@@ -4,10 +4,10 @@ use crate::SPAN_TRACK;
44use crate :: { BytePos , SpanData } ;
55
66use rustc_data_structures:: fx:: FxIndexSet ;
7-
87// This code is very hot and uses lots of arithmetic, avoid overflow checks for performance.
98// See https://github.com/rust-lang/rust/pull/119440#issuecomment-1874255727
109use rustc_serialize:: int_overflow:: DebugStrictAdd ;
10+ use std:: mem:: transmute;
1111
1212/// A compressed span.
1313///
@@ -87,6 +87,99 @@ pub struct Span {
8787 ctxt_or_parent_or_marker : u16 ,
8888}
8989
90+ // Convenience structures for all span formats.
91+ #[ derive( Clone , Copy ) ]
92+ struct InlineCtxt {
93+ lo : u32 ,
94+ len : u16 ,
95+ ctxt : u16 ,
96+ }
97+ #[ derive( Clone , Copy ) ]
98+ struct InlineParent {
99+ lo : u32 ,
100+ len_with_tag : u16 ,
101+ parent : u16 ,
102+ }
103+ #[ derive( Clone , Copy ) ]
104+ struct PartiallyInterned {
105+ index : u32 ,
106+ _marker1 : u16 ,
107+ ctxt : u16 ,
108+ }
109+ #[ derive( Clone , Copy ) ]
110+ struct Interned {
111+ index : u32 ,
112+ _marker1 : u16 ,
113+ _marker2 : u16 ,
114+ }
115+ enum Fmt < ' a > {
116+ InlineCtxt ( & ' a mut InlineCtxt ) ,
117+ InlineParent ( & ' a mut InlineParent ) ,
118+ PartiallyInterned ( & ' a mut PartiallyInterned ) ,
119+ Interned ( & ' a mut Interned ) ,
120+ }
121+
122+ impl InlineCtxt {
123+ fn data ( self ) -> SpanData {
124+ let len = self . len as u32 ;
125+ debug_assert ! ( len <= MAX_LEN ) ;
126+ SpanData {
127+ lo : BytePos ( self . lo ) ,
128+ hi : BytePos ( self . lo . debug_strict_add ( len) ) ,
129+ ctxt : SyntaxContext :: from_u32 ( self . ctxt as u32 ) ,
130+ parent : None ,
131+ }
132+ }
133+ fn to_span ( self ) -> Span {
134+ unsafe { transmute ( self ) }
135+ }
136+ }
137+ impl InlineParent {
138+ fn data ( self ) -> SpanData {
139+ let len = ( self . len_with_tag & !PARENT_TAG ) as u32 ;
140+ debug_assert ! ( len <= MAX_LEN ) ;
141+ let parent = LocalDefId { local_def_index : DefIndex :: from_u32 ( self . parent as u32 ) } ;
142+ SpanData {
143+ lo : BytePos ( self . lo ) ,
144+ hi : BytePos ( self . lo . debug_strict_add ( len) ) ,
145+ ctxt : SyntaxContext :: root ( ) ,
146+ parent : Some ( parent) ,
147+ }
148+ }
149+ fn to_span ( self ) -> Span {
150+ unsafe { transmute ( self ) }
151+ }
152+ }
153+ impl PartiallyInterned {
154+ fn data ( self ) -> SpanData {
155+ SpanData {
156+ ctxt : SyntaxContext :: from_u32 ( self . ctxt as u32 ) ,
157+ ..with_span_interner ( |interner| interner. spans [ self . index as usize ] )
158+ }
159+ }
160+ fn to_span ( self ) -> Span {
161+ unsafe { transmute ( self ) }
162+ }
163+ }
164+ impl Interned {
165+ fn data ( self ) -> SpanData {
166+ with_span_interner ( |interner| interner. spans [ self . index as usize ] )
167+ }
168+ fn to_span ( self ) -> Span {
169+ unsafe { transmute ( self ) }
170+ }
171+ }
172+ impl Fmt < ' _ > {
173+ fn data ( self ) -> SpanData {
174+ match self {
175+ Fmt :: InlineCtxt ( span) => span. data ( ) ,
176+ Fmt :: InlineParent ( span) => span. data ( ) ,
177+ Fmt :: PartiallyInterned ( span) => span. data ( ) ,
178+ Fmt :: Interned ( span) => span. data ( ) ,
179+ }
180+ }
181+ }
182+
90183// `MAX_LEN` is chosen so that `PARENT_TAG | MAX_LEN` is distinct from
91184// `BASE_LEN_INTERNED_MARKER`. (If `MAX_LEN` was 1 higher, this wouldn't be true.)
