blob: d30600accd0fccba08b35633c8e260c5e2a1176c [file] [log] [blame]
Greg Claytonb8c162b2017-05-03 16:02:29 +00001//===- DWARFVerifier.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//===----------------------------------------------------------------------===//
Greg Claytonb8c162b2017-05-03 16:02:29 +00009#include "llvm/DebugInfo/DWARF/DWARFVerifier.h"
Pavel Labath79cd9422018-03-22 14:50:44 +000010#include "llvm/ADT/SmallSet.h"
Greg Claytonb8c162b2017-05-03 16:02:29 +000011#include "llvm/DebugInfo/DWARF/DWARFCompileUnit.h"
12#include "llvm/DebugInfo/DWARF/DWARFContext.h"
13#include "llvm/DebugInfo/DWARF/DWARFDebugLine.h"
14#include "llvm/DebugInfo/DWARF/DWARFDie.h"
George Rimar144e4c52017-10-27 10:42:04 +000015#include "llvm/DebugInfo/DWARF/DWARFExpression.h"
Greg Claytonb8c162b2017-05-03 16:02:29 +000016#include "llvm/DebugInfo/DWARF/DWARFFormValue.h"
17#include "llvm/DebugInfo/DWARF/DWARFSection.h"
Pavel Labath906b7772018-03-16 10:02:16 +000018#include "llvm/Support/DJB.h"
George Rimar144e4c52017-10-27 10:42:04 +000019#include "llvm/Support/FormatVariadic.h"
Jonas Devlieghere69217532018-03-09 09:56:24 +000020#include "llvm/Support/WithColor.h"
Greg Claytonb8c162b2017-05-03 16:02:29 +000021#include "llvm/Support/raw_ostream.h"
22#include <map>
23#include <set>
24#include <vector>
25
26using namespace llvm;
27using namespace dwarf;
28using namespace object;
29
Jonas Devlieghere58910602017-09-14 11:33:42 +000030DWARFVerifier::DieRangeInfo::address_range_iterator
31DWARFVerifier::DieRangeInfo::insert(const DWARFAddressRange &R) {
32 auto Begin = Ranges.begin();
33 auto End = Ranges.end();
34 auto Pos = std::lower_bound(Begin, End, R);
35
36 if (Pos != End) {
37 if (Pos->intersects(R))
38 return Pos;
39 if (Pos != Begin) {
40 auto Iter = Pos - 1;
41 if (Iter->intersects(R))
42 return Iter;
43 }
44 }
45
46 Ranges.insert(Pos, R);
47 return Ranges.end();
48}
49
50DWARFVerifier::DieRangeInfo::die_range_info_iterator
51DWARFVerifier::DieRangeInfo::insert(const DieRangeInfo &RI) {
52 auto End = Children.end();
53 auto Iter = Children.begin();
54 while (Iter != End) {
55 if (Iter->intersects(RI))
56 return Iter;
57 ++Iter;
58 }
59 Children.insert(RI);
60 return Children.end();
61}
62
63bool DWARFVerifier::DieRangeInfo::contains(const DieRangeInfo &RHS) const {
64 // Both list of ranges are sorted so we can make this fast.
65
66 if (Ranges.empty() || RHS.Ranges.empty())
67 return false;
68
69 // Since the ranges are sorted we can advance where we start searching with
70 // this object's ranges as we traverse RHS.Ranges.
71 auto End = Ranges.end();
72 auto Iter = findRange(RHS.Ranges.front());
73
74 // Now linearly walk the ranges in this object and see if they contain each
75 // ranges from RHS.Ranges.
76 for (const auto &R : RHS.Ranges) {
77 while (Iter != End) {
78 if (Iter->contains(R))
79 break;
80 ++Iter;
81 }
82 if (Iter == End)
83 return false;
84 }
85 return true;
86}
87
88bool DWARFVerifier::DieRangeInfo::intersects(const DieRangeInfo &RHS) const {
89 if (Ranges.empty() || RHS.Ranges.empty())
90 return false;
91
92 auto End = Ranges.end();
93 auto Iter = findRange(RHS.Ranges.front());
94 for (const auto &R : RHS.Ranges) {
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +000095 if (Iter == End)
Jonas Devlieghered585a202017-09-14 17:46:23 +000096 return false;
Jonas Devlieghere58910602017-09-14 11:33:42 +000097 if (R.HighPC <= Iter->LowPC)
98 continue;
99 while (Iter != End) {
100 if (Iter->intersects(R))
101 return true;
102 ++Iter;
103 }
104 }
105
106 return false;
107}
108
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000109bool DWARFVerifier::verifyUnitHeader(const DWARFDataExtractor DebugInfoData,
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000110 uint32_t *Offset, unsigned UnitIndex,
111 uint8_t &UnitType, bool &isUnitDWARF64) {
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000112 uint32_t AbbrOffset, Length;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000113 uint8_t AddrSize = 0;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000114 uint16_t Version;
115 bool Success = true;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000116
117 bool ValidLength = false;
118 bool ValidVersion = false;
119 bool ValidAddrSize = false;
120 bool ValidType = true;
121 bool ValidAbbrevOffset = true;
122
123 uint32_t OffsetStart = *Offset;
124 Length = DebugInfoData.getU32(Offset);
125 if (Length == UINT32_MAX) {
126 isUnitDWARF64 = true;
127 OS << format(
128 "Unit[%d] is in 64-bit DWARF format; cannot verify from this point.\n",
129 UnitIndex);
130 return false;
131 }
132 Version = DebugInfoData.getU16(Offset);
133
134 if (Version >= 5) {
135 UnitType = DebugInfoData.getU8(Offset);
136 AddrSize = DebugInfoData.getU8(Offset);
137 AbbrOffset = DebugInfoData.getU32(Offset);
Jonas Devliegheref2fa9eb2017-10-06 22:27:31 +0000138 ValidType = dwarf::isUnitType(UnitType);
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000139 } else {
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000140 UnitType = 0;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000141 AbbrOffset = DebugInfoData.getU32(Offset);
142 AddrSize = DebugInfoData.getU8(Offset);
143 }
144
145 if (!DCtx.getDebugAbbrev()->getAbbreviationDeclarationSet(AbbrOffset))
146 ValidAbbrevOffset = false;
147
148 ValidLength = DebugInfoData.isValidOffset(OffsetStart + Length + 3);
149 ValidVersion = DWARFContext::isSupportedVersion(Version);
150 ValidAddrSize = AddrSize == 4 || AddrSize == 8;
151 if (!ValidLength || !ValidVersion || !ValidAddrSize || !ValidAbbrevOffset ||
152 !ValidType) {
153 Success = false;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000154 error() << format("Units[%d] - start offset: 0x%08x \n", UnitIndex,
155 OffsetStart);
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000156 if (!ValidLength)
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000157 note() << "The length for this unit is too "
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +0000158 "large for the .debug_info provided.\n";
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000159 if (!ValidVersion)
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000160 note() << "The 16 bit unit header version is not valid.\n";
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000161 if (!ValidType)
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000162 note() << "The unit type encoding is not valid.\n";
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000163 if (!ValidAbbrevOffset)
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000164 note() << "The offset into the .debug_abbrev section is "
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +0000165 "not valid.\n";
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000166 if (!ValidAddrSize)
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000167 note() << "The address size is unsupported.\n";
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000168 }
169 *Offset = OffsetStart + Length + 4;
170 return Success;
171}
172
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +0000173unsigned DWARFVerifier::verifyUnitContents(DWARFUnit &Unit) {
Paul Robinson508b0812018-08-08 23:50:22 +0000174 unsigned NumUnitErrors = 0;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000175 unsigned NumDies = Unit.getNumDIEs();
176 for (unsigned I = 0; I < NumDies; ++I) {
177 auto Die = Unit.getDIEAtIndex(I);
Jonas Devlieghereb3227422018-09-21 07:50:21 +0000178
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000179 if (Die.getTag() == DW_TAG_null)
180 continue;
Jonas Devlieghereb3227422018-09-21 07:50:21 +0000181
182 bool HasTypeAttr = false;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000183 for (auto AttrValue : Die.attributes()) {
184 NumUnitErrors += verifyDebugInfoAttribute(Die, AttrValue);
185 NumUnitErrors += verifyDebugInfoForm(Die, AttrValue);
Jonas Devlieghereb3227422018-09-21 07:50:21 +0000186 HasTypeAttr |= (AttrValue.Attr == DW_AT_type);
187 }
188
189 if (!HasTypeAttr && (Die.getTag() == DW_TAG_formal_parameter ||
190 Die.getTag() == DW_TAG_variable ||
191 Die.getTag() == DW_TAG_array_type)) {
192 error() << "DIE with tag " << TagString(Die.getTag())
193 << " is missing type attribute:\n";
194 dump(Die) << '\n';
195 NumUnitErrors++;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000196 }
Vedant Kumar5931b4e2018-10-05 20:37:17 +0000197 NumUnitErrors += verifyDebugInfoCallSite(Die);
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000198 }
Jonas Devlieghere58910602017-09-14 11:33:42 +0000199
Jonas Devliegheref2fa9eb2017-10-06 22:27:31 +0000200 DWARFDie Die = Unit.getUnitDIE(/* ExtractUnitDIEOnly = */ false);
201 if (!Die) {
202 error() << "Compilation unit without DIE.\n";
203 NumUnitErrors++;
Paul Robinson508b0812018-08-08 23:50:22 +0000204 return NumUnitErrors;
Jonas Devliegheref2fa9eb2017-10-06 22:27:31 +0000205 }
206
