1 //===- DWARFDebugLine.cpp -------------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8
9 #include "llvm/DebugInfo/DWARF/DWARFDebugLine.h"
10 #include "llvm/ADT/Optional.h"
11 #include "llvm/ADT/SmallString.h"
12 #include "llvm/ADT/SmallVector.h"
13 #include "llvm/ADT/StringRef.h"
14 #include "llvm/BinaryFormat/Dwarf.h"
15 #include "llvm/DebugInfo/DWARF/DWARFFormValue.h"
16 #include "llvm/DebugInfo/DWARF/DWARFRelocMap.h"
17 #include "llvm/Support/Errc.h"
18 #include "llvm/Support/Format.h"
19 #include "llvm/Support/WithColor.h"
20 #include "llvm/Support/raw_ostream.h"
21 #include <algorithm>
22 #include <cassert>
23 #include <cinttypes>
24 #include <cstdint>
25 #include <cstdio>
26 #include <utility>
27
28 using namespace llvm;
29 using namespace dwarf;
30
31 using FileLineInfoKind = DILineInfoSpecifier::FileLineInfoKind;
32
33 namespace {
34
35 struct ContentDescriptor {
36 dwarf::LineNumberEntryFormat Type;
37 dwarf::Form Form;
38 };
39
40 using ContentDescriptors = SmallVector<ContentDescriptor, 4>;
41
42 } // end anonymous namespace
43
trackContentType(dwarf::LineNumberEntryFormat ContentType)44 void DWARFDebugLine::ContentTypeTracker::trackContentType(
45 dwarf::LineNumberEntryFormat ContentType) {
46 switch (ContentType) {
47 case dwarf::DW_LNCT_timestamp:
48 HasModTime = true;
49 break;
50 case dwarf::DW_LNCT_size:
51 HasLength = true;
52 break;
53 case dwarf::DW_LNCT_MD5:
54 HasMD5 = true;
55 break;
56 case dwarf::DW_LNCT_LLVM_source:
57 HasSource = true;
58 break;
59 default:
60 // We only care about values we consider optional, and new values may be
61 // added in the vendor extension range, so we do not match exhaustively.
62 break;
63 }
64 }
65
Prologue()66 DWARFDebugLine::Prologue::Prologue() { clear(); }
67
hasFileAtIndex(uint64_t FileIndex) const68 bool DWARFDebugLine::Prologue::hasFileAtIndex(uint64_t FileIndex) const {
69 uint16_t DwarfVersion = getVersion();
70 assert(DwarfVersion != 0 &&
71 "line table prologue has no dwarf version information");
72 if (DwarfVersion >= 5)
73 return FileIndex < FileNames.size();
74 return FileIndex != 0 && FileIndex <= FileNames.size();
75 }
76
77 const llvm::DWARFDebugLine::FileNameEntry &
getFileNameEntry(uint64_t Index) const78 DWARFDebugLine::Prologue::getFileNameEntry(uint64_t Index) const {
79 uint16_t DwarfVersion = getVersion();
80 assert(DwarfVersion != 0 &&
81 "line table prologue has no dwarf version information");
82 // In DWARF v5 the file names are 0-indexed.
83 if (DwarfVersion >= 5)
84 return FileNames[Index];
85 return FileNames[Index - 1];
86 }
87
clear()88 void DWARFDebugLine::Prologue::clear() {
89 TotalLength = PrologueLength = 0;
90 SegSelectorSize = 0;
91 MinInstLength = MaxOpsPerInst = DefaultIsStmt = LineBase = LineRange = 0;
92 OpcodeBase = 0;
93 FormParams = dwarf::FormParams({0, 0, DWARF32});
94 ContentTypes = ContentTypeTracker();
95 StandardOpcodeLengths.clear();
96 IncludeDirectories.clear();
97 FileNames.clear();
98 }
99
dump(raw_ostream & OS,DIDumpOptions DumpOptions) const100 void DWARFDebugLine::Prologue::dump(raw_ostream &OS,
101 DIDumpOptions DumpOptions) const {
102 OS << "Line table prologue:\n"
103 << format(" total_length: 0x%8.8" PRIx64 "\n", TotalLength)
104 << format(" version: %u\n", getVersion());
105 if (getVersion() >= 5)
106 OS << format(" address_size: %u\n", getAddressSize())
107 << format(" seg_select_size: %u\n", SegSelectorSize);
108 OS << format(" prologue_length: 0x%8.8" PRIx64 "\n", PrologueLength)
109 << format(" min_inst_length: %u\n", MinInstLength)
110 << format(getVersion() >= 4 ? "max_ops_per_inst: %u\n" : "", MaxOpsPerInst)
111 << format(" default_is_stmt: %u\n", DefaultIsStmt)
112 << format(" line_base: %i\n", LineBase)
113 << format(" line_range: %u\n", LineRange)
114 << format(" opcode_base: %u\n", OpcodeBase);
115
116 for (uint32_t I = 0; I != StandardOpcodeLengths.size(); ++I)
117 OS << format("standard_opcode_lengths[%s] = %u\n",
118 LNStandardString(I + 1).data(), StandardOpcodeLengths[I]);
119
120 if (!IncludeDirectories.empty()) {
121 // DWARF v5 starts directory indexes at 0.
122 uint32_t DirBase = getVersion() >= 5 ? 0 : 1;
123 for (uint32_t I = 0; I != IncludeDirectories.size(); ++I) {
124 OS << format("include_directories[%3u] = ", I + DirBase);
125 IncludeDirectories[I].dump(OS, DumpOptions);
126 OS << '\n';
127 }
128 }
129
130 if (!FileNames.empty()) {
131 // DWARF v5 starts file indexes at 0.
132 uint32_t FileBase = getVersion() >= 5 ? 0 : 1;
133 for (uint32_t I = 0; I != FileNames.size(); ++I) {
134 const FileNameEntry &FileEntry = FileNames[I];
135 OS << format("file_names[%3u]:\n", I + FileBase);
136 OS << " name: ";
137 FileEntry.Name.dump(OS, DumpOptions);
138 OS << '\n'
139 << format(" dir_index: %" PRIu64 "\n", FileEntry.DirIdx);
140 if (ContentTypes.HasMD5)
141 OS << " md5_checksum: " << FileEntry.Checksum.digest() << '\n';
142 if (ContentTypes.HasModTime)
143 OS << format(" mod_time: 0x%8.8" PRIx64 "\n", FileEntry.ModTime);
144 if (ContentTypes.HasLength)
145 OS << format(" length: 0x%8.8" PRIx64 "\n", FileEntry.Length);
146 if (ContentTypes.HasSource) {
147 OS << " source: ";
148 FileEntry.Source.dump(OS, DumpOptions);
149 OS << '\n';
150 }
151 }
152 }
153 }
154
155 // Parse v2-v4 directory and file tables.
