xref: /llvm-project/llvm/lib/DebugInfo/PDB/Native/PDBFile.cpp (revision 4e950647fb56f4ed019cfb2c12ce62bbdf002cf9)
1 //===- PDBFile.cpp - Low level interface to a PDB file ----------*- C++ -*-===//
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 "llvm/DebugInfo/PDB/Native/PDBFile.h"
11 #include "llvm/ADT/ArrayRef.h"
12 #include "llvm/ADT/STLExtras.h"
13 #include "llvm/DebugInfo/MSF/MSFCommon.h"
14 #include "llvm/DebugInfo/MSF/MappedBlockStream.h"
15 #include "llvm/DebugInfo/PDB/Native/DbiStream.h"
16 #include "llvm/DebugInfo/PDB/Native/GlobalsStream.h"
17 #include "llvm/DebugInfo/PDB/Native/InfoStream.h"
18 #include "llvm/DebugInfo/PDB/Native/PDBStringTable.h"
19 #include "llvm/DebugInfo/PDB/Native/PublicsStream.h"
20 #include "llvm/DebugInfo/PDB/Native/RawError.h"
21 #include "llvm/DebugInfo/PDB/Native/SymbolStream.h"
22 #include "llvm/DebugInfo/PDB/Native/TpiStream.h"
23 #include "llvm/Support/BinaryStream.h"
24 #include "llvm/Support/BinaryStreamArray.h"
25 #include "llvm/Support/BinaryStreamReader.h"
26 #include "llvm/Support/Endian.h"
27 #include "llvm/Support/Error.h"
28 #include "llvm/Support/Path.h"
29 #include <algorithm>
30 #include <cassert>
31 #include <cstdint>
32 
33 using namespace llvm;
34 using namespace llvm::codeview;
35 using namespace llvm::msf;
36 using namespace llvm::pdb;
37 
38 namespace {
39 typedef FixedStreamArray<support::ulittle32_t> ulittle_array;
40 } // end anonymous namespace
41 
42 PDBFile::PDBFile(StringRef Path, std::unique_ptr<BinaryStream> PdbFileBuffer,
43                  BumpPtrAllocator &Allocator)
44     : FilePath(Path), Allocator(Allocator), Buffer(std::move(PdbFileBuffer)) {}
45 
46 PDBFile::~PDBFile() = default;
47 
48 StringRef PDBFile::getFilePath() const { return FilePath; }
49 
50 StringRef PDBFile::getFileDirectory() const {
51   return sys::path::parent_path(FilePath);
52 }
53 
54 uint32_t PDBFile::getBlockSize() const { return ContainerLayout.SB->BlockSize; }
55 
56 uint32_t PDBFile::getFreeBlockMapBlock() const {
57   return ContainerLayout.SB->FreeBlockMapBlock;
58 }
59 
60 uint32_t PDBFile::getBlockCount() const {
61   return ContainerLayout.SB->NumBlocks;
62 }
63 
64 uint32_t PDBFile::getNumDirectoryBytes() const {
65   return ContainerLayout.SB->NumDirectoryBytes;
66 }
67 
68 uint32_t PDBFile::getBlockMapIndex() const {
69   return ContainerLayout.SB->BlockMapAddr;
70 }
71 
72 uint32_t PDBFile::getUnknown1() const { return ContainerLayout.SB->Unknown1; }
73 
74 uint32_t PDBFile::getNumDirectoryBlocks() const {
75   return msf::bytesToBlocks(ContainerLayout.SB->NumDirectoryBytes,
76                             ContainerLayout.SB->BlockSize);
77 }
78 
79 uint64_t PDBFile::getBlockMapOffset() const {
80   return (uint64_t)ContainerLayout.SB->BlockMapAddr *
81          ContainerLayout.SB->BlockSize;
82 }
83 
84 uint32_t PDBFile::getNumStreams() const {
85   return ContainerLayout.StreamSizes.size();
86 }
87 
88 uint32_t PDBFile::getStreamByteSize(uint32_t StreamIndex) const {
89   return ContainerLayout.StreamSizes[StreamIndex];
90 }
91 
92 ArrayRef<support::ulittle32_t>
93 PDBFile::getStreamBlockList(uint32_t StreamIndex) const {
94   return ContainerLayout.StreamMap[StreamIndex];
95 }
96 
97 uint32_t PDBFile::getFileSize() const { return Buffer->getLength(); }
98 
99 Expected<ArrayRef<uint8_t>> PDBFile::getBlockData(uint32_t BlockIndex,
100                                                   uint32_t NumBytes) const {
101   uint64_t StreamBlockOffset = msf::blockToOffset(BlockIndex, getBlockSize());
102 
103   ArrayRef<uint8_t> Result;
104   if (auto EC = Buffer->readBytes(StreamBlockOffset, NumBytes, Result))
105     return std::move(EC);
106   return Result;
107 }
108 
109 Error PDBFile::setBlockData(uint32_t BlockIndex, uint32_t Offset,
110                             ArrayRef<uint8_t> Data) const {
111   return make_error<RawError>(raw_error_code::not_writable,
112                               "PDBFile is immutable");
113 }
114 
115 Error PDBFile::parseFileHeaders() {
116   BinaryStreamReader Reader(*Buffer);
117 
118   // Initialize SB.