92185const MAX_LEN : u32 = 0b0111_1111_1111_1110 ;
@@ -111,42 +204,48 @@ impl Span {
111204 std:: mem:: swap ( & mut lo, & mut hi) ;
112205 }
113206
114- let ( lo2 , len, ctxt2 ) = ( lo . 0 , hi . 0 - lo . 0 , ctxt . as_u32 ( ) ) ;
115-
207+ // Small len may enable one of fully inline formats (or may not).
208+ let ( len , ctxt32 ) = ( hi . 0 - lo . 0 , ctxt . as_u32 ( ) ) ;
116209 if len <= MAX_LEN {
117- if ctxt2 <= MAX_CTXT && parent. is_none ( ) {
118- // Inline-context format.
119- return Span {
120- lo_or_index : lo2,
121- len_with_tag_or_marker : len as u16 ,
122- ctxt_or_parent_or_marker : ctxt2 as u16 ,
123- } ;
124- } else if ctxt2 == SyntaxContext :: root ( ) . as_u32 ( )
210+ if ctxt32 <= MAX_CTXT && parent. is_none ( ) {
211+ return InlineCtxt { lo : lo. 0 , len : len as u16 , ctxt : ctxt32 as u16 } . to_span ( ) ;
212+ } else if ctxt32 == 0
125213 && let Some ( parent) = parent
126- && let parent2 = parent. local_def_index . as_u32 ( )
127- && parent2 <= MAX_CTXT
214+ && let parent32 = parent. local_def_index . as_u32 ( )
215+ && parent32 <= MAX_CTXT
128216 {
129- // Inline-parent format.
130- return Span {
131- lo_or_index : lo2,
132- len_with_tag_or_marker : PARENT_TAG | len as u16 ,
133- ctxt_or_parent_or_marker : parent2 as u16 ,
134- } ;
217+ let len_with_tag = PARENT_TAG | len as u16 ;
218+ return InlineParent { lo : lo. 0 , len_with_tag, parent : parent32 as u16 } . to_span ( ) ;
135219 }
136220 }
137221
138- // Partially-interned or fully-interned format.
139- let index =
140- with_span_interner ( |interner| interner. intern ( & SpanData { lo, hi, ctxt, parent } ) ) ;
141- let ctxt_or_parent_or_marker = if ctxt2 <= MAX_CTXT {
142- ctxt2 as u16 // partially-interned
143- } else {
144- CTXT_INTERNED_MARKER // fully-interned
222+ // Otherwise small ctxt may enable the partially inline format.
223+ let index = |ctxt| {
224+ with_span_interner ( |interner| interner. intern ( & SpanData { lo, hi, ctxt, parent } ) )
145225 } ;
146- Span {
147- lo_or_index : index,
148- len_with_tag_or_marker : BASE_LEN_INTERNED_MARKER ,
149- ctxt_or_parent_or_marker,
226+ if ctxt32 <= MAX_CTXT {
227+ let index = index ( SyntaxContext :: from_u32 ( u32:: MAX ) ) ; // any value, should never be read
228+ PartiallyInterned { index, _marker1 : BASE_LEN_INTERNED_MARKER , ctxt : ctxt32 as u16 }
229+ . to_span ( )
230+ } else {
231+ let index = index ( ctxt) ;
232+ Interned { index, _marker1 : BASE_LEN_INTERNED_MARKER , _marker2 : CTXT_INTERNED_MARKER }
233+ . to_span ( )
234+ }
235+ }
236+
237+ #[ inline]
238+ fn fmt ( & mut self ) -> Fmt < ' _ > {
239+ if self . len_with_tag_or_marker != BASE_LEN_INTERNED_MARKER {
240+ if self . len_with_tag_or_marker & PARENT_TAG == 0 {
241+ Fmt :: InlineCtxt ( unsafe { transmute ( self ) } )
242+ } else {
243+ Fmt :: InlineParent ( unsafe { transmute ( self ) } )
244+ }
245+ } else if self . ctxt_or_parent_or_marker != CTXT_INTERNED_MARKER {
246+ Fmt :: PartiallyInterned ( unsafe { transmute ( self ) } )
247+ } else {
248+ Fmt :: Interned ( unsafe { transmute ( self ) } )
150249 }
151250 }
152251
@@ -162,39 +261,8 @@ impl Span {
162261 /// Internal function to translate between an encoded span and the expanded representation.
