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1 // This module contains some shared code for encoding and decoding various
2 // things from the `ty` module, and in particular implements support for
3 // "shorthands" which allow to have pointers back into the already encoded
4 // stream instead of re-encoding the same thing twice.
5 //
6 // The functionality in here is shared between persisting to crate metadata and
7 // persisting to incr. comp. caches.
8
9 use crate::arena::ArenaAllocatable;
10 use crate::infer::canonical::{CanonicalVarInfo, CanonicalVarInfos};
11 use crate::mir::{self, interpret::Allocation};
12 use crate::ty::subst::SubstsRef;
13 use crate::ty::{self, List, Ty, TyCtxt};
14 use rustc_data_structures::fx::FxHashMap;
15 use rustc_hir::def_id::{CrateNum, DefId};
16 use rustc_serialize::{opaque, Decodable, Decoder, Encodable, Encoder};
17 use rustc_span::Span;
18 use std::hash::Hash;
19 use std::intrinsics;
20
21 /// The shorthand encoding uses an enum's variant index `usize`
22 /// and is offset by this value so it never matches a real variant.
23 /// This offset is also chosen so that the first byte is never < 0x80.
24 pub const SHORTHAND_OFFSET: usize = 0x80;
25
26 pub trait EncodableWithShorthand: Clone + Eq + Hash {
27 type Variant: Encodable;
28 fn variant(&self) -> &Self::Variant;
29 }
30
31 #[allow(rustc::usage_of_ty_tykind)]
32 impl<'tcx> EncodableWithShorthand for Ty<'tcx> {
33 type Variant = ty::TyKind<'tcx>;
34 fn variant(&self) -> &Self::Variant {
35 &self.kind
36 }
37 }
38
39 impl<'tcx> EncodableWithShorthand for ty::Predicate<'tcx> {
40 type Variant = ty::Predicate<'tcx>;
41 fn variant(&self) -> &Self::Variant {
42 self
43 }
44 }
45
46 pub trait TyEncoder: Encoder {
47 fn position(&self) -> usize;
48 }
49
50 impl TyEncoder for opaque::Encoder {
51 #[inline]
52 fn position(&self) -> usize {
53 self.position()
54 }
55 }
56
57 /// Encode the given value or a previously cached shorthand.
58 pub fn encode_with_shorthand<E, T, M>(encoder: &mut E, value: &T, cache: M) -> Result<(), E::Error>
59 where
60 E: TyEncoder,
61 M: for<'b> Fn(&'b mut E) -> &'b mut FxHashMap<T, usize>,
62 T: EncodableWithShorthand,
63 {
64 let existing_shorthand = cache(encoder).get(value).cloned();
65 if let Some(shorthand) = existing_shorthand {
66 return encoder.emit_usize(shorthand);
67 }
68
69 let variant = value.variant();
70
71 let start = encoder.position();
72 variant.encode(encoder)?;
73 let len = encoder.position() - start;
74
75 // The shorthand encoding uses the same usize as the
76 // discriminant, with an offset so they can't conflict.
77 let discriminant = intrinsics::discriminant_value(variant);
78 assert!(discriminant < SHORTHAND_OFFSET as u64);
79 let shorthand = start + SHORTHAND_OFFSET;
80
81 // Get the number of bits that leb128 could fit
82 // in the same space as the fully encoded type.
83 let leb128_bits = len * 7;
84
85 // Check that the shorthand is a not longer than the
86 // full encoding itself, i.e., it's an obvious win.
