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Mehdi Aminief27db82016-12-12 19:34:26 +00001//===- MetadataLoader.cpp - Internal BitcodeReader implementation ---------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#include "MetadataLoader.h"
11#include "ValueList.h"
12
13#include "llvm/ADT/APFloat.h"
14#include "llvm/ADT/APInt.h"
15#include "llvm/ADT/ArrayRef.h"
16#include "llvm/ADT/DenseMap.h"
17#include "llvm/ADT/None.h"
18#include "llvm/ADT/STLExtras.h"
19#include "llvm/ADT/SmallString.h"
20#include "llvm/ADT/SmallVector.h"
21#include "llvm/ADT/StringRef.h"
22#include "llvm/ADT/Triple.h"
23#include "llvm/ADT/Twine.h"
24#include "llvm/Bitcode/BitcodeReader.h"
25#include "llvm/Bitcode/BitstreamReader.h"
26#include "llvm/Bitcode/LLVMBitCodes.h"
27#include "llvm/IR/Argument.h"
28#include "llvm/IR/Attributes.h"
29#include "llvm/IR/AutoUpgrade.h"
30#include "llvm/IR/BasicBlock.h"
31#include "llvm/IR/CallSite.h"
32#include "llvm/IR/CallingConv.h"
33#include "llvm/IR/Comdat.h"
34#include "llvm/IR/Constant.h"
35#include "llvm/IR/Constants.h"
36#include "llvm/IR/DebugInfo.h"
37#include "llvm/IR/DebugInfoMetadata.h"
38#include "llvm/IR/DebugLoc.h"
39#include "llvm/IR/DerivedTypes.h"
40#include "llvm/IR/DiagnosticInfo.h"
41#include "llvm/IR/DiagnosticPrinter.h"
42#include "llvm/IR/Function.h"
43#include "llvm/IR/GVMaterializer.h"
44#include "llvm/IR/GlobalAlias.h"
45#include "llvm/IR/GlobalIFunc.h"
46#include "llvm/IR/GlobalIndirectSymbol.h"
47#include "llvm/IR/GlobalObject.h"
48#include "llvm/IR/GlobalValue.h"
49#include "llvm/IR/GlobalVariable.h"
50#include "llvm/IR/InlineAsm.h"
51#include "llvm/IR/InstrTypes.h"
52#include "llvm/IR/Instruction.h"
53#include "llvm/IR/Instructions.h"
54#include "llvm/IR/Intrinsics.h"
55#include "llvm/IR/LLVMContext.h"
56#include "llvm/IR/Module.h"
57#include "llvm/IR/ModuleSummaryIndex.h"
58#include "llvm/IR/OperandTraits.h"
59#include "llvm/IR/Operator.h"
60#include "llvm/IR/TrackingMDRef.h"
61#include "llvm/IR/Type.h"
62#include "llvm/IR/ValueHandle.h"
63#include "llvm/Support/AtomicOrdering.h"
64#include "llvm/Support/Casting.h"
65#include "llvm/Support/CommandLine.h"
66#include "llvm/Support/Compiler.h"
67#include "llvm/Support/Debug.h"
68#include "llvm/Support/Error.h"
69#include "llvm/Support/ErrorHandling.h"
70#include "llvm/Support/ManagedStatic.h"
71#include "llvm/Support/MemoryBuffer.h"
72#include "llvm/Support/raw_ostream.h"
73#include <algorithm>
74#include <cassert>
75#include <cstddef>
76#include <cstdint>
77#include <deque>
78#include <limits>
79#include <map>
80#include <memory>
81#include <string>
82#include <system_error>
83#include <tuple>
84#include <utility>
85#include <vector>
86
87using namespace llvm;
88
Teresa Johnsona61f5e32016-12-16 21:25:01 +000089/// Flag whether we need to import full type definitions for ThinLTO.
90/// Currently needed for Darwin and LLDB.
91static cl::opt<bool> ImportFullTypeDefinitions(
92 "import-full-type-definitions", cl::init(false), cl::Hidden,
93 cl::desc("Import full type definitions for ThinLTO."));
94
Mehdi Aminief27db82016-12-12 19:34:26 +000095namespace {
96
97static int64_t unrotateSign(uint64_t U) { return U & 1 ? ~(U >> 1) : U >> 1; }
98
99class BitcodeReaderMetadataList {
100 unsigned NumFwdRefs;
101 bool AnyFwdRefs;
102 unsigned MinFwdRef;
103 unsigned MaxFwdRef;
104
105 /// Array of metadata references.
106 ///
107 /// Don't use std::vector here. Some versions of libc++ copy (instead of
108 /// move) on resize, and TrackingMDRef is very expensive to copy.
109 SmallVector<TrackingMDRef, 1> MetadataPtrs;
110
111 /// Structures for resolving old type refs.
112 struct {
113 SmallDenseMap<MDString *, TempMDTuple, 1> Unknown;
114 SmallDenseMap<MDString *, DICompositeType *, 1> Final;
115 SmallDenseMap<MDString *, DICompositeType *, 1> FwdDecls;
116 SmallVector<std::pair<TrackingMDRef, TempMDTuple>, 1> Arrays;
117 } OldTypeRefs;
118
119 LLVMContext &Context;
120
121public:
122 BitcodeReaderMetadataList(LLVMContext &C)
123 : NumFwdRefs(0), AnyFwdRefs(false), Context(C) {}
124
125 // vector compatibility methods
126 unsigned size() const { return MetadataPtrs.size(); }
127 void resize(unsigned N) { MetadataPtrs.resize(N); }
128 void push_back(Metadata *MD) { MetadataPtrs.emplace_back(MD); }
129 void clear() { MetadataPtrs.clear(); }
130 Metadata *back() const { return MetadataPtrs.back(); }
131 void pop_back() { MetadataPtrs.pop_back(); }
132 bool empty() const { return MetadataPtrs.empty(); }
133
134 Metadata *operator[](unsigned i) const {
135 assert(i < MetadataPtrs.size());
136 return MetadataPtrs[i];
137 }
138
139 Metadata *lookup(unsigned I) const {
140 if (I < MetadataPtrs.size())
141 return MetadataPtrs[I];
142 return nullptr;
143 }
144
145 void shrinkTo(unsigned N) {
146 assert(N <= size() && "Invalid shrinkTo request!");
147 assert(!AnyFwdRefs && "Unexpected forward refs");
148 MetadataPtrs.resize(N);
149 }
150
151 /// Return the given metadata, creating a replaceable forward reference if
152 /// necessary.
153 Metadata *getMetadataFwdRef(unsigned Idx);
154
155 /// Return the the given metadata only if it is fully resolved.
156 ///
157 /// Gives the same result as \a lookup(), unless \a MDNode::isResolved()
158 /// would give \c false.
159 Metadata *getMetadataIfResolved(unsigned Idx);
160
161 MDNode *getMDNodeFwdRefOrNull(unsigned Idx);
162 void assignValue(Metadata *MD, unsigned Idx);
163 void tryToResolveCycles();
164 bool hasFwdRefs() const { return AnyFwdRefs; }
165
166 /// Upgrade a type that had an MDString reference.
167 void addTypeRef(MDString &UUID, DICompositeType &CT);
168
169 /// Upgrade a type that had an MDString reference.
170 Metadata *upgradeTypeRef(Metadata *MaybeUUID);
171
172 /// Upgrade a type ref array that may have MDString references.
