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-rw-r--r--crates/ra_hir_ty/src/autoderef.rs4
-rw-r--r--crates/ra_hir_ty/src/expr.rs4
-rw-r--r--crates/ra_hir_ty/src/infer.rs38
-rw-r--r--crates/ra_hir_ty/src/infer/expr.rs4
-rw-r--r--crates/ra_hir_ty/src/traits/builtin.rs6
-rw-r--r--crates/ra_hir_ty/src/utils.rs6
6 files changed, 30 insertions, 32 deletions
diff --git a/crates/ra_hir_ty/src/autoderef.rs b/crates/ra_hir_ty/src/autoderef.rs
index d557962b4..ee48fa537 100644
--- a/crates/ra_hir_ty/src/autoderef.rs
+++ b/crates/ra_hir_ty/src/autoderef.rs
@@ -6,7 +6,7 @@
6use std::iter::successors; 6use std::iter::successors;
7 7
8use hir_def::lang_item::LangItemTarget; 8use hir_def::lang_item::LangItemTarget;
9use hir_expand::name; 9use hir_expand::name::name;
10use log::{info, warn}; 10use log::{info, warn};
11use ra_db::CrateId; 11use ra_db::CrateId;
12 12
@@ -52,7 +52,7 @@ fn deref_by_trait(
52 LangItemTarget::TraitId(it) => it, 52 LangItemTarget::TraitId(it) => it,
53 _ => return None, 53 _ => return None,
54 }; 54 };
55 let target = db.trait_data(deref_trait).associated_type_by_name(&name::TARGET_TYPE)?; 55 let target = db.trait_data(deref_trait).associated_type_by_name(&name![Target])?;
56 56
57 let generic_params = generics(db, target.into()); 57 let generic_params = generics(db, target.into());
58 if generic_params.len() != 1 { 58 if generic_params.len() != 1 {
diff --git a/crates/ra_hir_ty/src/expr.rs b/crates/ra_hir_ty/src/expr.rs
index d2bd64e5c..f752a9f09 100644
--- a/crates/ra_hir_ty/src/expr.rs
+++ b/crates/ra_hir_ty/src/expr.rs
@@ -3,7 +3,7 @@
3use std::sync::Arc; 3use std::sync::Arc;
4 4
5use hir_def::{ 5use hir_def::{
6 path::{known, Path}, 6 path::{path, Path},
7 resolver::HasResolver, 7 resolver::HasResolver,
8 AdtId, FunctionId, 8 AdtId, FunctionId,
9}; 9};
@@ -124,7 +124,7 @@ impl<'a, 'b> ExprValidator<'a, 'b> {
124 None => return, 124 None => return,
125 }; 125 };
126 126
127 let std_result_path = known::std_result_result(); 127 let std_result_path = path![std::result::Result];
128 128
129 let resolver = self.func.resolver(db); 129 let resolver = self.func.resolver(db);
130 let std_result_enum = match resolver.resolve_known_enum(db, &std_result_path) { 130 let std_result_enum = match resolver.resolve_known_enum(db, &std_result_path) {
diff --git a/crates/ra_hir_ty/src/infer.rs b/crates/ra_hir_ty/src/infer.rs
index a1201b3e4..f1b7e9442 100644
--- a/crates/ra_hir_ty/src/infer.rs
+++ b/crates/ra_hir_ty/src/infer.rs
@@ -24,12 +24,12 @@ use hir_def::{
24 body::Body, 24 body::Body,
25 data::{ConstData, FunctionData}, 25 data::{ConstData, FunctionData},
26 expr::{BindingAnnotation, ExprId, PatId}, 26 expr::{BindingAnnotation, ExprId, PatId},
27 path::{known, Path}, 27 path::{path, Path},
28 resolver::{HasResolver, Resolver, TypeNs}, 28 resolver::{HasResolver, Resolver, TypeNs},
29 type_ref::{Mutability, TypeRef}, 29 type_ref::{Mutability, TypeRef},
30 AdtId, AssocItemId, DefWithBodyId, FunctionId, StructFieldId, TypeAliasId, VariantId, 30 AdtId, AssocItemId, DefWithBodyId, FunctionId, StructFieldId, TypeAliasId, VariantId,
31}; 31};
32use hir_expand::{diagnostics::DiagnosticSink, name}; 32use hir_expand::{diagnostics::DiagnosticSink, name::name};
33use ra_arena::map::ArenaMap; 33use ra_arena::map::ArenaMap;
34use ra_prof::profile; 34use ra_prof::profile;
35 35
@@ -422,73 +422,73 @@ impl<'a, D: HirDatabase> InferenceContext<'a, D> {
422 } 422 }
423 423