156 static void
parseV2DirFileTables(const DWARFDataExtractor & DebugLineData,uint64_t * OffsetPtr,uint64_t EndPrologueOffset,DWARFDebugLine::ContentTypeTracker & ContentTypes,std::vector<DWARFFormValue> & IncludeDirectories,std::vector<DWARFDebugLine::FileNameEntry> & FileNames)157 parseV2DirFileTables(const DWARFDataExtractor &DebugLineData,
158 uint64_t *OffsetPtr, uint64_t EndPrologueOffset,
159 DWARFDebugLine::ContentTypeTracker &ContentTypes,
160 std::vector<DWARFFormValue> &IncludeDirectories,
161 std::vector<DWARFDebugLine::FileNameEntry> &FileNames) {
162 while (*OffsetPtr < EndPrologueOffset) {
163 StringRef S = DebugLineData.getCStrRef(OffsetPtr);
164 if (S.empty())
165 break;
166 DWARFFormValue Dir =
167 DWARFFormValue::createFromPValue(dwarf::DW_FORM_string, S.data());
168 IncludeDirectories.push_back(Dir);
169 }
170
171 while (*OffsetPtr < EndPrologueOffset) {
172 StringRef Name = DebugLineData.getCStrRef(OffsetPtr);
173 if (Name.empty())
174 break;
175 DWARFDebugLine::FileNameEntry FileEntry;
176 FileEntry.Name =
177 DWARFFormValue::createFromPValue(dwarf::DW_FORM_string, Name.data());
178 FileEntry.DirIdx = DebugLineData.getULEB128(OffsetPtr);
179 FileEntry.ModTime = DebugLineData.getULEB128(OffsetPtr);
180 FileEntry.Length = DebugLineData.getULEB128(OffsetPtr);
181 FileNames.push_back(FileEntry);
182 }
183
184 ContentTypes.HasModTime = true;
185 ContentTypes.HasLength = true;
186 }
187
188 // Parse v5 directory/file entry content descriptions.
189 // Returns the descriptors, or an error if we did not find a path or ran off
190 // the end of the prologue.
191 static llvm::Expected<ContentDescriptors>
parseV5EntryFormat(const DWARFDataExtractor & DebugLineData,uint64_t * OffsetPtr,DWARFDebugLine::ContentTypeTracker * ContentTypes)192 parseV5EntryFormat(const DWARFDataExtractor &DebugLineData, uint64_t *OffsetPtr,
193 DWARFDebugLine::ContentTypeTracker *ContentTypes) {
194 ContentDescriptors Descriptors;
195 int FormatCount = DebugLineData.getU8(OffsetPtr);
196 bool HasPath = false;
197 for (int I = 0; I != FormatCount; ++I) {
198 ContentDescriptor Descriptor;
199 Descriptor.Type =
200 dwarf::LineNumberEntryFormat(DebugLineData.getULEB128(OffsetPtr));
201 Descriptor.Form = dwarf::Form(DebugLineData.getULEB128(OffsetPtr));
202 if (Descriptor.Type == dwarf::DW_LNCT_path)
203 HasPath = true;
204 if (ContentTypes)
205 ContentTypes->trackContentType(Descriptor.Type);
206 Descriptors.push_back(Descriptor);
207 }
208
209 if (!HasPath)
210 return createStringError(errc::invalid_argument,
211 "failed to parse entry content descriptions"
212 " because no path was found");
213 return Descriptors;
214 }
215
216 static Error
parseV5DirFileTables(const DWARFDataExtractor & DebugLineData,uint64_t * OffsetPtr,const dwarf::FormParams & FormParams,const DWARFContext & Ctx,const DWARFUnit * U,DWARFDebugLine::ContentTypeTracker & ContentTypes,std::vector<DWARFFormValue> & IncludeDirectories,std::vector<DWARFDebugLine::FileNameEntry> & FileNames)217 parseV5DirFileTables(const DWARFDataExtractor &DebugLineData,
218 uint64_t *OffsetPtr, const dwarf::FormParams &FormParams,
219 const DWARFContext &Ctx, const DWARFUnit *U,
220 DWARFDebugLine::ContentTypeTracker &ContentTypes,
221 std::vector<DWARFFormValue> &IncludeDirectories,
222 std::vector<DWARFDebugLine::FileNameEntry> &FileNames) {
223 // Get the directory entry description.
224 llvm::Expected<ContentDescriptors> DirDescriptors =
225 parseV5EntryFormat(DebugLineData, OffsetPtr, nullptr);
226 if (!DirDescriptors)
227 return DirDescriptors.takeError();
228
229 // Get the directory entries, according to the format described above.
230 int DirEntryCount = DebugLineData.getU8(OffsetPtr);
231 for (int I = 0; I != DirEntryCount; ++I) {
232 for (auto Descriptor : *DirDescriptors) {
233 DWARFFormValue Value(Descriptor.Form);
234 switch (Descriptor.Type) {
235 case DW_LNCT_path:
236 if (!Value.extractValue(DebugLineData, OffsetPtr, FormParams, &Ctx, U))
237 return createStringError(errc::invalid_argument,
238 "failed to parse directory entry because "
239 "extracting the form value failed.");
240 IncludeDirectories.push_back(Value);
241 break;
242 default:
243 if (!Value.skipValue(DebugLineData, OffsetPtr, FormParams))
244 return createStringError(errc::invalid_argument,
245 "failed to parse directory entry because "
246 "skipping the form value failed.");
247 }
248 }
249 }
250
251 // Get the file entry description.
252 llvm::Expected<ContentDescriptors> FileDescriptors =
253 parseV5EntryFormat(DebugLineData, OffsetPtr, &ContentTypes);
254 if (!FileDescriptors)
255 return FileDescriptors.takeError();
256
257 // Get the file entries, according to the format described above.