207 if (!dwarf::isUnitType(Die.getTag())) {
208 error() << "Compilation unit root DIE is not a unit DIE: "
209 << dwarf::TagString(Die.getTag()) << ".\n";
Jonas Devlieghere35fdaa92017-09-28 15:57:50 +0000210 NumUnitErrors++;
211 }
212
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +0000213 uint8_t UnitType = Unit.getUnitType();
214 if (!DWARFUnit::isMatchingUnitTypeAndTag(UnitType, Die.getTag())) {
Jonas Devliegheref2fa9eb2017-10-06 22:27:31 +0000215 error() << "Compilation unit type (" << dwarf::UnitTypeString(UnitType)
216 << ") and root DIE (" << dwarf::TagString(Die.getTag())
217 << ") do not match.\n";
218 NumUnitErrors++;
219 }
220
221 DieRangeInfo RI;
222 NumUnitErrors += verifyDieRanges(Die, RI);
223
Paul Robinson508b0812018-08-08 23:50:22 +0000224 return NumUnitErrors;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000225}
226
Vedant Kumar5931b4e2018-10-05 20:37:17 +0000227unsigned DWARFVerifier::verifyDebugInfoCallSite(const DWARFDie &Die) {
228 if (Die.getTag() != DW_TAG_call_site)
229 return 0;
230
231 DWARFDie Curr = Die.getParent();
232 for (; Curr.isValid() && !Curr.isSubprogramDIE(); Curr = Die.getParent()) {
233 if (Curr.getTag() == DW_TAG_inlined_subroutine) {
234 error() << "Call site entry nested within inlined subroutine:";
235 Curr.dump(OS);
236 return 1;
237 }
238 }
239
240 if (!Curr.isValid()) {
241 error() << "Call site entry not nested within a valid subprogram:";
242 Die.dump(OS);
243 return 1;
244 }
245
246 Optional<DWARFFormValue> CallAttr =
247 Curr.find({DW_AT_call_all_calls, DW_AT_call_all_source_calls,
248 DW_AT_call_all_tail_calls});
249 if (!CallAttr) {
250 error() << "Subprogram with call site entry has no DW_AT_call attribute:";
251 Curr.dump(OS);
252 Die.dump(OS, /*indent*/ 1);
253 return 1;
254 }
255
256 return 0;
257}
258
Spyridoula Gravanic6ef9872017-07-21 00:51:32 +0000259unsigned DWARFVerifier::verifyAbbrevSection(const DWARFDebugAbbrev *Abbrev) {
Spyridoula Gravani364b5352017-07-20 02:06:52 +0000260 unsigned NumErrors = 0;
Spyridoula Gravani364b5352017-07-20 02:06:52 +0000261 if (Abbrev) {
262 const DWARFAbbreviationDeclarationSet *AbbrDecls =
263 Abbrev->getAbbreviationDeclarationSet(0);
264 for (auto AbbrDecl : *AbbrDecls) {
265 SmallDenseSet<uint16_t> AttributeSet;
266 for (auto Attribute : AbbrDecl.attributes()) {
267 auto Result = AttributeSet.insert(Attribute.Attr);
268 if (!Result.second) {
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000269 error() << "Abbreviation declaration contains multiple "
270 << AttributeString(Attribute.Attr) << " attributes.\n";
Spyridoula Gravanic6ef9872017-07-21 00:51:32 +0000271 AbbrDecl.dump(OS);
Spyridoula Gravani364b5352017-07-20 02:06:52 +0000272 ++NumErrors;
273 }
274 }
275 }
276 }
Spyridoula Gravanic6ef9872017-07-21 00:51:32 +0000277 return NumErrors;
278}
279
280bool DWARFVerifier::handleDebugAbbrev() {
281 OS << "Verifying .debug_abbrev...\n";
282
283 const DWARFObject &DObj = DCtx.getDWARFObj();
284 bool noDebugAbbrev = DObj.getAbbrevSection().empty();
285 bool noDebugAbbrevDWO = DObj.getAbbrevDWOSection().empty();
286
287 if (noDebugAbbrev && noDebugAbbrevDWO) {
288 return true;
289 }
290
291 unsigned NumErrors = 0;
292 if (!noDebugAbbrev)
293 NumErrors += verifyAbbrevSection(DCtx.getDebugAbbrev());
294
295 if (!noDebugAbbrevDWO)
296 NumErrors += verifyAbbrevSection(DCtx.getDebugAbbrevDWO());
Spyridoula Gravani364b5352017-07-20 02:06:52 +0000297 return NumErrors == 0;
298}
299
Paul Robinson508b0812018-08-08 23:50:22 +0000300unsigned DWARFVerifier::verifyUnitSection(const DWARFSection &S,
301 DWARFSectionKind SectionKind) {
Rafael Espindolac398e672017-07-19 22:27:28 +0000302 const DWARFObject &DObj = DCtx.getDWARFObj();
Paul Robinson508b0812018-08-08 23:50:22 +0000303 DWARFDataExtractor DebugInfoData(DObj, S, DCtx.isLittleEndian(), 0);
304 unsigned NumDebugInfoErrors = 0;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000305 uint32_t OffsetStart = 0, Offset = 0, UnitIdx = 0;
306 uint8_t UnitType = 0;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000307 bool isUnitDWARF64 = false;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000308 bool isHeaderChainValid = true;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000309 bool hasDIE = DebugInfoData.isValidOffset(Offset);
Jonas Devlieghere7ef2c202018-09-21 07:49:29 +0000310 DWARFUnitVector TypeUnitVector;
311 DWARFUnitVector CompileUnitVector;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000312 while (hasDIE) {
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000313 OffsetStart = Offset;
314 if (!verifyUnitHeader(DebugInfoData, &Offset, UnitIdx, UnitType,
315 isUnitDWARF64)) {
316 isHeaderChainValid = false;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000317 if (isUnitDWARF64)
318 break;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000319 } else {
Paul Robinson5f53f072018-05-14 20:32:31 +0000320 DWARFUnitHeader Header;
Paul Robinson508b0812018-08-08 23:50:22 +0000321 Header.extract(DCtx, DebugInfoData, &OffsetStart, SectionKind);
Jonas Devlieghere7ef2c202018-09-21 07:49:29 +0000322 DWARFUnit *Unit;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000323 switch (UnitType) {
324 case dwarf::DW_UT_type:
325 case dwarf::DW_UT_split_type: {
Jonas Devlieghere7ef2c202018-09-21 07:49:29 +0000326 Unit = TypeUnitVector.addUnit(llvm::make_unique<DWARFTypeUnit>(
Paul Robinson508b0812018-08-08 23:50:22 +0000327 DCtx, S, Header, DCtx.getDebugAbbrev(), &DObj.getRangeSection(),
Wolfgang Pieb6214c112018-10-19 19:23:16 +0000328 &DObj.getLocSection(), DObj.getStringSection(),
329 DObj.getStringOffsetSection(), &DObj.getAppleObjCSection(),
330 DObj.getLineSection(), DCtx.isLittleEndian(), false,
331 TypeUnitVector));
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000332 break;
333 }
334 case dwarf::DW_UT_skeleton:
335 case dwarf::DW_UT_split_compile:
336 case dwarf::DW_UT_compile:
337 case dwarf::DW_UT_partial:
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +0000338 // UnitType = 0 means that we are verifying a compile unit in DWARF v4.
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000339 case 0: {
Jonas Devlieghere7ef2c202018-09-21 07:49:29 +0000340 Unit = CompileUnitVector.addUnit(llvm::make_unique<DWARFCompileUnit>(
Paul Robinson508b0812018-08-08 23:50:22 +0000341 DCtx, S, Header, DCtx.getDebugAbbrev(), &DObj.getRangeSection(),
Wolfgang Pieb6214c112018-10-19 19:23:16 +0000342 &DObj.getLocSection(), DObj.getStringSection(),
343 DObj.getStringOffsetSection(), &DObj.getAppleObjCSection(),
344 DObj.getLineSection(), DCtx.isLittleEndian(), false,
345 CompileUnitVector));
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000346 break;
347 }
348 default: { llvm_unreachable("Invalid UnitType."); }
349 }
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +0000350 NumDebugInfoErrors += verifyUnitContents(*Unit);
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000351 }
352 hasDIE = DebugInfoData.isValidOffset(Offset);
353 ++UnitIdx;
354 }
355 if (UnitIdx == 0 && !hasDIE) {
Paul Robinson508b0812018-08-08 23:50:22 +0000356 warn() << "Section is empty.\n";
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000357 isHeaderChainValid = true;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000358 }
Paul Robinson508b0812018-08-08 23:50:22 +0000359 if (!isHeaderChainValid)
360 ++NumDebugInfoErrors;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000361 NumDebugInfoErrors += verifyDebugInfoReferences();
Paul Robinson508b0812018-08-08 23:50:22 +0000362 return NumDebugInfoErrors;
363}
364
365bool DWARFVerifier::handleDebugInfo() {
366 const DWARFObject &DObj = DCtx.getDWARFObj();
367
368 OS << "Verifying .debug_info Unit Header Chain...\n";
369 unsigned result = verifyUnitSection(DObj.getInfoSection(), DW_SECT_INFO);
370
371 OS << "Verifying .debug_types Unit Header Chain...\n";
372 DObj.forEachTypesSections([&](const DWARFSection &S) {
373 result += verifyUnitSection(S, DW_SECT_TYPES);
374 });
375 return result == 0;
Spyridoula Gravani890eedc2017-07-13 23:25:24 +0000376}
377
Jonas Devlieghere58910602017-09-14 11:33:42 +0000378unsigned DWARFVerifier::verifyDieRanges(const DWARFDie &Die,
379 DieRangeInfo &ParentRI) {
Spyridoula Gravanie0ba4152017-07-24 21:04:11 +0000380 unsigned NumErrors = 0;
Jonas Devlieghere58910602017-09-14 11:33:42 +0000381
382 if (!Die.isValid())
383 return NumErrors;
384
Wolfgang Pieb61d8c8d2018-06-20 22:56:37 +0000385 auto RangesOrError = Die.getAddressRanges();
386 if (!RangesOrError) {
387 // FIXME: Report the error.
388 ++NumErrors;
389 llvm::consumeError(RangesOrError.takeError());
390 return NumErrors;
391 }
Jonas Devlieghere58910602017-09-14 11:33:42 +0000392
Wolfgang Pieb61d8c8d2018-06-20 22:56:37 +0000393 DWARFAddressRangesVector Ranges = RangesOrError.get();
Jonas Devlieghere58910602017-09-14 11:33:42 +0000394 // Build RI for this DIE and check that ranges within this DIE do not
395 // overlap.