424 fn resolve_into_iter_item(&self) -> Option<TypeAliasId> { 424 fn resolve_into_iter_item(&self) -> Option<TypeAliasId> {
425 let path = known::std_iter_into_iterator(); 425 let path = path![std::iter::IntoIterator];
426 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?; 426 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?;
427 self.db.trait_data(trait_).associated_type_by_name(&name::ITEM_TYPE) 427 self.db.trait_data(trait_).associated_type_by_name(&name![Item])
428 } 428 }
429 429
430 fn resolve_ops_try_ok(&self) -> Option<TypeAliasId> { 430 fn resolve_ops_try_ok(&self) -> Option<TypeAliasId> {
431 let path = known::std_ops_try(); 431 let path = path![std::ops::Try];
432 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?; 432 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?;
433 self.db.trait_data(trait_).associated_type_by_name(&name::OK_TYPE) 433 self.db.trait_data(trait_).associated_type_by_name(&name![Ok])
434 } 434 }
435 435
436 fn resolve_ops_neg_output(&self) -> Option<TypeAliasId> { 436 fn resolve_ops_neg_output(&self) -> Option<TypeAliasId> {
437 let path = known::std_ops_neg(); 437 let path = path![std::ops::Neg];
438 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?; 438 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?;
439 self.db.trait_data(trait_).associated_type_by_name(&name::OUTPUT_TYPE) 439 self.db.trait_data(trait_).associated_type_by_name(&name![Output])
440 } 440 }
441 441
442 fn resolve_ops_not_output(&self) -> Option<TypeAliasId> { 442 fn resolve_ops_not_output(&self) -> Option<TypeAliasId> {
443 let path = known::std_ops_not(); 443 let path = path![std::ops::Not];
444 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?; 444 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?;
445 self.db.trait_data(trait_).associated_type_by_name(&name::OUTPUT_TYPE) 445 self.db.trait_data(trait_).associated_type_by_name(&name![Output])
446 } 446 }
447 447
448 fn resolve_future_future_output(&self) -> Option<TypeAliasId> { 448 fn resolve_future_future_output(&self) -> Option<TypeAliasId> {
449 let path = known::std_future_future(); 449 let path = path![std::future::Future];
450 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?; 450 let trait_ = self.resolver.resolve_known_trait(self.db, &path)?;
451 self.db.trait_data(trait_).associated_type_by_name(&name::OUTPUT_TYPE) 451 self.db.trait_data(trait_).associated_type_by_name(&name![Output])
452 } 452 }
453 453
454 fn resolve_boxed_box(&self) -> Option<AdtId> { 454 fn resolve_boxed_box(&self) -> Option<AdtId> {
455 let path = known::std_boxed_box(); 455 let path = path![std::boxed::Box];
456 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?; 456 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?;
457 Some(struct_.into()) 457 Some(struct_.into())
458 } 458 }
459 459
460 fn resolve_range_full(&self) -> Option<AdtId> { 460 fn resolve_range_full(&self) -> Option<AdtId> {
461 let path = known::std_ops_range_full(); 461 let path = path![std::ops::RangeFull];
462 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?; 462 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?;
463 Some(struct_.into()) 463 Some(struct_.into())
464 } 464 }
465 465
466 fn resolve_range(&self) -> Option<AdtId> { 466 fn resolve_range(&self) -> Option<AdtId> {
467 let path = known::std_ops_range(); 467 let path = path![std::ops::Range];