258 int FileEntryCount = DebugLineData.getU8(OffsetPtr);
259 for (int I = 0; I != FileEntryCount; ++I) {
260 DWARFDebugLine::FileNameEntry FileEntry;
261 for (auto Descriptor : *FileDescriptors) {
262 DWARFFormValue Value(Descriptor.Form);
263 if (!Value.extractValue(DebugLineData, OffsetPtr, FormParams, &Ctx, U))
264 return createStringError(errc::invalid_argument,
265 "failed to parse file entry because "
266 "extracting the form value failed.");
267 switch (Descriptor.Type) {
268 case DW_LNCT_path:
269 FileEntry.Name = Value;
270 break;
271 case DW_LNCT_LLVM_source:
272 FileEntry.Source = Value;
273 break;
274 case DW_LNCT_directory_index:
275 FileEntry.DirIdx = Value.getAsUnsignedConstant().getValue();
276 break;
277 case DW_LNCT_timestamp:
278 FileEntry.ModTime = Value.getAsUnsignedConstant().getValue();
279 break;
280 case DW_LNCT_size:
281 FileEntry.Length = Value.getAsUnsignedConstant().getValue();
282 break;
283 case DW_LNCT_MD5:
284 if (!Value.getAsBlock() || Value.getAsBlock().getValue().size() != 16)
285 return createStringError(
286 errc::invalid_argument,
287 "failed to parse file entry because the MD5 hash is invalid");
288 std::uninitialized_copy_n(Value.getAsBlock().getValue().begin(), 16,
289 FileEntry.Checksum.Bytes.begin());
290 break;
291 default:
292 break;
293 }
294 }
295 FileNames.push_back(FileEntry);
296 }
297 return Error::success();
298 }
299
parse(const DWARFDataExtractor & DebugLineData,uint64_t * OffsetPtr,const DWARFContext & Ctx,const DWARFUnit * U)300 Error DWARFDebugLine::Prologue::parse(const DWARFDataExtractor &DebugLineData,
301 uint64_t *OffsetPtr,
302 const DWARFContext &Ctx,
303 const DWARFUnit *U) {
304 const uint64_t PrologueOffset = *OffsetPtr;
305
306 clear();
307 TotalLength = DebugLineData.getRelocatedValue(4, OffsetPtr);
308 if (TotalLength == dwarf::DW_LENGTH_DWARF64) {
309 FormParams.Format = dwarf::DWARF64;
310 TotalLength = DebugLineData.getU64(OffsetPtr);
311 } else if (TotalLength >= dwarf::DW_LENGTH_lo_reserved) {
312 return createStringError(errc::invalid_argument,
313 "parsing line table prologue at offset 0x%8.8" PRIx64
314 " unsupported reserved unit length found of value 0x%8.8" PRIx64,
315 PrologueOffset, TotalLength);
316 }
317 FormParams.Version = DebugLineData.getU16(OffsetPtr);
318 if (getVersion() < 2)
319 return createStringError(errc::not_supported,
320 "parsing line table prologue at offset 0x%8.8" PRIx64
321 " found unsupported version 0x%2.2" PRIx16,
322 PrologueOffset, getVersion());
323
324 if (getVersion() >= 5) {
325 FormParams.AddrSize = DebugLineData.getU8(OffsetPtr);
326 assert((DebugLineData.getAddressSize() == 0 ||
327 DebugLineData.getAddressSize() == getAddressSize()) &&
328 "Line table header and data extractor disagree");
329 SegSelectorSize = DebugLineData.getU8(OffsetPtr);
330 }
331
332 PrologueLength =
333 DebugLineData.getRelocatedValue(sizeofPrologueLength(), OffsetPtr);
334 const uint64_t EndPrologueOffset = PrologueLength + *OffsetPtr;
335 MinInstLength = DebugLineData.getU8(OffsetPtr);
336 if (getVersion() >= 4)
337 MaxOpsPerInst = DebugLineData.getU8(OffsetPtr);
338 DefaultIsStmt = DebugLineData.getU8(OffsetPtr);
339 LineBase = DebugLineData.getU8(OffsetPtr);
340 LineRange = DebugLineData.getU8(OffsetPtr);
341 OpcodeBase = DebugLineData.getU8(OffsetPtr);
342
343 StandardOpcodeLengths.reserve(OpcodeBase - 1);
344 for (uint32_t I = 1; I < OpcodeBase; ++I) {
345 uint8_t OpLen = DebugLineData.getU8(OffsetPtr);
346 StandardOpcodeLengths.push_back(OpLen);
347 }
348
349 if (getVersion() >= 5) {
350 if (Error E =
351 parseV5DirFileTables(DebugLineData, OffsetPtr, FormParams, Ctx, U,
352 ContentTypes, IncludeDirectories, FileNames)) {
353 return joinErrors(
354 createStringError(
355 errc::invalid_argument,
356 "parsing line table prologue at 0x%8.8" PRIx64
357 " found an invalid directory or file table description at"
358 " 0x%8.8" PRIx64,
359 PrologueOffset, *OffsetPtr),
360 std::move(E));
361 }
362 } else
363 parseV2DirFileTables(DebugLineData, OffsetPtr, EndPrologueOffset,
364 ContentTypes, IncludeDirectories, FileNames);
365
366 if (*OffsetPtr != EndPrologueOffset)
367 return createStringError(errc::invalid_argument,
368 "parsing line table prologue at 0x%8.8" PRIx64
369 " should have ended at 0x%8.8" PRIx64
370 " but it ended at 0x%8.8" PRIx64,
371 PrologueOffset, EndPrologueOffset, *OffsetPtr);
372 return Error::success();
373 }
374
Row(bool DefaultIsStmt)375 DWARFDebugLine::Row::Row(bool DefaultIsStmt) { reset(DefaultIsStmt); }
376
postAppend()377 void DWARFDebugLine::Row::postAppend() {
378 Discriminator = 0;
379 BasicBlock = false;
380 PrologueEnd = false;
381 EpilogueBegin = false;
382 }
383
reset(bool DefaultIsStmt)384 void DWARFDebugLine::Row::reset(bool DefaultIsStmt) {
385 Address.Address = 0;
386 Address.SectionIndex = object::SectionedAddress::UndefSection;
387 Line = 1;
388 Column = 0;
389 File = 1;
390 Isa = 0;
391 Discriminator = 0;
392 IsStmt = DefaultIsStmt;
393 BasicBlock = false;
394 EndSequence = false;
395 PrologueEnd = false;
396 EpilogueBegin = false;
397 }
398
dumpTableHeader(raw_ostream & OS)399 void DWARFDebugLine::Row::dumpTableHeader(raw_ostream &OS) {
400 OS << "Address Line Column File ISA Discriminator Flags\n"
401 << "------------------ ------ ------ ------ --- ------------- "
402 "-------------\n";
403 }
404
dump(raw_ostream & OS) const405 void DWARFDebugLine::Row::dump(raw_ostream &OS) const {
406 OS << format("0x%16.16" PRIx64 " %6u %6u", Address.Address, Line, Column)
407 << format(" %6u %3u %13u ", File, Isa, Discriminator)
408 << (IsStmt ? " is_stmt" : "") << (BasicBlock ? " basic_block" : "")
409 << (PrologueEnd ? " prologue_end" : "")
410 << (EpilogueBegin ? " epilogue_begin" : "")
411 << (EndSequence ? " end_sequence" : "") << '\n';
412 }
413
Sequence()414 DWARFDebugLine::Sequence::Sequence() { reset(); }
415
reset()416 void DWARFDebugLine::Sequence::reset() {
417 LowPC = 0;
418 HighPC = 0;
419 SectionIndex = object::SectionedAddress::UndefSection;
420 FirstRowIndex = 0;
421 LastRowIndex = 0;
422 Empty = true;
423 }
424
LineTable()425 DWARFDebugLine::LineTable::LineTable() { clear(); }
426
dump(raw_ostream & OS,DIDumpOptions DumpOptions) const427 void DWARFDebugLine::LineTable::dump(raw_ostream &OS,
428 DIDumpOptions DumpOptions) const {
429 Prologue.dump(OS, DumpOptions);
430
431 if (!Rows.empty()) {
432 OS << '\n';
433 Row::dumpTableHeader(OS);
434 for (const Row &R : Rows) {
435 R.dump(OS);
436 }
437 }
438
439 // Terminate the table with a final blank line to clearly delineate it from
440 // later dumps.