396 DieRangeInfo RI(Die);
397 for (auto Range : Ranges) {
398 if (!Range.valid()) {
Spyridoula Gravanie0ba4152017-07-24 21:04:11 +0000399 ++NumErrors;
Jonas Devliegherea15f25d32017-09-29 15:41:22 +0000400 error() << "Invalid address range " << Range << "\n";
Jonas Devlieghere58910602017-09-14 11:33:42 +0000401 continue;
402 }
403
404 // Verify that ranges don't intersect.
405 const auto IntersectingRange = RI.insert(Range);
406 if (IntersectingRange != RI.Ranges.end()) {
407 ++NumErrors;
Jonas Devliegherea15f25d32017-09-29 15:41:22 +0000408 error() << "DIE has overlapping address ranges: " << Range << " and "
409 << *IntersectingRange << "\n";
Jonas Devlieghere58910602017-09-14 11:33:42 +0000410 break;
Spyridoula Gravanie0ba4152017-07-24 21:04:11 +0000411 }
412 }
Jonas Devlieghere58910602017-09-14 11:33:42 +0000413
414 // Verify that children don't intersect.
415 const auto IntersectingChild = ParentRI.insert(RI);
416 if (IntersectingChild != ParentRI.Children.end()) {
417 ++NumErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000418 error() << "DIEs have overlapping address ranges:";
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000419 dump(Die);
420 dump(IntersectingChild->Die) << '\n';
Jonas Devlieghere58910602017-09-14 11:33:42 +0000421 }
422
423 // Verify that ranges are contained within their parent.
424 bool ShouldBeContained = !Ranges.empty() && !ParentRI.Ranges.empty() &&
425 !(Die.getTag() == DW_TAG_subprogram &&
426 ParentRI.Die.getTag() == DW_TAG_subprogram);
427 if (ShouldBeContained && !ParentRI.contains(RI)) {
428 ++NumErrors;
Jonas Devlieghere63eca152018-05-22 17:38:03 +0000429 error() << "DIE address ranges are not contained in its parent's ranges:";
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000430 dump(ParentRI.Die);
431 dump(Die, 2) << '\n';
Jonas Devlieghere58910602017-09-14 11:33:42 +0000432 }
433
434 // Recursively check children.
435 for (DWARFDie Child : Die)
436 NumErrors += verifyDieRanges(Child, RI);
437
Spyridoula Gravanie0ba4152017-07-24 21:04:11 +0000438 return NumErrors;
439}
440
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000441unsigned DWARFVerifier::verifyDebugInfoAttribute(const DWARFDie &Die,
442 DWARFAttribute &AttrValue) {
443 unsigned NumErrors = 0;
George Rimar144e4c52017-10-27 10:42:04 +0000444 auto ReportError = [&](const Twine &TitleMsg) {
445 ++NumErrors;
446 error() << TitleMsg << '\n';
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000447 dump(Die) << '\n';
George Rimar144e4c52017-10-27 10:42:04 +0000448 };
449
450 const DWARFObject &DObj = DCtx.getDWARFObj();
Greg Claytonc5b2d562017-05-03 18:25:46 +0000451 const auto Attr = AttrValue.Attr;
452 switch (Attr) {
453 case DW_AT_ranges:
454 // Make sure the offset in the DW_AT_ranges attribute is valid.
455 if (auto SectionOffset = AttrValue.Value.getAsSectionOffset()) {
George Rimar144e4c52017-10-27 10:42:04 +0000456 if (*SectionOffset >= DObj.getRangeSection().Data.size())
457 ReportError("DW_AT_ranges offset is beyond .debug_ranges bounds:");
458 break;
Greg Claytonc5b2d562017-05-03 18:25:46 +0000459 }
George Rimar144e4c52017-10-27 10:42:04 +0000460 ReportError("DIE has invalid DW_AT_ranges encoding:");
Greg Claytonc5b2d562017-05-03 18:25:46 +0000461 break;
462 case DW_AT_stmt_list:
463 // Make sure the offset in the DW_AT_stmt_list attribute is valid.
464 if (auto SectionOffset = AttrValue.Value.getAsSectionOffset()) {
George Rimar144e4c52017-10-27 10:42:04 +0000465 if (*SectionOffset >= DObj.getLineSection().Data.size())
466 ReportError("DW_AT_stmt_list offset is beyond .debug_line bounds: " +
George Rimar3d07f602017-10-27 10:58:04 +0000467 llvm::formatv("{0:x8}", *SectionOffset));
George Rimar144e4c52017-10-27 10:42:04 +0000468 break;
Greg Claytonc5b2d562017-05-03 18:25:46 +0000469 }
George Rimar144e4c52017-10-27 10:42:04 +0000470 ReportError("DIE has invalid DW_AT_stmt_list encoding:");
Greg Claytonc5b2d562017-05-03 18:25:46 +0000471 break;
George Rimar144e4c52017-10-27 10:42:04 +0000472 case DW_AT_location: {
Jonas Devlieghere7e0b0232018-05-22 17:37:27 +0000473 auto VerifyLocationExpr = [&](StringRef D) {
Jonas Devlieghere7d4a9742018-02-17 13:06:37 +0000474 DWARFUnit *U = Die.getDwarfUnit();
475 DataExtractor Data(D, DCtx.isLittleEndian(), 0);
476 DWARFExpression Expression(Data, U->getVersion(),
477 U->getAddressByteSize());
478 bool Error = llvm::any_of(Expression, [](DWARFExpression::Operation &Op) {
479 return Op.isError();
480 });
481 if (Error)
482 ReportError("DIE contains invalid DWARF expression:");
483 };
484 if (Optional<ArrayRef<uint8_t>> Expr = AttrValue.Value.getAsBlock()) {
485 // Verify inlined location.
Jonas Devlieghere7e0b0232018-05-22 17:37:27 +0000486 VerifyLocationExpr(llvm::toStringRef(*Expr));
487 } else if (auto LocOffset = AttrValue.Value.getAsSectionOffset()) {
Jonas Devlieghere7d4a9742018-02-17 13:06:37 +0000488 // Verify location list.
489 if (auto DebugLoc = DCtx.getDebugLoc())
490 if (auto LocList = DebugLoc->getLocationListAtOffset(*LocOffset))
491 for (const auto &Entry : LocList->Entries)
Jonas Devlieghere7e0b0232018-05-22 17:37:27 +0000492 VerifyLocationExpr({Entry.Loc.data(), Entry.Loc.size()});
George Rimar144e4c52017-10-27 10:42:04 +0000493 }
George Rimar144e4c52017-10-27 10:42:04 +0000494 break;
495 }
Jonas Devlieghere7ef2c202018-09-21 07:49:29 +0000496 case DW_AT_specification:
497 case DW_AT_abstract_origin: {
498 if (auto ReferencedDie = Die.getAttributeValueAsReferencedDie(Attr)) {
499 auto DieTag = Die.getTag();
500 auto RefTag = ReferencedDie.getTag();
501 if (DieTag == RefTag)
502 break;
503 if (DieTag == DW_TAG_inlined_subroutine && RefTag == DW_TAG_subprogram)
504 break;
505 if (DieTag == DW_TAG_variable && RefTag == DW_TAG_member)
506 break;
507 ReportError("DIE with tag " + TagString(DieTag) + " has " +
508 AttributeString(Attr) +
509 " that points to DIE with "
510 "incompatible tag " +
511 TagString(RefTag));
512 }
David Bolvansky7e30c912018-10-10 20:10:37 +0000513 break;
Jonas Devlieghere7ef2c202018-09-21 07:49:29 +0000514 }
Jonas Devlieghereb3227422018-09-21 07:50:21 +0000515 case DW_AT_type: {
516 DWARFDie TypeDie = Die.getAttributeValueAsReferencedDie(DW_AT_type);
517 if (TypeDie && !isType(TypeDie.getTag())) {
518 ReportError("DIE has " + AttributeString(Attr) +
519 " with incompatible tag " + TagString(TypeDie.getTag()));
Jonas Devlieghereb3227422018-09-21 07:50:21 +0000520 }
David Bolvansky7e30c912018-10-10 20:10:37 +0000521 break;
Jonas Devlieghereb3227422018-09-21 07:50:21 +0000522 }
Greg Claytonc5b2d562017-05-03 18:25:46 +0000523 default:
524 break;
525 }
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000526 return NumErrors;
Greg Claytonc5b2d562017-05-03 18:25:46 +0000527}
Greg Claytonb8c162b2017-05-03 16:02:29 +0000528
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000529unsigned DWARFVerifier::verifyDebugInfoForm(const DWARFDie &Die,
530 DWARFAttribute &AttrValue) {
Rafael Espindolac398e672017-07-19 22:27:28 +0000531 const DWARFObject &DObj = DCtx.getDWARFObj();
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000532 unsigned NumErrors = 0;
Greg Claytonc5b2d562017-05-03 18:25:46 +0000533 const auto Form = AttrValue.Value.getForm();
534 switch (Form) {
535 case DW_FORM_ref1:
536 case DW_FORM_ref2:
537 case DW_FORM_ref4:
538 case DW_FORM_ref8:
539 case DW_FORM_ref_udata: {
540 // Verify all CU relative references are valid CU offsets.
541 Optional<uint64_t> RefVal = AttrValue.Value.getAsReference();
542 assert(RefVal);
543 if (RefVal) {
544 auto DieCU = Die.getDwarfUnit();
545 auto CUSize = DieCU->getNextUnitOffset() - DieCU->getOffset();
546 auto CUOffset = AttrValue.Value.getRawUValue();
547 if (CUOffset >= CUSize) {
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000548 ++NumErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000549 error() << FormEncodingString(Form) << " CU offset "
550 << format("0x%08" PRIx64, CUOffset)
551 << " is invalid (must be less than CU size of "
552 << format("0x%08" PRIx32, CUSize) << "):\n";
Adrian Prantld3f9f212017-09-20 17:44:00 +0000553 Die.dump(OS, 0, DumpOpts);
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000554 dump(Die) << '\n';
Greg Claytonc5b2d562017-05-03 18:25:46 +0000555 } else {
556 // Valid reference, but we will verify it points to an actual
557 // DIE later.
