@@ -28,12 +28,12 @@ use rustc_data_structures::fx::FxIndexSet;
2828/// Inline (compressed) format:
2929/// - `span.base_or_index == span_data.lo`
3030/// - `span.len_or_tag == len == span_data.hi - span_data.lo` (must be `<= MAX_LEN`)
31- /// - `span.ctxt == span_data.ctxt` (must be `<= MAX_CTXT`)
31+ /// - `span.ctxt == span_data.ctxt` (must be `< MAX_CTXT`)
3232///
3333/// Interned format:
3434/// - `span.base_or_index == index` (indexes into the interner table)
3535/// - `span.len_or_tag == LEN_TAG` (high bit set, all other bits are zero)
36- /// - `span.ctxt == 0`
36+ /// - `span.ctxt == span_data.ctxt` (must be < `MAX_CTXT`) or `MAX_CTXT` otherwise
3737///
3838/// The inline form uses 0 for the tag value (rather than 1) so that we don't
3939/// need to mask out the tag bit when getting the length, and so that the
@@ -65,15 +65,15 @@ use rustc_data_structures::fx::FxIndexSet;
6565pub struct Span {
6666 base_or_index : u32 ,
6767 len_or_tag : u16 ,
68- ctxt_or_zero : u16 ,
68+ ctxt_or_max : u16 ,
6969}
7070
7171const LEN_TAG : u16 = 0b1000_0000_0000_0000 ;
7272const MAX_LEN : u32 = 0b0111_1111_1111_1111 ;
7373const MAX_CTXT : u32 = 0b1111_1111_1111_1111 ;
7474
7575/// Dummy span, both position and length are zero, syntax context is zero as well.
76- pub const DUMMY_SP : Span = Span { base_or_index : 0 , len_or_tag : 0 , ctxt_or_zero : 0 } ;
76+ pub const DUMMY_SP : Span = Span { base_or_index : 0 , len_or_tag : 0 , ctxt_or_max : 0 } ;
7777
7878impl Span {
7979 #[ inline]
@@ -89,14 +89,15 @@ impl Span {
8989
9090 let ( base, len, ctxt2) = ( lo. 0 , hi. 0 - lo. 0 , ctxt. as_u32 ( ) ) ;
9191
92- if len <= MAX_LEN && ctxt2 <= MAX_CTXT && parent. is_none ( ) {
92+ if len <= MAX_LEN && ctxt2 < MAX_CTXT && parent. is_none ( ) {
9393 // Inline format.
94- Span { base_or_index : base, len_or_tag : len as u16 , ctxt_or_zero : ctxt2 as u16 }
94+ Span { base_or_index : base, len_or_tag : len as u16 , ctxt_or_max : ctxt2 as u16 }
9595 } else {
9696 // Interned format.
9797 let index =
9898 with_span_interner ( |interner| interner. intern ( & SpanData { lo, hi, ctxt, parent } ) ) ;
99- Span { base_or_index : index, len_or_tag : LEN_TAG , ctxt_or_zero : 0 }
99+ let ctxt_or_max = if ctxt2 < MAX_CTXT { ctxt2 } else { MAX_CTXT } as u16 ;
100+ Span { base_or_index : index, len_or_tag : LEN_TAG , ctxt_or_max }
100101 }
101102 }
102103
@@ -119,16 +120,29 @@ impl Span {
119120 SpanData {
120121 lo : BytePos ( self . base_or_index ) ,
121122 hi : BytePos ( self . base_or_index + self . len_or_tag as u32 ) ,
122- ctxt : SyntaxContext :: from_u32 ( self . ctxt_or_zero as u32 ) ,
123+ ctxt : SyntaxContext :: from_u32 ( self . ctxt_or_max as u32 ) ,
123124 parent : None ,
124125 }
125126 } else {
126127 // Interned format.
127- debug_assert ! ( self . ctxt_or_zero == 0 ) ;
128128 let index = self . base_or_index ;
129129 with_span_interner ( |interner| interner. spans [ index as usize ] )
130130 }
131131 }
132+
133+ /// This function is used as a fast path when decoding the full `SpanData` is not necessary.
134+ #[ inline]
135+ pub fn ctxt ( self ) -> SyntaxContext {
136+ let ctxt_or_max = self . ctxt_or_max as u32 ;
137+ if ctxt_or_max < MAX_CTXT {
138+ // Inline format or interned format with inline ctxt.
139+ SyntaxContext :: from_u32 ( ctxt_or_max)
140+ } else {
141+ // Interned format.
142+ let index = self . base_or_index ;
143+ with_span_interner ( |interner| interner. spans [ index as usize ] . ctxt )
144+ }
145+ }
132146}
133147
134148#[ derive( Default ) ]
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