441 OS << '\n';
442 }
443
clear()444 void DWARFDebugLine::LineTable::clear() {
445 Prologue.clear();
446 Rows.clear();
447 Sequences.clear();
448 }
449
ParsingState(struct LineTable * LT)450 DWARFDebugLine::ParsingState::ParsingState(struct LineTable *LT)
451 : LineTable(LT) {
452 resetRowAndSequence();
453 }
454
resetRowAndSequence()455 void DWARFDebugLine::ParsingState::resetRowAndSequence() {
456 Row.reset(LineTable->Prologue.DefaultIsStmt);
457 Sequence.reset();
458 }
459
appendRowToMatrix()460 void DWARFDebugLine::ParsingState::appendRowToMatrix() {
461 unsigned RowNumber = LineTable->Rows.size();
462 if (Sequence.Empty) {
463 // Record the beginning of instruction sequence.
464 Sequence.Empty = false;
465 Sequence.LowPC = Row.Address.Address;
466 Sequence.FirstRowIndex = RowNumber;
467 }
468 LineTable->appendRow(Row);
469 if (Row.EndSequence) {
470 // Record the end of instruction sequence.
471 Sequence.HighPC = Row.Address.Address;
472 Sequence.LastRowIndex = RowNumber + 1;
473 Sequence.SectionIndex = Row.Address.SectionIndex;
474 if (Sequence.isValid())
475 LineTable->appendSequence(Sequence);
476 Sequence.reset();
477 }
478 Row.postAppend();
479 }
480
481 const DWARFDebugLine::LineTable *
getLineTable(uint64_t Offset) const482 DWARFDebugLine::getLineTable(uint64_t Offset) const {
483 LineTableConstIter Pos = LineTableMap.find(Offset);
484 if (Pos != LineTableMap.end())
485 return &Pos->second;
486 return nullptr;
487 }
488
getOrParseLineTable(DWARFDataExtractor & DebugLineData,uint64_t Offset,const DWARFContext & Ctx,const DWARFUnit * U,function_ref<void (Error)> RecoverableErrorCallback)489 Expected<const DWARFDebugLine::LineTable *> DWARFDebugLine::getOrParseLineTable(
490 DWARFDataExtractor &DebugLineData, uint64_t Offset, const DWARFContext &Ctx,
491 const DWARFUnit *U, function_ref<void(Error)> RecoverableErrorCallback) {
492 if (!DebugLineData.isValidOffset(Offset))
493 return createStringError(errc::invalid_argument, "offset 0x%8.8" PRIx64
494 " is not a valid debug line section offset",
495 Offset);
496
497 std::pair<LineTableIter, bool> Pos =
498 LineTableMap.insert(LineTableMapTy::value_type(Offset, LineTable()));
499 LineTable *LT = &Pos.first->second;
500 if (Pos.second) {
501 if (Error Err =
502 LT->parse(DebugLineData, &Offset, Ctx, U, RecoverableErrorCallback))
503 return std::move(Err);
504 return LT;
505 }
506 return LT;
507 }
508
parse(DWARFDataExtractor & DebugLineData,uint64_t * OffsetPtr,const DWARFContext & Ctx,const DWARFUnit * U,function_ref<void (Error)> RecoverableErrorCallback,raw_ostream * OS)509 Error DWARFDebugLine::LineTable::parse(
510 DWARFDataExtractor &DebugLineData, uint64_t *OffsetPtr,
511 const DWARFContext &Ctx, const DWARFUnit *U,
512 function_ref<void(Error)> RecoverableErrorCallback, raw_ostream *OS) {
513 const uint64_t DebugLineOffset = *OffsetPtr;
514
515 clear();
516
517 Error PrologueErr = Prologue.parse(DebugLineData, OffsetPtr, Ctx, U);
518
519 if (OS) {
520 // The presence of OS signals verbose dumping.
521 DIDumpOptions DumpOptions;
522 DumpOptions.Verbose = true;
523 Prologue.dump(*OS, DumpOptions);
524 }
525
526 if (PrologueErr)
527 return PrologueErr;
528
529 uint64_t ProgramLength = Prologue.TotalLength + Prologue.sizeofTotalLength();
530 if (!DebugLineData.isValidOffsetForDataOfSize(DebugLineOffset,
531 ProgramLength)) {
532 assert(DebugLineData.size() > DebugLineOffset &&
533 "prologue parsing should handle invalid offset");
534 uint64_t BytesRemaining = DebugLineData.size() - DebugLineOffset;
535 RecoverableErrorCallback(
536 createStringError(errc::invalid_argument,
537 "line table program with offset 0x%8.8" PRIx64
538 " has length 0x%8.8" PRIx64 " but only 0x%8.8" PRIx64
539 " bytes are available",
540 DebugLineOffset, ProgramLength, BytesRemaining));
541 // Continue by capping the length at the number of remaining bytes.
542 ProgramLength = BytesRemaining;
543 }
544
545 const uint64_t EndOffset = DebugLineOffset + ProgramLength;
546
547 // See if we should tell the data extractor the address size.
548 if (DebugLineData.getAddressSize() == 0)
549 DebugLineData.setAddressSize(Prologue.getAddressSize());
550 else
551 assert(Prologue.getAddressSize() == 0 ||
552 Prologue.getAddressSize() == DebugLineData.getAddressSize());
553
554 ParsingState State(this);
555
556 while (*OffsetPtr < EndOffset) {
557 if (OS)
558 *OS << format("0x%08.08" PRIx64 ": ", *OffsetPtr);
559
560 uint8_t Opcode = DebugLineData.getU8(OffsetPtr);
561
562 if (OS)
563 *OS << format("%02.02" PRIx8 " ", Opcode);
564
565 if (Opcode == 0) {
566 // Extended Opcodes always start with a zero opcode followed by
567 // a uleb128 length so you can skip ones you don't know about
568 uint64_t Len = DebugLineData.getULEB128(OffsetPtr);
569 uint64_t ExtOffset = *OffsetPtr;
570
571 // Tolerate zero-length; assume length is correct and soldier on.
572 if (Len == 0) {
573 if (OS)
574 *OS << "Badly formed extended line op (length 0)\n";
575 continue;
576 }
577
578 uint8_t SubOpcode = DebugLineData.getU8(OffsetPtr);
579 if (OS)
580 *OS << LNExtendedString(SubOpcode);
581 switch (SubOpcode) {
582 case DW_LNE_end_sequence:
583 // Set the end_sequence register of the state machine to true and
584 // append a row to the matrix using the current values of the
585 // state-machine registers. Then reset the registers to the initial
586 // values specified above. Every statement program sequence must end
587 // with a DW_LNE_end_sequence instruction which creates a row whose
588 // address is that of the byte after the last target machine instruction
589 // of the sequence.
