mirror of
https://github.com/rust-lang/rust-analyzer
synced 2025-01-07 18:58:51 +00:00
518 lines
20 KiB
Rust
518 lines
20 KiB
Rust
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//! Computes color for a single element.
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use hir::{AsAssocItem, Semantics, VariantDef};
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use ide_db::{
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defs::{Definition, NameClass, NameRefClass},
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RootDatabase,
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};
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use rustc_hash::FxHashMap;
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use syntax::{
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ast, AstNode, AstToken, NodeOrToken, SyntaxElement,
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SyntaxKind::{self, *},
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SyntaxNode, SyntaxToken, T,
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};
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use crate::{Highlight, HlMod, HlTag, SymbolKind};
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pub(super) fn element(
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sema: &Semantics<RootDatabase>,
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bindings_shadow_count: &mut FxHashMap<hir::Name, u32>,
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syntactic_name_ref_highlighting: bool,
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element: SyntaxElement,
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) -> Option<(Highlight, Option<u64>)> {
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let db = sema.db;
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let mut binding_hash = None;
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let highlight: Highlight = match element.kind() {
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FN => {
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bindings_shadow_count.clear();
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return None;
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}
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// Highlight definitions depending on the "type" of the definition.
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NAME => {
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let name = element.into_node().and_then(ast::Name::cast).unwrap();
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let name_kind = NameClass::classify(sema, &name);
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if let Some(NameClass::Definition(Definition::Local(local))) = &name_kind {
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if let Some(name) = local.name(db) {
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let shadow_count = bindings_shadow_count.entry(name.clone()).or_default();
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*shadow_count += 1;
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binding_hash = Some(calc_binding_hash(&name, *shadow_count))
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}
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};
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match name_kind {
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Some(NameClass::ExternCrate(_)) => HlTag::Symbol(SymbolKind::Module).into(),
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Some(NameClass::Definition(def)) => highlight_def(db, def) | HlMod::Definition,
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Some(NameClass::ConstReference(def)) => highlight_def(db, def),
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Some(NameClass::PatFieldShorthand { field_ref, .. }) => {
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let mut h = HlTag::Symbol(SymbolKind::Field).into();
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if let Definition::Field(field) = field_ref {
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if let VariantDef::Union(_) = field.parent_def(db) {
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h |= HlMod::Unsafe;
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}
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}
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h
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}
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None => highlight_name_by_syntax(name) | HlMod::Definition,
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}
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}
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// Highlight references like the definitions they resolve to
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NAME_REF if element.ancestors().any(|it| it.kind() == ATTR) => {
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// even though we track whether we are in an attribute or not we still need this special case
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// as otherwise we would emit unresolved references for name refs inside attributes
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Highlight::from(HlTag::Symbol(SymbolKind::Function))
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}
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NAME_REF => {
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let name_ref = element.into_node().and_then(ast::NameRef::cast).unwrap();
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highlight_func_by_name_ref(sema, &name_ref).unwrap_or_else(|| {
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match NameRefClass::classify(sema, &name_ref) {
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Some(name_kind) => match name_kind {
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NameRefClass::ExternCrate(_) => HlTag::Symbol(SymbolKind::Module).into(),
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NameRefClass::Definition(def) => {
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if let Definition::Local(local) = &def {
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if let Some(name) = local.name(db) {
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let shadow_count =
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bindings_shadow_count.entry(name.clone()).or_default();
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binding_hash = Some(calc_binding_hash(&name, *shadow_count))
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}
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};
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let mut h = highlight_def(db, def);
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if let Definition::Local(local) = &def {
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if is_consumed_lvalue(name_ref.syntax().clone().into(), local, db) {