468 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?; 468 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?;
469 Some(struct_.into()) 469 Some(struct_.into())
470 } 470 }
471 471
472 fn resolve_range_inclusive(&self) -> Option<AdtId> { 472 fn resolve_range_inclusive(&self) -> Option<AdtId> {
473 let path = known::std_ops_range_inclusive(); 473 let path = path![std::ops::RangeInclusive];
474 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?; 474 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?;
475 Some(struct_.into()) 475 Some(struct_.into())
476 } 476 }
477 477
478 fn resolve_range_from(&self) -> Option<AdtId> { 478 fn resolve_range_from(&self) -> Option<AdtId> {
479 let path = known::std_ops_range_from(); 479 let path = path![std::ops::RangeFrom];
480 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?; 480 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?;
481 Some(struct_.into()) 481 Some(struct_.into())
482 } 482 }
483 483
484 fn resolve_range_to(&self) -> Option<AdtId> { 484 fn resolve_range_to(&self) -> Option<AdtId> {
485 let path = known::std_ops_range_to(); 485 let path = path![std::ops::RangeTo];
486 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?; 486 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?;
487 Some(struct_.into()) 487 Some(struct_.into())
488 } 488 }
489 489
490 fn resolve_range_to_inclusive(&self) -> Option<AdtId> { 490 fn resolve_range_to_inclusive(&self) -> Option<AdtId> {
491 let path = known::std_ops_range_to_inclusive(); 491 let path = path![std::ops::RangeToInclusive];
492 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?; 492 let struct_ = self.resolver.resolve_known_struct(self.db, &path)?;
493 Some(struct_.into()) 493 Some(struct_.into())
494 } 494 }
diff --git a/crates/ra_hir_ty/src/infer/expr.rs b/crates/ra_hir_ty/src/infer/expr.rs
index f8c00a7b4..2e3cdd53a 100644
--- a/crates/ra_hir_ty/src/infer/expr.rs
+++ b/crates/ra_hir_ty/src/infer/expr.rs
@@ -10,7 +10,7 @@ use hir_def::{
10 resolver::resolver_for_expr, 10 resolver::resolver_for_expr,
11 AdtId, ContainerId, Lookup, StructFieldId, 11 AdtId, ContainerId, Lookup, StructFieldId,
12}; 12};
13use hir_expand::name::{self, Name}; 13use hir_expand::name::{name, Name};
14use ra_syntax::ast::RangeOp; 14use ra_syntax::ast::RangeOp;
15 15
16use crate::{ 16use crate::{
@@ -631,7 +631,7 @@ impl<'a, D: HirDatabase> InferenceContext<'a, D> {
631 // Parent arguments are unknown, except for the receiver type 631 // Parent arguments are unknown, except for the receiver type
632 if let Some(parent_generics) = def_generics.as_ref().map(|p| p.iter_parent()) { 632 if let Some(parent_generics) = def_generics.as_ref().map(|p| p.iter_parent()) {
633 for (_id, param) in parent_generics { 633 for (_id, param) in parent_generics {
634 if param.name == name::SELF_TYPE { 634 if param.name == name![Self] {
635 substs.push(receiver_ty.clone()); 635 substs.push(receiver_ty.clone());
636 } else { 636 } else {
637 substs.push(Ty::Unknown); 637 substs.push(Ty::Unknown);
diff --git a/crates/ra_hir_ty/src/traits/builtin.rs b/crates/ra_hir_ty/src/traits/builtin.rs
index 598fd81e3..cd587a338 100644
--- a/crates/ra_hir_ty/src/traits/builtin.rs
+++ b/crates/ra_hir_ty/src/traits/builtin.rs
@@ -1,7 +1,7 @@
1//! This module provides the built-in trait implementations, e.g. to make 1//! This module provides the built-in trait implementations, e.g. to make
2//! closures implement `Fn`. 2//! closures implement `Fn`.