590 State.Row.EndSequence = true;
591 if (OS) {
592 *OS << "\n";
593 OS->indent(12);
594 State.Row.dump(*OS);
595 }
596 State.appendRowToMatrix();
597 State.resetRowAndSequence();
598 break;
599
600 case DW_LNE_set_address:
601 // Takes a single relocatable address as an operand. The size of the
602 // operand is the size appropriate to hold an address on the target
603 // machine. Set the address register to the value given by the
604 // relocatable address. All of the other statement program opcodes
605 // that affect the address register add a delta to it. This instruction
606 // stores a relocatable value into it instead.
607 //
608 // Make sure the extractor knows the address size. If not, infer it
609 // from the size of the operand.
610 {
611 uint8_t ExtractorAddressSize = DebugLineData.getAddressSize();
612 if (ExtractorAddressSize != Len - 1 && ExtractorAddressSize != 0)
613 RecoverableErrorCallback(createStringError(
614 errc::invalid_argument,
615 "mismatching address size at offset 0x%8.8" PRIx64
616 " expected 0x%2.2" PRIx8 " found 0x%2.2" PRIx64,
617 ExtOffset, ExtractorAddressSize, Len - 1));
618
619 // Assume that the line table is correct and temporarily override the
620 // address size.
621 DebugLineData.setAddressSize(Len - 1);
622 State.Row.Address.Address = DebugLineData.getRelocatedAddress(
623 OffsetPtr, &State.Row.Address.SectionIndex);
624
625 // Restore the address size if the extractor already had it.
626 if (ExtractorAddressSize != 0)
627 DebugLineData.setAddressSize(ExtractorAddressSize);
628
629 if (OS)
630 *OS << format(" (0x%16.16" PRIx64 ")", State.Row.Address.Address);
631 }
632 break;
633
634 case DW_LNE_define_file:
635 // Takes 4 arguments. The first is a null terminated string containing
636 // a source file name. The second is an unsigned LEB128 number
637 // representing the directory index of the directory in which the file
638 // was found. The third is an unsigned LEB128 number representing the
639 // time of last modification of the file. The fourth is an unsigned
640 // LEB128 number representing the length in bytes of the file. The time
641 // and length fields may contain LEB128(0) if the information is not
642 // available.
643 //
644 // The directory index represents an entry in the include_directories
645 // section of the statement program prologue. The index is LEB128(0)
646 // if the file was found in the current directory of the compilation,
647 // LEB128(1) if it was found in the first directory in the
648 // include_directories section, and so on. The directory index is
649 // ignored for file names that represent full path names.
650 //
651 // The files are numbered, starting at 1, in the order in which they
652 // appear; the names in the prologue come before names defined by
653 // the DW_LNE_define_file instruction. These numbers are used in the
654 // the file register of the state machine.
655 {
656 FileNameEntry FileEntry;
657 const char *Name = DebugLineData.getCStr(OffsetPtr);
658 FileEntry.Name =
659 DWARFFormValue::createFromPValue(dwarf::DW_FORM_string, Name);
660 FileEntry.DirIdx = DebugLineData.getULEB128(OffsetPtr);
661 FileEntry.ModTime = DebugLineData.getULEB128(OffsetPtr);
662 FileEntry.Length = DebugLineData.getULEB128(OffsetPtr);
663 Prologue.FileNames.push_back(FileEntry);
664 if (OS)
665 *OS << " (" << Name << ", dir=" << FileEntry.DirIdx << ", mod_time="
666 << format("(0x%16.16" PRIx64 ")", FileEntry.ModTime)
667 << ", length=" << FileEntry.Length << ")";
668 }
669 break;
670
671 case DW_LNE_set_discriminator:
672 State.Row.Discriminator = DebugLineData.getULEB128(OffsetPtr);
673 if (OS)
674 *OS << " (" << State.Row.Discriminator << ")";
675 break;
676
677 default:
678 if (OS)
679 *OS << format("Unrecognized extended op 0x%02.02" PRIx8, SubOpcode)
680 << format(" length %" PRIx64, Len);
681 // Len doesn't include the zero opcode byte or the length itself, but
682 // it does include the sub_opcode, so we have to adjust for that.
683 (*OffsetPtr) += Len - 1;
684 break;
685 }
686 // Make sure the stated and parsed lengths are the same.
687 // Otherwise we have an unparseable line-number program.
688 if (*OffsetPtr - ExtOffset != Len)
689 return createStringError(errc::illegal_byte_sequence,
690 "unexpected line op length at offset 0x%8.8" PRIx64
691 " expected 0x%2.2" PRIx64 " found 0x%2.2" PRIx64,
692 ExtOffset, Len, *OffsetPtr - ExtOffset);
693 } else if (Opcode < Prologue.OpcodeBase) {
694 if (OS)
695 *OS << LNStandardString(Opcode);
696 switch (Opcode) {
697 // Standard Opcodes
698 case DW_LNS_copy:
699 // Takes no arguments. Append a row to the matrix using the
700 // current values of the state-machine registers.
701 if (OS) {
702 *OS << "\n";
703 OS->indent(12);
704 State.Row.dump(*OS);
705 *OS << "\n";
706 }
707 State.appendRowToMatrix();
708 break;
709
710 case DW_LNS_advance_pc:
711 // Takes a single unsigned LEB128 operand, multiplies it by the
712 // min_inst_length field of the prologue, and adds the
713 // result to the address register of the state machine.
714 {
715 uint64_t AddrOffset =
716 DebugLineData.getULEB128(OffsetPtr) * Prologue.MinInstLength;
717 State.Row.Address.Address += AddrOffset;
718 if (OS)
719 *OS << " (" << AddrOffset << ")";
720 }
721 break;
722
723 case DW_LNS_advance_line:
724 // Takes a single signed LEB128 operand and adds that value to
725 // the line register of the state machine.
726 State.Row.Line += DebugLineData.getSLEB128(OffsetPtr);
727 if (OS)
728 *OS << " (" << State.Row.Line << ")";
729 break;
730
731 case DW_LNS_set_file:
732 // Takes a single unsigned LEB128 operand and stores it in the file
733 // register of the state machine.
734 State.Row.File = DebugLineData.getULEB128(OffsetPtr);
735 if (OS)
736 *OS << " (" << State.Row.File << ")";
737 break;
738
739 case DW_LNS_set_column:
740 // Takes a single unsigned LEB128 operand and stores it in the
741 // column register of the state machine.
742 State.Row.Column = DebugLineData.getULEB128(OffsetPtr);
743 if (OS)
744 *OS << " (" << State.Row.Column << ")";
745 break;
746
747 case DW_LNS_negate_stmt:
748 // Takes no arguments. Set the is_stmt register of the state
749 // machine to the logical negation of its current value.