173 Metadata *upgradeTypeRefArray(Metadata *MaybeTuple);
174
175private:
176 Metadata *resolveTypeRefArray(Metadata *MaybeTuple);
177};
178
179void BitcodeReaderMetadataList::assignValue(Metadata *MD, unsigned Idx) {
180 if (Idx == size()) {
181 push_back(MD);
182 return;
183 }
184
185 if (Idx >= size())
186 resize(Idx + 1);
187
188 TrackingMDRef &OldMD = MetadataPtrs[Idx];
189 if (!OldMD) {
190 OldMD.reset(MD);
191 return;
192 }
193
194 // If there was a forward reference to this value, replace it.
195 TempMDTuple PrevMD(cast<MDTuple>(OldMD.get()));
196 PrevMD->replaceAllUsesWith(MD);
197 --NumFwdRefs;
198}
199
200Metadata *BitcodeReaderMetadataList::getMetadataFwdRef(unsigned Idx) {
201 if (Idx >= size())
202 resize(Idx + 1);
203
204 if (Metadata *MD = MetadataPtrs[Idx])
205 return MD;
206
207 // Track forward refs to be resolved later.
208 if (AnyFwdRefs) {
209 MinFwdRef = std::min(MinFwdRef, Idx);
210 MaxFwdRef = std::max(MaxFwdRef, Idx);
211 } else {
212 AnyFwdRefs = true;
213 MinFwdRef = MaxFwdRef = Idx;
214 }
215 ++NumFwdRefs;
216
217 // Create and return a placeholder, which will later be RAUW'd.
218 Metadata *MD = MDNode::getTemporary(Context, None).release();
219 MetadataPtrs[Idx].reset(MD);
220 return MD;
221}
222
223Metadata *BitcodeReaderMetadataList::getMetadataIfResolved(unsigned Idx) {
224 Metadata *MD = lookup(Idx);
225 if (auto *N = dyn_cast_or_null<MDNode>(MD))
226 if (!N->isResolved())
227 return nullptr;
228 return MD;
229}
230
231MDNode *BitcodeReaderMetadataList::getMDNodeFwdRefOrNull(unsigned Idx) {
232 return dyn_cast_or_null<MDNode>(getMetadataFwdRef(Idx));
233}
234
235void BitcodeReaderMetadataList::tryToResolveCycles() {
236 if (NumFwdRefs)
237 // Still forward references... can't resolve cycles.
238 return;
239
240 bool DidReplaceTypeRefs = false;
241
242 // Give up on finding a full definition for any forward decls that remain.
243 for (const auto &Ref : OldTypeRefs.FwdDecls)
244 OldTypeRefs.Final.insert(Ref);
245 OldTypeRefs.FwdDecls.clear();
246
247 // Upgrade from old type ref arrays. In strange cases, this could add to
248 // OldTypeRefs.Unknown.
249 for (const auto &Array : OldTypeRefs.Arrays) {
250 DidReplaceTypeRefs = true;
251 Array.second->replaceAllUsesWith(resolveTypeRefArray(Array.first.get()));
252 }
253 OldTypeRefs.Arrays.clear();
254
255 // Replace old string-based type refs with the resolved node, if possible.
256 // If we haven't seen the node, leave it to the verifier to complain about
257 // the invalid string reference.
258 for (const auto &Ref : OldTypeRefs.Unknown) {
259 DidReplaceTypeRefs = true;
260 if (DICompositeType *CT = OldTypeRefs.Final.lookup(Ref.first))
261 Ref.second->replaceAllUsesWith(CT);
262 else
263 Ref.second->replaceAllUsesWith(Ref.first);
264 }
265 OldTypeRefs.Unknown.clear();
266
267 // Make sure all the upgraded types are resolved.
268 if (DidReplaceTypeRefs) {
269 AnyFwdRefs = true;
270 MinFwdRef = 0;
271 MaxFwdRef = MetadataPtrs.size() - 1;
272 }
273
274 if (!AnyFwdRefs)
275 // Nothing to do.
276 return;
277
278 // Resolve any cycles.
279 for (unsigned I = MinFwdRef, E = MaxFwdRef + 1; I != E; ++I) {
280 auto &MD = MetadataPtrs[I];
281 auto *N = dyn_cast_or_null<MDNode>(MD);
282 if (!N)
283 continue;
284
285 assert(!N->isTemporary() && "Unexpected forward reference");
286 N->resolveCycles();
287 }
288
289 // Make sure we return early again until there's another forward ref.
290 AnyFwdRefs = false;
291}
292
293void BitcodeReaderMetadataList::addTypeRef(MDString &UUID,
294 DICompositeType &CT) {
295 assert(CT.getRawIdentifier() == &UUID && "Mismatched UUID");
296 if (CT.isForwardDecl())
297 OldTypeRefs.FwdDecls.insert(std::make_pair(&UUID, &CT));
298 else
299 OldTypeRefs.Final.insert(std::make_pair(&UUID, &CT));
300}
301
302Metadata *BitcodeReaderMetadataList::upgradeTypeRef(Metadata *MaybeUUID) {
303 auto *UUID = dyn_cast_or_null<MDString>(MaybeUUID);
304 if (LLVM_LIKELY(!UUID))
305 return MaybeUUID;
306
307 if (auto *CT = OldTypeRefs.Final.lookup(UUID))
308 return CT;
309
310 auto &Ref = OldTypeRefs.Unknown[UUID];
311 if (!Ref)
312 Ref = MDNode::getTemporary(Context, None);
313 return Ref.get();
314}
315
316Metadata *BitcodeReaderMetadataList::upgradeTypeRefArray(Metadata *MaybeTuple) {
317 auto *Tuple = dyn_cast_or_null<MDTuple>(MaybeTuple);
318 if (!Tuple || Tuple->isDistinct())
319 return MaybeTuple;
320
321 // Look through the array immediately if possible.
322 if (!Tuple->isTemporary())
323 return resolveTypeRefArray(Tuple);
324
325 // Create and return a placeholder to use for now. Eventually
326 // resolveTypeRefArrays() will be resolve this forward reference.
327 OldTypeRefs.Arrays.emplace_back(
328 std::piecewise_construct, std::forward_as_tuple(Tuple),
329 std::forward_as_tuple(MDTuple::getTemporary(Context, None)));
330 return OldTypeRefs.Arrays.back().second.get();
331}
332
333Metadata *BitcodeReaderMetadataList::resolveTypeRefArray(Metadata *MaybeTuple) {
334 auto *Tuple = dyn_cast_or_null<MDTuple>(MaybeTuple);
335 if (!Tuple || Tuple->isDistinct())
336 return MaybeTuple;
337
338 // Look through the DITypeRefArray, upgrading each DITypeRef.
339 SmallVector<Metadata *, 32> Ops;
340 Ops.reserve(Tuple->getNumOperands());
341 for (Metadata *MD : Tuple->operands())
342 Ops.push_back(upgradeTypeRef(MD));
343
344 return MDTuple::get(Context, Ops);
345}
346
347namespace {
348
349class PlaceholderQueue {
350 // Placeholders would thrash around when moved, so store in a std::deque
351 // instead of some sort of vector.
352 std::deque<DistinctMDOperandPlaceholder> PHs;
353
354public:
355 DistinctMDOperandPlaceholder &getPlaceholderOp(unsigned ID);
356 void flush(BitcodeReaderMetadataList &MetadataList);
357};
358
359} // end anonymous namespace
360
361DistinctMDOperandPlaceholder &PlaceholderQueue::getPlaceholderOp(unsigned ID) {
362 PHs.emplace_back(ID);
363 return PHs.back();
364}
365
366void PlaceholderQueue::flush(BitcodeReaderMetadataList &MetadataList) {
367 while (!PHs.empty()) {
368 PHs.front().replaceUseWith(
369 MetadataList.getMetadataFwdRef(PHs.front().getID()));
370 PHs.pop_front();
371 }
372}
373
374} // anonynous namespace
375
376class MetadataLoader::MetadataLoaderImpl {
377 BitcodeReaderMetadataList MetadataList;
378 BitcodeReaderValueList &ValueList;
379 BitstreamCursor &Stream;
380 LLVMContext &Context;
381 Module &TheModule;
382 std::function<Type *(unsigned)> getTypeByID;
383
384 /// Functions that need to be matched with subprograms when upgrading old
385 /// metadata.