558 ReferenceToDIEOffsets[*RefVal].insert(Die.getOffset());
Greg Claytonb8c162b2017-05-03 16:02:29 +0000559 }
560 }
Greg Claytonc5b2d562017-05-03 18:25:46 +0000561 break;
Greg Claytonb8c162b2017-05-03 16:02:29 +0000562 }
Greg Claytonc5b2d562017-05-03 18:25:46 +0000563 case DW_FORM_ref_addr: {
564 // Verify all absolute DIE references have valid offsets in the
565 // .debug_info section.
566 Optional<uint64_t> RefVal = AttrValue.Value.getAsReference();
567 assert(RefVal);
568 if (RefVal) {
Rafael Espindolac398e672017-07-19 22:27:28 +0000569 if (*RefVal >= DObj.getInfoSection().Data.size()) {
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000570 ++NumErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000571 error() << "DW_FORM_ref_addr offset beyond .debug_info "
572 "bounds:\n";
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000573 dump(Die) << '\n';
Greg Claytonc5b2d562017-05-03 18:25:46 +0000574 } else {
575 // Valid reference, but we will verify it points to an actual
576 // DIE later.
577 ReferenceToDIEOffsets[*RefVal].insert(Die.getOffset());
578 }
579 }
580 break;
581 }
582 case DW_FORM_strp: {
583 auto SecOffset = AttrValue.Value.getAsSectionOffset();
584 assert(SecOffset); // DW_FORM_strp is a section offset.
Rafael Espindolac398e672017-07-19 22:27:28 +0000585 if (SecOffset && *SecOffset >= DObj.getStringSection().size()) {
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000586 ++NumErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000587 error() << "DW_FORM_strp offset beyond .debug_str bounds:\n";
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000588 dump(Die) << '\n';
Greg Claytonc5b2d562017-05-03 18:25:46 +0000589 }
590 break;
591 }
592 default:
593 break;
594 }
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000595 return NumErrors;
Greg Claytonc5b2d562017-05-03 18:25:46 +0000596}
Greg Claytonb8c162b2017-05-03 16:02:29 +0000597
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000598unsigned DWARFVerifier::verifyDebugInfoReferences() {
Greg Claytonb8c162b2017-05-03 16:02:29 +0000599 // Take all references and make sure they point to an actual DIE by
600 // getting the DIE by offset and emitting an error
601 OS << "Verifying .debug_info references...\n";
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000602 unsigned NumErrors = 0;
Greg Claytonb8c162b2017-05-03 16:02:29 +0000603 for (auto Pair : ReferenceToDIEOffsets) {
604 auto Die = DCtx.getDIEForOffset(Pair.first);
605 if (Die)
606 continue;
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000607 ++NumErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000608 error() << "invalid DIE reference " << format("0x%08" PRIx64, Pair.first)
609 << ". Offset is in between DIEs:\n";
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000610 for (auto Offset : Pair.second)
611 dump(DCtx.getDIEForOffset(Offset)) << '\n';
Greg Claytonb8c162b2017-05-03 16:02:29 +0000612 OS << "\n";
613 }
Spyridoula Gravanif6bd788d2017-07-18 01:00:26 +0000614 return NumErrors;
Greg Claytonb8c162b2017-05-03 16:02:29 +0000615}
616
Greg Claytonc5b2d562017-05-03 18:25:46 +0000617void DWARFVerifier::verifyDebugLineStmtOffsets() {
Greg Claytonb8c162b2017-05-03 16:02:29 +0000618 std::map<uint64_t, DWARFDie> StmtListToDie;
Greg Claytonb8c162b2017-05-03 16:02:29 +0000619 for (const auto &CU : DCtx.compile_units()) {
Greg Claytonc5b2d562017-05-03 18:25:46 +0000620 auto Die = CU->getUnitDIE();
Greg Claytonb8c162b2017-05-03 16:02:29 +0000621 // Get the attribute value as a section offset. No need to produce an
622 // error here if the encoding isn't correct because we validate this in
623 // the .debug_info verifier.
Greg Claytonc5b2d562017-05-03 18:25:46 +0000624 auto StmtSectionOffset = toSectionOffset(Die.find(DW_AT_stmt_list));
Greg Claytonb8c162b2017-05-03 16:02:29 +0000625 if (!StmtSectionOffset)
626 continue;
627 const uint32_t LineTableOffset = *StmtSectionOffset;
Greg Claytonc5b2d562017-05-03 18:25:46 +0000628 auto LineTable = DCtx.getLineTableForUnit(CU.get());
Rafael Espindolac398e672017-07-19 22:27:28 +0000629 if (LineTableOffset < DCtx.getDWARFObj().getLineSection().Data.size()) {
Greg Claytonc5b2d562017-05-03 18:25:46 +0000630 if (!LineTable) {
631 ++NumDebugLineErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000632 error() << ".debug_line[" << format("0x%08" PRIx32, LineTableOffset)
633 << "] was not able to be parsed for CU:\n";
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000634 dump(Die) << '\n';
Greg Claytonc5b2d562017-05-03 18:25:46 +0000635 continue;
636 }
637 } else {
638 // Make sure we don't get a valid line table back if the offset is wrong.
639 assert(LineTable == nullptr);
Greg Claytonb8c162b2017-05-03 16:02:29 +0000640 // Skip this line table as it isn't valid. No need to create an error
641 // here because we validate this in the .debug_info verifier.
642 continue;
643 }
Greg Claytonb8c162b2017-05-03 16:02:29 +0000644 auto Iter = StmtListToDie.find(LineTableOffset);
645 if (Iter != StmtListToDie.end()) {
646 ++NumDebugLineErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000647 error() << "two compile unit DIEs, "
648 << format("0x%08" PRIx32, Iter->second.getOffset()) << " and "
649 << format("0x%08" PRIx32, Die.getOffset())
650 << ", have the same DW_AT_stmt_list section offset:\n";
Jonas Devliegheref1f3e732018-09-19 08:08:13 +0000651 dump(Iter->second);
652 dump(Die) << '\n';
Greg Claytonb8c162b2017-05-03 16:02:29 +0000653 // Already verified this line table before, no need to do it again.
654 continue;
655 }
Greg Claytonc5b2d562017-05-03 18:25:46 +0000656 StmtListToDie[LineTableOffset] = Die;
657 }
658}
Greg Claytonb8c162b2017-05-03 16:02:29 +0000659
Greg Claytonc5b2d562017-05-03 18:25:46 +0000660void DWARFVerifier::verifyDebugLineRows() {
661 for (const auto &CU : DCtx.compile_units()) {
662 auto Die = CU->getUnitDIE();
Greg Claytonb8c162b2017-05-03 16:02:29 +0000663 auto LineTable = DCtx.getLineTableForUnit(CU.get());
Greg Claytonc5b2d562017-05-03 18:25:46 +0000664 // If there is no line table we will have created an error in the
665 // .debug_info verifier or in verifyDebugLineStmtOffsets().
666 if (!LineTable)
Greg Claytonb8c162b2017-05-03 16:02:29 +0000667 continue;
Jonas Devliegheref4ed65d2017-09-08 09:48:51 +0000668
669 // Verify prologue.
Greg Claytonb8c162b2017-05-03 16:02:29 +0000670 uint32_t MaxFileIndex = LineTable->Prologue.FileNames.size();
Jonas Devliegheref4ed65d2017-09-08 09:48:51 +0000671 uint32_t MaxDirIndex = LineTable->Prologue.IncludeDirectories.size();
672 uint32_t FileIndex = 1;
673 StringMap<uint16_t> FullPathMap;
674 for (const auto &FileName : LineTable->Prologue.FileNames) {
675 // Verify directory index.
676 if (FileName.DirIdx > MaxDirIndex) {
677 ++NumDebugLineErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000678 error() << ".debug_line["
679 << format("0x%08" PRIx64,
680 *toSectionOffset(Die.find(DW_AT_stmt_list)))
681 << "].prologue.file_names[" << FileIndex
682 << "].dir_idx contains an invalid index: " << FileName.DirIdx
683 << "\n";
Jonas Devliegheref4ed65d2017-09-08 09:48:51 +0000684 }
685
686 // Check file paths for duplicates.
687 std::string FullPath;
688 const bool HasFullPath = LineTable->getFileNameByIndex(
689 FileIndex, CU->getCompilationDir(),
690 DILineInfoSpecifier::FileLineInfoKind::AbsoluteFilePath, FullPath);
691 assert(HasFullPath && "Invalid index?");
692 (void)HasFullPath;
693 auto It = FullPathMap.find(FullPath);
694 if (It == FullPathMap.end())
695 FullPathMap[FullPath] = FileIndex;
696 else if (It->second != FileIndex) {
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000697 warn() << ".debug_line["
698 << format("0x%08" PRIx64,
699 *toSectionOffset(Die.find(DW_AT_stmt_list)))
700 << "].prologue.file_names[" << FileIndex
701 << "] is a duplicate of file_names[" << It->second << "]\n";
Jonas Devliegheref4ed65d2017-09-08 09:48:51 +0000702 }
703
704 FileIndex++;
705 }
706
707 // Verify rows.
Greg Claytonb8c162b2017-05-03 16:02:29 +0000708 uint64_t PrevAddress = 0;
709 uint32_t RowIndex = 0;
710 for (const auto &Row : LineTable->Rows) {
Jonas Devliegheref4ed65d2017-09-08 09:48:51 +0000711 // Verify row address.