750 State.Row.IsStmt = !State.Row.IsStmt;
751 break;
752
753 case DW_LNS_set_basic_block:
754 // Takes no arguments. Set the basic_block register of the
755 // state machine to true
756 State.Row.BasicBlock = true;
757 break;
758
759 case DW_LNS_const_add_pc:
760 // Takes no arguments. Add to the address register of the state
761 // machine the address increment value corresponding to special
762 // opcode 255. The motivation for DW_LNS_const_add_pc is this:
763 // when the statement program needs to advance the address by a
764 // small amount, it can use a single special opcode, which occupies
765 // a single byte. When it needs to advance the address by up to
766 // twice the range of the last special opcode, it can use
767 // DW_LNS_const_add_pc followed by a special opcode, for a total
768 // of two bytes. Only if it needs to advance the address by more
769 // than twice that range will it need to use both DW_LNS_advance_pc
770 // and a special opcode, requiring three or more bytes.
771 {
772 uint8_t AdjustOpcode = 255 - Prologue.OpcodeBase;
773 uint64_t AddrOffset =
774 (AdjustOpcode / Prologue.LineRange) * Prologue.MinInstLength;
775 State.Row.Address.Address += AddrOffset;
776 if (OS)
777 *OS
778 << format(" (0x%16.16" PRIx64 ")", AddrOffset);
779 }
780 break;
781
782 case DW_LNS_fixed_advance_pc:
783 // Takes a single uhalf operand. Add to the address register of
784 // the state machine the value of the (unencoded) operand. This
785 // is the only extended opcode that takes an argument that is not
786 // a variable length number. The motivation for DW_LNS_fixed_advance_pc
787 // is this: existing assemblers cannot emit DW_LNS_advance_pc or
788 // special opcodes because they cannot encode LEB128 numbers or
789 // judge when the computation of a special opcode overflows and
790 // requires the use of DW_LNS_advance_pc. Such assemblers, however,
791 // can use DW_LNS_fixed_advance_pc instead, sacrificing compression.
792 {
793 uint16_t PCOffset = DebugLineData.getRelocatedValue(2, OffsetPtr);
794 State.Row.Address.Address += PCOffset;
795 if (OS)
796 *OS
797 << format(" (0x%4.4" PRIx16 ")", PCOffset);
798 }
799 break;
800
801 case DW_LNS_set_prologue_end:
802 // Takes no arguments. Set the prologue_end register of the
803 // state machine to true
804 State.Row.PrologueEnd = true;
805 break;
806
807 case DW_LNS_set_epilogue_begin:
808 // Takes no arguments. Set the basic_block register of the
809 // state machine to true
810 State.Row.EpilogueBegin = true;
811 break;
812
813 case DW_LNS_set_isa:
814 // Takes a single unsigned LEB128 operand and stores it in the
815 // column register of the state machine.
816 State.Row.Isa = DebugLineData.getULEB128(OffsetPtr);
817 if (OS)
818 *OS << " (" << (uint64_t)State.Row.Isa << ")";
819 break;
820
821 default:
822 // Handle any unknown standard opcodes here. We know the lengths
823 // of such opcodes because they are specified in the prologue
824 // as a multiple of LEB128 operands for each opcode.
825 {
826 assert(Opcode - 1U < Prologue.StandardOpcodeLengths.size());
827 uint8_t OpcodeLength = Prologue.StandardOpcodeLengths[Opcode - 1];
828 for (uint8_t I = 0; I < OpcodeLength; ++I) {
829 uint64_t Value = DebugLineData.getULEB128(OffsetPtr);
830 if (OS)
831 *OS << format("Skipping ULEB128 value: 0x%16.16" PRIx64 ")\n",
832 Value);
833 }
834 }
835 break;
836 }
837 } else {
838 // Special Opcodes
839
840 // A special opcode value is chosen based on the amount that needs
841 // to be added to the line and address registers. The maximum line
842 // increment for a special opcode is the value of the line_base
843 // field in the header, plus the value of the line_range field,
844 // minus 1 (line base + line range - 1). If the desired line
845 // increment is greater than the maximum line increment, a standard
846 // opcode must be used instead of a special opcode. The "address
847 // advance" is calculated by dividing the desired address increment
848 // by the minimum_instruction_length field from the header. The
849 // special opcode is then calculated using the following formula:
850 //
851 // opcode = (desired line increment - line_base) +
852 // (line_range * address advance) + opcode_base
853 //
854 // If the resulting opcode is greater than 255, a standard opcode
855 // must be used instead.
856 //
857 // To decode a special opcode, subtract the opcode_base from the
858 // opcode itself to give the adjusted opcode. The amount to
859 // increment the address register is the result of the adjusted
860 // opcode divided by the line_range multiplied by the
861 // minimum_instruction_length field from the header. That is:
862 //
863 // address increment = (adjusted opcode / line_range) *
864 // minimum_instruction_length
865 //
866 // The amount to increment the line register is the line_base plus
867 // the result of the adjusted opcode modulo the line_range. That is:
868 //
869 // line increment = line_base + (adjusted opcode % line_range)
870
871 uint8_t AdjustOpcode = Opcode - Prologue.OpcodeBase;
872 uint64_t AddrOffset =
873 (AdjustOpcode / Prologue.LineRange) * Prologue.MinInstLength;
874 int32_t LineOffset =
875 Prologue.LineBase + (AdjustOpcode % Prologue.LineRange);
876 State.Row.Line += LineOffset;
877 State.Row.Address.Address += AddrOffset;
878
879 if (OS) {
880 *OS << "address += " << AddrOffset << ", line += " << LineOffset
881 << "\n";
882 OS->indent(12);
883 State.Row.dump(*OS);
884 }
885
886 State.appendRowToMatrix();
887 }
888 if(OS)
889 *OS << "\n";
890 }
891
892 if (!State.Sequence.Empty)
893 RecoverableErrorCallback(createStringError(
894 errc::illegal_byte_sequence,
895 "last sequence in debug line table at offset 0x%8.8" PRIx64
896 " is not terminated",
897 DebugLineOffset));
898
899 // Sort all sequences so that address lookup will work faster.
900 if (!Sequences.empty()) {
901 llvm::sort(Sequences, Sequence::orderByHighPC);
902 // Note: actually, instruction address ranges of sequences should not
903 // overlap (in shared objects and executables). If they do, the address
904 // lookup would still work, though, but result would be ambiguous.
905 // We don't report warning in this case. For example,
906 // sometimes .so compiled from multiple object files contains a few
907 // rudimentary sequences for address ranges [0x0, 0xsomething).
908 }
909
910 return Error::success();
911 }
912
findRowInSeq(const DWARFDebugLine::Sequence & Seq,object::SectionedAddress Address) const913 uint32_t DWARFDebugLine::LineTable::findRowInSeq(
914 const DWARFDebugLine::Sequence &Seq,
915 object::SectionedAddress Address) const {
916 if (!Seq.containsPC(Address))
917 return UnknownRowIndex;
918 assert(Seq.SectionIndex == Address.SectionIndex);
919 // In some cases, e.g. first instruction in a function, the compiler generates
920 // two entries, both with the same address. We want the last one.
921 //
922 // In general we want a non-empty range: the last row whose address is less
923 // than or equal to Address. This can be computed as upper_bound - 1.