386 SmallDenseMap<Function *, DISubprogram *, 16> FunctionsWithSPs;
387
388 // Map the bitcode's custom MDKind ID to the Module's MDKind ID.
389 DenseMap<unsigned, unsigned> MDKindMap;
390
Mehdi Amini86623052016-12-16 19:16:29 +0000391 bool StripTBAA = false;
Mehdi Aminief27db82016-12-12 19:34:26 +0000392 bool HasSeenOldLoopTags = false;
393
Mehdi Aminiec68dd42016-12-23 02:20:02 +0000394 /// True if metadata is being parsed for a module being ThinLTO imported.
395 bool IsImporting = false;
396
Mehdi Aminief27db82016-12-12 19:34:26 +0000397 Error parseMetadataStrings(ArrayRef<uint64_t> Record, StringRef Blob,
398 unsigned &NextMetadataNo);
399 Error parseGlobalObjectAttachment(GlobalObject &GO,
400 ArrayRef<uint64_t> Record);
401 Error parseMetadataKindRecord(SmallVectorImpl<uint64_t> &Record);
402
403public:
404 MetadataLoaderImpl(BitstreamCursor &Stream, Module &TheModule,
405 BitcodeReaderValueList &ValueList,
Mehdi Aminiec68dd42016-12-23 02:20:02 +0000406 std::function<Type *(unsigned)> getTypeByID,
407 bool IsImporting)
Mehdi Aminief27db82016-12-12 19:34:26 +0000408 : MetadataList(TheModule.getContext()), ValueList(ValueList),
409 Stream(Stream), Context(TheModule.getContext()), TheModule(TheModule),
Mehdi Aminiec68dd42016-12-23 02:20:02 +0000410 getTypeByID(getTypeByID), IsImporting(IsImporting) {}
Mehdi Aminief27db82016-12-12 19:34:26 +0000411
Mehdi Aminiec68dd42016-12-23 02:20:02 +0000412 Error parseMetadata(bool ModuleLevel);
Mehdi Aminief27db82016-12-12 19:34:26 +0000413
414 bool hasFwdRefs() const { return MetadataList.hasFwdRefs(); }
415 Metadata *getMetadataFwdRef(unsigned Idx) {
416 return MetadataList.getMetadataFwdRef(Idx);
417 }
418
419 MDNode *getMDNodeFwdRefOrNull(unsigned Idx) {
420 return MetadataList.getMDNodeFwdRefOrNull(Idx);
421 }
422
423 DISubprogram *lookupSubprogramForFunction(Function *F) {
424 return FunctionsWithSPs.lookup(F);
425 }
426
427 bool hasSeenOldLoopTags() { return HasSeenOldLoopTags; }
428
429 Error parseMetadataAttachment(
430 Function &F, const SmallVectorImpl<Instruction *> &InstructionList);
431
432 Error parseMetadataKinds();
433
Mehdi Amini86623052016-12-16 19:16:29 +0000434 void setStripTBAA(bool Value) { StripTBAA = Value; }
435 bool isStrippingTBAA() { return StripTBAA; }
436
Mehdi Aminief27db82016-12-12 19:34:26 +0000437 unsigned size() const { return MetadataList.size(); }
438 void shrinkTo(unsigned N) { MetadataList.shrinkTo(N); }
439};
440
441Error error(const Twine &Message) {
442 return make_error<StringError>(
443 Message, make_error_code(BitcodeError::CorruptedBitcode));
444}
445
446/// Parse a METADATA_BLOCK. If ModuleLevel is true then we are parsing
447/// module level metadata.
Mehdi Aminiec68dd42016-12-23 02:20:02 +0000448Error MetadataLoader::MetadataLoaderImpl::parseMetadata(bool ModuleLevel) {
Mehdi Aminief27db82016-12-12 19:34:26 +0000449 if (!ModuleLevel && MetadataList.hasFwdRefs())
450 return error("Invalid metadata: fwd refs into function blocks");
451
452 if (Stream.EnterSubBlock(bitc::METADATA_BLOCK_ID))
453 return error("Invalid record");
454
455 unsigned NextMetadataNo = MetadataList.size();
456 std::vector<std::pair<DICompileUnit *, Metadata *>> CUSubprograms;
457 SmallVector<uint64_t, 64> Record;
458
459 PlaceholderQueue Placeholders;
460 bool IsDistinct;
461 auto getMD = [&](unsigned ID) -> Metadata * {
462 if (!IsDistinct)
463 return MetadataList.getMetadataFwdRef(ID);
464 if (auto *MD = MetadataList.getMetadataIfResolved(ID))
465 return MD;
466 return &Placeholders.getPlaceholderOp(ID);
467 };
468 auto getMDOrNull = [&](unsigned ID) -> Metadata * {
469 if (ID)
470 return getMD(ID - 1);
471 return nullptr;
472 };
473 auto getMDOrNullWithoutPlaceholders = [&](unsigned ID) -> Metadata * {
474 if (ID)
475 return MetadataList.getMetadataFwdRef(ID - 1);
476 return nullptr;
477 };
478 auto getMDString = [&](unsigned ID) -> MDString * {
479 // This requires that the ID is not really a forward reference. In
480 // particular, the MDString must already have been resolved.
481 return cast_or_null<MDString>(getMDOrNull(ID));
482 };
483
484 // Support for old type refs.
485 auto getDITypeRefOrNull = [&](unsigned ID) {
486 return MetadataList.upgradeTypeRef(getMDOrNull(ID));
487 };
488
489#define GET_OR_DISTINCT(CLASS, ARGS) \
490 (IsDistinct ? CLASS::getDistinct ARGS : CLASS::get ARGS)
491
492 // Read all the records.
493 while (true) {
494 BitstreamEntry Entry = Stream.advanceSkippingSubblocks();
495
496 switch (Entry.Kind) {
497 case BitstreamEntry::SubBlock: // Handled for us already.
498 case BitstreamEntry::Error:
499 return error("Malformed block");
500 case BitstreamEntry::EndBlock:
501 // Upgrade old-style CU <-> SP pointers to point from SP to CU.
502 for (auto CU_SP : CUSubprograms)
503 if (auto *SPs = dyn_cast_or_null<MDTuple>(CU_SP.second))
504 for (auto &Op : SPs->operands())
505 if (auto *SP = dyn_cast_or_null<MDNode>(Op))
506 SP->replaceOperandWith(7, CU_SP.first);
507
508 MetadataList.tryToResolveCycles();
509 Placeholders.flush(MetadataList);
510 return Error::success();
511 case BitstreamEntry::Record:
512 // The interesting case.
513 break;
514 }
515
516 // Read a record.
517 Record.clear();
518 StringRef Blob;
519 unsigned Code = Stream.readRecord(Entry.ID, Record, &Blob);
520 IsDistinct = false;
521 switch (Code) {
522 default: // Default behavior: ignore.
523 break;
524 case bitc::METADATA_NAME: {
525 // Read name of the named metadata.
526 SmallString<8> Name(Record.begin(), Record.end());
527 Record.clear();
528 Code = Stream.ReadCode();
529
530 unsigned NextBitCode = Stream.readRecord(Code, Record);
531 if (NextBitCode != bitc::METADATA_NAMED_NODE)
532 return error("METADATA_NAME not followed by METADATA_NAMED_NODE");
533
534 // Read named metadata elements.