87 if leb128_bits >= 64 || (shorthand as u64) < (1 << leb128_bits) {
88 cache(encoder).insert(value.clone(), shorthand);
89 }
90
91 Ok(())
92 }
93
94 pub fn encode_spanned_predicates<'tcx, E, C>(
95 encoder: &mut E,
96 predicates: &'tcx [(ty::Predicate<'tcx>, Span)],
97 cache: C,
98 ) -> Result<(), E::Error>
99 where
100 E: TyEncoder,
101 C: for<'b> Fn(&'b mut E) -> &'b mut FxHashMap<ty::Predicate<'tcx>, usize>,
102 {
103 predicates.len().encode(encoder)?;
104 for (predicate, span) in predicates {
105 encode_with_shorthand(encoder, predicate, &cache)?;
106 span.encode(encoder)?;
107 }
108 Ok(())
109 }
110
111 pub trait TyDecoder<'tcx>: Decoder {
112 fn tcx(&self) -> TyCtxt<'tcx>;
113
114 fn peek_byte(&self) -> u8;
115
116 fn position(&self) -> usize;
117
118 fn cached_ty_for_shorthand<F>(
119 &mut self,
120 shorthand: usize,
121 or_insert_with: F,
122 ) -> Result<Ty<'tcx>, Self::Error>
123 where
124 F: FnOnce(&mut Self) -> Result<Ty<'tcx>, Self::Error>;
125
126 fn with_position<F, R>(&mut self, pos: usize, f: F) -> R
127 where
128 F: FnOnce(&mut Self) -> R;
129
130 fn map_encoded_cnum_to_current(&self, cnum: CrateNum) -> CrateNum;
131
132 fn positioned_at_shorthand(&self) -> bool {
133 (self.peek_byte() & (SHORTHAND_OFFSET as u8)) != 0
134 }
135 }
136
137 #[inline]
138 pub fn decode_arena_allocable<D, T: ArenaAllocatable + Decodable>(
139 decoder: &mut D,
140 ) -> Result<&'tcx T, D::Error>
141 where
142 D: TyDecoder<'tcx>,
143 {
144 Ok(decoder.tcx().arena.alloc(Decodable::decode(decoder)?))
145 }
146
147 #[inline]
148 pub fn decode_arena_allocable_slice<D, T: ArenaAllocatable + Decodable>(
149 decoder: &mut D,
150 ) -> Result<&'tcx [T], D::Error>
151 where
152 D: TyDecoder<'tcx>,
153 {
154 Ok(decoder.tcx().arena.alloc_from_iter(<Vec<T> as Decodable>::decode(decoder)?))
155 }
156
157 #[inline]
158 pub fn decode_cnum<D>(decoder: &mut D) -> Result<CrateNum, D::Error>
159 where
160 D: TyDecoder<'tcx>,
161 {
162 let cnum = CrateNum::from_u32(u32::decode(decoder)?);
163 Ok(decoder.map_encoded_cnum_to_current(cnum))
164 }
165
166 #[allow(rustc::usage_of_ty_tykind)]
167 #[inline]
168 pub fn decode_ty<D>(decoder: &mut D) -> Result<Ty<'tcx>, D::Error>
169 where
170 D: TyDecoder<'tcx>,
171 {
172 // Handle shorthands first, if we have an usize > 0x80.
173 if decoder.positioned_at_shorthand() {
174 let pos = decoder.read_usize()?;
175 assert!(pos >= SHORTHAND_OFFSET);
176 let shorthand = pos - SHORTHAND_OFFSET;
177
178 decoder.cached_ty_for_shorthand(shorthand, |decoder| {
179 decoder.with_position(shorthand, Ty::decode)
180 })
181 } else {
182 let tcx = decoder.tcx();
183 Ok(tcx.mk_ty(ty::TyKind::decode(decoder)?))
184 }
185 }
186
187 #[inline]
188 pub fn decode_spanned_predicates<D>(
189 decoder: &mut D,
190 ) -> Result<&'tcx [(ty::Predicate<'tcx>, Span)], D::Error>
191 where
192 D: TyDecoder<'tcx>,
193 {
194 let tcx = decoder.tcx();
195 Ok(tcx.arena.alloc_from_iter(
196 (0..decoder.read_usize()?)
197 .map(|_| {
198 // Handle shorthands first, if we have an usize > 0x80.
