366 lines
12 KiB
Rust
366 lines
12 KiB
Rust
//! Defines hir-level representation of structs, enums and unions
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use std::sync::Arc;
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use base_db::CrateId;
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use either::Either;
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use hir_expand::{
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name::{AsName, Name},
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InFile,
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};
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use la_arena::{Arena, ArenaMap};
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use syntax::ast::{self, NameOwner, VisibilityOwner};
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use tt::{Delimiter, DelimiterKind, Leaf, Subtree, TokenTree};
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use crate::{
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body::{CfgExpander, LowerCtx},
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db::DefDatabase,
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intern::Interned,
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item_tree::{AttrOwner, Field, Fields, ItemTree, ModItem, RawVisibilityId},
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src::HasChildSource,
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src::HasSource,
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trace::Trace,
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type_ref::TypeRef,
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visibility::RawVisibility,
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EnumId, LocalEnumVariantId, LocalFieldId, Lookup, ModuleId, StructId, UnionId, VariantId,
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};
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use cfg::CfgOptions;
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/// Note that we use `StructData` for unions as well!
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub struct StructData {
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pub name: Name,
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pub variant_data: Arc<VariantData>,
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pub repr: Option<ReprKind>,
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pub visibility: RawVisibility,
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}
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub struct EnumData {
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pub name: Name,
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pub variants: Arena<EnumVariantData>,
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pub visibility: RawVisibility,
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}
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub struct EnumVariantData {
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pub name: Name,
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pub variant_data: Arc<VariantData>,
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}
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub enum VariantData {
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Record(Arena<FieldData>),
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Tuple(Arena<FieldData>),
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Unit,
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}
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/// A single field of an enum variant or struct
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub struct FieldData {
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pub name: Name,
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pub type_ref: Interned<TypeRef>,
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pub visibility: RawVisibility,
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}
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub enum ReprKind {
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Packed,
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Other,
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}
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fn repr_from_value(
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db: &dyn DefDatabase,
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krate: CrateId,
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item_tree: &ItemTree,
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of: AttrOwner,
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) -> Option<ReprKind> {
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item_tree.attrs(db, krate, of).by_key("repr").tt_values().find_map(parse_repr_tt)
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}
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fn parse_repr_tt(tt: &Subtree) -> Option<ReprKind> {
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match tt.delimiter {
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Some(Delimiter { kind: DelimiterKind::Parenthesis, .. }) => {}
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_ => return None,
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}
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let mut it = tt.token_trees.iter();
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match it.next()? {
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TokenTree::Leaf(Leaf::Ident(ident)) if ident.text == "packed" => Some(ReprKind::Packed),
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_ => Some(ReprKind::Other),
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}
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}
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impl StructData {
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pub(crate) fn struct_data_query(db: &dyn DefDatabase, id: StructId) -> Arc<StructData> {
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let loc = id.lookup(db);
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let krate = loc.container.krate;
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let item_tree = loc.id.item_tree(db);
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let repr = repr_from_value(db, krate, &item_tree, ModItem::from(loc.id.value).into());
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let cfg_options = db.crate_graph()[loc.container.krate].cfg_options.clone();
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let strukt = &item_tree[loc.id.value];
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let variant_data = lower_fields(db, krate, &item_tree, &cfg_options, &strukt.fields, None);
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Arc::new(StructData {
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name: strukt.name.clone(),
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variant_data: Arc::new(variant_data),
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repr,
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visibility: item_tree[strukt.visibility].clone(),
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})
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}
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pub(crate) fn union_data_query(db: &dyn DefDatabase, id: UnionId) -> Arc<StructData> {
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let loc = id.lookup(db);
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let krate = loc.container.krate;
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let item_tree = loc.id.item_tree(db);
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let repr = repr_from_value(db, krate, &item_tree, ModItem::from(loc.id.value).into());
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let cfg_options = db.crate_graph()[loc.container.krate].cfg_options.clone();
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let union = &item_tree[loc.id.value];
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let variant_data = lower_fields(db, krate, &item_tree, &cfg_options, &union.fields, None);
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Arc::new(StructData {
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name: union.name.clone(),
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variant_data: Arc::new(variant_data),
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repr,
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visibility: item_tree[union.visibility].clone(),
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})
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}
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}
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impl EnumData {