535 unsigned Size = Record.size();
536 NamedMDNode *NMD = TheModule.getOrInsertNamedMetadata(Name);
537 for (unsigned i = 0; i != Size; ++i) {
538 MDNode *MD = MetadataList.getMDNodeFwdRefOrNull(Record[i]);
539 if (!MD)
540 return error("Invalid record");
541 NMD->addOperand(MD);
542 }
543 break;
544 }
545 case bitc::METADATA_OLD_FN_NODE: {
546 // FIXME: Remove in 4.0.
547 // This is a LocalAsMetadata record, the only type of function-local
548 // metadata.
549 if (Record.size() % 2 == 1)
550 return error("Invalid record");
551
552 // If this isn't a LocalAsMetadata record, we're dropping it. This used
553 // to be legal, but there's no upgrade path.
554 auto dropRecord = [&] {
555 MetadataList.assignValue(MDNode::get(Context, None), NextMetadataNo++);
556 };
557 if (Record.size() != 2) {
558 dropRecord();
559 break;
560 }
561
562 Type *Ty = getTypeByID(Record[0]);
563 if (Ty->isMetadataTy() || Ty->isVoidTy()) {
564 dropRecord();
565 break;
566 }
567
568 MetadataList.assignValue(
569 LocalAsMetadata::get(ValueList.getValueFwdRef(Record[1], Ty)),
570 NextMetadataNo++);
571 break;
572 }
573 case bitc::METADATA_OLD_NODE: {
574 // FIXME: Remove in 4.0.
575 if (Record.size() % 2 == 1)
576 return error("Invalid record");
577
578 unsigned Size = Record.size();
579 SmallVector<Metadata *, 8> Elts;
580 for (unsigned i = 0; i != Size; i += 2) {
581 Type *Ty = getTypeByID(Record[i]);
582 if (!Ty)
583 return error("Invalid record");
584 if (Ty->isMetadataTy())
585 Elts.push_back(getMD(Record[i + 1]));
586 else if (!Ty->isVoidTy()) {
587 auto *MD =
588 ValueAsMetadata::get(ValueList.getValueFwdRef(Record[i + 1], Ty));
589 assert(isa<ConstantAsMetadata>(MD) &&
590 "Expected non-function-local metadata");
591 Elts.push_back(MD);
592 } else
593 Elts.push_back(nullptr);
594 }
595 MetadataList.assignValue(MDNode::get(Context, Elts), NextMetadataNo++);
596 break;
597 }
598 case bitc::METADATA_VALUE: {
599 if (Record.size() != 2)
600 return error("Invalid record");
601
602 Type *Ty = getTypeByID(Record[0]);
603 if (Ty->isMetadataTy() || Ty->isVoidTy())
604 return error("Invalid record");
605
606 MetadataList.assignValue(
607 ValueAsMetadata::get(ValueList.getValueFwdRef(Record[1], Ty)),
608 NextMetadataNo++);
609 break;
610 }
611 case bitc::METADATA_DISTINCT_NODE:
612 IsDistinct = true;
613 LLVM_FALLTHROUGH;
614 case bitc::METADATA_NODE: {
615 SmallVector<Metadata *, 8> Elts;
616 Elts.reserve(Record.size());
617 for (unsigned ID : Record)
618 Elts.push_back(getMDOrNull(ID));
619 MetadataList.assignValue(IsDistinct ? MDNode::getDistinct(Context, Elts)
620 : MDNode::get(Context, Elts),
621 NextMetadataNo++);
622 break;
623 }
624 case bitc::METADATA_LOCATION: {
625 if (Record.size() != 5)
626 return error("Invalid record");
627
628 IsDistinct = Record[0];
629 unsigned Line = Record[1];
630 unsigned Column = Record[2];
631 Metadata *Scope = getMD(Record[3]);
632 Metadata *InlinedAt = getMDOrNull(Record[4]);
633 MetadataList.assignValue(
634 GET_OR_DISTINCT(DILocation,
635 (Context, Line, Column, Scope, InlinedAt)),
636 NextMetadataNo++);
637 break;
638 }
639 case bitc::METADATA_GENERIC_DEBUG: {
640 if (Record.size() < 4)
641 return error("Invalid record");
642
643 IsDistinct = Record[0];
644 unsigned Tag = Record[1];
645 unsigned Version = Record[2];
646
647 if (Tag >= 1u << 16 || Version != 0)
648 return error("Invalid record");
649
650 auto *Header = getMDString(Record[3]);
651 SmallVector<Metadata *, 8> DwarfOps;
652 for (unsigned I = 4, E = Record.size(); I != E; ++I)
653 DwarfOps.push_back(getMDOrNull(Record[I]));
654 MetadataList.assignValue(
655 GET_OR_DISTINCT(GenericDINode, (Context, Tag, Header, DwarfOps)),
656 NextMetadataNo++);
657 break;
658 }
659 case bitc::METADATA_SUBRANGE: {
660 if (Record.size() != 3)
661 return error("Invalid record");
662
663 IsDistinct = Record[0];
664 MetadataList.assignValue(
665 GET_OR_DISTINCT(DISubrange,
666 (Context, Record[1], unrotateSign(Record[2]))),
667 NextMetadataNo++);
668 break;
669 }
670 case bitc::METADATA_ENUMERATOR: {
671 if (Record.size() != 3)
672 return error("Invalid record");
673
674 IsDistinct = Record[0];
675 MetadataList.assignValue(
676 GET_OR_DISTINCT(DIEnumerator, (Context, unrotateSign(Record[1]),
677 getMDString(Record[2]))),
678 NextMetadataNo++);
679 break;
680 }
681 case bitc::METADATA_BASIC_TYPE: {
682 if (Record.size() != 6)
683 return error("Invalid record");
684
685 IsDistinct = Record[0];
686 MetadataList.assignValue(
687 GET_OR_DISTINCT(DIBasicType,
688 (Context, Record[1], getMDString(Record[2]),
689 Record[3], Record[4], Record[5])),
690 NextMetadataNo++);
691 break;
692 }
693 case bitc::METADATA_DERIVED_TYPE: {
694 if (Record.size() != 12)
695 return error("Invalid record");
696
697 IsDistinct = Record[0];
698 DINode::DIFlags Flags = static_cast<DINode::DIFlags>(Record[10]);
699 MetadataList.assignValue(
700 GET_OR_DISTINCT(DIDerivedType,
701 (Context, Record[1], getMDString(Record[2]),
702 getMDOrNull(Record[3]), Record[4],
703 getDITypeRefOrNull(Record[5]),
704 getDITypeRefOrNull(Record[6]), Record[7], Record[8],
705 Record[9], Flags, getDITypeRefOrNull(Record[11]))),
706 NextMetadataNo++);
707 break;
708 }
709 case bitc::METADATA_COMPOSITE_TYPE: {
710 if (Record.size() != 16)
711 return error("Invalid record");
712
713 // If we have a UUID and this is not a forward declaration, lookup the
714 // mapping.
