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Diagnose incorrect unsafety for trait impls
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parent
d5faad1dae
commit
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@ -327,6 +327,7 @@ pub struct ImplData {
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pub self_ty: Interned<TypeRef>,
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pub items: Vec<AssocItemId>,
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pub is_negative: bool,
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pub is_unsafe: bool,
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// box it as the vec is usually empty anyways
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pub attribute_calls: Option<Box<Vec<(AstId<ast::Item>, MacroCallId)>>>,
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}
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@ -348,6 +349,7 @@ impl ImplData {
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let target_trait = impl_def.target_trait.clone();
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let self_ty = impl_def.self_ty.clone();
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let is_negative = impl_def.is_negative;
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let is_unsafe = impl_def.is_unsafe;
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let mut collector =
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AssocItemCollector::new(db, module_id, tree_id.file_id(), ItemContainerId::ImplId(id));
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@ -357,7 +359,14 @@ impl ImplData {
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let items = items.into_iter().map(|(_, item)| item).collect();
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(
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Arc::new(ImplData { target_trait, self_ty, items, is_negative, attribute_calls }),
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Arc::new(ImplData {
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target_trait,
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self_ty,
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items,
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is_negative,
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is_unsafe,
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attribute_calls,
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}),
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diagnostics.into(),
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)
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}
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@ -709,6 +709,7 @@ pub struct Impl {
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pub target_trait: Option<Interned<TraitRef>>,
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pub self_ty: Interned<TypeRef>,
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pub is_negative: bool,
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pub is_unsafe: bool,
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pub items: Box<[AssocItem]>,
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pub ast_id: FileAstId<ast::Impl>,
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}
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@ -492,6 +492,7 @@ impl<'a> Ctx<'a> {
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let target_trait = impl_def.trait_().and_then(|tr| self.lower_trait_ref(&tr));
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let self_ty = self.lower_type_ref(&impl_def.self_ty()?);
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let is_negative = impl_def.excl_token().is_some();
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let is_unsafe = impl_def.unsafe_token().is_some();
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// We cannot use `assoc_items()` here as that does not include macro calls.
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let items = impl_def
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@ -506,7 +507,8 @@ impl<'a> Ctx<'a> {
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})
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.collect();
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let ast_id = self.source_ast_id_map.ast_id(impl_def);
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let res = Impl { generic_params, target_trait, self_ty, is_negative, items, ast_id };
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let res =
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Impl { generic_params, target_trait, self_ty, is_negative, is_unsafe, items, ast_id };
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Some(id(self.data().impls.alloc(res)))
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}
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@ -388,8 +388,18 @@ impl Printer<'_> {
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wln!(self);
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}
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ModItem::Impl(it) => {
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let Impl { target_trait, self_ty, is_negative, items, generic_params, ast_id: _ } =
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&self.tree[it];
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let Impl {
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target_trait,
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self_ty,
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is_negative,
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is_unsafe,
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items,
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generic_params,
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ast_id: _,
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} = &self.tree[it];
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if *is_unsafe {
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w!(self, "unsafe");
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}
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w!(self, "impl");
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self.print_generic_params(generic_params);
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w!(self, " ");
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@ -38,7 +38,6 @@ diagnostics![
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IncorrectCase,
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InvalidDeriveTarget,
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IncoherentImpl,
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TraitImplOrphan,
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MacroDefError,
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MacroError,
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MacroExpansionParseError,
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@ -54,6 +53,8 @@ diagnostics![
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PrivateAssocItem,
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PrivateField,
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ReplaceFilterMapNextWithFindMap,
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TraitImplIncorrectSafety,
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TraitImplOrphan,
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TypedHole,
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TypeMismatch,
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UndeclaredLabel,
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@ -293,3 +294,11 @@ pub struct TraitImplOrphan {
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pub file_id: HirFileId,
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pub impl_: AstPtr<ast::Impl>,
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}
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// FIXME: Split this off into the corresponding 4 rustc errors
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#[derive(Debug, PartialEq, Eq)]
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pub struct TraitImplIncorrectSafety {
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pub file_id: HirFileId,
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pub impl_: AstPtr<ast::Impl>,
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pub should_be_safe: bool,
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}
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@ -53,10 +53,10 @@ use hir_def::{
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resolver::{HasResolver, Resolver},
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src::HasSource as _,
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AssocItemId, AssocItemLoc, AttrDefId, ConstId, ConstParamId, CrateRootModuleId, DefWithBodyId,
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EnumId, EnumVariantId, ExternCrateId, FunctionId, GenericDefId, HasModule, ImplId,
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InTypeConstId, ItemContainerId, LifetimeParamId, LocalEnumVariantId, LocalFieldId, Lookup,
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MacroExpander, MacroId, ModuleId, StaticId, StructId, TraitAliasId, TraitId, TypeAliasId,