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h |= HlMod::Consuming;
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}
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}
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if let Some(parent) = name_ref.syntax().parent() {
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if matches!(parent.kind(), FIELD_EXPR | RECORD_PAT_FIELD) {
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if let Definition::Field(field) = def {
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if let VariantDef::Union(_) = field.parent_def(db) {
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h |= HlMod::Unsafe;
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}
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}
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}
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}
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h
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}
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NameRefClass::FieldShorthand { .. } => {
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HlTag::Symbol(SymbolKind::Field).into()
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}
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},
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None if syntactic_name_ref_highlighting => {
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highlight_name_ref_by_syntax(name_ref, sema)
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}
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None => HlTag::UnresolvedReference.into(),
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}
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})
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}
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// Simple token-based highlighting
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COMMENT => {
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let comment = element.into_token().and_then(ast::Comment::cast)?;
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let h = HlTag::Comment;
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match comment.kind().doc {
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Some(_) => h | HlMod::Documentation,
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None => h.into(),
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}
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}
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STRING | BYTE_STRING => HlTag::StringLiteral.into(),
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ATTR => HlTag::Attribute.into(),
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INT_NUMBER | FLOAT_NUMBER => HlTag::NumericLiteral.into(),
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BYTE => HlTag::ByteLiteral.into(),
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CHAR => HlTag::CharLiteral.into(),
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QUESTION => Highlight::new(HlTag::Operator) | HlMod::ControlFlow,
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LIFETIME => {
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let lifetime = element.into_node().and_then(ast::Lifetime::cast).unwrap();
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match NameClass::classify_lifetime(sema, &lifetime) {
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Some(NameClass::Definition(def)) => highlight_def(db, def) | HlMod::Definition,
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None => match NameRefClass::classify_lifetime(sema, &lifetime) {
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Some(NameRefClass::Definition(def)) => highlight_def(db, def),
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_ => Highlight::new(HlTag::Symbol(SymbolKind::LifetimeParam)),
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},
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_ => Highlight::new(HlTag::Symbol(SymbolKind::LifetimeParam)) | HlMod::Definition,
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}
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}
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p if p.is_punct() => match p {
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T![&] => {
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let h = HlTag::Operator.into();
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let is_unsafe = element
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.parent()
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.and_then(ast::RefExpr::cast)
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.map(|ref_expr| sema.is_unsafe_ref_expr(&ref_expr))
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.unwrap_or(false);
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if is_unsafe {
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h | HlMod::Unsafe
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} else {
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h
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}
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}
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T![::] | T![->] | T![=>] | T![..] | T![=] | T![@] | T![.] => HlTag::Operator.into(),
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T![!] if element.parent().and_then(ast::MacroCall::cast).is_some() => {
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HlTag::Symbol(SymbolKind::Macro).into()
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}
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T![!] if element.parent().and_then(ast::NeverType::cast).is_some() => {
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HlTag::BuiltinType.into()
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}
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T![*] if element.parent().and_then(ast::PtrType::cast).is_some() => {
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HlTag::Keyword.into()
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}
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T![*] if element.parent().and_then(ast::PrefixExpr::cast).is_some() => {
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let prefix_expr = element.parent().and_then(ast::PrefixExpr::cast)?;
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let expr = prefix_expr.expr()?;
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let ty = sema.type_of_expr(&expr)?;
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if ty.is_raw_ptr() {
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HlTag::Operator | HlMod::Unsafe
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} else if let Some(ast::PrefixOp::Deref) = prefix_expr.op_kind() {
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HlTag::Operator.into()
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} else {
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HlTag::Punctuation.into()