715 IsDistinct = Record[0] & 0x1;
716 bool IsNotUsedInTypeRef = Record[0] >= 2;
717 unsigned Tag = Record[1];
718 MDString *Name = getMDString(Record[2]);
719 Metadata *File = getMDOrNull(Record[3]);
720 unsigned Line = Record[4];
721 Metadata *Scope = getDITypeRefOrNull(Record[5]);
Teresa Johnsona61f5e32016-12-16 21:25:01 +0000722 Metadata *BaseType = nullptr;
Mehdi Aminief27db82016-12-12 19:34:26 +0000723 uint64_t SizeInBits = Record[7];
724 if (Record[8] > (uint64_t)std::numeric_limits<uint32_t>::max())
725 return error("Alignment value is too large");
726 uint32_t AlignInBits = Record[8];
Teresa Johnsona61f5e32016-12-16 21:25:01 +0000727 uint64_t OffsetInBits = 0;
Mehdi Aminief27db82016-12-12 19:34:26 +0000728 DINode::DIFlags Flags = static_cast<DINode::DIFlags>(Record[10]);
Teresa Johnsona61f5e32016-12-16 21:25:01 +0000729 Metadata *Elements = nullptr;
Mehdi Aminief27db82016-12-12 19:34:26 +0000730 unsigned RuntimeLang = Record[12];
Teresa Johnsona61f5e32016-12-16 21:25:01 +0000731 Metadata *VTableHolder = nullptr;
732 Metadata *TemplateParams = nullptr;
Mehdi Aminief27db82016-12-12 19:34:26 +0000733 auto *Identifier = getMDString(Record[15]);
Teresa Johnsona61f5e32016-12-16 21:25:01 +0000734 // If this module is being parsed so that it can be ThinLTO imported
735 // into another module, composite types only need to be imported
736 // as type declarations (unless full type definitions requested).
737 // Create type declarations up front to save memory. Also, buildODRType
738 // handles the case where this is type ODRed with a definition needed
739 // by the importing module, in which case the existing definition is
740 // used.
741 if (IsImporting && !ImportFullTypeDefinitions &&
742 (Tag == dwarf::DW_TAG_enumeration_type ||
743 Tag == dwarf::DW_TAG_class_type ||
744 Tag == dwarf::DW_TAG_structure_type ||
745 Tag == dwarf::DW_TAG_union_type)) {
746 Flags = Flags | DINode::FlagFwdDecl;
747 } else {
748 BaseType = getDITypeRefOrNull(Record[6]);
749 OffsetInBits = Record[9];
750 Elements = getMDOrNull(Record[11]);
751 VTableHolder = getDITypeRefOrNull(Record[13]);
752 TemplateParams = getMDOrNull(Record[14]);
753 }
Mehdi Aminief27db82016-12-12 19:34:26 +0000754 DICompositeType *CT = nullptr;
755 if (Identifier)
756 CT = DICompositeType::buildODRType(
757 Context, *Identifier, Tag, Name, File, Line, Scope, BaseType,
758 SizeInBits, AlignInBits, OffsetInBits, Flags, Elements, RuntimeLang,
759 VTableHolder, TemplateParams);
760
761 // Create a node if we didn't get a lazy ODR type.
762 if (!CT)
763 CT = GET_OR_DISTINCT(DICompositeType,
764 (Context, Tag, Name, File, Line, Scope, BaseType,
765 SizeInBits, AlignInBits, OffsetInBits, Flags,
766 Elements, RuntimeLang, VTableHolder,
767 TemplateParams, Identifier));
768 if (!IsNotUsedInTypeRef && Identifier)
769 MetadataList.addTypeRef(*Identifier, *cast<DICompositeType>(CT));
770
771 MetadataList.assignValue(CT, NextMetadataNo++);
772 break;
773 }
774 case bitc::METADATA_SUBROUTINE_TYPE: {
775 if (Record.size() < 3 || Record.size() > 4)
776 return error("Invalid record");
777 bool IsOldTypeRefArray = Record[0] < 2;
778 unsigned CC = (Record.size() > 3) ? Record[3] : 0;
779
780 IsDistinct = Record[0] & 0x1;
781 DINode::DIFlags Flags = static_cast<DINode::DIFlags>(Record[1]);
782 Metadata *Types = getMDOrNull(Record[2]);
783 if (LLVM_UNLIKELY(IsOldTypeRefArray))
784 Types = MetadataList.upgradeTypeRefArray(Types);
785
786 MetadataList.assignValue(
787 GET_OR_DISTINCT(DISubroutineType, (Context, Flags, CC, Types)),
788 NextMetadataNo++);
789 break;
790 }
791
792 case bitc::METADATA_MODULE: {
793 if (Record.size() != 6)
794 return error("Invalid record");
795
796 IsDistinct = Record[0];
797 MetadataList.assignValue(
798 GET_OR_DISTINCT(DIModule,
799 (Context, getMDOrNull(Record[1]),
800 getMDString(Record[2]), getMDString(Record[3]),
801 getMDString(Record[4]), getMDString(Record[5]))),
802 NextMetadataNo++);
803 break;
804 }
805
806 case bitc::METADATA_FILE: {
807 if (Record.size() != 3)
808 return error("Invalid record");
809
810 IsDistinct = Record[0];
811 MetadataList.assignValue(
812 GET_OR_DISTINCT(DIFile, (Context, getMDString(Record[1]),
813 getMDString(Record[2]))),
814 NextMetadataNo++);
815 break;
816 }
817 case bitc::METADATA_COMPILE_UNIT: {
818 if (Record.size() < 14 || Record.size() > 17)
819 return error("Invalid record");
820
821 // Ignore Record[0], which indicates whether this compile unit is
822 // distinct. It's always distinct.
823 IsDistinct = true;
824 auto *CU = DICompileUnit::getDistinct(
825 Context, Record[1], getMDOrNull(Record[2]), getMDString(Record[3]),
826 Record[4], getMDString(Record[5]), Record[6], getMDString(Record[7]),
827 Record[8], getMDOrNull(Record[9]), getMDOrNull(Record[10]),
828 getMDOrNull(Record[12]), getMDOrNull(Record[13]),
829 Record.size() <= 15 ? nullptr : getMDOrNull(Record[15]),
830 Record.size() <= 14 ? 0 : Record[14],
831 Record.size() <= 16 ? true : Record[16]);
832
833 MetadataList.assignValue(CU, NextMetadataNo++);
834
835 // Move the Upgrade the list of subprograms.
836 if (Metadata *SPs = getMDOrNullWithoutPlaceholders(Record[11]))
837 CUSubprograms.push_back({CU, SPs});
838 break;
839 }
840 case bitc::METADATA_SUBPROGRAM: {
841 if (Record.size() < 18 || Record.size() > 20)
842 return error("Invalid record");
843
844 IsDistinct =
845 (Record[0] & 1) || Record[8]; // All definitions should be distinct.
846 // Version 1 has a Function as Record[15].
847 // Version 2 has removed Record[15].
848 // Version 3 has the Unit as Record[15].
849 // Version 4 added thisAdjustment.
850 bool HasUnit = Record[0] >= 2;
851 if (HasUnit && Record.size() < 19)
852 return error("Invalid record");
853 Metadata *CUorFn = getMDOrNull(Record[15]);
854 unsigned Offset = Record.size() >= 19 ? 1 : 0;
855 bool HasFn = Offset && !HasUnit;
856 bool HasThisAdj = Record.size() >= 20;
857 DISubprogram *SP = GET_OR_DISTINCT(
858 DISubprogram, (Context,
859 getDITypeRefOrNull(Record[1]), // scope
860 getMDString(Record[2]), // name
861 getMDString(Record[3]), // linkageName
862 getMDOrNull(Record[4]), // file
863 Record[5], // line
864 getMDOrNull(Record[6]), // type
865 Record[7], // isLocal
866 Record[8], // isDefinition
867 Record[9], // scopeLine
868 getDITypeRefOrNull(Record[10]), // containingType
869 Record[11], // virtuality
870 Record[12], // virtualIndex
871 HasThisAdj ? Record[19] : 0, // thisAdjustment
872 static_cast<DINode::DIFlags>(Record[13] // flags
873 ),
874 Record[14], // isOptimized
875 HasUnit ? CUorFn : nullptr, // unit
876 getMDOrNull(Record[15 + Offset]), // templateParams
877 getMDOrNull(Record[16 + Offset]), // declaration
878 getMDOrNull(Record[17 + Offset]) // variables
879 ));
880 MetadataList.assignValue(SP, NextMetadataNo++);
881
882 // Upgrade sp->function mapping to function->sp mapping.