924 DWARFDebugLine::Row Row;
925 Row.Address = Address;
926 RowIter FirstRow = Rows.begin() + Seq.FirstRowIndex;
927 RowIter LastRow = Rows.begin() + Seq.LastRowIndex;
928 assert(FirstRow->Address.Address <= Row.Address.Address &&
929 Row.Address.Address < LastRow[-1].Address.Address);
930 RowIter RowPos = std::upper_bound(FirstRow + 1, LastRow - 1, Row,
931 DWARFDebugLine::Row::orderByAddress) -
932 1;
933 assert(Seq.SectionIndex == RowPos->Address.SectionIndex);
934 return RowPos - Rows.begin();
935 }
936
lookupAddress(object::SectionedAddress Address) const937 uint32_t DWARFDebugLine::LineTable::lookupAddress(
938 object::SectionedAddress Address) const {
939
940 // Search for relocatable addresses
941 uint32_t Result = lookupAddressImpl(Address);
942
943 if (Result != UnknownRowIndex ||
944 Address.SectionIndex == object::SectionedAddress::UndefSection)
945 return Result;
946
947 // Search for absolute addresses
948 Address.SectionIndex = object::SectionedAddress::UndefSection;
949 return lookupAddressImpl(Address);
950 }
951
lookupAddressImpl(object::SectionedAddress Address) const952 uint32_t DWARFDebugLine::LineTable::lookupAddressImpl(
953 object::SectionedAddress Address) const {
954 // First, find an instruction sequence containing the given address.
955 DWARFDebugLine::Sequence Sequence;
956 Sequence.SectionIndex = Address.SectionIndex;
957 Sequence.HighPC = Address.Address;
958 SequenceIter It = llvm::upper_bound(Sequences, Sequence,
959 DWARFDebugLine::Sequence::orderByHighPC);
960 if (It == Sequences.end() || It->SectionIndex != Address.SectionIndex)
961 return UnknownRowIndex;
962 return findRowInSeq(*It, Address);
963 }
964
lookupAddressRange(object::SectionedAddress Address,uint64_t Size,std::vector<uint32_t> & Result) const965 bool DWARFDebugLine::LineTable::lookupAddressRange(
966 object::SectionedAddress Address, uint64_t Size,
967 std::vector<uint32_t> &Result) const {
968
969 // Search for relocatable addresses
970 if (lookupAddressRangeImpl(Address, Size, Result))
971 return true;
972
973 if (Address.SectionIndex == object::SectionedAddress::UndefSection)
974 return false;
975
976 // Search for absolute addresses
977 Address.SectionIndex = object::SectionedAddress::UndefSection;
978 return lookupAddressRangeImpl(Address, Size, Result);
979 }
980
lookupAddressRangeImpl(object::SectionedAddress Address,uint64_t Size,std::vector<uint32_t> & Result) const981 bool DWARFDebugLine::LineTable::lookupAddressRangeImpl(
982 object::SectionedAddress Address, uint64_t Size,
983 std::vector<uint32_t> &Result) const {
984 if (Sequences.empty())
985 return false;
986 uint64_t EndAddr = Address.Address + Size;
987 // First, find an instruction sequence containing the given address.
988 DWARFDebugLine::Sequence Sequence;
989 Sequence.SectionIndex = Address.SectionIndex;
990 Sequence.HighPC = Address.Address;
991 SequenceIter LastSeq = Sequences.end();
992 SequenceIter SeqPos = llvm::upper_bound(
993 Sequences, Sequence, DWARFDebugLine::Sequence::orderByHighPC);
994 if (SeqPos == LastSeq || !SeqPos->containsPC(Address))
995 return false;
996
997 SequenceIter StartPos = SeqPos;
998
999 // Add the rows from the first sequence to the vector, starting with the
1000 // index we just calculated
1001
1002 while (SeqPos != LastSeq && SeqPos->LowPC < EndAddr) {
1003 const DWARFDebugLine::Sequence &CurSeq = *SeqPos;
1004 // For the first sequence, we need to find which row in the sequence is the
1005 // first in our range.
1006 uint32_t FirstRowIndex = CurSeq.FirstRowIndex;
1007 if (SeqPos == StartPos)
1008 FirstRowIndex = findRowInSeq(CurSeq, Address);
1009
1010 // Figure out the last row in the range.
1011 uint32_t LastRowIndex =
1012 findRowInSeq(CurSeq, {EndAddr - 1, Address.SectionIndex});
1013 if (LastRowIndex == UnknownRowIndex)
1014 LastRowIndex = CurSeq.LastRowIndex - 1;
1015
1016 assert(FirstRowIndex != UnknownRowIndex);
1017 assert(LastRowIndex != UnknownRowIndex);
1018
1019 for (uint32_t I = FirstRowIndex; I <= LastRowIndex; ++I) {
1020 Result.push_back(I);
1021 }
1022
1023 ++SeqPos;
1024 }
1025
1026 return true;
1027 }
1028
getSourceByIndex(uint64_t FileIndex,FileLineInfoKind Kind) const1029 Optional<StringRef> DWARFDebugLine::LineTable::getSourceByIndex(uint64_t FileIndex,
1030 FileLineInfoKind Kind) const {
1031 if (Kind == FileLineInfoKind::None || !Prologue.hasFileAtIndex(FileIndex))
1032 return None;
1033 const FileNameEntry &Entry = Prologue.getFileNameEntry(FileIndex);
1034 if (Optional<const char *> source = Entry.Source.getAsCString())
1035 return StringRef(*source);
1036 return None;
1037 }
1038
isPathAbsoluteOnWindowsOrPosix(const Twine & Path)1039 static bool isPathAbsoluteOnWindowsOrPosix(const Twine &Path) {
1040 // Debug info can contain paths from any OS, not necessarily
1041 // an OS we're currently running on. Moreover different compilation units can
1042 // be compiled on different operating systems and linked together later.
1043 return sys::path::is_absolute(Path, sys::path::Style::posix) ||
1044 sys::path::is_absolute(Path, sys::path::Style::windows);
1045 }
1046
getFileNameByIndex(uint64_t FileIndex,StringRef CompDir,FileLineInfoKind Kind,std::string & Result,sys::path::Style Style) const1047 bool DWARFDebugLine::Prologue::getFileNameByIndex(
1048 uint64_t FileIndex, StringRef CompDir, FileLineInfoKind Kind,
1049 std::string &Result, sys::path::Style Style) const {
1050 if (Kind == FileLineInfoKind::None || !hasFileAtIndex(FileIndex))
1051 return false;
1052 const FileNameEntry &Entry = getFileNameEntry(FileIndex);
1053 Optional<const char *> Name = Entry.Name.getAsCString();
1054 if (!Name)
1055 return false;
1056 StringRef FileName = *Name;
1057 if (Kind != FileLineInfoKind::AbsoluteFilePath ||
1058 isPathAbsoluteOnWindowsOrPosix(FileName)) {
1059 Result = FileName;
1060 return true;
1061 }
1062
1063 SmallString<16> FilePath;
1064 StringRef IncludeDir;
1065 // Be defensive about the contents of Entry.
