.self_type_parameter(&Interner) != self_ty_shifted_in {
|
||
// we can only convert predicates back to type bounds if they
|
||
// have the expected self type
|
||
return None;
|
||
}
|
||
let args_no_self = trait_ref.substitution.as_slice(&Interner)[1..]
|
||
.iter()
|
||
.map(|ty| ty.clone().cast(&Interner))
|
||
.collect();
|
||
let trait_bound = rust_ir::TraitBound { trait_id: trait_ref.trait_id, args_no_self };
|
||
Some(chalk_ir::Binders::new(binders, rust_ir::InlineBound::TraitBound(trait_bound)))
|
||
}
|
||
WhereClause::AliasEq(AliasEq { alias: AliasTy::Projection(projection_ty), ty }) => {
|
||
if projection_ty.self_type_parameter(&Interner) != self_ty_shifted_in {
|
||
return None;
|
||
}
|
||
let trait_ = projection_ty.trait_(db);
|
||
let args_no_self = projection_ty.substitution.as_slice(&Interner)[1..]
|
||
.iter()
|
||
.map(|ty| ty.clone().cast(&Interner))
|
||
.collect();
|
||
let alias_eq_bound = rust_ir::AliasEqBound {
|
||
value: ty.clone(),
|
||
trait_bound: rust_ir::TraitBound {
|
||
trait_id: to_chalk_trait_id(trait_),
|
||
args_no_self,
|
||
},
|
||
associated_ty_id: projection_ty.associated_ty_id,
|
||
parameters: Vec::new(), // FIXME we don't support generic associated types yet
|
||
};
|
||
Some(chalk_ir::Binders::new(
|
||
binders,
|
||
rust_ir::InlineBound::AliasEqBound(alias_eq_bound),
|
||
))
|
||
}
|
||
_ => None,
|
||
}
|
||
}
|