// FIXME(jdonszelmann): merge these two parsers and error when both attributes are present here. // note: need to model better how duplicate attr errors work when not using // SingleAttributeParser which is what we have two of here. use rustc_attr_data_structures::lints::AttributeLintKind; use rustc_attr_data_structures::{AttributeKind, InlineAttr}; use rustc_feature::{AttributeTemplate, template}; use rustc_span::{Symbol, sym}; use super::{AcceptContext, AttributeOrder, OnDuplicate}; use crate::attributes::SingleAttributeParser; use crate::context::Stage; use crate::parser::ArgParser; pub(crate) struct InlineParser; impl SingleAttributeParser for InlineParser { const PATH: &'static [Symbol] = &[sym::inline]; const ATTRIBUTE_ORDER: AttributeOrder = AttributeOrder::KeepLast; const ON_DUPLICATE: OnDuplicate = OnDuplicate::WarnButFutureError; const TEMPLATE: AttributeTemplate = template!(Word, List: "always|never"); fn convert(cx: &mut AcceptContext<'_, '_, S>, args: &ArgParser<'_>) -> Option { match args { ArgParser::NoArgs => Some(AttributeKind::Inline(InlineAttr::Hint, cx.attr_span)), ArgParser::List(list) => { let Some(l) = list.single() else { cx.expected_single_argument(list.span); return None; }; match l.meta_item().and_then(|i| i.path().word_sym()) { Some(sym::always) => { Some(AttributeKind::Inline(InlineAttr::Always, cx.attr_span)) } Some(sym::never) => { Some(AttributeKind::Inline(InlineAttr::Never, cx.attr_span)) } _ => { cx.expected_specific_argument(l.span(), vec!["always", "never"]); return None; } } } ArgParser::NameValue(_) => { let suggestions = >::TEMPLATE.suggestions(false, "inline"); let span = cx.attr_span; cx.emit_lint(AttributeLintKind::IllFormedAttributeInput { suggestions }, span); return None; } } } } pub(crate) struct RustcForceInlineParser; impl SingleAttributeParser for RustcForceInlineParser { const PATH: &'static [Symbol] = &[sym::rustc_force_inline]; const ATTRIBUTE_ORDER: AttributeOrder = AttributeOrder::KeepLast; const ON_DUPLICATE: OnDuplicate = OnDuplicate::WarnButFutureError; const TEMPLATE: AttributeTemplate = template!(Word, List: "reason", NameValueStr: "reason"); fn convert(cx: &mut AcceptContext<'_, '_, S>, args: &ArgParser<'_>) -> Option { let reason = match args { ArgParser::NoArgs => None, ArgParser::List(list) => { let Some(l) = list.single() else { cx.expected_single_argument(list.span); return None; }; let Some(reason) = l.lit().and_then(|i| i.kind.str()) else { cx.expected_string_literal(l.span(), l.lit()); return None; }; Some(reason) } ArgParser::NameValue(v) => { let Some(reason) = v.value_as_str() else { cx.expected_string_literal(v.value_span, Some(v.value_as_lit())); return None; }; Some(reason) } }; Some(AttributeKind::Inline( InlineAttr::Force { attr_span: cx.attr_span, reason }, cx.attr_span, )) } }