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pub(crate) fn enum_data_query(db: &dyn DefDatabase, e: EnumId) -> Arc<EnumData> {
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let loc = e.lookup(db);
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let krate = loc.container.krate;
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let item_tree = loc.id.item_tree(db);
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let cfg_options = db.crate_graph()[krate].cfg_options.clone();
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let enum_ = &item_tree[loc.id.value];
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let mut variants = Arena::new();
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for var_id in enum_.variants.clone() {
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if item_tree.attrs(db, krate, var_id.into()).is_cfg_enabled(&cfg_options) {
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let var = &item_tree[var_id];
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let var_data = lower_fields(
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db,
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krate,
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&item_tree,
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&cfg_options,
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&var.fields,
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Some(enum_.visibility),
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);
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variants.alloc(EnumVariantData {
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name: var.name.clone(),
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variant_data: Arc::new(var_data),
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});
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}
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}
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Arc::new(EnumData {
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name: enum_.name.clone(),
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variants,
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visibility: item_tree[enum_.visibility].clone(),
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})
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}
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pub fn variant(&self, name: &Name) -> Option<LocalEnumVariantId> {
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let (id, _) = self.variants.iter().find(|(_id, data)| &data.name == name)?;
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Some(id)
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}
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}
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impl HasChildSource<LocalEnumVariantId> for EnumId {
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type Value = ast::Variant;
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fn child_source(
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&self,
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db: &dyn DefDatabase,
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) -> InFile<ArenaMap<LocalEnumVariantId, Self::Value>> {
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let src = self.lookup(db).source(db);
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let mut trace = Trace::new_for_map();
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lower_enum(db, &mut trace, &src, self.lookup(db).container);
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src.with_value(trace.into_map())
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}
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}
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fn lower_enum(
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db: &dyn DefDatabase,
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trace: &mut Trace<EnumVariantData, ast::Variant>,
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ast: &InFile<ast::Enum>,
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module_id: ModuleId,
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) {
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let expander = CfgExpander::new(db, ast.file_id, module_id.krate);
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let variants = ast
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.value
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.variant_list()
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.into_iter()
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.flat_map(|it| it.variants())
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.filter(|var| expander.is_cfg_enabled(db, var));
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for var in variants {
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trace.alloc(
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|| var.clone(),
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|| EnumVariantData {
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name: var.name().map_or_else(Name::missing, |it| it.as_name()),
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variant_data: Arc::new(VariantData::new(db, ast.with_value(var.kind()), module_id)),
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},
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);
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}
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}
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impl VariantData {
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fn new(db: &dyn DefDatabase, flavor: InFile<ast::StructKind>, module_id: ModuleId) -> Self {
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let mut expander = CfgExpander::new(db, flavor.file_id, module_id.krate);
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let mut trace = Trace::new_for_arena();
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match lower_struct(db, &mut expander, &mut trace, &flavor) {
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StructKind::Tuple => VariantData::Tuple(trace.into_arena()),
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StructKind::Record => VariantData::Record(trace.into_arena()),
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StructKind::Unit => VariantData::Unit,
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}
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}
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pub fn fields(&self) -> &Arena<FieldData> {
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const EMPTY: &Arena<FieldData> = &Arena::new();
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match &self {
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VariantData::Record(fields) | VariantData::Tuple(fields) => fields,
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_ => EMPTY,
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}
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}
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pub fn field(&self, name: &Name) -> Option<LocalFieldId> {
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self.fields().iter().find_map(|(id, data)| if &data.name == name { Some(id) } else { None })
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}
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pub fn kind(&self) -> StructKind {
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match self {
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VariantData::Record(_) => StructKind::Record,
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VariantData::Tuple(_) => StructKind::Tuple,
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VariantData::Unit => StructKind::Unit,
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}
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}
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}
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impl HasChildSource<LocalFieldId> for VariantId {
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type Value = Either<ast::TupleField, ast::RecordField>;
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fn child_source(&self, db: &dyn DefDatabase) -> InFile<ArenaMap<LocalFieldId, Self::Value>> {
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let (src, module_id) = match self {
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VariantId::EnumVariantId(it) => {
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// I don't really like the fact that we call into parent source
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// here, this might add to more queries then necessary.