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TypeOrConstParamId, TypeParamId, UnionId,
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EnumId, EnumVariantId, ExternCrateId, FunctionId, GenericDefId, GenericParamId, HasModule,
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ImplId, InTypeConstId, ItemContainerId, LifetimeParamId, LocalEnumVariantId, LocalFieldId,
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Lookup, MacroExpander, MacroId, ModuleId, StaticId, StructId, TraitAliasId, TraitId,
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TypeAliasId, TypeOrConstParamId, TypeParamId, UnionId,
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};
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use hir_expand::{name::name, MacroCallKind};
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use hir_ty::{
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@ -89,17 +89,7 @@ use crate::db::{DefDatabase, HirDatabase};
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pub use crate::{
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attrs::{resolve_doc_path_on, HasAttrs},
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diagnostics::{
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AnyDiagnostic, BreakOutsideOfLoop, CaseType, ExpectedFunction, InactiveCode,
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IncoherentImpl, IncorrectCase, InvalidDeriveTarget, MacroDefError, MacroError,
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MacroExpansionParseError, MalformedDerive, MismatchedArgCount,
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MismatchedTupleStructPatArgCount, MissingFields, MissingMatchArms, MissingUnsafe,
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MovedOutOfRef, NeedMut, NoSuchField, PrivateAssocItem, PrivateField,
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ReplaceFilterMapNextWithFindMap, TraitImplOrphan, TypeMismatch, TypedHole, UndeclaredLabel,
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UnimplementedBuiltinMacro, UnreachableLabel, UnresolvedExternCrate, UnresolvedField,
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UnresolvedImport, UnresolvedMacroCall, UnresolvedMethodCall, UnresolvedModule,
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UnresolvedProcMacro, UnusedMut, UnusedVariable,
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},
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diagnostics::*,
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has_source::HasSource,
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semantics::{PathResolution, Semantics, SemanticsScope, TypeInfo, VisibleTraits},
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};
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@ -613,22 +603,64 @@ impl Module {
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// FIXME: Once we diagnose the inputs to builtin derives, we should at least extract those diagnostics somehow
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continue;
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}
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let ast_id_map = db.ast_id_map(file_id);
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for diag in db.impl_data_with_diagnostics(impl_def.id).1.iter() {
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emit_def_diagnostic(db, acc, diag);
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}
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if inherent_impls.invalid_impls().contains(&impl_def.id) {
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let ast_id_map = db.ast_id_map(file_id);
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acc.push(IncoherentImpl { impl_: ast_id_map.get(node.ast_id()), file_id }.into())
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}
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if !impl_def.check_orphan_rules(db) {
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let ast_id_map = db.ast_id_map(file_id);
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acc.push(TraitImplOrphan { impl_: ast_id_map.get(node.ast_id()), file_id }.into())
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}
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let trait_ = impl_def.trait_(db);
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let trait_is_unsafe = trait_.map_or(false, |t| t.is_unsafe(db));
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let impl_is_negative = impl_def.is_negative(db);
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let impl_is_unsafe = impl_def.is_unsafe(db);
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let drop_maybe_dangle = (|| {
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// FIXME: This can be simplified a lot by exposing hir-ty's utils.rs::Generics helper
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let trait_ = trait_?;
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let drop_trait = db.lang_item(self.krate().into(), LangItem::Drop)?.as_trait()?;
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if drop_trait != trait_.into() {
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return None;
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}
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let parent = impl_def.id.into();
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let generic_params = db.generic_params(parent);
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let lifetime_params = generic_params.lifetimes.iter().map(|(local_id, _)| {
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GenericParamId::LifetimeParamId(LifetimeParamId { parent, local_id })
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});
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let type_params = generic_params
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.iter()
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.filter(|(_, it)| it.type_param().is_some())
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.map(|(local_id, _)| {
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GenericParamId::TypeParamId(TypeParamId::from_unchecked(
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TypeOrConstParamId { parent, local_id },
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))
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});
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let res = type_params
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.chain(lifetime_params)
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.any(|p| db.attrs(AttrDefId::GenericParamId(p)).by_key("may_dangle").exists());
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Some(res)
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})()
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.unwrap_or(false);
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match (impl_is_unsafe, trait_is_unsafe, impl_is_negative, drop_maybe_dangle) {
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// unsafe negative impl
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(true, _, true, _) |
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// unsafe impl for safe trait
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(true, false, _, false) => acc.push(TraitImplIncorrectSafety { impl_: ast_id_map.get(node.ast_id()), file_id, should_be_safe: true }.into()),
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// safe impl for unsafe trait
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(false, true, false, _) |
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// safe impl of dangling drop
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(false, false, _, true) => acc.push(TraitImplIncorrectSafety { impl_: ast_id_map.get(node.ast_id()), file_id, should_be_safe: false }.into()),
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_ => (),
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};
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for item in impl_def.items(db) {
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let def: DefWithBody = match item {
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AssocItem::Function(it) => it.into(),
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@ -3404,7 +3436,7 @@ impl Impl {
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}
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pub fn is_unsafe(self, db: &dyn HirDatabase) -> bool {
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db.impl_data(self.id).is_unique()
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db.impl_data(self.id).is_unsafe
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}
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pub fn module(self, db: &dyn HirDatabase) -> Module {
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@ -0,0 +1,115 @@
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use hir::InFile;
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use crate::{Diagnostic, DiagnosticCode, DiagnosticsContext, Severity};
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// Diagnostic: trait-impl-incorrect-safety
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//
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// Diagnoses incorrect safety annotations of trait impls.