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}
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}
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T![-] if element.parent().and_then(ast::PrefixExpr::cast).is_some() => {
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let prefix_expr = element.parent().and_then(ast::PrefixExpr::cast)?;
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let expr = prefix_expr.expr()?;
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match expr {
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ast::Expr::Literal(_) => HlTag::NumericLiteral,
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_ => HlTag::Operator,
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}
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.into()
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}
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_ if element.parent().and_then(ast::PrefixExpr::cast).is_some() => {
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HlTag::Operator.into()
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}
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_ if element.parent().and_then(ast::BinExpr::cast).is_some() => HlTag::Operator.into(),
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_ if element.parent().and_then(ast::RangeExpr::cast).is_some() => {
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HlTag::Operator.into()
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}
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_ if element.parent().and_then(ast::RangePat::cast).is_some() => HlTag::Operator.into(),
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_ if element.parent().and_then(ast::RestPat::cast).is_some() => HlTag::Operator.into(),
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_ if element.parent().and_then(ast::Attr::cast).is_some() => HlTag::Attribute.into(),
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_ => HlTag::Punctuation.into(),
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},
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k if k.is_keyword() => {
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let h = Highlight::new(HlTag::Keyword);
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match k {
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T![break]
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| T![continue]
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| T![else]
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| T![if]
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| T![loop]
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| T![match]
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| T![return]
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| T![while]
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| T![in] => h | HlMod::ControlFlow,
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T![for] if !is_child_of_impl(&element) => h | HlMod::ControlFlow,
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T![unsafe] => h | HlMod::Unsafe,
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T![true] | T![false] => HlTag::BoolLiteral.into(),
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T![self] => {
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let self_param_is_mut = element
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.parent()
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.and_then(ast::SelfParam::cast)
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.and_then(|p| p.mut_token())
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.is_some();
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let self_path = &element
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.parent()
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.as_ref()
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.and_then(SyntaxNode::parent)
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.and_then(ast::Path::cast)
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.and_then(|p| sema.resolve_path(&p));
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let mut h = HlTag::Symbol(SymbolKind::SelfParam).into();
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if self_param_is_mut
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|| matches!(self_path,
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Some(hir::PathResolution::Local(local))
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if local.is_self(db)
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&& (local.is_mut(db) || local.ty(db).is_mutable_reference())
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)
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{
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h |= HlMod::Mutable
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}
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if let Some(hir::PathResolution::Local(local)) = self_path {
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if is_consumed_lvalue(element, &local, db) {
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h |= HlMod::Consuming;
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}
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}
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h
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}
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T![ref] => element
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.parent()
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.and_then(ast::IdentPat::cast)
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.and_then(|ident_pat| {
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if sema.is_unsafe_ident_pat(&ident_pat) {
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Some(HlMod::Unsafe)
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} else {
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None
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}
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})
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.map(|modifier| h | modifier)
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.unwrap_or(h),
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_ => h,
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}
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}
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_ => return None,
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};
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return Some((highlight, binding_hash));
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fn calc_binding_hash(name: &hir::Name, shadow_count: u32) -> u64 {
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fn hash<T: std::hash::Hash + std::fmt::Debug>(x: T) -> u64 {
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use std::{collections::hash_map::DefaultHasher, hash::Hasher};