199 let predicate = if decoder.positioned_at_shorthand() {
200 let pos = decoder.read_usize()?;
201 assert!(pos >= SHORTHAND_OFFSET);
202 let shorthand = pos - SHORTHAND_OFFSET;
203
204 decoder.with_position(shorthand, ty::Predicate::decode)
205 } else {
206 ty::Predicate::decode(decoder)
207 }?;
208 Ok((predicate, Decodable::decode(decoder)?))
209 })
210 .collect::<Result<Vec<_>, _>>()?,
211 ))
212 }
213
214 #[inline]
215 pub fn decode_substs<D>(decoder: &mut D) -> Result<SubstsRef<'tcx>, D::Error>
216 where
217 D: TyDecoder<'tcx>,
218 {
219 let len = decoder.read_usize()?;
220 let tcx = decoder.tcx();
221 Ok(tcx.mk_substs((0..len).map(|_| Decodable::decode(decoder)))?)
222 }
223
224 #[inline]
225 pub fn decode_place<D>(decoder: &mut D) -> Result<mir::Place<'tcx>, D::Error>
226 where
227 D: TyDecoder<'tcx>,
228 {
229 let local: mir::Local = Decodable::decode(decoder)?;
230 let len = decoder.read_usize()?;
231 let projection: &'tcx List<mir::PlaceElem<'tcx>> =
232 decoder.tcx().mk_place_elems((0..len).map(|_| Decodable::decode(decoder)))?;
233 Ok(mir::Place { local, projection })
234 }
235
236 #[inline]
237 pub fn decode_region<D>(decoder: &mut D) -> Result<ty::Region<'tcx>, D::Error>
238 where
239 D: TyDecoder<'tcx>,
240 {
241 Ok(decoder.tcx().mk_region(Decodable::decode(decoder)?))
242 }
243
244 #[inline]
245 pub fn decode_ty_slice<D>(decoder: &mut D) -> Result<&'tcx ty::List<Ty<'tcx>>, D::Error>
246 where
247 D: TyDecoder<'tcx>,
248 {
249 let len = decoder.read_usize()?;
250 Ok(decoder.tcx().mk_type_list((0..len).map(|_| Decodable::decode(decoder)))?)
251 }
252
253 #[inline]
254 pub fn decode_adt_def<D>(decoder: &mut D) -> Result<&'tcx ty::AdtDef, D::Error>
255 where
256 D: TyDecoder<'tcx>,
257 {
258 let def_id = DefId::decode(decoder)?;
259 Ok(decoder.tcx().adt_def(def_id))
260 }
261
262 #[inline]
263 pub fn decode_existential_predicate_slice<D>(
264 decoder: &mut D,
265 ) -> Result<&'tcx ty::List<ty::ExistentialPredicate<'tcx>>, D::Error>
266 where
267 D: TyDecoder<'tcx>,
268 {
269 let len = decoder.read_usize()?;
270 Ok(decoder.tcx().mk_existential_predicates((0..len).map(|_| Decodable::decode(decoder)))?)
271 }
272
273 #[inline]
274 pub fn decode_canonical_var_infos<D>(decoder: &mut D) -> Result<CanonicalVarInfos<'tcx>, D::Error>
275 where
276 D: TyDecoder<'tcx>,
277 {
278 let len = decoder.read_usize()?;
279 let interned: Result<Vec<CanonicalVarInfo>, _> =
280 (0..len).map(|_| Decodable::decode(decoder)).collect();
281 Ok(decoder.tcx().intern_canonical_var_infos(interned?.as_slice()))
282 }
283
284 #[inline]
285 pub fn decode_const<D>(decoder: &mut D) -> Result<&'tcx ty::Const<'tcx>, D::Error>