119   const msf::SuperBlock *SB = nullptr;
120   if (auto EC = Reader.readObject(SB)) {
121     consumeError(std::move(EC));
122     return make_error<RawError>(raw_error_code::corrupt_file,
123                                 "Does not contain superblock");
124   }
125 
126   if (auto EC = msf::validateSuperBlock(*SB))
127     return EC;
128 
129   if (Buffer->getLength() % SB->BlockSize != 0)
130     return make_error<RawError>(raw_error_code::corrupt_file,
131                                 "File size is not a multiple of block size");
132   ContainerLayout.SB = SB;
133 
134   // Initialize Free Page Map.
135   ContainerLayout.FreePageMap.resize(SB->NumBlocks);
136   // The Fpm exists either at block 1 or block 2 of the MSF.  However, this
137   // allows for a maximum of getBlockSize() * 8 blocks bits in the Fpm, and
138   // thusly an equal number of total blocks in the file.  For a block size
139   // of 4KiB (very common), this would yield 32KiB total blocks in file, for a
140   // maximum file size of 32KiB * 4KiB = 128MiB.  Obviously this won't do, so
141   // the Fpm is split across the file at `getBlockSize()` intervals.  As a
142   // result, every block whose index is of the form |{1,2} + getBlockSize() * k|
143   // for any non-negative integer k is an Fpm block.  In theory, we only really
144   // need to reserve blocks of the form |{1,2} + getBlockSize() * 8 * k|, but
145   // current versions of the MSF format already expect the Fpm to be arranged
146   // at getBlockSize() intervals, so we have to be compatible.
147   // See the function fpmPn() for more information:
148   // https://github.com/Microsoft/microsoft-pdb/blob/master/PDB/msf/msf.cpp#L489
149   auto FpmStream =
150       MappedBlockStream::createFpmStream(ContainerLayout, *Buffer, Allocator);
151   BinaryStreamReader FpmReader(*FpmStream);
152   ArrayRef<uint8_t> FpmBytes;
153   if (auto EC = FpmReader.readBytes(FpmBytes,
154                                     msf::getFullFpmByteSize(ContainerLayout)))
155     return EC;
156   uint32_t BlocksRemaining = getBlockCount();
157   uint32_t BI = 0;
158   for (auto Byte : FpmBytes) {
159     uint32_t BlocksThisByte = std::min(BlocksRemaining, 8U);
160     for (uint32_t I = 0; I < BlocksThisByte; ++I) {
161       if (Byte & (1 << I))
162         ContainerLayout.FreePageMap[BI] = true;
163       --BlocksRemaining;
164       ++BI;
165     }
166   }
167 
168   Reader.setOffset(getBlockMapOffset());
169   if (auto EC = Reader.readArray(ContainerLayout.DirectoryBlocks,
170                                  getNumDirectoryBlocks()))
171     return EC;
172 
173   return Error::success();
174 }
175 
176 Error PDBFile::parseStreamData() {
177   assert(ContainerLayout.SB);
178   if (DirectoryStream)
179     return Error::success();
180 
181   uint32_t NumStreams = 0;
182 
183   // Normally you can't use a MappedBlockStream without having fully parsed the
184   // PDB file, because it accesses the directory and various other things, which
185   // is exactly what we are attempting to parse.  By specifying a custom
186   // subclass of IPDBStreamData which only accesses the fields that have already
187   // been parsed, we can avoid this and reuse MappedBlockStream.
188   auto DS = MappedBlockStream::createDirectoryStream(ContainerLayout, *Buffer,
189                                                      Allocator);
190   BinaryStreamReader Reader(*DS);
191   if (auto EC = Reader.readInteger(NumStreams))
192     return EC;
193 
194   if (auto EC = Reader.readArray(ContainerLayout.StreamSizes, NumStreams))
195     return EC;
196   for (uint32_t I = 0; I < NumStreams; ++I) {
197     uint32_t StreamSize = getStreamByteSize(I);
198     // FIXME: What does StreamSize ~0U mean?