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let mut hasher = DefaultHasher::new();
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x.hash(&mut hasher);
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hasher.finish()
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}
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hash((name, shadow_count))
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}
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}
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fn highlight_def(db: &RootDatabase, def: Definition) -> Highlight {
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match def {
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Definition::Macro(_) => HlTag::Symbol(SymbolKind::Macro),
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Definition::Field(_) => HlTag::Symbol(SymbolKind::Field),
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Definition::ModuleDef(def) => match def {
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hir::ModuleDef::Module(_) => HlTag::Symbol(SymbolKind::Module),
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hir::ModuleDef::Function(func) => {
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let mut h = Highlight::new(HlTag::Symbol(SymbolKind::Function));
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if func.as_assoc_item(db).is_some() {
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h |= HlMod::Associated;
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if func.self_param(db).is_none() {
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h |= HlMod::Static
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}
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}
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if func.is_unsafe(db) {
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h |= HlMod::Unsafe;
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}
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return h;
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}
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hir::ModuleDef::Adt(hir::Adt::Struct(_)) => HlTag::Symbol(SymbolKind::Struct),
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hir::ModuleDef::Adt(hir::Adt::Enum(_)) => HlTag::Symbol(SymbolKind::Enum),
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hir::ModuleDef::Adt(hir::Adt::Union(_)) => HlTag::Symbol(SymbolKind::Union),
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hir::ModuleDef::Variant(_) => HlTag::Symbol(SymbolKind::Variant),
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hir::ModuleDef::Const(konst) => {
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let mut h = Highlight::new(HlTag::Symbol(SymbolKind::Const));
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if konst.as_assoc_item(db).is_some() {
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h |= HlMod::Associated
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}
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return h;
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}
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hir::ModuleDef::Trait(_) => HlTag::Symbol(SymbolKind::Trait),
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hir::ModuleDef::TypeAlias(type_) => {
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let mut h = Highlight::new(HlTag::Symbol(SymbolKind::TypeAlias));
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if type_.as_assoc_item(db).is_some() {
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h |= HlMod::Associated
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}
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return h;
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}
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hir::ModuleDef::BuiltinType(_) => HlTag::BuiltinType,
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hir::ModuleDef::Static(s) => {
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let mut h = Highlight::new(HlTag::Symbol(SymbolKind::Static));
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if s.is_mut(db) {
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h |= HlMod::Mutable;
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h |= HlMod::Unsafe;
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}
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return h;
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}
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},
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Definition::SelfType(_) => HlTag::Symbol(SymbolKind::Impl),
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Definition::TypeParam(_) => HlTag::Symbol(SymbolKind::TypeParam),
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Definition::ConstParam(_) => HlTag::Symbol(SymbolKind::ConstParam),
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Definition::Local(local) => {
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let tag = if local.is_param(db) {
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HlTag::Symbol(SymbolKind::ValueParam)
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} else {
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HlTag::Symbol(SymbolKind::Local)
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};
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let mut h = Highlight::new(tag);
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if local.is_mut(db) || local.ty(db).is_mutable_reference() {
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h |= HlMod::Mutable;
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}
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if local.ty(db).as_callable(db).is_some() || local.ty(db).impls_fnonce(db) {
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h |= HlMod::Callable;
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}
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return h;
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}
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Definition::LifetimeParam(_) => HlTag::Symbol(SymbolKind::LifetimeParam),
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Definition::Label(_) => HlTag::Symbol(SymbolKind::Label),
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}
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.into()
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}
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fn highlight_func_by_name_ref(
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sema: &Semantics<RootDatabase>,
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name_ref: &ast::NameRef,
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) -> Option<Highlight> {
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let mc = name_ref.syntax().parent().and_then(ast::MethodCallExpr::cast)?;
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highlight_method_call(sema, &mc)