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pub(crate) fn trait_impl_incorrect_safety(
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ctx: &DiagnosticsContext<'_>,
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d: &hir::TraitImplIncorrectSafety,
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) -> Diagnostic {
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Diagnostic::new_with_syntax_node_ptr(
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ctx,
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DiagnosticCode::Ra("trait-impl-incorrect-safety", Severity::Error),
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if d.should_be_safe {
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"unsafe impl for safe trait"
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} else {
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"impl for unsafe trait needs to be unsafe"
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},
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InFile::new(d.file_id, d.impl_.clone().into()),
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)
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}
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#[cfg(test)]
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mod tests {
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use crate::tests::check_diagnostics;
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#[test]
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fn simple() {
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check_diagnostics(
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r#"
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trait Safe {}
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unsafe trait Unsafe {}
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impl Safe for () {}
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impl Unsafe for () {}
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//^^^^^^^^^^^^^^^^^^^^^ error: impl for unsafe trait needs to be unsafe
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unsafe impl Safe for () {}
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//^^^^^^^^^^^^^^^^^^^^^^^^^^ error: unsafe impl for safe trait
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unsafe impl Unsafe for () {}
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"#,
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);
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}
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#[test]
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fn drop_may_dangle() {
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check_diagnostics(
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r#"
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#[lang = "drop"]
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trait Drop {}
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struct S<T>;
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struct L<'l>;
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impl<T> Drop for S<T> {}
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impl<#[may_dangle] T> Drop for S<T> {}
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//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ error: impl for unsafe trait needs to be unsafe
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unsafe impl<T> Drop for S<T> {}
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//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ error: unsafe impl for safe trait
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unsafe impl<#[may_dangle] T> Drop for S<T> {}
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impl<'l> Drop for L<'l> {}
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impl<#[may_dangle] 'l> Drop for L<'l> {}
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//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ error: impl for unsafe trait needs to be unsafe
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unsafe impl<'l> Drop for L<'l> {}
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//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ error: unsafe impl for safe trait
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unsafe impl<#[may_dangle] 'l> Drop for L<'l> {}
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"#,
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);
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}
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#[test]
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fn negative() {
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check_diagnostics(
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r#"
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trait Trait {}
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impl !Trait for () {}
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unsafe impl !Trait for () {}
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//^^^^^^^^^^^^^^^^^^^^^^^^^^^^ error: unsafe impl for safe trait
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unsafe trait UnsafeTrait {}
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impl !UnsafeTrait for () {}
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unsafe impl !UnsafeTrait for () {}
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//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ error: unsafe impl for safe trait
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"#,
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);
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}
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#[test]
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fn inherent() {
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check_diagnostics(
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r#"
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struct S;
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impl S {}
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unsafe impl S {}
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//^^^^^^^^^^^^^^^^ error: unsafe impl for safe trait
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"#,
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);
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}
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}
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@ -45,6 +45,7 @@ mod handlers {
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pub(crate) mod private_field;
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pub(crate) mod replace_filter_map_next_with_find_map;
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pub(crate) mod trait_impl_orphan;
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pub(crate) mod trait_impl_incorrect_safety;
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pub(crate) mod typed_hole;
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pub(crate) mod type_mismatch;
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pub(crate) mod unimplemented_builtin_macro;
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@ -360,6 +361,7 @@ pub fn diagnostics(
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AnyDiagnostic::PrivateField(d) => handlers::private_field::private_field(&ctx, &d),
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AnyDiagnostic::ReplaceFilterMapNextWithFindMap(d) => handlers::replace_filter_map_next_with_find_map::replace_filter_map_next_with_find_map(&ctx, &d),
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AnyDiagnostic::TraitImplOrphan(d) => handlers::trait_impl_orphan::trait_impl_orphan(&ctx, &d),
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AnyDiagnostic::TraitImplIncorrectSafety(d) => handlers::trait_impl_incorrect_safety::trait_impl_incorrect_safety(&ctx, &d),
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AnyDiagnostic::TypedHole(d) => handlers::typed_hole::typed_hole(&ctx, &d),
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AnyDiagnostic::TypeMismatch(d) => handlers::type_mismatch::type_mismatch(&ctx, &d),
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AnyDiagnostic::UndeclaredLabel(d) => handlers::undeclared_label::undeclared_label(&ctx, &d),
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