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David Blaikie07e22442013-09-23 22:44:40 +00001//===-- DWARFUnit.cpp -----------------------------------------------------===//
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 "DWARFUnit.h"
11#include "DWARFContext.h"
12#include "llvm/DebugInfo/DWARFFormValue.h"
13#include "llvm/Support/Dwarf.h"
14#include "llvm/Support/Path.h"
David Blaikie8de5e982013-09-23 23:15:57 +000015#include <cstdio>
David Blaikie07e22442013-09-23 22:44:40 +000016
17using namespace llvm;
18using namespace dwarf;
19
Alexey Samsonov7682f812014-04-24 22:51:03 +000020DWARFUnit::DWARFUnit(const DWARFDebugAbbrev *DA, StringRef IS, StringRef RS,
21 StringRef SS, StringRef SOS, StringRef AOS,
David Blaikie07e22442013-09-23 22:44:40 +000022 const RelocAddrMap *M, bool LE)
Alexey Samsonov7682f812014-04-24 22:51:03 +000023 : Abbrev(DA), InfoSection(IS), RangeSection(RS), StringSection(SS),
24 StringOffsetSection(SOS), AddrOffsetSection(AOS), RelocMap(M),
25 isLittleEndian(LE) {
David Blaikie07e22442013-09-23 22:44:40 +000026 clear();
27}
28
29DWARFUnit::~DWARFUnit() {
30}
31
32bool DWARFUnit::getAddrOffsetSectionItem(uint32_t Index,
33 uint64_t &Result) const {
34 uint32_t Offset = AddrOffsetSectionBase + Index * AddrSize;
35 if (AddrOffsetSection.size() < Offset + AddrSize)
36 return false;
37 DataExtractor DA(AddrOffsetSection, isLittleEndian, AddrSize);
38 Result = DA.getAddress(&Offset);
39 return true;
40}
41
42bool DWARFUnit::getStringOffsetSectionItem(uint32_t Index,
43 uint32_t &Result) const {
44 // FIXME: string offset section entries are 8-byte for DWARF64.
45 const uint32_t ItemSize = 4;
46 uint32_t Offset = Index * ItemSize;
47 if (StringOffsetSection.size() < Offset + ItemSize)
48 return false;
49 DataExtractor DA(StringOffsetSection, isLittleEndian, 0);
50 Result = DA.getU32(&Offset);
51 return true;
52}
53
54bool DWARFUnit::extractImpl(DataExtractor debug_info, uint32_t *offset_ptr) {
55 Length = debug_info.getU32(offset_ptr);
56 Version = debug_info.getU16(offset_ptr);
Alexey Samsonov7682f812014-04-24 22:51:03 +000057 uint64_t AbbrOffset = debug_info.getU32(offset_ptr);
David Blaikie07e22442013-09-23 22:44:40 +000058 AddrSize = debug_info.getU8(offset_ptr);
59
Alexey Samsonov7682f812014-04-24 22:51:03 +000060 bool LengthOK = debug_info.isValidOffset(getNextUnitOffset() - 1);
61 bool VersionOK = DWARFContext::isSupportedVersion(Version);
62 bool AddrSizeOK = AddrSize == 4 || AddrSize == 8;
David Blaikie07e22442013-09-23 22:44:40 +000063
Alexey Samsonov7682f812014-04-24 22:51:03 +000064 if (!LengthOK || !VersionOK || !AddrSizeOK)
David Blaikie07e22442013-09-23 22:44:40 +000065 return false;
66
Alexey Samsonov7682f812014-04-24 22:51:03 +000067 Abbrevs = Abbrev->getAbbreviationDeclarationSet(AbbrOffset);
68 if (Abbrevs == nullptr)
69 return false;
70
David Blaikie07e22442013-09-23 22:44:40 +000071 return true;
72}
73
74bool DWARFUnit::extract(DataExtractor debug_info, uint32_t *offset_ptr) {
75 clear();
76
77 Offset = *offset_ptr;
78
79 if (debug_info.isValidOffset(*offset_ptr)) {
80 if (extractImpl(debug_info, offset_ptr))
81 return true;
82
83 // reset the offset to where we tried to parse from if anything went wrong
84 *offset_ptr = Offset;
85 }
86
87 return false;
88}
89
David Blaikie07e22442013-09-23 22:44:40 +000090bool DWARFUnit::extractRangeList(uint32_t RangeListOffset,
91 DWARFDebugRangeList &RangeList) const {
92 // Require that compile unit is extracted.