Greg Claytonb8c162b2017-05-03 16:02:29 +0000712 if (Row.Address < PrevAddress) {
713 ++NumDebugLineErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000714 error() << ".debug_line["
715 << format("0x%08" PRIx64,
716 *toSectionOffset(Die.find(DW_AT_stmt_list)))
717 << "] row[" << RowIndex
718 << "] decreases in address from previous row:\n";
Greg Claytonb8c162b2017-05-03 16:02:29 +0000719
720 DWARFDebugLine::Row::dumpTableHeader(OS);
721 if (RowIndex > 0)
722 LineTable->Rows[RowIndex - 1].dump(OS);
723 Row.dump(OS);
724 OS << '\n';
725 }
726
Jonas Devliegheref4ed65d2017-09-08 09:48:51 +0000727 // Verify file index.
Greg Claytonb8c162b2017-05-03 16:02:29 +0000728 if (Row.File > MaxFileIndex) {
729 ++NumDebugLineErrors;
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000730 error() << ".debug_line["
731 << format("0x%08" PRIx64,
732 *toSectionOffset(Die.find(DW_AT_stmt_list)))
733 << "][" << RowIndex << "] has invalid file index " << Row.File
734 << " (valid values are [1," << MaxFileIndex << "]):\n";
Greg Claytonb8c162b2017-05-03 16:02:29 +0000735 DWARFDebugLine::Row::dumpTableHeader(OS);
736 Row.dump(OS);
737 OS << '\n';
738 }
739 if (Row.EndSequence)
740 PrevAddress = 0;
741 else
742 PrevAddress = Row.Address;
743 ++RowIndex;
744 }
745 }
Greg Claytonc5b2d562017-05-03 18:25:46 +0000746}
747
748bool DWARFVerifier::handleDebugLine() {
749 NumDebugLineErrors = 0;
750 OS << "Verifying .debug_line...\n";
751 verifyDebugLineStmtOffsets();
752 verifyDebugLineRows();
Greg Claytonb8c162b2017-05-03 16:02:29 +0000753 return NumDebugLineErrors == 0;
754}
Spyridoula Gravanie41823b2017-06-14 00:17:55 +0000755
Pavel Labath9b36fd22018-01-22 13:17:23 +0000756unsigned DWARFVerifier::verifyAppleAccelTable(const DWARFSection *AccelSection,
757 DataExtractor *StrData,
758 const char *SectionName) {
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000759 unsigned NumErrors = 0;
760 DWARFDataExtractor AccelSectionData(DCtx.getDWARFObj(), *AccelSection,
761 DCtx.isLittleEndian(), 0);
Pavel Labath9b36fd22018-01-22 13:17:23 +0000762 AppleAcceleratorTable AccelTable(AccelSectionData, *StrData);
Spyridoula Gravanie41823b2017-06-14 00:17:55 +0000763
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000764 OS << "Verifying " << SectionName << "...\n";
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000765
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000766 // Verify that the fixed part of the header is not too short.
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000767 if (!AccelSectionData.isValidOffset(AccelTable.getSizeHdr())) {
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000768 error() << "Section is too small to fit a section header.\n";
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000769 return 1;
Spyridoula Gravanie41823b2017-06-14 00:17:55 +0000770 }
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000771
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000772 // Verify that the section is not too short.
Jonas Devlieghereba915892017-12-11 18:22:47 +0000773 if (Error E = AccelTable.extract()) {
774 error() << toString(std::move(E)) << '\n';
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000775 return 1;
776 }
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000777
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000778 // Verify that all buckets have a valid hash index or are empty.
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000779 uint32_t NumBuckets = AccelTable.getNumBuckets();
780 uint32_t NumHashes = AccelTable.getNumHashes();
Spyridoula Gravanie41823b2017-06-14 00:17:55 +0000781
782 uint32_t BucketsOffset =
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000783 AccelTable.getSizeHdr() + AccelTable.getHeaderDataLength();
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000784 uint32_t HashesBase = BucketsOffset + NumBuckets * 4;
785 uint32_t OffsetsBase = HashesBase + NumHashes * 4;
Spyridoula Gravanie41823b2017-06-14 00:17:55 +0000786 for (uint32_t BucketIdx = 0; BucketIdx < NumBuckets; ++BucketIdx) {
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000787 uint32_t HashIdx = AccelSectionData.getU32(&BucketsOffset);
Spyridoula Gravanie41823b2017-06-14 00:17:55 +0000788 if (HashIdx >= NumHashes && HashIdx != UINT32_MAX) {
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000789 error() << format("Bucket[%d] has invalid hash index: %u.\n", BucketIdx,
790 HashIdx);
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000791 ++NumErrors;
Spyridoula Gravanie41823b2017-06-14 00:17:55 +0000792 }
793 }
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000794 uint32_t NumAtoms = AccelTable.getAtomsDesc().size();
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000795 if (NumAtoms == 0) {
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000796 error() << "No atoms: failed to read HashData.\n";
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000797 return 1;
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000798 }
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000799 if (!AccelTable.validateForms()) {
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000800 error() << "Unsupported form: failed to read HashData.\n";
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000801 return 1;
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000802 }
803
804 for (uint32_t HashIdx = 0; HashIdx < NumHashes; ++HashIdx) {
805 uint32_t HashOffset = HashesBase + 4 * HashIdx;
806 uint32_t DataOffset = OffsetsBase + 4 * HashIdx;
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000807 uint32_t Hash = AccelSectionData.getU32(&HashOffset);
808 uint32_t HashDataOffset = AccelSectionData.getU32(&DataOffset);
809 if (!AccelSectionData.isValidOffsetForDataOfSize(HashDataOffset,
810 sizeof(uint64_t))) {
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000811 error() << format("Hash[%d] has invalid HashData offset: 0x%08x.\n",
812 HashIdx, HashDataOffset);
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000813 ++NumErrors;
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000814 }
815
816 uint32_t StrpOffset;
817 uint32_t StringOffset;
818 uint32_t StringCount = 0;
Spyridoula Gravani70d35e12017-07-31 18:01:16 +0000819 unsigned Offset;
820 unsigned Tag;
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000821 while ((StrpOffset = AccelSectionData.getU32(&HashDataOffset)) != 0) {
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000822 const uint32_t NumHashDataObjects =
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000823 AccelSectionData.getU32(&HashDataOffset);
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000824 for (uint32_t HashDataIdx = 0; HashDataIdx < NumHashDataObjects;
825 ++HashDataIdx) {
Spyridoula Gravani70d35e12017-07-31 18:01:16 +0000826 std::tie(Offset, Tag) = AccelTable.readAtoms(HashDataOffset);
827 auto Die = DCtx.getDIEForOffset(Offset);
828 if (!Die) {
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000829 const uint32_t BucketIdx =
830 NumBuckets ? (Hash % NumBuckets) : UINT32_MAX;
831 StringOffset = StrpOffset;
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000832 const char *Name = StrData->getCStr(&StringOffset);
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000833 if (!Name)
834 Name = "<NULL>";
835
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000836 error() << format(
837 "%s Bucket[%d] Hash[%d] = 0x%08x "
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000838 "Str[%u] = 0x%08x "
839 "DIE[%d] = 0x%08x is not a valid DIE offset for \"%s\".\n",
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000840 SectionName, BucketIdx, HashIdx, Hash, StringCount, StrpOffset,
Spyridoula Gravani70d35e12017-07-31 18:01:16 +0000841 HashDataIdx, Offset, Name);
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000842
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000843 ++NumErrors;
Spyridoula Gravani70d35e12017-07-31 18:01:16 +0000844 continue;
845 }
846 if ((Tag != dwarf::DW_TAG_null) && (Die.getTag() != Tag)) {
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +0000847 error() << "Tag " << dwarf::TagString(Tag)
848 << " in accelerator table does not match Tag "
849 << dwarf::TagString(Die.getTag()) << " of DIE[" << HashDataIdx
850 << "].\n";
Spyridoula Gravani70d35e12017-07-31 18:01:16 +0000851 ++NumErrors;
Spyridoula Gravani837c1102017-06-29 20:13:05 +0000852 }
853 }
854 ++StringCount;
855 }
856 }
Spyridoula Gravanidc635f42017-07-26 00:52:31 +0000857 return NumErrors;
858}
859
Pavel Labathb136c392018-03-08 15:34:42 +0000860unsigned
861DWARFVerifier::verifyDebugNamesCULists(const DWARFDebugNames &AccelTable) {
862 // A map from CU offset to the (first) Name Index offset which claims to index
863 // this CU.
864 DenseMap<uint32_t, uint32_t> CUMap;
865 const uint32_t NotIndexed = std::numeric_limits<uint32_t>::max();
866
867 CUMap.reserve(DCtx.getNumCompileUnits());
868 for (const auto &CU : DCtx.compile_units())
869 CUMap[CU->getOffset()] = NotIndexed;
870
871 unsigned NumErrors = 0;
872 for (const DWARFDebugNames::NameIndex &NI : AccelTable) {
873 if (NI.getCUCount() == 0) {
874 error() << formatv("Name Index @ {0:x} does not index any CU\n",
875 NI.getUnitOffset());
876 ++NumErrors;
877 continue;
878 }
879 for (uint32_t CU = 0, End = NI.getCUCount(); CU < End; ++CU) {
880 uint32_t Offset = NI.getCUOffset(CU);
881 auto Iter = CUMap.find(Offset);
882
883 if (Iter == CUMap.end()) {
884 error() << formatv(
885 "Name Index @ {0:x} references a non-existing CU @ {1:x}\n",
886 NI.getUnitOffset(), Offset);
887 ++NumErrors;
888 continue;
889 }
890
891 if (Iter->second != NotIndexed) {
892 error() << formatv("Name Index @ {0:x} references a CU @ {1:x}, but "
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +0000893 "this CU is already indexed by Name Index @ {2:x}\n",
894 NI.getUnitOffset(), Offset, Iter->second);
Pavel Labathb136c392018-03-08 15:34:42 +0000895 continue;
896 }
897 Iter->second = NI.getUnitOffset();
898 }
899 }
900
901 for (const auto &KV : CUMap) {
902 if (KV.second == NotIndexed)
903 warn() << formatv("CU @ {0:x} not covered by any Name Index\n", KV.first);
904 }
905
906 return NumErrors;
907}
908
Pavel Labath906b7772018-03-16 10:02:16 +0000909unsigned
910DWARFVerifier::verifyNameIndexBuckets(const DWARFDebugNames::NameIndex &NI,
911 const DataExtractor &StrData) {
912 struct BucketInfo {
913 uint32_t Bucket;
914 uint32_t Index;
915
916 constexpr BucketInfo(uint32_t Bucket, uint32_t Index)
917 : Bucket(Bucket), Index(Index) {}
918 bool operator<(const BucketInfo &RHS) const { return Index < RHS.Index; };
919 };
920
921 uint32_t NumErrors = 0;
922 if (NI.getBucketCount() == 0) {
923 warn() << formatv("Name Index @ {0:x} does not contain a hash table.\n",
924 NI.getUnitOffset());
925 return NumErrors;
926 }
927
928 // Build up a list of (Bucket, Index) pairs. We use this later to verify that
929 // each Name is reachable from the appropriate bucket.