1066 if (getVersion() >= 5) {
1067 if (Entry.DirIdx < IncludeDirectories.size())
1068 IncludeDir = IncludeDirectories[Entry.DirIdx].getAsCString().getValue();
1069 } else {
1070 if (0 < Entry.DirIdx && Entry.DirIdx <= IncludeDirectories.size())
1071 IncludeDir =
1072 IncludeDirectories[Entry.DirIdx - 1].getAsCString().getValue();
1073
1074 // We may still need to append compilation directory of compile unit.
1075 // We know that FileName is not absolute, the only way to have an
1076 // absolute path at this point would be if IncludeDir is absolute.
1077 if (!CompDir.empty() && !isPathAbsoluteOnWindowsOrPosix(IncludeDir))
1078 sys::path::append(FilePath, Style, CompDir);
1079 }
1080
1081 // sys::path::append skips empty strings.
1082 sys::path::append(FilePath, Style, IncludeDir, FileName);
1083 Result = FilePath.str();
1084 return true;
1085 }
1086
getFileLineInfoForAddress(object::SectionedAddress Address,const char * CompDir,FileLineInfoKind Kind,DILineInfo & Result) const1087 bool DWARFDebugLine::LineTable::getFileLineInfoForAddress(
1088 object::SectionedAddress Address, const char *CompDir,
1089 FileLineInfoKind Kind, DILineInfo &Result) const {
1090 // Get the index of row we're looking for in the line table.
1091 uint32_t RowIndex = lookupAddress(Address);
1092 if (RowIndex == -1U)
1093 return false;
1094 // Take file number and line/column from the row.
1095 const auto &Row = Rows[RowIndex];
1096 if (!getFileNameByIndex(Row.File, CompDir, Kind, Result.FileName))
1097 return false;
1098 Result.Line = Row.Line;
1099 Result.Column = Row.Column;
1100 Result.Discriminator = Row.Discriminator;
1101 Result.Source = getSourceByIndex(Row.File, Kind);
1102 return true;
1103 }
1104
1105 // We want to supply the Unit associated with a .debug_line[.dwo] table when
1106 // we dump it, if possible, but still dump the table even if there isn't a Unit.
1107 // Therefore, collect up handles on all the Units that point into the
1108 // line-table section.
1109 static DWARFDebugLine::SectionParser::LineToUnitMap
buildLineToUnitMap(DWARFDebugLine::SectionParser::cu_range CUs,DWARFDebugLine::SectionParser::tu_range TUs)1110 buildLineToUnitMap(DWARFDebugLine::SectionParser::cu_range CUs,
1111 DWARFDebugLine::SectionParser::tu_range TUs) {
1112 DWARFDebugLine::SectionParser::LineToUnitMap LineToUnit;
1113 for (const auto &CU : CUs)
1114 if (auto CUDIE = CU->getUnitDIE())
1115 if (auto StmtOffset = toSectionOffset(CUDIE.find(DW_AT_stmt_list)))
1116 LineToUnit.insert(std::make_pair(*StmtOffset, &*CU));
1117 for (const auto &TU : TUs)
1118 if (auto TUDIE = TU->getUnitDIE())
1119 if (auto StmtOffset = toSectionOffset(TUDIE.find(DW_AT_stmt_list)))
1120 LineToUnit.insert(std::make_pair(*StmtOffset, &*TU));
1121 return LineToUnit;
1122 }
1123
SectionParser(DWARFDataExtractor & Data,const DWARFContext & C,cu_range CUs,tu_range TUs)1124 DWARFDebugLine::SectionParser::SectionParser(DWARFDataExtractor &Data,
1125 const DWARFContext &C,
1126 cu_range CUs, tu_range TUs)
1127 : DebugLineData(Data), Context(C) {
1128 LineToUnit = buildLineToUnitMap(CUs, TUs);
1129 if (!DebugLineData.isValidOffset(Offset))
1130 Done = true;
1131 }
1132
totalLengthIsValid() const1133 bool DWARFDebugLine::Prologue::totalLengthIsValid() const {
1134 return TotalLength == dwarf::DW_LENGTH_DWARF64 ||
1135 TotalLength < dwarf::DW_LENGTH_lo_reserved;
1136 }
1137
parseNext(function_ref<void (Error)> RecoverableErrorCallback,function_ref<void (Error)> UnrecoverableErrorCallback,raw_ostream * OS)1138 DWARFDebugLine::LineTable DWARFDebugLine::SectionParser::parseNext(
1139 function_ref<void(Error)> RecoverableErrorCallback,
1140 function_ref<void(Error)> UnrecoverableErrorCallback, raw_ostream *OS) {
1141 assert(DebugLineData.isValidOffset(Offset) &&
1142 "parsing should have terminated");
1143 DWARFUnit *U = prepareToParse(Offset);
1144 uint64_t OldOffset = Offset;
1145 LineTable LT;
1146 if (Error Err = LT.parse(DebugLineData, &Offset, Context, U,
1147 RecoverableErrorCallback, OS))
1148 UnrecoverableErrorCallback(std::move(Err));
1149 moveToNextTable(OldOffset, LT.Prologue);
1150 return LT;
1151 }
1152
skip(function_ref<void (Error)> ErrorCallback)1153 void DWARFDebugLine::SectionParser::skip(
1154 function_ref<void(Error)> ErrorCallback) {
1155 assert(DebugLineData.isValidOffset(Offset) &&
1156 "parsing should have terminated");
1157 DWARFUnit *U = prepareToParse(Offset);
1158 uint64_t OldOffset = Offset;
1159 LineTable LT;
1160 if (Error Err = LT.Prologue.parse(DebugLineData, &Offset, Context, U))
1161 ErrorCallback(std::move(Err));
1162 moveToNextTable(OldOffset, LT.Prologue);
1163 }
1164
prepareToParse(uint64_t Offset)1165 DWARFUnit *DWARFDebugLine::SectionParser::prepareToParse(uint64_t Offset) {
1166 DWARFUnit *U = nullptr;
1167 auto It = LineToUnit.find(Offset);
1168 if (It != LineToUnit.end())
1169 U = It->second;
1170 DebugLineData.setAddressSize(U ? U->getAddressByteSize() : 0);
1171 return U;
1172 }
1173
moveToNextTable(uint64_t OldOffset,const Prologue & P)1174 void DWARFDebugLine::SectionParser::moveToNextTable(uint64_t OldOffset,
1175 const Prologue &P) {
1176 // If the length field is not valid, we don't know where the next table is, so
1177 // cannot continue to parse. Mark the parser as done, and leave the Offset
1178 // value as it currently is. This will be the end of the bad length field.
1179 if (!P.totalLengthIsValid()) {
1180 Done = true;
1181 return;
1182 }
1183
1184 Offset = OldOffset + P.TotalLength + P.sizeofTotalLength();
1185 if (!DebugLineData.isValidOffset(Offset)) {
1186 Done = true;
1187 }
1188 }
1189