883 if (HasFn) {
884 if (auto *CMD = dyn_cast_or_null<ConstantAsMetadata>(CUorFn))
885 if (auto *F = dyn_cast<Function>(CMD->getValue())) {
886 if (F->isMaterializable())
887 // Defer until materialized; unmaterialized functions may not have
888 // metadata.
889 FunctionsWithSPs[F] = SP;
890 else if (!F->empty())
891 F->setSubprogram(SP);
892 }
893 }
894 break;
895 }
896 case bitc::METADATA_LEXICAL_BLOCK: {
897 if (Record.size() != 5)
898 return error("Invalid record");
899
900 IsDistinct = Record[0];
901 MetadataList.assignValue(
902 GET_OR_DISTINCT(DILexicalBlock,
903 (Context, getMDOrNull(Record[1]),
904 getMDOrNull(Record[2]), Record[3], Record[4])),
905 NextMetadataNo++);
906 break;
907 }
908 case bitc::METADATA_LEXICAL_BLOCK_FILE: {
909 if (Record.size() != 4)
910 return error("Invalid record");
911
912 IsDistinct = Record[0];
913 MetadataList.assignValue(
914 GET_OR_DISTINCT(DILexicalBlockFile,
915 (Context, getMDOrNull(Record[1]),
916 getMDOrNull(Record[2]), Record[3])),
917 NextMetadataNo++);
918 break;
919 }
920 case bitc::METADATA_NAMESPACE: {
921 if (Record.size() != 5)
922 return error("Invalid record");
923
924 IsDistinct = Record[0] & 1;
925 bool ExportSymbols = Record[0] & 2;
926 MetadataList.assignValue(
927 GET_OR_DISTINCT(DINamespace,
928 (Context, getMDOrNull(Record[1]),
929 getMDOrNull(Record[2]), getMDString(Record[3]),
930 Record[4], ExportSymbols)),
931 NextMetadataNo++);
932 break;
933 }
934 case bitc::METADATA_MACRO: {
935 if (Record.size() != 5)
936 return error("Invalid record");
937
938 IsDistinct = Record[0];
939 MetadataList.assignValue(
940 GET_OR_DISTINCT(DIMacro,
941 (Context, Record[1], Record[2],
942 getMDString(Record[3]), getMDString(Record[4]))),
943 NextMetadataNo++);
944 break;
945 }
946 case bitc::METADATA_MACRO_FILE: {
947 if (Record.size() != 5)
948 return error("Invalid record");
949
950 IsDistinct = Record[0];
951 MetadataList.assignValue(
952 GET_OR_DISTINCT(DIMacroFile,
953 (Context, Record[1], Record[2],
954 getMDOrNull(Record[3]), getMDOrNull(Record[4]))),
955 NextMetadataNo++);
956 break;
957 }
958 case bitc::METADATA_TEMPLATE_TYPE: {
959 if (Record.size() != 3)
960 return error("Invalid record");
961
962 IsDistinct = Record[0];
963 MetadataList.assignValue(GET_OR_DISTINCT(DITemplateTypeParameter,
964 (Context, getMDString(Record[1]),
965 getDITypeRefOrNull(Record[2]))),
966 NextMetadataNo++);
967 break;
968 }
969 case bitc::METADATA_TEMPLATE_VALUE: {
970 if (Record.size() != 5)
971 return error("Invalid record");
972
973 IsDistinct = Record[0];
974 MetadataList.assignValue(
975 GET_OR_DISTINCT(DITemplateValueParameter,
976 (Context, Record[1], getMDString(Record[2]),
977 getDITypeRefOrNull(Record[3]),
978 getMDOrNull(Record[4]))),
979 NextMetadataNo++);
980 break;
981 }
982 case bitc::METADATA_GLOBAL_VAR: {
983 if (Record.size() < 11 || Record.size() > 12)
984 return error("Invalid record");
985
Adrian Prantlbceaaa92016-12-20 02:09:43 +0000986 IsDistinct = Record[0] & 1;
987 unsigned Version = Record[0] >> 1;
Mehdi Aminief27db82016-12-12 19:34:26 +0000988
Adrian Prantlbceaaa92016-12-20 02:09:43 +0000989 if (Version == 1) {
990 MetadataList.assignValue(
991 GET_OR_DISTINCT(DIGlobalVariable,
992 (Context, getMDOrNull(Record[1]),
993 getMDString(Record[2]), getMDString(Record[3]),
994 getMDOrNull(Record[4]), Record[5],
995 getDITypeRefOrNull(Record[6]), Record[7],
996 Record[8], getMDOrNull(Record[10]), Record[11])),
997 NextMetadataNo++);
998 } else if (Version == 0) {
999 // Upgrade old metadata, which stored a global variable reference or a
1000 // ConstantInt here.
1001 Metadata *Expr = getMDOrNull(Record[9]);
1002 uint32_t AlignInBits = 0;
1003 if (Record.size() > 11) {
1004 if (Record[11] > (uint64_t)std::numeric_limits<uint32_t>::max())
1005 return error("Alignment value is too large");
1006 AlignInBits = Record[11];
Mehdi Aminief27db82016-12-12 19:34:26 +00001007 }
Adrian Prantlbceaaa92016-12-20 02:09:43 +00001008 GlobalVariable *Attach = nullptr;
1009 if (auto *CMD = dyn_cast_or_null<ConstantAsMetadata>(Expr)) {
1010 if (auto *GV = dyn_cast<GlobalVariable>(CMD->getValue())) {
1011 Attach = GV;
1012 Expr = nullptr;
1013 } else if (auto *CI = dyn_cast<ConstantInt>(CMD->getValue())) {
1014 Expr = DIExpression::get(Context,
1015 {dwarf::DW_OP_constu, CI->getZExtValue(),
1016 dwarf::DW_OP_stack_value});
1017 } else {
1018 Expr = nullptr;
1019 }
1020 }
1021 DIGlobalVariable *DGV = GET_OR_DISTINCT(
1022 DIGlobalVariable,
1023 (Context, getMDOrNull(Record[1]), getMDString(Record[2]),
1024 getMDString(Record[3]), getMDOrNull(Record[4]), Record[5],
1025 getDITypeRefOrNull(Record[6]), Record[7], Record[8],
1026 getMDOrNull(Record[10]), AlignInBits));
Mehdi Aminief27db82016-12-12 19:34:26 +00001027
Adrian Prantlbceaaa92016-12-20 02:09:43 +00001028 auto *DGVE =
1029 DIGlobalVariableExpression::getDistinct(Context, DGV, Expr);
1030 MetadataList.assignValue(DGVE, NextMetadataNo++);
1031 if (Attach)
1032 Attach->addDebugInfo(DGVE);
1033 } else
1034 return error("Invalid record");
Mehdi Aminief27db82016-12-12 19:34:26 +00001035
1036 break;
1037 }
1038 case bitc::METADATA_LOCAL_VAR: {
1039 // 10th field is for the obseleted 'inlinedAt:' field.
1040 if (Record.size() < 8 || Record.size() > 10)
1041 return error("Invalid record");
1042
1043 IsDistinct = Record[0] & 1;
1044 bool HasAlignment = Record[0] & 2;
1045 // 2nd field used to be an artificial tag, either DW_TAG_auto_variable or
1046 // DW_TAG_arg_variable, if we have alignment flag encoded it means, that
1047 // this is newer version of record which doesn't have artifical tag.