93 assert(DieArray.size() > 0);
94 DataExtractor RangesData(RangeSection, isLittleEndian, AddrSize);
95 uint32_t ActualRangeListOffset = RangeSectionBase + RangeListOffset;
96 return RangeList.extract(RangesData, &ActualRangeListOffset);
97}
98
99void DWARFUnit::clear() {
100 Offset = 0;
101 Length = 0;
102 Version = 0;
Craig Topper2617dcc2014-04-15 06:32:26 +0000103 Abbrevs = nullptr;
David Blaikie07e22442013-09-23 22:44:40 +0000104 AddrSize = 0;
105 BaseAddr = 0;
106 RangeSectionBase = 0;
107 AddrOffsetSectionBase = 0;
108 clearDIEs(false);
109 DWO.reset();
110}
111
112const char *DWARFUnit::getCompilationDir() {
113 extractDIEsIfNeeded(true);
114 if (DieArray.empty())
Craig Topper2617dcc2014-04-15 06:32:26 +0000115 return nullptr;
116 return DieArray[0].getAttributeValueAsString(this, DW_AT_comp_dir, nullptr);
David Blaikie07e22442013-09-23 22:44:40 +0000117}
118
119uint64_t DWARFUnit::getDWOId() {
120 extractDIEsIfNeeded(true);
121 const uint64_t FailValue = -1ULL;
122 if (DieArray.empty())
123 return FailValue;
124 return DieArray[0]
Alexey Samsonov48cbda52013-10-28 23:01:48 +0000125 .getAttributeValueAsUnsignedConstant(this, DW_AT_GNU_dwo_id, FailValue);
David Blaikie07e22442013-09-23 22:44:40 +0000126}
127
128void DWARFUnit::setDIERelations() {
Alexey Samsonov8e4cf3b2014-04-29 17:12:42 +0000129 if (DieArray.size() <= 1)
David Blaikie07e22442013-09-23 22:44:40 +0000130 return;
David Blaikie07e22442013-09-23 22:44:40 +0000131
Alexey Samsonov8e4cf3b2014-04-29 17:12:42 +0000132 std::vector<DWARFDebugInfoEntryMinimal *> ParentChain;
133 DWARFDebugInfoEntryMinimal *SiblingChain = nullptr;
134 for (auto &DIE : DieArray) {
135 if (SiblingChain) {
136 SiblingChain->setSibling(&DIE);
137 }
138 if (const DWARFAbbreviationDeclaration *AbbrDecl =
139 DIE.getAbbreviationDeclarationPtr()) {
140 // Normal DIE.
141 if (AbbrDecl->hasChildren()) {
142 ParentChain.push_back(&DIE);
143 SiblingChain = nullptr;
144 } else {
145 SiblingChain = &DIE;
146 }
David Blaikie07e22442013-09-23 22:44:40 +0000147 } else {
Alexey Samsonov8e4cf3b2014-04-29 17:12:42 +0000148 // NULL entry terminates the sibling chain.
149 SiblingChain = ParentChain.back();
150 ParentChain.pop_back();
David Blaikie07e22442013-09-23 22:44:40 +0000151 }
152 }
Alexey Samsonov8e4cf3b2014-04-29 17:12:42 +0000153 assert(SiblingChain == nullptr || SiblingChain == &DieArray[0]);
154 assert(ParentChain.empty());
David Blaikie07e22442013-09-23 22:44:40 +0000155}
156
157void DWARFUnit::extractDIEsToVector(
158 bool AppendCUDie, bool AppendNonCUDies,
159 std::vector<DWARFDebugInfoEntryMinimal> &Dies) const {
160 if (!AppendCUDie && !AppendNonCUDies)
161 return;
162
163 // Set the offset to that of the first DIE and calculate the start of the
164 // next compilation unit header.