930 std::vector<BucketInfo> BucketStarts;
931 BucketStarts.reserve(NI.getBucketCount() + 1);
932 for (uint32_t Bucket = 0, End = NI.getBucketCount(); Bucket < End; ++Bucket) {
933 uint32_t Index = NI.getBucketArrayEntry(Bucket);
934 if (Index > NI.getNameCount()) {
935 error() << formatv("Bucket {0} of Name Index @ {1:x} contains invalid "
936 "value {2}. Valid range is [0, {3}].\n",
937 Bucket, NI.getUnitOffset(), Index, NI.getNameCount());
938 ++NumErrors;
939 continue;
940 }
941 if (Index > 0)
942 BucketStarts.emplace_back(Bucket, Index);
943 }
944
945 // If there were any buckets with invalid values, skip further checks as they
946 // will likely produce many errors which will only confuse the actual root
947 // problem.
948 if (NumErrors > 0)
949 return NumErrors;
950
951 // Sort the list in the order of increasing "Index" entries.
952 array_pod_sort(BucketStarts.begin(), BucketStarts.end());
953
954 // Insert a sentinel entry at the end, so we can check that the end of the
955 // table is covered in the loop below.
956 BucketStarts.emplace_back(NI.getBucketCount(), NI.getNameCount() + 1);
957
958 // Loop invariant: NextUncovered is the (1-based) index of the first Name
959 // which is not reachable by any of the buckets we processed so far (and
960 // hasn't been reported as uncovered).
961 uint32_t NextUncovered = 1;
962 for (const BucketInfo &B : BucketStarts) {
963 // Under normal circumstances B.Index be equal to NextUncovered, but it can
964 // be less if a bucket points to names which are already known to be in some
965 // bucket we processed earlier. In that case, we won't trigger this error,
966 // but report the mismatched hash value error instead. (We know the hash
967 // will not match because we have already verified that the name's hash
968 // puts it into the previous bucket.)
969 if (B.Index > NextUncovered) {
970 error() << formatv("Name Index @ {0:x}: Name table entries [{1}, {2}] "
971 "are not covered by the hash table.\n",
972 NI.getUnitOffset(), NextUncovered, B.Index - 1);
973 ++NumErrors;
974 }
975 uint32_t Idx = B.Index;
976
977 // The rest of the checks apply only to non-sentinel entries.
978 if (B.Bucket == NI.getBucketCount())
979 break;
980
981 // This triggers if a non-empty bucket points to a name with a mismatched
982 // hash. Clients are likely to interpret this as an empty bucket, because a
983 // mismatched hash signals the end of a bucket, but if this is indeed an
984 // empty bucket, the producer should have signalled this by marking the
985 // bucket as empty.
986 uint32_t FirstHash = NI.getHashArrayEntry(Idx);
987 if (FirstHash % NI.getBucketCount() != B.Bucket) {
988 error() << formatv(
989 "Name Index @ {0:x}: Bucket {1} is not empty but points to a "
990 "mismatched hash value {2:x} (belonging to bucket {3}).\n",
991 NI.getUnitOffset(), B.Bucket, FirstHash,
992 FirstHash % NI.getBucketCount());
993 ++NumErrors;
994 }
995
996 // This find the end of this bucket and also verifies that all the hashes in
997 // this bucket are correct by comparing the stored hashes to the ones we
998 // compute ourselves.
999 while (Idx <= NI.getNameCount()) {
1000 uint32_t Hash = NI.getHashArrayEntry(Idx);
1001 if (Hash % NI.getBucketCount() != B.Bucket)
1002 break;
1003
Pavel Labathd6ca0632018-06-01 10:33:11 +00001004 const char *Str = NI.getNameTableEntry(Idx).getString();
Pavel Labath906b7772018-03-16 10:02:16 +00001005 if (caseFoldingDjbHash(Str) != Hash) {
1006 error() << formatv("Name Index @ {0:x}: String ({1}) at index {2} "
1007 "hashes to {3:x}, but "
1008 "the Name Index hash is {4:x}\n",
1009 NI.getUnitOffset(), Str, Idx,
1010 caseFoldingDjbHash(Str), Hash);
1011 ++NumErrors;
1012 }
1013
1014 ++Idx;
1015 }
1016 NextUncovered = std::max(NextUncovered, Idx);
1017 }
1018 return NumErrors;
1019}
1020
Pavel Labath79cd9422018-03-22 14:50:44 +00001021unsigned DWARFVerifier::verifyNameIndexAttribute(
1022 const DWARFDebugNames::NameIndex &NI, const DWARFDebugNames::Abbrev &Abbr,
1023 DWARFDebugNames::AttributeEncoding AttrEnc) {
1024 StringRef FormName = dwarf::FormEncodingString(AttrEnc.Form);
1025 if (FormName.empty()) {
1026 error() << formatv("NameIndex @ {0:x}: Abbreviation {1:x}: {2} uses an "
1027 "unknown form: {3}.\n",
1028 NI.getUnitOffset(), Abbr.Code, AttrEnc.Index,
1029 AttrEnc.Form);
1030 return 1;
1031 }
1032
1033 if (AttrEnc.Index == DW_IDX_type_hash) {
1034 if (AttrEnc.Form != dwarf::DW_FORM_data8) {
1035 error() << formatv(
1036 "NameIndex @ {0:x}: Abbreviation {1:x}: DW_IDX_type_hash "
1037 "uses an unexpected form {2} (should be {3}).\n",
1038 NI.getUnitOffset(), Abbr.Code, AttrEnc.Form, dwarf::DW_FORM_data8);
1039 return 1;
1040 }
1041 }
1042
1043 // A list of known index attributes and their expected form classes.
1044 // DW_IDX_type_hash is handled specially in the check above, as it has a
1045 // specific form (not just a form class) we should expect.
1046 struct FormClassTable {
1047 dwarf::Index Index;
1048 DWARFFormValue::FormClass Class;
1049 StringLiteral ClassName;
1050 };
1051 static constexpr FormClassTable Table[] = {
1052 {dwarf::DW_IDX_compile_unit, DWARFFormValue::FC_Constant, {"constant"}},
1053 {dwarf::DW_IDX_type_unit, DWARFFormValue::FC_Constant, {"constant"}},
1054 {dwarf::DW_IDX_die_offset, DWARFFormValue::FC_Reference, {"reference"}},
1055 {dwarf::DW_IDX_parent, DWARFFormValue::FC_Constant, {"constant"}},
1056 };
1057
1058 ArrayRef<FormClassTable> TableRef(Table);
1059 auto Iter = find_if(TableRef, [AttrEnc](const FormClassTable &T) {
1060 return T.Index == AttrEnc.Index;
1061 });
1062 if (Iter == TableRef.end()) {
1063 warn() << formatv("NameIndex @ {0:x}: Abbreviation {1:x} contains an "
1064 "unknown index attribute: {2}.\n",
1065 NI.getUnitOffset(), Abbr.Code, AttrEnc.Index);
1066 return 0;
1067 }
1068
1069 if (!DWARFFormValue(AttrEnc.Form).isFormClass(Iter->Class)) {
1070 error() << formatv("NameIndex @ {0:x}: Abbreviation {1:x}: {2} uses an "
1071 "unexpected form {3} (expected form class {4}).\n",
1072 NI.getUnitOffset(), Abbr.Code, AttrEnc.Index,
1073 AttrEnc.Form, Iter->ClassName);
1074 return 1;
1075 }
1076 return 0;
1077}
1078
1079unsigned
1080DWARFVerifier::verifyNameIndexAbbrevs(const DWARFDebugNames::NameIndex &NI) {
Pavel Labathc9f07b02018-04-06 13:34:12 +00001081 if (NI.getLocalTUCount() + NI.getForeignTUCount() > 0) {
1082 warn() << formatv("Name Index @ {0:x}: Verifying indexes of type units is "
1083 "not currently supported.\n",
1084 NI.getUnitOffset());
1085 return 0;
1086 }
1087
Pavel Labath79cd9422018-03-22 14:50:44 +00001088 unsigned NumErrors = 0;
1089 for (const auto &Abbrev : NI.getAbbrevs()) {
1090 StringRef TagName = dwarf::TagString(Abbrev.Tag);
1091 if (TagName.empty()) {
1092 warn() << formatv("NameIndex @ {0:x}: Abbreviation {1:x} references an "
1093 "unknown tag: {2}.\n",
1094 NI.getUnitOffset(), Abbrev.Code, Abbrev.Tag);
1095 }
1096 SmallSet<unsigned, 5> Attributes;
1097 for (const auto &AttrEnc : Abbrev.Attributes) {
1098 if (!Attributes.insert(AttrEnc.Index).second) {
1099 error() << formatv("NameIndex @ {0:x}: Abbreviation {1:x} contains "
1100 "multiple {2} attributes.\n",
1101 NI.getUnitOffset(), Abbrev.Code, AttrEnc.Index);
1102 ++NumErrors;
1103 continue;
1104 }
1105 NumErrors += verifyNameIndexAttribute(NI, Abbrev, AttrEnc);
1106 }
Pavel Labathc9f07b02018-04-06 13:34:12 +00001107
1108 if (NI.getCUCount() > 1 && !Attributes.count(dwarf::DW_IDX_compile_unit)) {
1109 error() << formatv("NameIndex @ {0:x}: Indexing multiple compile units "
1110 "and abbreviation {1:x} has no {2} attribute.\n",
1111 NI.getUnitOffset(), Abbrev.Code,
1112 dwarf::DW_IDX_compile_unit);
1113 ++NumErrors;
1114 }
1115 if (!Attributes.count(dwarf::DW_IDX_die_offset)) {
1116 error() << formatv(
1117 "NameIndex @ {0:x}: Abbreviation {1:x} has no {2} attribute.\n",
1118 NI.getUnitOffset(), Abbrev.Code, dwarf::DW_IDX_die_offset);
1119 ++NumErrors;
1120 }
Pavel Labath79cd9422018-03-22 14:50:44 +00001121 }
1122 return NumErrors;
1123}
1124
Jonas Devlieghere6e5c7e62018-09-03 12:12:17 +00001125static SmallVector<StringRef, 2> getNames(const DWARFDie &DIE,
1126 bool IncludeLinkageName = true) {
Pavel Labathc9f07b02018-04-06 13:34:12 +00001127 SmallVector<StringRef, 2> Result;
1128 if (const char *Str = DIE.getName(DINameKind::ShortName))
1129 Result.emplace_back(Str);
1130 else if (DIE.getTag() == dwarf::DW_TAG_namespace)
1131 Result.emplace_back("(anonymous namespace)");
1132
Jonas Devlieghere6e5c7e62018-09-03 12:12:17 +00001133 if (IncludeLinkageName) {
1134 if (const char *Str = DIE.getName(DINameKind::LinkageName)) {
1135 if (Result.empty() || Result[0] != Str)
1136 Result.emplace_back(Str);
1137 }
Pavel Labathc9f07b02018-04-06 13:34:12 +00001138 }
1139
1140 return Result;
1141}
1142
Pavel Labathd6ca0632018-06-01 10:33:11 +00001143unsigned DWARFVerifier::verifyNameIndexEntries(
1144 const DWARFDebugNames::NameIndex &NI,
1145 const DWARFDebugNames::NameTableEntry &NTE) {
Pavel Labathc9f07b02018-04-06 13:34:12 +00001146 // Verifying type unit indexes not supported.