1048 bool HasTag = !HasAlignment && Record.size() > 8;
1049 DINode::DIFlags Flags = static_cast<DINode::DIFlags>(Record[7 + HasTag]);
1050 uint32_t AlignInBits = 0;
1051 if (HasAlignment) {
1052 if (Record[8 + HasTag] > (uint64_t)std::numeric_limits<uint32_t>::max())
1053 return error("Alignment value is too large");
1054 AlignInBits = Record[8 + HasTag];
1055 }
1056 MetadataList.assignValue(
1057 GET_OR_DISTINCT(DILocalVariable,
1058 (Context, getMDOrNull(Record[1 + HasTag]),
1059 getMDString(Record[2 + HasTag]),
1060 getMDOrNull(Record[3 + HasTag]), Record[4 + HasTag],
1061 getDITypeRefOrNull(Record[5 + HasTag]),
1062 Record[6 + HasTag], Flags, AlignInBits)),
1063 NextMetadataNo++);
1064 break;
1065 }
1066 case bitc::METADATA_EXPRESSION: {
1067 if (Record.size() < 1)
1068 return error("Invalid record");
1069
1070 IsDistinct = Record[0] & 1;
1071 bool HasOpFragment = Record[0] & 2;
1072 auto Elts = MutableArrayRef<uint64_t>(Record).slice(1);
1073 if (!HasOpFragment)
1074 if (unsigned N = Elts.size())
1075 if (N >= 3 && Elts[N - 3] == dwarf::DW_OP_bit_piece)
1076 Elts[N - 3] = dwarf::DW_OP_LLVM_fragment;
1077
1078 MetadataList.assignValue(
1079 GET_OR_DISTINCT(DIExpression,
1080 (Context, makeArrayRef(Record).slice(1))),
1081 NextMetadataNo++);
1082 break;
1083 }
Adrian Prantlbceaaa92016-12-20 02:09:43 +00001084 case bitc::METADATA_GLOBAL_VAR_EXPR: {
1085 if (Record.size() != 3)
1086 return error("Invalid record");
1087
1088 IsDistinct = Record[0];
1089 MetadataList.assignValue(GET_OR_DISTINCT(DIGlobalVariableExpression,
1090 (Context, getMDOrNull(Record[1]),
1091 getMDOrNull(Record[2]))),
1092 NextMetadataNo++);
1093 break;
1094 }
Mehdi Aminief27db82016-12-12 19:34:26 +00001095 case bitc::METADATA_OBJC_PROPERTY: {
1096 if (Record.size() != 8)
1097 return error("Invalid record");
1098
1099 IsDistinct = Record[0];
1100 MetadataList.assignValue(
1101 GET_OR_DISTINCT(DIObjCProperty,
1102 (Context, getMDString(Record[1]),
1103 getMDOrNull(Record[2]), Record[3],
1104 getMDString(Record[4]), getMDString(Record[5]),
1105 Record[6], getDITypeRefOrNull(Record[7]))),
1106 NextMetadataNo++);
1107 break;
1108 }
1109 case bitc::METADATA_IMPORTED_ENTITY: {
1110 if (Record.size() != 6)
1111 return error("Invalid record");
1112
1113 IsDistinct = Record[0];
1114 MetadataList.assignValue(
1115 GET_OR_DISTINCT(DIImportedEntity,
1116 (Context, Record[1], getMDOrNull(Record[2]),
1117 getDITypeRefOrNull(Record[3]), Record[4],
1118 getMDString(Record[5]))),
1119 NextMetadataNo++);
1120 break;
1121 }
1122 case bitc::METADATA_STRING_OLD: {
1123 std::string String(Record.begin(), Record.end());
1124
1125 // Test for upgrading !llvm.loop.
1126 HasSeenOldLoopTags |= mayBeOldLoopAttachmentTag(String);
1127
1128 Metadata *MD = MDString::get(Context, String);
1129 MetadataList.assignValue(MD, NextMetadataNo++);
1130 break;
1131 }
1132 case bitc::METADATA_STRINGS:
1133 if (Error Err = parseMetadataStrings(Record, Blob, NextMetadataNo))
1134 return Err;
1135 break;
1136 case bitc::METADATA_GLOBAL_DECL_ATTACHMENT: {
1137 if (Record.size() % 2 == 0)
1138 return error("Invalid record");
1139 unsigned ValueID = Record[0];
1140 if (ValueID >= ValueList.size())
1141 return error("Invalid record");
1142 if (auto *GO = dyn_cast<GlobalObject>(ValueList[ValueID]))
1143 if (Error Err = parseGlobalObjectAttachment(
1144 *GO, ArrayRef<uint64_t>(Record).slice(1)))
1145 return Err;
1146 break;
1147 }
1148 case bitc::METADATA_KIND: {
1149 // Support older bitcode files that had METADATA_KIND records in a
1150 // block with METADATA_BLOCK_ID.
1151 if (Error Err = parseMetadataKindRecord(Record))
1152 return Err;
1153 break;
1154 }
1155 }
1156 }
1157#undef GET_OR_DISTINCT
1158}
1159
1160Error MetadataLoader::MetadataLoaderImpl::parseMetadataStrings(
1161 ArrayRef<uint64_t> Record, StringRef Blob, unsigned &NextMetadataNo) {
1162 // All the MDStrings in the block are emitted together in a single
1163 // record. The strings are concatenated and stored in a blob along with
1164 // their sizes.
1165 if (Record.size() != 2)
1166 return error("Invalid record: metadata strings layout");
1167
1168 unsigned NumStrings = Record[0];
1169 unsigned StringsOffset = Record[1];
1170 if (!NumStrings)
1171 return error("Invalid record: metadata strings with no strings");
1172 if (StringsOffset > Blob.size())
1173 return error("Invalid record: metadata strings corrupt offset");
1174
1175 StringRef Lengths = Blob.slice(0, StringsOffset);
1176 SimpleBitstreamCursor R(Lengths);
1177
1178 StringRef Strings = Blob.drop_front(StringsOffset);
1179 do {
1180 if (R.AtEndOfStream())
1181 return error("Invalid record: metadata strings bad length");
1182
1183 unsigned Size = R.ReadVBR(6);
1184 if (Strings.size() < Size)
1185 return error("Invalid record: metadata strings truncated chars");
1186
1187 MetadataList.assignValue(MDString::get(Context, Strings.slice(0, Size)),
1188 NextMetadataNo++);
1189 Strings = Strings.drop_front(Size);
1190 } while (--NumStrings);
1191
1192 return Error::success();
1193}
1194
1195Error MetadataLoader::MetadataLoaderImpl::parseGlobalObjectAttachment(
1196 GlobalObject &GO, ArrayRef<uint64_t> Record) {
1197 assert(Record.size() % 2 == 0);
1198 for (unsigned I = 0, E = Record.size(); I != E; I += 2) {
1199 auto K = MDKindMap.find(Record[I]);
1200 if (K == MDKindMap.end())
1201 return error("Invalid ID");
1202 MDNode *MD = MetadataList.getMDNodeFwdRefOrNull(Record[I + 1]);
1203 if (!MD)
1204 return error("Invalid metadata attachment");
1205 GO.addMetadata(K->second, *MD);
1206 }
1207 return Error::success();
1208}
1209
1210/// Parse metadata attachments.
1211Error MetadataLoader::MetadataLoaderImpl::parseMetadataAttachment(
1212 Function &F, const SmallVectorImpl<Instruction *> &InstructionList) {
1213 if (Stream.EnterSubBlock(bitc::METADATA_ATTACHMENT_ID))
1214 return error("Invalid record");
1215
1216 SmallVector<uint64_t, 64> Record;
1217
1218 while (true) {
1219 BitstreamEntry Entry = Stream.advanceSkippingSubblocks();
1220
1221 switch (Entry.Kind) {
1222 case BitstreamEntry::SubBlock: // Handled for us already.