Alexey Samsonov19f76f22014-04-24 23:08:56 +0000165 uint32_t DIEOffset = Offset + getHeaderSize();
David Blaikie07e22442013-09-23 22:44:40 +0000166 uint32_t NextCUOffset = getNextUnitOffset();
167 DWARFDebugInfoEntryMinimal DIE;
168 uint32_t Depth = 0;
David Blaikie07e22442013-09-23 22:44:40 +0000169 bool IsCUDie = true;
170
Alexey Samsonov19f76f22014-04-24 23:08:56 +0000171 while (DIEOffset < NextCUOffset && DIE.extractFast(this, &DIEOffset)) {
David Blaikie07e22442013-09-23 22:44:40 +0000172 if (IsCUDie) {
173 if (AppendCUDie)
174 Dies.push_back(DIE);
175 if (!AppendNonCUDies)
176 break;
177 // The average bytes per DIE entry has been seen to be
178 // around 14-20 so let's pre-reserve the needed memory for
179 // our DIE entries accordingly.
180 Dies.reserve(Dies.size() + getDebugInfoSize() / 14);
181 IsCUDie = false;
182 } else {
183 Dies.push_back(DIE);
184 }
185
Alexey Samsonov8e4cf3b2014-04-29 17:12:42 +0000186 if (const DWARFAbbreviationDeclaration *AbbrDecl =
187 DIE.getAbbreviationDeclarationPtr()) {
David Blaikie07e22442013-09-23 22:44:40 +0000188 // Normal DIE
189 if (AbbrDecl->hasChildren())
190 ++Depth;
191 } else {
192 // NULL DIE.
193 if (Depth > 0)
194 --Depth;
195 if (Depth == 0)
196 break; // We are done with this compile unit!
197 }
198 }
199
200 // Give a little bit of info if we encounter corrupt DWARF (our offset
201 // should always terminate at or before the start of the next compilation
202 // unit header).
Alexey Samsonov19f76f22014-04-24 23:08:56 +0000203 if (DIEOffset > NextCUOffset)
David Blaikie07e22442013-09-23 22:44:40 +0000204 fprintf(stderr, "warning: DWARF compile unit extends beyond its "
Alexey Samsonov19f76f22014-04-24 23:08:56 +0000205 "bounds cu 0x%8.8x at 0x%8.8x'\n", getOffset(), DIEOffset);
David Blaikie07e22442013-09-23 22:44:40 +0000206}
207
208size_t DWARFUnit::extractDIEsIfNeeded(bool CUDieOnly) {
209 if ((CUDieOnly && DieArray.size() > 0) ||
210 DieArray.size() > 1)
211 return 0; // Already parsed.
212
213 bool HasCUDie = DieArray.size() > 0;
214 extractDIEsToVector(!HasCUDie, !CUDieOnly, DieArray);
215
216 if (DieArray.empty())
217 return 0;
218
219 // If CU DIE was just parsed, copy several attribute values from it.
220 if (!HasCUDie) {
221 uint64_t BaseAddr =
Alexey Samsonov48cbda52013-10-28 23:01:48 +0000222 DieArray[0].getAttributeValueAsAddress(this, DW_AT_low_pc, -1ULL);
223 if (BaseAddr == -1ULL)
224 BaseAddr = DieArray[0].getAttributeValueAsAddress(this, DW_AT_entry_pc, 0);
David Blaikie07e22442013-09-23 22:44:40 +0000225 setBaseAddress(BaseAddr);
Alexey Samsonov48cbda52013-10-28 23:01:48 +0000226 AddrOffsetSectionBase = DieArray[0].getAttributeValueAsSectionOffset(
227 this, DW_AT_GNU_addr_base, 0);
Alexey Samsonovf0e40342014-06-12 18:52:35 +0000228 // Users of old DWARF may not know about DW_AT_ranges_base, so it is ignored
229 // for skeleton CU DIE (e.g. DW_AT_ranges are *not* relative to it).