286 where
287 D: TyDecoder<'tcx>,
288 {
289 Ok(decoder.tcx().mk_const(Decodable::decode(decoder)?))
290 }
291
292 #[inline]
293 pub fn decode_allocation<D>(decoder: &mut D) -> Result<&'tcx Allocation, D::Error>
294 where
295 D: TyDecoder<'tcx>,
296 {
297 Ok(decoder.tcx().intern_const_alloc(Decodable::decode(decoder)?))
298 }
299
300 #[macro_export]
301 macro_rules! __impl_decoder_methods {
302 ($($name:ident -> $ty:ty;)*) => {
303 $(
304 fn $name(&mut self) -> Result<$ty, Self::Error> {
305 self.opaque.$name()
306 }
307 )*
308 }
309 }
310
311 #[macro_export]
312 macro_rules! impl_arena_allocatable_decoder {
313 ([]$args:tt) => {};
314 ([decode $(, $attrs:ident)*]
315 [[$DecoderName:ident [$($typaram:tt),*]], [$name:ident: $ty:ty], $tcx:lifetime]) => {
316 impl<$($typaram),*> SpecializedDecoder<&$tcx $ty> for $DecoderName<$($typaram),*> {
317 #[inline]
318 fn specialized_decode(&mut self) -> Result<&$tcx $ty, Self::Error> {
319 decode_arena_allocable(self)
320 }
321 }
322
323 impl<$($typaram),*> SpecializedDecoder<&$tcx [$ty]> for $DecoderName<$($typaram),*> {
324 #[inline]
325 fn specialized_decode(&mut self) -> Result<&$tcx [$ty], Self::Error> {
326 decode_arena_allocable_slice(self)
327 }
328 }
329 };
330 ([$ignore:ident $(, $attrs:ident)*]$args:tt) => {
331 impl_arena_allocatable_decoder!([$($attrs),*]$args);
332 };
333 }
334
335 #[macro_export]
336 macro_rules! impl_arena_allocatable_decoders {
337 ($args:tt, [$($a:tt $name:ident: $ty:ty,)*], $tcx:lifetime) => {
338 $(
339 impl_arena_allocatable_decoder!($a [$args, [$name: $ty], $tcx]);
340 )*
341 }
342 }
343
344 #[macro_export]
345 macro_rules! implement_ty_decoder {
346 ($DecoderName:ident <$($typaram:tt),*>) => {
347 mod __ty_decoder_impl {
348 use std::borrow::Cow;
349
350 use rustc_serialize::{Decoder, SpecializedDecoder};
351
352 use $crate::infer::canonical::CanonicalVarInfos;
353 use $crate::ty;
354 use $crate::ty::codec::*;
355 use $crate::ty::subst::SubstsRef;
356 use rustc_hir::def_id::{CrateNum};
357
358 use rustc_span::Span;
359
360 use super::$DecoderName;
361
362 impl<$($typaram ),*> Decoder for $DecoderName<$($typaram),*> {
363 type Error = String;
364
365 __impl_decoder_methods! {
366 read_nil -> ();
367
368 read_u128 -> u128;
369 read_u64 -> u64;
370 read_u32 -> u32;
371 read_u16 -> u16;
372 read_u8 -> u8;
373 read_usize -> usize;
374
375 read_i128 -> i128;
376 read_i64 -> i64;
377 read_i32 -> i32;
378 read_i16 -> i16;
379 read_i8 -> i8;
380 read_isize -> isize;
381
382 read_bool -> bool;
383 read_f64 -> f64;
384 read_f32 -> f32;
385 read_char -> char;
386 read_str -> Cow<'_, str>;
387 }
388
389 fn error(&mut self, err: &str) -> Self::Error {
390 self.opaque.error(err)
391 }
392 }
393
394 // FIXME(#36588): These impls are horribly unsound as they allow
395 // the caller to pick any lifetime for `'tcx`, including `'static`,
396 // by using the unspecialized proxies to them.