1147 if (NI.getLocalTUCount() + NI.getForeignTUCount() > 0)
1148 return 0;
1149
Pavel Labathd6ca0632018-06-01 10:33:11 +00001150 const char *CStr = NTE.getString();
Pavel Labathc9f07b02018-04-06 13:34:12 +00001151 if (!CStr) {
1152 error() << formatv(
1153 "Name Index @ {0:x}: Unable to get string associated with name {1}.\n",
Pavel Labathd6ca0632018-06-01 10:33:11 +00001154 NI.getUnitOffset(), NTE.getIndex());
Pavel Labathc9f07b02018-04-06 13:34:12 +00001155 return 1;
1156 }
1157 StringRef Str(CStr);
1158
1159 unsigned NumErrors = 0;
1160 unsigned NumEntries = 0;
Pavel Labathd6ca0632018-06-01 10:33:11 +00001161 uint32_t EntryID = NTE.getEntryOffset();
1162 uint32_t NextEntryID = EntryID;
1163 Expected<DWARFDebugNames::Entry> EntryOr = NI.getEntry(&NextEntryID);
1164 for (; EntryOr; ++NumEntries, EntryID = NextEntryID,
1165 EntryOr = NI.getEntry(&NextEntryID)) {
Pavel Labathc9f07b02018-04-06 13:34:12 +00001166 uint32_t CUIndex = *EntryOr->getCUIndex();
1167 if (CUIndex > NI.getCUCount()) {
1168 error() << formatv("Name Index @ {0:x}: Entry @ {1:x} contains an "
1169 "invalid CU index ({2}).\n",
1170 NI.getUnitOffset(), EntryID, CUIndex);
1171 ++NumErrors;
1172 continue;
1173 }
1174 uint32_t CUOffset = NI.getCUOffset(CUIndex);
Pavel Labath4adc88e2018-06-13 08:14:27 +00001175 uint64_t DIEOffset = CUOffset + *EntryOr->getDIEUnitOffset();
Pavel Labathc9f07b02018-04-06 13:34:12 +00001176 DWARFDie DIE = DCtx.getDIEForOffset(DIEOffset);
1177 if (!DIE) {
1178 error() << formatv("Name Index @ {0:x}: Entry @ {1:x} references a "
1179 "non-existing DIE @ {2:x}.\n",
1180 NI.getUnitOffset(), EntryID, DIEOffset);
1181 ++NumErrors;
1182 continue;
1183 }
1184 if (DIE.getDwarfUnit()->getOffset() != CUOffset) {
1185 error() << formatv("Name Index @ {0:x}: Entry @ {1:x}: mismatched CU of "
1186 "DIE @ {2:x}: index - {3:x}; debug_info - {4:x}.\n",
1187 NI.getUnitOffset(), EntryID, DIEOffset, CUOffset,
1188 DIE.getDwarfUnit()->getOffset());
1189 ++NumErrors;
1190 }
1191 if (DIE.getTag() != EntryOr->tag()) {
1192 error() << formatv("Name Index @ {0:x}: Entry @ {1:x}: mismatched Tag of "
1193 "DIE @ {2:x}: index - {3}; debug_info - {4}.\n",
1194 NI.getUnitOffset(), EntryID, DIEOffset, EntryOr->tag(),
1195 DIE.getTag());
1196 ++NumErrors;
1197 }
1198
1199 auto EntryNames = getNames(DIE);
1200 if (!is_contained(EntryNames, Str)) {
1201 error() << formatv("Name Index @ {0:x}: Entry @ {1:x}: mismatched Name "
1202 "of DIE @ {2:x}: index - {3}; debug_info - {4}.\n",
1203 NI.getUnitOffset(), EntryID, DIEOffset, Str,
1204 make_range(EntryNames.begin(), EntryNames.end()));
Pavel Labath2a6afe52018-05-14 14:13:20 +00001205 ++NumErrors;
Pavel Labathc9f07b02018-04-06 13:34:12 +00001206 }
1207 }
1208 handleAllErrors(EntryOr.takeError(),
1209 [&](const DWARFDebugNames::SentinelError &) {
1210 if (NumEntries > 0)
1211 return;
1212 error() << formatv("Name Index @ {0:x}: Name {1} ({2}) is "
1213 "not associated with any entries.\n",
Pavel Labathd6ca0632018-06-01 10:33:11 +00001214 NI.getUnitOffset(), NTE.getIndex(), Str);
Pavel Labathc9f07b02018-04-06 13:34:12 +00001215 ++NumErrors;
1216 },
1217 [&](const ErrorInfoBase &Info) {
Pavel Labathd6ca0632018-06-01 10:33:11 +00001218 error()
1219 << formatv("Name Index @ {0:x}: Name {1} ({2}): {3}\n",
1220 NI.getUnitOffset(), NTE.getIndex(), Str,
1221 Info.message());
Pavel Labathc9f07b02018-04-06 13:34:12 +00001222 ++NumErrors;
1223 });
1224 return NumErrors;
1225}
1226
Pavel Labath80827f12018-05-15 13:24:10 +00001227static bool isVariableIndexable(const DWARFDie &Die, DWARFContext &DCtx) {
1228 Optional<DWARFFormValue> Location = Die.findRecursively(DW_AT_location);
1229 if (!Location)
1230 return false;
1231
1232 auto ContainsInterestingOperators = [&](StringRef D) {
1233 DWARFUnit *U = Die.getDwarfUnit();
1234 DataExtractor Data(D, DCtx.isLittleEndian(), U->getAddressByteSize());
1235 DWARFExpression Expression(Data, U->getVersion(), U->getAddressByteSize());
1236 return any_of(Expression, [](DWARFExpression::Operation &Op) {
1237 return !Op.isError() && (Op.getCode() == DW_OP_addr ||
1238 Op.getCode() == DW_OP_form_tls_address ||
1239 Op.getCode() == DW_OP_GNU_push_tls_address);
1240 });
1241 };
1242
1243 if (Optional<ArrayRef<uint8_t>> Expr = Location->getAsBlock()) {
1244 // Inlined location.
1245 if (ContainsInterestingOperators(toStringRef(*Expr)))
1246 return true;
1247 } else if (Optional<uint64_t> Offset = Location->getAsSectionOffset()) {
1248 // Location list.
1249 if (const DWARFDebugLoc *DebugLoc = DCtx.getDebugLoc()) {
1250 if (const DWARFDebugLoc::LocationList *LocList =
1251 DebugLoc->getLocationListAtOffset(*Offset)) {
1252 if (any_of(LocList->Entries, [&](const DWARFDebugLoc::Entry &E) {
1253 return ContainsInterestingOperators({E.Loc.data(), E.Loc.size()});
1254 }))
1255 return true;
1256 }
1257 }
1258 }
1259 return false;
1260}
1261
1262unsigned DWARFVerifier::verifyNameIndexCompleteness(
1263 const DWARFDie &Die, const DWARFDebugNames::NameIndex &NI) {
1264
1265 // First check, if the Die should be indexed. The code follows the DWARF v5
1266 // wording as closely as possible.
1267
1268 // "All non-defining declarations (that is, debugging information entries
1269 // with a DW_AT_declaration attribute) are excluded."
1270 if (Die.find(DW_AT_declaration))
1271 return 0;
1272
1273 // "DW_TAG_namespace debugging information entries without a DW_AT_name
1274 // attribute are included with the name “(anonymous namespace)”.
1275 // All other debugging information entries without a DW_AT_name attribute
1276 // are excluded."
1277 // "If a subprogram or inlined subroutine is included, and has a
1278 // DW_AT_linkage_name attribute, there will be an additional index entry for
1279 // the linkage name."