199     uint64_t NumExpectedStreamBlocks =
200         StreamSize == UINT32_MAX
201             ? 0
202             : msf::bytesToBlocks(StreamSize, ContainerLayout.SB->BlockSize);
203 
204     // For convenience, we store the block array contiguously.  This is because
205     // if someone calls setStreamMap(), it is more convenient to be able to call
206     // it with an ArrayRef instead of setting up a StreamRef.  Since the
207     // DirectoryStream is cached in the class and thus lives for the life of the
208     // class, we can be guaranteed that readArray() will return a stable
209     // reference, even if it has to allocate from its internal pool.
210     ArrayRef<support::ulittle32_t> Blocks;
211     if (auto EC = Reader.readArray(Blocks, NumExpectedStreamBlocks))
212       return EC;
213     for (uint32_t Block : Blocks) {
214       uint64_t BlockEndOffset =
215           (uint64_t)(Block + 1) * ContainerLayout.SB->BlockSize;
216       if (BlockEndOffset > getFileSize())
217         return make_error<RawError>(raw_error_code::corrupt_file,
218                                     "Stream block map is corrupt.");
219     }
220     ContainerLayout.StreamMap.push_back(Blocks);
221   }
222 
223   // We should have read exactly SB->NumDirectoryBytes bytes.
224   assert(Reader.bytesRemaining() == 0);
225   DirectoryStream = std::move(DS);
226   return Error::success();
227 }
228 
229 ArrayRef<support::ulittle32_t> PDBFile::getDirectoryBlockArray() const {
230   return ContainerLayout.DirectoryBlocks;
231 }
232 
233 Expected<GlobalsStream &> PDBFile::getPDBGlobalsStream() {
234   if (!Globals) {
235     auto DbiS = getPDBDbiStream();
236     if (!DbiS)
237       return DbiS.takeError();
238 
239     auto GlobalS = safelyCreateIndexedStream(
240         ContainerLayout, *Buffer, DbiS->getGlobalSymbolStreamIndex());
241     if (!GlobalS)
242       return GlobalS.takeError();
243     auto TempGlobals = llvm::make_unique<GlobalsStream>(std::move(*GlobalS));
244     if (auto EC = TempGlobals->reload())
245       return std::move(EC);
246     Globals = std::move(TempGlobals);
247   }
248   return *Globals;
249 }
250 
251 Expected<InfoStream &> PDBFile::getPDBInfoStream() {
252   if (!Info) {
253     auto InfoS = safelyCreateIndexedStream(ContainerLayout, *Buffer, StreamPDB);
254     if (!InfoS)
255       return InfoS.takeError();
256     auto TempInfo = llvm::make_unique<InfoStream>(std::move(*InfoS));
257     if (auto EC = TempInfo->reload())
258       return std::move(EC);
259     Info = std::move(TempInfo);
260   }
261   return *Info;
262 }
263 
264 Expected<DbiStream &> PDBFile::getPDBDbiStream() {
265   if (!Dbi) {
266     auto DbiS = safelyCreateIndexedStream(ContainerLayout, *Buffer, StreamDBI);
267     if (!DbiS)
268       return DbiS.takeError();
269     auto TempDbi = llvm::make_unique<DbiStream>(*this, std::move(*DbiS));
270     if (auto EC = TempDbi->reload())
271       return std::move(EC);
272     Dbi = std::move(TempDbi);
273   }
274   return *Dbi;
275 }
276 
277 Expected<TpiStream &> PDBFile::getPDBTpiStream() {
278   if (!Tpi) {
279     auto TpiS = safelyCreateIndexedStream(ContainerLayout, *Buffer, StreamTPI);
280     if (!TpiS)
281       return TpiS.takeError();
282     auto TempTpi = llvm::make_unique<TpiStream>(*this, std::move(*TpiS));
283     if (auto EC = TempTpi->reload())
284       return std::move(EC);
285     Tpi = std::move(TempTpi);
286   }
287   return *Tpi;
288 }
289 
290 Expected<TpiStream &> PDBFile::getPDBIpiStream() {
291   if (!Ipi) {
292     auto IpiS = safelyCreateIndexedStream(ContainerLayout, *Buffer, StreamIPI);
293     if (!IpiS)
294       return IpiS.takeError();
295     auto TempIpi = llvm::make_unique<TpiStream>(*this, std::move(*IpiS));
296     if (auto EC = TempIpi->reload())
297       return std::move(EC);
298     Ipi = std::move(TempIpi);
299   }
300   return *Ipi;
301 }
302 
303 Expected<PublicsStream &> PDBFile::getPDBPublicsStream() {
304   if (!Publics) {
305     auto DbiS = getPDBDbiStream();
306     if (!DbiS)
307       return DbiS.takeError();