3use hir_def::{expr::Expr, lang_item::LangItemTarget, TraitId, TypeAliasId}; 3use hir_def::{expr::Expr, lang_item::LangItemTarget, TraitId, TypeAliasId};
4use hir_expand::name; 4use hir_expand::name::name;
5use ra_db::CrateId; 5use ra_db::CrateId;
6 6
7use super::{AssocTyValue, Impl}; 7use super::{AssocTyValue, Impl};
@@ -79,7 +79,7 @@ fn closure_fn_trait_impl_datum(
79 // and don't want to return a valid value only to find out later that FnOnce 79 // and don't want to return a valid value only to find out later that FnOnce
80 // is broken 80 // is broken
81 let fn_once_trait = get_fn_trait(db, krate, super::FnTrait::FnOnce)?; 81 let fn_once_trait = get_fn_trait(db, krate, super::FnTrait::FnOnce)?;
82 let _output = db.trait_data(fn_once_trait).associated_type_by_name(&name::OUTPUT_TYPE)?; 82 let _output = db.trait_data(fn_once_trait).associated_type_by_name(&name![Output])?;
83 83
84 let num_args: u16 = match &db.body(data.def.into())[data.expr] { 84 let num_args: u16 = match &db.body(data.def.into())[data.expr] {
85 Expr::Lambda { args, .. } => args.len() as u16, 85 Expr::Lambda { args, .. } => args.len() as u16,
@@ -137,7 +137,7 @@ fn closure_fn_trait_output_assoc_ty_value(
137 137
138 let output_ty_id = db 138 let output_ty_id = db
139 .trait_data(fn_once_trait) 139 .trait_data(fn_once_trait)
140 .associated_type_by_name(&name::OUTPUT_TYPE) 140 .associated_type_by_name(&name![Output])
141 .expect("assoc ty value should not exist"); 141 .expect("assoc ty value should not exist");
142 142
143 BuiltinImplAssocTyValueData { 143 BuiltinImplAssocTyValueData {
diff --git a/crates/ra_hir_ty/src/utils.rs b/crates/ra_hir_ty/src/utils.rs
index aeb211a91..0049d3c6f 100644
--- a/crates/ra_hir_ty/src/utils.rs
+++ b/crates/ra_hir_ty/src/utils.rs
@@ -10,10 +10,8 @@ use hir_def::{
10 type_ref::TypeRef, 10 type_ref::TypeRef,
11 ContainerId, GenericDefId, Lookup, TraitId, TypeAliasId, TypeParamId, VariantId, 11 ContainerId, GenericDefId, Lookup, TraitId, TypeAliasId, TypeParamId, VariantId,
12}; 12};
13use hir_expand::name::{self, Name}; 13use hir_expand::name::{name, Name};
14 14
15// FIXME: this is wrong, b/c it can't express `trait T: PartialEq<()>`.
16// We should return a `TraitREf` here.
17fn direct_super_traits(db: &impl DefDatabase, trait_: TraitId) -> Vec<TraitId> { 15fn direct_super_traits(db: &impl DefDatabase, trait_: TraitId) -> Vec<TraitId> {
18 let resolver = trait_.resolver(db); 16 let resolver = trait_.resolver(db);
19 // returning the iterator directly doesn't easily work because of 17 // returning the iterator directly doesn't easily work because of
@@ -24,7 +22,7 @@ fn direct_super_traits(db: &impl DefDatabase, trait_: TraitId) -> Vec<TraitId> {
24 .where_predicates 22 .where_predicates
25 .iter() 23 .iter()
26 .filter_map(|pred| match &pred.type_ref { 24 .filter_map(|pred| match &pred.type_ref {
27 TypeRef::Path(p) if p.as_ident() == Some(&name::SELF_TYPE) => pred.bound.as_path(), 25 TypeRef::Path(p) if p.as_ident() == Some(&name![Self]) => pred.bound.as_path(),
28 _ => None, 26 _ => None,
29 }) 27 })
30 .filter_map(|path| match resolver.resolve_path_in_type_ns_fully(db, path) { 28 .filter_map(|path| match resolver.resolve_path_in_type_ns_fully(db, path) {