Jonas Devlieghere6e5c7e62018-09-03 12:12:17 +00001280 auto IncludeLinkageName = Die.getTag() == DW_TAG_subprogram ||
1281 Die.getTag() == DW_TAG_inlined_subroutine;
1282 auto EntryNames = getNames(Die, IncludeLinkageName);
Pavel Labath80827f12018-05-15 13:24:10 +00001283 if (EntryNames.empty())
1284 return 0;
1285
1286 // We deviate from the specification here, which says:
1287 // "The name index must contain an entry for each debugging information entry
1288 // that defines a named subprogram, label, variable, type, or namespace,
1289 // subject to ..."
1290 // Instead whitelisting all TAGs representing a "type" or a "subprogram", to
1291 // make sure we catch any missing items, we instead blacklist all TAGs that we
1292 // know shouldn't be indexed.
1293 switch (Die.getTag()) {
Jonas Devlieghere3a92c5c2018-08-03 12:01:43 +00001294 // Compile units and modules have names but shouldn't be indexed.
Pavel Labath80827f12018-05-15 13:24:10 +00001295 case DW_TAG_compile_unit:
Jonas Devlieghere3a92c5c2018-08-03 12:01:43 +00001296 case DW_TAG_module:
Pavel Labath80827f12018-05-15 13:24:10 +00001297 return 0;
1298
1299 // Function and template parameters are not globally visible, so we shouldn't
1300 // index them.
1301 case DW_TAG_formal_parameter:
1302 case DW_TAG_template_value_parameter:
1303 case DW_TAG_template_type_parameter:
1304 case DW_TAG_GNU_template_parameter_pack:
1305 case DW_TAG_GNU_template_template_param:
1306 return 0;
1307
1308 // Object members aren't globally visible.
1309 case DW_TAG_member:
1310 return 0;
1311
1312 // According to a strict reading of the specification, enumerators should not
1313 // be indexed (and LLVM currently does not do that). However, this causes
1314 // problems for the debuggers, so we may need to reconsider this.
1315 case DW_TAG_enumerator:
1316 return 0;
1317
1318 // Imported declarations should not be indexed according to the specification
1319 // and LLVM currently does not do that.
1320 case DW_TAG_imported_declaration:
1321 return 0;
1322
1323 // "DW_TAG_subprogram, DW_TAG_inlined_subroutine, and DW_TAG_label debugging
1324 // information entries without an address attribute (DW_AT_low_pc,
1325 // DW_AT_high_pc, DW_AT_ranges, or DW_AT_entry_pc) are excluded."
1326 case DW_TAG_subprogram:
1327 case DW_TAG_inlined_subroutine:
1328 case DW_TAG_label:
1329 if (Die.findRecursively(
1330 {DW_AT_low_pc, DW_AT_high_pc, DW_AT_ranges, DW_AT_entry_pc}))
1331 break;
1332 return 0;
1333
1334 // "DW_TAG_variable debugging information entries with a DW_AT_location
1335 // attribute that includes a DW_OP_addr or DW_OP_form_tls_address operator are
1336 // included; otherwise, they are excluded."
1337 //
1338 // LLVM extension: We also add DW_OP_GNU_push_tls_address to this list.
1339 case DW_TAG_variable:
1340 if (isVariableIndexable(Die, DCtx))
1341 break;
1342 return 0;
1343
1344 default:
1345 break;
1346 }
1347
1348 // Now we know that our Die should be present in the Index. Let's check if
1349 // that's the case.
1350 unsigned NumErrors = 0;
Pavel Labath4adc88e2018-06-13 08:14:27 +00001351 uint64_t DieUnitOffset = Die.getOffset() - Die.getDwarfUnit()->getOffset();
Pavel Labath80827f12018-05-15 13:24:10 +00001352 for (StringRef Name : EntryNames) {
Pavel Labath4adc88e2018-06-13 08:14:27 +00001353 if (none_of(NI.equal_range(Name), [&](const DWARFDebugNames::Entry &E) {
1354 return E.getDIEUnitOffset() == DieUnitOffset;
Pavel Labath80827f12018-05-15 13:24:10 +00001355 })) {
1356 error() << formatv("Name Index @ {0:x}: Entry for DIE @ {1:x} ({2}) with "
1357 "name {3} missing.\n",
1358 NI.getUnitOffset(), Die.getOffset(), Die.getTag(),
1359 Name);
1360 ++NumErrors;
1361 }
1362 }
1363 return NumErrors;
1364}
1365
Pavel Labathb136c392018-03-08 15:34:42 +00001366unsigned DWARFVerifier::verifyDebugNames(const DWARFSection &AccelSection,
1367 const DataExtractor &StrData) {
1368 unsigned NumErrors = 0;
1369 DWARFDataExtractor AccelSectionData(DCtx.getDWARFObj(), AccelSection,
1370 DCtx.isLittleEndian(), 0);
1371 DWARFDebugNames AccelTable(AccelSectionData, StrData);
1372
1373 OS << "Verifying .debug_names...\n";
1374
1375 // This verifies that we can read individual name indices and their
1376 // abbreviation tables.
1377 if (Error E = AccelTable.extract()) {
1378 error() << toString(std::move(E)) << '\n';
1379 return 1;
1380 }
1381
1382 NumErrors += verifyDebugNamesCULists(AccelTable);
Pavel Labath906b7772018-03-16 10:02:16 +00001383 for (const auto &NI : AccelTable)
1384 NumErrors += verifyNameIndexBuckets(NI, StrData);
Pavel Labath79cd9422018-03-22 14:50:44 +00001385 for (const auto &NI : AccelTable)
1386 NumErrors += verifyNameIndexAbbrevs(NI);
Pavel Labathb136c392018-03-08 15:34:42 +00001387
Pavel Labathc9f07b02018-04-06 13:34:12 +00001388 // Don't attempt Entry validation if any of the previous checks found errors
1389 if (NumErrors > 0)
1390 return NumErrors;
1391 for (const auto &NI : AccelTable)
Pavel Labathd6ca0632018-06-01 10:33:11 +00001392 for (DWARFDebugNames::NameTableEntry NTE : NI)
1393 NumErrors += verifyNameIndexEntries(NI, NTE);
Pavel Labathc9f07b02018-04-06 13:34:12 +00001394
Pavel Labath80827f12018-05-15 13:24:10 +00001395 if (NumErrors > 0)
1396 return NumErrors;
1397
Paul Robinson143eaea2018-08-01 20:43:47 +00001398 for (const std::unique_ptr<DWARFUnit> &U : DCtx.compile_units()) {
Pavel Labath80827f12018-05-15 13:24:10 +00001399 if (const DWARFDebugNames::NameIndex *NI =
Paul Robinson143eaea2018-08-01 20:43:47 +00001400 AccelTable.getCUNameIndex(U->getOffset())) {
1401 auto *CU = cast<DWARFCompileUnit>(U.get());
Pavel Labath80827f12018-05-15 13:24:10 +00001402 for (const DWARFDebugInfoEntry &Die : CU->dies())
Paul Robinson143eaea2018-08-01 20:43:47 +00001403 NumErrors += verifyNameIndexCompleteness(DWARFDie(CU, &Die), *NI);
Pavel Labath80827f12018-05-15 13:24:10 +00001404 }
1405 }
Pavel Labathb136c392018-03-08 15:34:42 +00001406 return NumErrors;
1407}
1408
Spyridoula Gravanidc635f42017-07-26 00:52:31 +00001409bool DWARFVerifier::handleAccelTables() {
1410 const DWARFObject &D = DCtx.getDWARFObj();
1411 DataExtractor StrData(D.getStringSection(), DCtx.isLittleEndian(), 0);
1412 unsigned NumErrors = 0;
1413 if (!D.getAppleNamesSection().Data.empty())
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +00001414 NumErrors += verifyAppleAccelTable(&D.getAppleNamesSection(), &StrData,
1415 ".apple_names");
Spyridoula Gravanidc635f42017-07-26 00:52:31 +00001416 if (!D.getAppleTypesSection().Data.empty())
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +00001417 NumErrors += verifyAppleAccelTable(&D.getAppleTypesSection(), &StrData,
1418 ".apple_types");
Spyridoula Gravanidc635f42017-07-26 00:52:31 +00001419 if (!D.getAppleNamespacesSection().Data.empty())
Pavel Labath9b36fd22018-01-22 13:17:23 +00001420 NumErrors += verifyAppleAccelTable(&D.getAppleNamespacesSection(), &StrData,
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +00001421 ".apple_namespaces");
Spyridoula Gravanidc635f42017-07-26 00:52:31 +00001422 if (!D.getAppleObjCSection().Data.empty())
Jonas Devlieghere9d7cecf2018-09-17 14:23:47 +00001423 NumErrors += verifyAppleAccelTable(&D.getAppleObjCSection(), &StrData,
1424 ".apple_objc");
Pavel Labathb136c392018-03-08 15:34:42 +00001425
1426 if (!D.getDebugNamesSection().Data.empty())
1427 NumErrors += verifyDebugNames(D.getDebugNamesSection(), StrData);
Spyridoula Gravanidc635f42017-07-26 00:52:31 +00001428 return NumErrors == 0;
Spyridoula Gravanie41823b2017-06-14 00:17:55 +00001429}
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +00001430
Jonas Devlieghere6be1f012018-04-15 08:44:15 +00001431raw_ostream &DWARFVerifier::error() const { return WithColor::error(OS); }
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +00001432
Jonas Devlieghere6be1f012018-04-15 08:44:15 +00001433raw_ostream &DWARFVerifier::warn() const { return WithColor::warning(OS); }
Jonas Devlieghere19fc4d92017-09-29 09:33:31 +00001434
Jonas Devlieghere6be1f012018-04-15 08:44:15 +00001435raw_ostream &DWARFVerifier::note() const { return WithColor::note(OS); }
Jonas Devliegheref1f3e732018-09-19 08:08:13 +00001436
1437raw_ostream &DWARFVerifier::dump(const DWARFDie &Die, unsigned indent) const {
1438 Die.dump(OS, indent, DumpOpts);
1439 return OS;
1440}