163262 /// This function must not be used outside the incremental engine.
164263 #[ inline]
165- pub fn data_untracked ( self ) -> SpanData {
166- if self . len_with_tag_or_marker != BASE_LEN_INTERNED_MARKER {
167- if self . len_with_tag_or_marker & PARENT_TAG == 0 {
168- // Inline-context format.
169- let len = self . len_with_tag_or_marker as u32 ;
170- debug_assert ! ( len <= MAX_LEN ) ;
171- SpanData {
172- lo : BytePos ( self . lo_or_index ) ,
173- hi : BytePos ( self . lo_or_index . debug_strict_add ( len) ) ,
174- ctxt : SyntaxContext :: from_u32 ( self . ctxt_or_parent_or_marker as u32 ) ,
175- parent : None ,
176- }
177- } else {
178- // Inline-parent format.
179- let len = ( self . len_with_tag_or_marker & !PARENT_TAG ) as u32 ;
180- debug_assert ! ( len <= MAX_LEN ) ;
181- let parent = LocalDefId {
182- local_def_index : DefIndex :: from_u32 ( self . ctxt_or_parent_or_marker as u32 ) ,
183- } ;
184- SpanData {
185- lo : BytePos ( self . lo_or_index ) ,
186- hi : BytePos ( self . lo_or_index . debug_strict_add ( len) ) ,
187- ctxt : SyntaxContext :: root ( ) ,
188- parent : Some ( parent) ,
189- }
190- }
191- } else {
192- // Fully-interned or partially-interned format. In either case,
193- // the interned value contains all the data, so we don't need to
194- // distinguish them.
195- let index = self . lo_or_index ;
196- with_span_interner ( |interner| interner. spans [ index as usize ] )
197- }
264+ pub fn data_untracked ( mut self ) -> SpanData {
265+ self . fmt ( ) . data ( )
198266 }
199267
200268 /// Returns `true` if this is a dummy span with any hygienic context.
@@ -214,26 +282,26 @@ impl Span {
214282 }
215283 }
216284
285+ // For optimization we are interested in cases in which the context is inline and the context
286+ // update doesn't change format. All non-inline or format changing scenarios require accessing
287+ // interner and can fall back to `Span::new`.
288+ pub fn update_ctxt ( & mut self , update : impl FnOnce ( SyntaxContext ) -> SyntaxContext ) {
289+ // FIXME(#125017): Update ctxt inline without touching interner when possible.
290+ let data = self . data ( ) ;
291+ * self = data. with_ctxt ( update ( data. ctxt ) ) ;
292+ }
293+
217294 // Returns either syntactic context, if it can be retrieved without taking the interner lock,
218295 // or an index into the interner if it cannot.
219- fn inline_ctxt ( self ) -> Result < SyntaxContext , usize > {
220- Ok ( if self . len_with_tag_or_marker != BASE_LEN_INTERNED_MARKER {
221- if self . len_with_tag_or_marker & PARENT_TAG == 0 {
222- // Inline-context format.
223- SyntaxContext :: from_u32 ( self . ctxt_or_parent_or_marker as u32 )
224- } else {
225- // Inline-parent format. We know that the SyntaxContext is root.
226- SyntaxContext :: root ( )
296+ fn inline_ctxt ( mut self ) -> Result < SyntaxContext , usize > {
297+ match self . fmt ( ) {
298+ Fmt :: InlineCtxt ( InlineCtxt { ctxt, .. } )
299+ | Fmt :: PartiallyInterned ( PartiallyInterned { ctxt, .. } ) => {
300+ Ok ( SyntaxContext :: from_u32 ( * ctxt as u32 ) )
227301 }
228- } else if self . ctxt_or_parent_or_marker != CTXT_INTERNED_MARKER {
229- // Partially-interned format. This path avoids looking up the
230- // interned value, and is the whole point of the
231- // partially-interned format.
232- SyntaxContext :: from_u32 ( self . ctxt_or_parent_or_marker as u32 )
233- } else {
234- // Fully-interned format.
235- return Err ( self . lo_or_index as usize ) ;
236- } )
302+ Fmt :: InlineParent ( _) => Ok ( SyntaxContext :: root ( ) ) ,
303+ Fmt :: Interned ( span) => Err ( span. index as usize ) ,
304+ }
237305 }
238306
239307 /// This function is used as a fast path when decoding the full `SpanData` is not necessary.
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