230 if (Version > 4) {
231 RangeSectionBase = DieArray[0].getAttributeValueAsSectionOffset(
232 this, DW_AT_GNU_ranges_base, 0);
233 }
David Blaikie07e22442013-09-23 22:44:40 +0000234 }
235
236 setDIERelations();
237 return DieArray.size();
238}
239
240DWARFUnit::DWOHolder::DWOHolder(object::ObjectFile *DWOFile)
241 : DWOFile(DWOFile),
242 DWOContext(cast<DWARFContext>(DIContext::getDWARFContext(DWOFile))),
Craig Topper2617dcc2014-04-15 06:32:26 +0000243 DWOU(nullptr) {
David Blaikie07e22442013-09-23 22:44:40 +0000244 if (DWOContext->getNumDWOCompileUnits() > 0)
245 DWOU = DWOContext->getDWOCompileUnitAtIndex(0);
246}
247
248bool DWARFUnit::parseDWO() {
Craig Topper2617dcc2014-04-15 06:32:26 +0000249 if (DWO.get())
David Blaikie07e22442013-09-23 22:44:40 +0000250 return false;
251 extractDIEsIfNeeded(true);
252 if (DieArray.empty())
253 return false;
254 const char *DWOFileName =
Craig Topper2617dcc2014-04-15 06:32:26 +0000255 DieArray[0].getAttributeValueAsString(this, DW_AT_GNU_dwo_name, nullptr);
256 if (!DWOFileName)
David Blaikie07e22442013-09-23 22:44:40 +0000257 return false;
258 const char *CompilationDir =
Craig Topper2617dcc2014-04-15 06:32:26 +0000259 DieArray[0].getAttributeValueAsString(this, DW_AT_comp_dir, nullptr);
David Blaikie07e22442013-09-23 22:44:40 +0000260 SmallString<16> AbsolutePath;
Craig Topper2617dcc2014-04-15 06:32:26 +0000261 if (sys::path::is_relative(DWOFileName) && CompilationDir != nullptr) {
David Blaikie07e22442013-09-23 22:44:40 +0000262 sys::path::append(AbsolutePath, CompilationDir);
263 }
264 sys::path::append(AbsolutePath, DWOFileName);
Rafael Espindola51cc3602014-01-22 00:14:49 +0000265 ErrorOr<object::ObjectFile *> DWOFile =
David Blaikie07e22442013-09-23 22:44:40 +0000266 object::ObjectFile::createObjectFile(AbsolutePath);
267 if (!DWOFile)
268 return false;
269 // Reset DWOHolder.
Rafael Espindola51cc3602014-01-22 00:14:49 +0000270 DWO.reset(new DWOHolder(DWOFile.get()));
David Blaikie07e22442013-09-23 22:44:40 +0000271 DWARFUnit *DWOCU = DWO->getUnit();
272 // Verify that compile unit in .dwo file is valid.
Craig Topper2617dcc2014-04-15 06:32:26 +0000273 if (!DWOCU || DWOCU->getDWOId() != getDWOId()) {
David Blaikie07e22442013-09-23 22:44:40 +0000274 DWO.reset();
275 return false;
276 }
277 // Share .debug_addr and .debug_ranges section with compile unit in .dwo
278 DWOCU->setAddrOffsetSection(AddrOffsetSection, AddrOffsetSectionBase);
Alexey Samsonovf0e40342014-06-12 18:52:35 +0000279 uint32_t DWORangesBase = DieArray[0].getAttributeValueAsSectionOffset(
280 this, DW_AT_GNU_ranges_base, 0);
281 DWOCU->setRangesSection(RangeSection, DWORangesBase);
David Blaikie07e22442013-09-23 22:44:40 +0000282 return true;
283}
284
285void DWARFUnit::clearDIEs(bool KeepCUDie) {
286 if (DieArray.size() > (unsigned)KeepCUDie) {
287 // std::vectors never get any smaller when resized to a smaller size,
288 // or when clear() or erase() are called, the size will report that it
289 // is smaller, but the memory allocated remains intact (call capacity()
290 // to see this). So we need to create a temporary vector and swap the
291 // contents which will cause just the internal pointers to be swapped
292 // so that when temporary vector goes out of scope, it will destroy the
293 // contents.