1223 case BitstreamEntry::Error:
1224 return error("Malformed block");
1225 case BitstreamEntry::EndBlock:
1226 return Error::success();
1227 case BitstreamEntry::Record:
1228 // The interesting case.
1229 break;
1230 }
1231
1232 // Read a metadata attachment record.
1233 Record.clear();
1234 switch (Stream.readRecord(Entry.ID, Record)) {
1235 default: // Default behavior: ignore.
1236 break;
1237 case bitc::METADATA_ATTACHMENT: {
1238 unsigned RecordLength = Record.size();
1239 if (Record.empty())
1240 return error("Invalid record");
1241 if (RecordLength % 2 == 0) {
1242 // A function attachment.
1243 if (Error Err = parseGlobalObjectAttachment(F, Record))
1244 return Err;
1245 continue;
1246 }
1247
1248 // An instruction attachment.
1249 Instruction *Inst = InstructionList[Record[0]];
1250 for (unsigned i = 1; i != RecordLength; i = i + 2) {
1251 unsigned Kind = Record[i];
1252 DenseMap<unsigned, unsigned>::iterator I = MDKindMap.find(Kind);
1253 if (I == MDKindMap.end())
1254 return error("Invalid ID");
Mehdi Amini86623052016-12-16 19:16:29 +00001255 if (I->second == LLVMContext::MD_tbaa && StripTBAA)
1256 continue;
1257
Mehdi Aminief27db82016-12-12 19:34:26 +00001258 Metadata *Node = MetadataList.getMetadataFwdRef(Record[i + 1]);
1259 if (isa<LocalAsMetadata>(Node))
1260 // Drop the attachment. This used to be legal, but there's no
1261 // upgrade path.
1262 break;
1263 MDNode *MD = dyn_cast_or_null<MDNode>(Node);
1264 if (!MD)
1265 return error("Invalid metadata attachment");
1266
1267 if (HasSeenOldLoopTags && I->second == LLVMContext::MD_loop)
1268 MD = upgradeInstructionLoopAttachment(*MD);
1269
1270 if (I->second == LLVMContext::MD_tbaa) {
1271 assert(!MD->isTemporary() && "should load MDs before attachments");
1272 MD = UpgradeTBAANode(*MD);
1273 }
1274 Inst->setMetadata(I->second, MD);
1275 }
1276 break;
1277 }
1278 }
1279 }
1280}
1281
1282/// Parse a single METADATA_KIND record, inserting result in MDKindMap.
1283Error MetadataLoader::MetadataLoaderImpl::parseMetadataKindRecord(
1284 SmallVectorImpl<uint64_t> &Record) {
1285 if (Record.size() < 2)
1286 return error("Invalid record");
1287
1288 unsigned Kind = Record[0];
1289 SmallString<8> Name(Record.begin() + 1, Record.end());
1290
1291 unsigned NewKind = TheModule.getMDKindID(Name.str());
1292 if (!MDKindMap.insert(std::make_pair(Kind, NewKind)).second)
1293 return error("Conflicting METADATA_KIND records");
1294 return Error::success();
1295}
1296
1297/// Parse the metadata kinds out of the METADATA_KIND_BLOCK.
1298Error MetadataLoader::MetadataLoaderImpl::parseMetadataKinds() {
1299 if (Stream.EnterSubBlock(bitc::METADATA_KIND_BLOCK_ID))
1300 return error("Invalid record");
1301
1302 SmallVector<uint64_t, 64> Record;
1303
1304 // Read all the records.
1305 while (true) {
1306 BitstreamEntry Entry = Stream.advanceSkippingSubblocks();
1307
1308 switch (Entry.Kind) {
1309 case BitstreamEntry::SubBlock: // Handled for us already.
1310 case BitstreamEntry::Error:
1311 return error("Malformed block");
1312 case BitstreamEntry::EndBlock:
1313 return Error::success();
1314 case BitstreamEntry::Record:
1315 // The interesting case.
1316 break;
1317 }
1318
1319 // Read a record.
1320 Record.clear();
1321 unsigned Code = Stream.readRecord(Entry.ID, Record);
1322 switch (Code) {
1323 default: // Default behavior: ignore.
1324 break;
1325 case bitc::METADATA_KIND: {
1326 if (Error Err = parseMetadataKindRecord(Record))
1327 return Err;
1328 break;
1329 }
1330 }
1331 }
1332}
1333
1334MetadataLoader &MetadataLoader::operator=(MetadataLoader &&RHS) {
1335 Pimpl = std::move(RHS.Pimpl);
1336 return *this;
1337}
1338MetadataLoader::MetadataLoader(MetadataLoader &&RHS)
Mehdi Aminiec68dd42016-12-23 02:20:02 +00001339 : Pimpl(std::move(RHS.Pimpl)) {}
Mehdi Aminief27db82016-12-12 19:34:26 +00001340
1341MetadataLoader::~MetadataLoader() = default;
1342MetadataLoader::MetadataLoader(BitstreamCursor &Stream, Module &TheModule,
1343 BitcodeReaderValueList &ValueList,
Teresa Johnsona61f5e32016-12-16 21:25:01 +00001344 bool IsImporting,
Mehdi Aminief27db82016-12-12 19:34:26 +00001345 std::function<Type *(unsigned)> getTypeByID)
Nico Weberb3901bd2016-12-12 22:46:40 +00001346 : Pimpl(llvm::make_unique<MetadataLoaderImpl>(Stream, TheModule, ValueList,
Mehdi Aminiec68dd42016-12-23 02:20:02 +00001347 getTypeByID, IsImporting)) {}
Mehdi Aminief27db82016-12-12 19:34:26 +00001348
1349Error MetadataLoader::parseMetadata(bool ModuleLevel) {
Mehdi Aminiec68dd42016-12-23 02:20:02 +00001350 return Pimpl->parseMetadata(ModuleLevel);
Mehdi Aminief27db82016-12-12 19:34:26 +00001351}
1352
1353bool MetadataLoader::hasFwdRefs() const { return Pimpl->hasFwdRefs(); }
1354
1355/// Return the given metadata, creating a replaceable forward reference if
1356/// necessary.
1357Metadata *MetadataLoader::getMetadataFwdRef(unsigned Idx) {
1358 return Pimpl->getMetadataFwdRef(Idx);
1359}
1360
1361MDNode *MetadataLoader::getMDNodeFwdRefOrNull(unsigned Idx) {
1362 return Pimpl->getMDNodeFwdRefOrNull(Idx);
1363}
1364
1365DISubprogram *MetadataLoader::lookupSubprogramForFunction(Function *F) {
1366 return Pimpl->lookupSubprogramForFunction(F);
1367}
1368
1369Error MetadataLoader::parseMetadataAttachment(
1370 Function &F, const SmallVectorImpl<Instruction *> &InstructionList) {
1371 return Pimpl->parseMetadataAttachment(F, InstructionList);
1372}
1373
1374Error MetadataLoader::parseMetadataKinds() {
1375 return Pimpl->parseMetadataKinds();
1376}
1377
Mehdi Amini86623052016-12-16 19:16:29 +00001378void MetadataLoader::setStripTBAA(bool StripTBAA) {
1379 return Pimpl->setStripTBAA(StripTBAA);
1380}
1381
1382bool MetadataLoader::isStrippingTBAA() { return Pimpl->isStrippingTBAA(); }
1383
Mehdi Aminief27db82016-12-12 19:34:26 +00001384unsigned MetadataLoader::size() const { return Pimpl->size(); }
1385void MetadataLoader::shrinkTo(unsigned N) { return Pimpl->shrinkTo(N); }