397
398 arena_types!(impl_arena_allocatable_decoders, [$DecoderName [$($typaram),*]], 'tcx);
399
400 impl<$($typaram),*> SpecializedDecoder<CrateNum>
401 for $DecoderName<$($typaram),*> {
402 fn specialized_decode(&mut self) -> Result<CrateNum, Self::Error> {
403 decode_cnum(self)
404 }
405 }
406
407 impl<$($typaram),*> SpecializedDecoder<ty::Ty<'tcx>>
408 for $DecoderName<$($typaram),*> {
409 fn specialized_decode(&mut self) -> Result<ty::Ty<'tcx>, Self::Error> {
410 decode_ty(self)
411 }
412 }
413
414 impl<$($typaram),*> SpecializedDecoder<&'tcx [(ty::Predicate<'tcx>, Span)]>
415 for $DecoderName<$($typaram),*> {
416 fn specialized_decode(&mut self)
417 -> Result<&'tcx [(ty::Predicate<'tcx>, Span)], Self::Error> {
418 decode_spanned_predicates(self)
419 }
420 }
421
422 impl<$($typaram),*> SpecializedDecoder<SubstsRef<'tcx>>
423 for $DecoderName<$($typaram),*> {
424 fn specialized_decode(&mut self) -> Result<SubstsRef<'tcx>, Self::Error> {
425 decode_substs(self)
426 }
427 }
428
429 impl<$($typaram),*> SpecializedDecoder<$crate::mir::Place<'tcx>>
430 for $DecoderName<$($typaram),*> {
431 fn specialized_decode(
432 &mut self
433 ) -> Result<$crate::mir::Place<'tcx>, Self::Error> {
434 decode_place(self)
435 }
436 }
437
438 impl<$($typaram),*> SpecializedDecoder<ty::Region<'tcx>>
439 for $DecoderName<$($typaram),*> {
440 fn specialized_decode(&mut self) -> Result<ty::Region<'tcx>, Self::Error> {
441 decode_region(self)
442 }
443 }
444
445 impl<$($typaram),*> SpecializedDecoder<&'tcx ty::List<ty::Ty<'tcx>>>
446 for $DecoderName<$($typaram),*> {
447 fn specialized_decode(&mut self)
448 -> Result<&'tcx ty::List<ty::Ty<'tcx>>, Self::Error> {
449 decode_ty_slice(self)
450 }
451 }
452
453 impl<$($typaram),*> SpecializedDecoder<&'tcx ty::AdtDef>
454 for $DecoderName<$($typaram),*> {
455 fn specialized_decode(&mut self) -> Result<&'tcx ty::AdtDef, Self::Error> {
456 decode_adt_def(self)
457 }
458 }
459
460 impl<$($typaram),*> SpecializedDecoder<&'tcx ty::List<ty::ExistentialPredicate<'tcx>>>
461 for $DecoderName<$($typaram),*> {
462 fn specialized_decode(&mut self)
463 -> Result<&'tcx ty::List<ty::ExistentialPredicate<'tcx>>, Self::Error> {
464 decode_existential_predicate_slice(self)
465 }
466 }
467
468 impl<$($typaram),*> SpecializedDecoder<CanonicalVarInfos<'tcx>>
469 for $DecoderName<$($typaram),*> {
470 fn specialized_decode(&mut self)
471 -> Result<CanonicalVarInfos<'tcx>, Self::Error> {
472 decode_canonical_var_infos(self)
473 }
474 }
475
476 impl<$($typaram),*> SpecializedDecoder<&'tcx $crate::ty::Const<'tcx>>
477 for $DecoderName<$($typaram),*> {
478 fn specialized_decode(&mut self) -> Result<&'tcx ty::Const<'tcx>, Self::Error> {
479 decode_const(self)
480 }
481 }
482
483 impl<$($typaram),*> SpecializedDecoder<&'tcx $crate::mir::interpret::Allocation>
484 for $DecoderName<$($typaram),*> {
485 fn specialized_decode(
486 &mut self
487 ) -> Result<&'tcx $crate::mir::interpret::Allocation, Self::Error> {
488 decode_allocation(self)
489 }
490 }
491 }
492 }
493 }