294 std::vector<DWARFDebugInfoEntryMinimal> TmpArray;
295 DieArray.swap(TmpArray);
296 // Save at least the compile unit DIE
297 if (KeepCUDie)
298 DieArray.push_back(TmpArray.front());
299 }
300}
301
Alexey Samsonov762343d2014-04-18 17:25:46 +0000302void DWARFUnit::collectAddressRanges(DWARFAddressRangesVector &CURanges) {
Alexey Samsonov84e24232014-04-18 20:30:27 +0000303 // First, check if CU DIE describes address ranges for the unit.
304 const auto &CUDIERanges = getCompileUnitDIE()->getAddressRanges(this);
305 if (!CUDIERanges.empty()) {
306 CURanges.insert(CURanges.end(), CUDIERanges.begin(), CUDIERanges.end());
307 return;
308 }
309
David Blaikie07e22442013-09-23 22:44:40 +0000310 // This function is usually called if there in no .debug_aranges section
311 // in order to produce a compile unit level set of address ranges that
312 // is accurate. If the DIEs weren't parsed, then we don't want all dies for
313 // all compile units to stay loaded when they weren't needed. So we can end
314 // up parsing the DWARF and then throwing them all away to keep memory usage
315 // down.
Alexey Samsonov762343d2014-04-18 17:25:46 +0000316 const bool ClearDIEs = extractDIEsIfNeeded(false) > 1;
317 DieArray[0].collectChildrenAddressRanges(this, CURanges);
318
319 // Collect address ranges from DIEs in .dwo if necessary.
David Blaikie07e22442013-09-23 22:44:40 +0000320 bool DWOCreated = parseDWO();
Alexey Samsonov762343d2014-04-18 17:25:46 +0000321 if (DWO.get())
322 DWO->getUnit()->collectAddressRanges(CURanges);
323 if (DWOCreated)
David Blaikie07e22442013-09-23 22:44:40 +0000324 DWO.reset();
325
326 // Keep memory down by clearing DIEs if this generate function
327 // caused them to be parsed.
Alexey Samsonov762343d2014-04-18 17:25:46 +0000328 if (ClearDIEs)
David Blaikie07e22442013-09-23 22:44:40 +0000329 clearDIEs(true);
330}
331
332const DWARFDebugInfoEntryMinimal *
333DWARFUnit::getSubprogramForAddress(uint64_t Address) {
334 extractDIEsIfNeeded(false);
Alexey Samsonov1eabf982014-03-13 07:52:54 +0000335 for (const DWARFDebugInfoEntryMinimal &DIE : DieArray) {
336 if (DIE.isSubprogramDIE() &&
337 DIE.addressRangeContainsAddress(this, Address)) {
338 return &DIE;
David Blaikie07e22442013-09-23 22:44:40 +0000339 }
Alexey Samsonov1eabf982014-03-13 07:52:54 +0000340 }
Craig Topper2617dcc2014-04-15 06:32:26 +0000341 return nullptr;
David Blaikie07e22442013-09-23 22:44:40 +0000342}
343
344DWARFDebugInfoEntryInlinedChain
345DWARFUnit::getInlinedChainForAddress(uint64_t Address) {
346 // First, find a subprogram that contains the given address (the root
347 // of inlined chain).
Craig Topper2617dcc2014-04-15 06:32:26 +0000348 const DWARFUnit *ChainCU = nullptr;
David Blaikie07e22442013-09-23 22:44:40 +0000349 const DWARFDebugInfoEntryMinimal *SubprogramDIE =
350 getSubprogramForAddress(Address);
351 if (SubprogramDIE) {
352 ChainCU = this;
353 } else {
354 // Try to look for subprogram DIEs in the DWO file.
355 parseDWO();
356 if (DWO.get()) {
357 SubprogramDIE = DWO->getUnit()->getSubprogramForAddress(Address);
358 if (SubprogramDIE)
359 ChainCU = DWO->getUnit();
360 }
361 }
362
363 // Get inlined chain rooted at this subprogram DIE.
364 if (!SubprogramDIE)
365 return DWARFDebugInfoEntryInlinedChain();
366 return SubprogramDIE->getInlinedChainForAddress(ChainCU, Address);
367}