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}
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fn highlight_method_call(
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sema: &Semantics<RootDatabase>,
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method_call: &ast::MethodCallExpr,
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) -> Option<Highlight> {
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let func = sema.resolve_method_call(&method_call)?;
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let mut h = HlTag::Symbol(SymbolKind::Function).into();
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h |= HlMod::Associated;
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if func.is_unsafe(sema.db) || sema.is_unsafe_method_call(&method_call) {
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h |= HlMod::Unsafe;
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}
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if let Some(self_param) = func.self_param(sema.db) {
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match self_param.access(sema.db) {
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hir::Access::Shared => (),
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hir::Access::Exclusive => h |= HlMod::Mutable,
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hir::Access::Owned => {
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if let Some(receiver_ty) =
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method_call.receiver().and_then(|it| sema.type_of_expr(&it))
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{
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if !receiver_ty.is_copy(sema.db) {
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h |= HlMod::Consuming
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}
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}
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}
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}
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}
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Some(h)
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}
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fn highlight_name_by_syntax(name: ast::Name) -> Highlight {
|
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let default = HlTag::UnresolvedReference;
|
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|
|
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|
let parent = match name.syntax().parent() {
|
||
|
Some(it) => it,
|
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|
_ => return default.into(),
|
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|
};
|
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|
|
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|
let tag = match parent.kind() {
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|
STRUCT => HlTag::Symbol(SymbolKind::Struct),
|
||
|
ENUM => HlTag::Symbol(SymbolKind::Enum),
|
||
|
VARIANT => HlTag::Symbol(SymbolKind::Variant),
|
||
|
UNION => HlTag::Symbol(SymbolKind::Union),
|
||
|
TRAIT => HlTag::Symbol(SymbolKind::Trait),
|
||
|
TYPE_ALIAS => HlTag::Symbol(SymbolKind::TypeAlias),
|
||
|
TYPE_PARAM => HlTag::Symbol(SymbolKind::TypeParam),
|
||
|
RECORD_FIELD => HlTag::Symbol(SymbolKind::Field),
|
||
|
MODULE => HlTag::Symbol(SymbolKind::Module),
|
||
|
FN => HlTag::Symbol(SymbolKind::Function),
|
||
|
CONST => HlTag::Symbol(SymbolKind::Const),
|
||
|
STATIC => HlTag::Symbol(SymbolKind::Static),
|
||
|
IDENT_PAT => HlTag::Symbol(SymbolKind::Local),
|
||
|
_ => default,
|
||
|
};
|
||
|
|
||
|
tag.into()
|
||
|
}
|
||
|
|
||
|
fn highlight_name_ref_by_syntax(name: ast::NameRef, sema: &Semantics<RootDatabase>) -> Highlight {
|
||
|
let default = HlTag::UnresolvedReference;
|
||
|
|
||
|
let parent = match name.syntax().parent() {
|
||
|
Some(it) => it,
|
||
|
_ => return default.into(),
|
||
|
};
|
||
|
|
||
|
match parent.kind() {
|
||
|
METHOD_CALL_EXPR => {
|
||
|
return ast::MethodCallExpr::cast(parent)
|
||
|
.and_then(|it| highlight_method_call(sema, &it))
|
||
|
.unwrap_or_else(|| HlTag::Symbol(SymbolKind::Function).into());
|
||
|
}
|
||
|
FIELD_EXPR => {
|
||
|
let h = HlTag::Symbol(SymbolKind::Field);
|
||
|
let is_union = ast::FieldExpr::cast(parent)
|
||
|
.and_then(|field_expr| {
|
||
|
let field = sema.resolve_field(&field_expr)?;
|
||
|
Some(if let VariantDef::Union(_) = field.parent_def(sema.db) {
|
||
|
true
|
||
|
} else {
|
||
|
false
|
||
|
})
|
||
|
})
|
||
|
.unwrap_or(false);
|
||
|
if is_union {
|
||
|
h | HlMod::Unsafe
|
||
|
} else {
|
||
|
h.into()
|
||
|
}
|
||
|
}
|
||
|
PATH_SEGMENT => {
|
||
|
let path = match parent.parent().and_then(ast::Path::cast) {
|
||
|
Some(it) => it,
|
||
|
_ => return default.into(),
|
||
|
};
|
||
|
let expr = match path.syntax().parent().and_then(ast::PathExpr::cast) {
|
||
|
Some(it) => it,
|
||
|
_ => {
|
||
|
// within path, decide whether it is module or adt by checking for uppercase name
|
||
|
return if name.text().chars().next().unwrap_or_default().is_uppercase() {
|
||
|
HlTag::Symbol(SymbolKind::Struct)
|
||
|
} else {
|
||
|
HlTag::Symbol(SymbolKind::Module)
|
||
|
}
|
||
|
.into();
|
||
|
}
|
||
|
};
|
||
|
let parent = match expr.syntax().parent() {
|
||
|
Some(it) => it,
|
||
|
None => return default.into(),
|
||
|
};
|
||
|
|
||
|
match parent.kind() {
|
||
|
CALL_EXPR => HlTag::Symbol(SymbolKind::Function).into(),
|
||
|
_ => if name.text().chars().next().unwrap_or_default().is_uppercase() {
|
||
|
HlTag::Symbol(SymbolKind::Struct)
|
||
|
} else {
|
||
|
HlTag::Symbol(SymbolKind::Const)
|
||
|
}
|
||
|
.into(),
|
||
|
}
|
||
|
}
|
||
|
_ => default.into(),
|
||
|
}
|
||
|
}
|
||
|
|
||
|
fn is_consumed_lvalue(
|
||
|
node: NodeOrToken<SyntaxNode, SyntaxToken>,
|
||
|
local: &hir::Local,
|
||
|
db: &RootDatabase,
|
||
|
) -> bool {
|
||
|
// When lvalues are passed as arguments and they're not Copy, then mark them as Consuming.
|
||
|
parents_match(node, &[PATH_SEGMENT, PATH, PATH_EXPR, ARG_LIST]) && !local.ty(db).is_copy(db)
|
||
|
}
|
||
|
|
||
|
/// Returns true if the parent nodes of `node` all match the `SyntaxKind`s in `kinds` exactly.
|
||
|
fn parents_match(mut node: NodeOrToken<SyntaxNode, SyntaxToken>, mut kinds: &[SyntaxKind]) -> bool {
|
||
|
while let (Some(parent), [kind, rest @ ..]) = (&node.parent(), kinds) {
|
||
|
if parent.kind() != *kind {
|
||
|
return false;
|
||
|
}
|
||
|
|
||
|
// FIXME: Would be nice to get parent out of the match, but binding by-move and by-value
|
||
|
// in the same pattern is unstable: rust-lang/rust#68354.
|
||
|
node = node.parent().unwrap().into();
|
||
|
kinds = rest;
|
||
|
}
|
||
|
|
||
|
// Only true if we matched all expected kinds
|
||
|
kinds.len() == 0
|
||
|
}
|
||
|
|
||
|
fn is_child_of_impl(element: &SyntaxElement) -> bool {
|
||
|
match element.parent() {
|
||
|
Some(e) => e.kind() == IMPL,
|
||
|
_ => false,
|
||
|
}
|
||
|
}
|