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let src = it.parent.child_source(db);
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(src.map(|map| map[it.local_id].kind()), it.parent.lookup(db).container)
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}
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VariantId::StructId(it) => {
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(it.lookup(db).source(db).map(|it| it.kind()), it.lookup(db).container)
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}
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VariantId::UnionId(it) => (
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it.lookup(db).source(db).map(|it| {
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it.record_field_list()
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.map(ast::StructKind::Record)
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.unwrap_or(ast::StructKind::Unit)
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}),
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it.lookup(db).container,
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),
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};
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let mut expander = CfgExpander::new(db, src.file_id, module_id.krate);
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let mut trace = Trace::new_for_map();
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lower_struct(db, &mut expander, &mut trace, &src);
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src.with_value(trace.into_map())
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}
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}
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#[derive(Debug, Copy, Clone, PartialEq, Eq)]
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pub enum StructKind {
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Tuple,
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Record,
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Unit,
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}
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fn lower_struct(
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db: &dyn DefDatabase,
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expander: &mut CfgExpander,
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trace: &mut Trace<FieldData, Either<ast::TupleField, ast::RecordField>>,
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ast: &InFile<ast::StructKind>,
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) -> StructKind {
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let ctx = LowerCtx::new(db, ast.file_id);
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match &ast.value {
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ast::StructKind::Tuple(fl) => {
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for (i, fd) in fl.fields().enumerate() {
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if !expander.is_cfg_enabled(db, &fd) {
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continue;
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}
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trace.alloc(
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|| Either::Left(fd.clone()),
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|| FieldData {
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name: Name::new_tuple_field(i),
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type_ref: Interned::new(TypeRef::from_ast_opt(&ctx, fd.ty())),
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visibility: RawVisibility::from_ast(db, ast.with_value(fd.visibility())),
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},
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);
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}
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StructKind::Tuple
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}
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ast::StructKind::Record(fl) => {
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for fd in fl.fields() {
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if !expander.is_cfg_enabled(db, &fd) {
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continue;
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}
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trace.alloc(
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|| Either::Right(fd.clone()),
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|| FieldData {
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name: fd.name().map(|n| n.as_name()).unwrap_or_else(Name::missing),
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type_ref: Interned::new(TypeRef::from_ast_opt(&ctx, fd.ty())),
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visibility: RawVisibility::from_ast(db, ast.with_value(fd.visibility())),
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},
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);
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}
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StructKind::Record
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}
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ast::StructKind::Unit => StructKind::Unit,
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}
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}
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fn lower_fields(
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db: &dyn DefDatabase,
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krate: CrateId,
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item_tree: &ItemTree,
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cfg_options: &CfgOptions,
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fields: &Fields,
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override_visibility: Option<RawVisibilityId>,
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) -> VariantData {
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match fields {
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Fields::Record(flds) => {
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let mut arena = Arena::new();
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for field_id in flds.clone() {
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if item_tree.attrs(db, krate, field_id.into()).is_cfg_enabled(cfg_options) {
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arena.alloc(lower_field(item_tree, &item_tree[field_id], override_visibility));
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}
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}
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VariantData::Record(arena)
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}
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Fields::Tuple(flds) => {
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let mut arena = Arena::new();
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for field_id in flds.clone() {
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if item_tree.attrs(db, krate, field_id.into()).is_cfg_enabled(cfg_options) {
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arena.alloc(lower_field(item_tree, &item_tree[field_id], override_visibility));
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}
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}
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VariantData::Tuple(arena)
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}
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Fields::Unit => VariantData::Unit,
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}
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}
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fn lower_field(
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item_tree: &ItemTree,
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field: &Field,
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override_visibility: Option<RawVisibilityId>,
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) -> FieldData {
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FieldData {
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name: field.name.clone(),
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type_ref: field.type_ref.clone(),
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visibility: item_tree[override_visibility.unwrap_or(field.visibility)].clone(),
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}
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}
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