pretty print hir attributes
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@@ -10,11 +10,142 @@ mod attributes;
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mod stability;
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mod version;
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use std::num::NonZero;
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pub use attributes::*;
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use rustc_abi::Align;
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use rustc_ast::token::CommentKind;
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use rustc_ast::{AttrStyle, IntTy, UintTy};
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use rustc_ast_pretty::pp::Printer;
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use rustc_span::hygiene::Transparency;
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use rustc_span::{Span, Symbol};
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pub use stability::*;
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use thin_vec::ThinVec;
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pub use version::*;
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/// Requirements for a `StableHashingContext` to be used in this crate.
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/// This is a hack to allow using the `HashStable_Generic` derive macro
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/// instead of implementing everything in `rustc_middle`.
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pub trait HashStableContext: rustc_ast::HashStableContext + rustc_abi::HashStableContext {}
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/// This trait is used to print attributes in `rustc_hir_pretty`.
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///
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/// For structs and enums it can be derived using [`rustc_macros::PrintAttribute`].
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/// The output will look a lot like a `Debug` implementation, but fields of several types
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/// like [`Span`]s and empty tuples, are gracefully skipped so they don't clutter the
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/// representation much.
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pub trait PrintAttribute {
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fn print_something(&self) -> bool;
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fn print_attribute(&self, p: &mut Printer);
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}
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impl<T: PrintAttribute> PrintAttribute for &T {
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fn print_something(&self) -> bool {
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T::print_something(self)
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}
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fn print_attribute(&self, p: &mut Printer) {
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T::print_attribute(self, p)
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}
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}
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impl<T: PrintAttribute> PrintAttribute for Option<T> {
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fn print_something(&self) -> bool {
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self.as_ref().is_some_and(|x| x.print_something())
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}
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fn print_attribute(&self, p: &mut Printer) {
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if let Some(i) = self {
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T::print_attribute(i, p)
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}
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}
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}
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impl<T: PrintAttribute> PrintAttribute for ThinVec<T> {
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fn print_something(&self) -> bool {
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self.is_empty() || self[0].print_something()
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}
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fn print_attribute(&self, p: &mut Printer) {
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let mut last_printed = false;
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p.word("[");
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for i in self {
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if last_printed {
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p.word_space(",");
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}
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i.print_attribute(p);
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last_printed = i.print_something();
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}
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p.word("]");
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}
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}
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macro_rules! print_skip {
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($($t: ty),* $(,)?) => {$(
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impl PrintAttribute for $t {
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fn print_something(&self) -> bool { false }
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fn print_attribute(&self, _: &mut Printer) { }
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})*
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};
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}
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macro_rules! print_disp {
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($($t: ty),* $(,)?) => {$(
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impl PrintAttribute for $t {
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fn print_something(&self) -> bool { true }
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fn print_attribute(&self, p: &mut Printer) {
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p.word(format!("{}", self));
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}
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}
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)*};
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}
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macro_rules! print_debug {
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($($t: ty),* $(,)?) => {$(
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impl PrintAttribute for $t {
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fn print_something(&self) -> bool { true }
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fn print_attribute(&self, p: &mut Printer) {
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p.word(format!("{:?}", self));
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}
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}
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)*};
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}
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macro_rules! print_tup {
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(num_print_something $($ts: ident)*) => { 0 $(+ $ts.print_something() as usize)* };
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() => {};
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($t: ident $($ts: ident)*) => {
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#[allow(non_snake_case, unused)]
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impl<$t: PrintAttribute, $($ts: PrintAttribute),*> PrintAttribute for ($t, $($ts),*) {
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fn print_something(&self) -> bool {
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let ($t, $($ts),*) = self;
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print_tup!(num_print_something $t $($ts)*) != 0
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}
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fn print_attribute(&self, p: &mut Printer) {
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let ($t, $($ts),*) = self;
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let parens = print_tup!(num_print_something $t $($ts)*) > 1;
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if parens {
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p.word("(");
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}
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let mut printed_anything = $t.print_something();
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$t.print_attribute(p);
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$(
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if printed_anything && $ts.print_something() {
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p.word_space(",");
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printed_anything = true;
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}
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$ts.print_attribute(p);
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)*
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if parens {
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p.word(")");
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}
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}
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}
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print_tup!($($ts)*);
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};
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}
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print_tup!(A B C D E F G H);
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print_skip!(Span, ());
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print_disp!(Symbol, u16, bool, NonZero<u32>);
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print_debug!(UintTy, IntTy, Align, AttrStyle, CommentKind, Transparency);
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