308 
309     auto PublicS = safelyCreateIndexedStream(
310         ContainerLayout, *Buffer, DbiS->getPublicSymbolStreamIndex());
311     if (!PublicS)
312       return PublicS.takeError();
313     auto TempPublics =
314         llvm::make_unique<PublicsStream>(*this, std::move(*PublicS));
315     if (auto EC = TempPublics->reload())
316       return std::move(EC);
317     Publics = std::move(TempPublics);
318   }
319   return *Publics;
320 }
321 
322 Expected<SymbolStream &> PDBFile::getPDBSymbolStream() {
323   if (!Symbols) {
324     auto DbiS = getPDBDbiStream();
325     if (!DbiS)
326       return DbiS.takeError();
327 
328     uint32_t SymbolStreamNum = DbiS->getSymRecordStreamIndex();
329     auto SymbolS =
330         safelyCreateIndexedStream(ContainerLayout, *Buffer, SymbolStreamNum);
331     if (!SymbolS)
332       return SymbolS.takeError();
333 
334     auto TempSymbols = llvm::make_unique<SymbolStream>(std::move(*SymbolS));
335     if (auto EC = TempSymbols->reload())
336       return std::move(EC);
337     Symbols = std::move(TempSymbols);
338   }
339   return *Symbols;
340 }
341 
342 Expected<PDBStringTable &> PDBFile::getStringTable() {
343   if (!Strings) {
344     auto IS = getPDBInfoStream();
345     if (!IS)
346       return IS.takeError();
347 
348     uint32_t NameStreamIndex = IS->getNamedStreamIndex("/names");
349 
350     auto NS =
351         safelyCreateIndexedStream(ContainerLayout, *Buffer, NameStreamIndex);
352     if (!NS)
353       return NS.takeError();
354 
355     auto N = llvm::make_unique<PDBStringTable>();
356     BinaryStreamReader Reader(**NS);
357     if (auto EC = N->reload(Reader))
358       return std::move(EC);
359     assert(Reader.bytesRemaining() == 0);
360     StringTableStream = std::move(*NS);
361     Strings = std::move(N);
362   }
363   return *Strings;
364 }
365 
366 uint32_t PDBFile::getPointerSize() {
367   auto DbiS = getPDBDbiStream();
368   if (!DbiS)
369     return 0;
370   PDB_Machine Machine = DbiS->getMachineType();
371   if (Machine == PDB_Machine::Amd64)
372     return 8;
373   return 4;
374 }
375 
376 bool PDBFile::hasPDBDbiStream() const { return StreamDBI < getNumStreams(); }
377 
378 bool PDBFile::hasPDBGlobalsStream() {
379   auto DbiS = getPDBDbiStream();
380   if (!DbiS)
381     return false;
382   return DbiS->getGlobalSymbolStreamIndex() < getNumStreams();
383 }
384 
385 bool PDBFile::hasPDBInfoStream() { return StreamPDB < getNumStreams(); }
386 
387 bool PDBFile::hasPDBIpiStream() const { return StreamIPI < getNumStreams(); }
388 
389 bool PDBFile::hasPDBPublicsStream() {
390   auto DbiS = getPDBDbiStream();
391   if (!DbiS)
392     return false;
393   return DbiS->getPublicSymbolStreamIndex() < getNumStreams();
394 }
395 
396 bool PDBFile::hasPDBSymbolStream() {
397   auto DbiS = getPDBDbiStream();
398   if (!DbiS)
399     return false;
400   return DbiS->getSymRecordStreamIndex() < getNumStreams();
401 }
402 
403 bool PDBFile::hasPDBTpiStream() const { return StreamTPI < getNumStreams(); }
404 
405 bool PDBFile::hasPDBStringTable() {
406   auto IS = getPDBInfoStream();
407   if (!IS)
408     return false;
409   return IS->getNamedStreamIndex("/names") < getNumStreams();
410 }
411 
412 /// Wrapper around MappedBlockStream::createIndexedStream() that checks if a
413 /// stream with that index actually exists.  If it does not, the return value
414 /// will have an MSFError with code msf_error_code::no_stream.  Else, the return
415 /// value will contain the stream returned by createIndexedStream().
416 Expected<std::unique_ptr<MappedBlockStream>>
417 PDBFile::safelyCreateIndexedStream(const MSFLayout &Layout,
418                                    BinaryStreamRef MsfData,
419                                    uint32_t StreamIndex) const {
420   if (StreamIndex >= getNumStreams())
421     return make_error<RawError>(raw_error_code::no_stream);
422   return MappedBlockStream::createIndexedStream(Layout, MsfData, StreamIndex,
423                                                 Allocator);
424 }
425