blob: ae924cd92b07727d0c625f25b5fe0e09d4786ff8 [file] [log] [blame]
George Rimar47936762016-01-16 00:49:19 +00001//===-- ELFDumper.cpp - ELF-specific dumper ---------------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9///
10/// \file
11/// \brief This file implements the ELF-specific dumper for llvm-readobj.
12///
13//===----------------------------------------------------------------------===//
14
15#include "llvm-readobj.h"
16#include "ARMAttributeParser.h"
17#include "ARMEHABIPrinter.h"
18#include "Error.h"
19#include "ObjDumper.h"
20#include "StackMapPrinter.h"
21#include "StreamWriter.h"
22#include "llvm/ADT/Optional.h"
23#include "llvm/ADT/SmallString.h"
24#include "llvm/ADT/StringExtras.h"
25#include "llvm/Object/ELFObjectFile.h"
26#include "llvm/Support/ARMBuildAttributes.h"
27#include "llvm/Support/Compiler.h"
28#include "llvm/Support/Format.h"
29#include "llvm/Support/MathExtras.h"
30#include "llvm/Support/MipsABIFlags.h"
31#include "llvm/Support/raw_ostream.h"
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +000032#include "llvm/Support/FormattedStream.h"
George Rimar47936762016-01-16 00:49:19 +000033
34using namespace llvm;
35using namespace llvm::object;
36using namespace ELF;
37
38#define LLVM_READOBJ_ENUM_CASE(ns, enum) \
39 case ns::enum: return #enum;
40
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +000041#define ENUM_ENT(enum, altName) \
42 { #enum, altName, ELF::enum }
43
44#define ENUM_ENT_1(enum) \
45 { #enum, #enum, ELF::enum }
46
George Rimar47936762016-01-16 00:49:19 +000047namespace {
48
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +000049template <class ELFT> class DumpStyle;
50
Rafael Espindolace2fbdd2016-02-17 15:38:21 +000051/// Represents a contiguous uniform range in the file. We cannot just create a
52/// range directly because when creating one of these from the .dynamic table
53/// the size, entity size and virtual address are different entries in arbitrary
54/// order (DT_REL, DT_RELSZ, DT_RELENT for example).
Rafael Espindola65a6fd82016-02-16 14:27:33 +000055struct DynRegionInfo {
56 DynRegionInfo() : Addr(nullptr), Size(0), EntSize(0) {}
Rafael Espindolace2fbdd2016-02-17 15:38:21 +000057 DynRegionInfo(const void *A, uint64_t S, uint64_t ES)
58 : Addr(A), Size(S), EntSize(ES) {}
Rafael Espindola65a6fd82016-02-16 14:27:33 +000059 /// \brief Address in current address space.
60 const void *Addr;
61 /// \brief Size in bytes of the region.
62 uint64_t Size;
63 /// \brief Size of each entity in the region.
64 uint64_t EntSize;
Rafael Espindolac70aeda2016-02-16 14:50:39 +000065
66 template <typename Type> iterator_range<const Type *> getAsRange() const {
67 const Type *Start = reinterpret_cast<const Type *>(Addr);
Rafael Espindola944f6552016-02-16 15:16:00 +000068 if (!Start)
69 return {Start, Start};
Rafael Espindolac70aeda2016-02-16 14:50:39 +000070 if (EntSize != sizeof(Type) || Size % EntSize)
71 reportError("Invalid entity size");
72 return {Start, Start + (Size / EntSize)};
73 }
Rafael Espindola65a6fd82016-02-16 14:27:33 +000074};
75
George Rimar47936762016-01-16 00:49:19 +000076template<typename ELFT>
77class ELFDumper : public ObjDumper {
78public:
79 ELFDumper(const ELFFile<ELFT> *Obj, StreamWriter &Writer);
80
81 void printFileHeaders() override;
82 void printSections() override;
83 void printRelocations() override;
84 void printDynamicRelocations() override;
85 void printSymbols() override;
86 void printDynamicSymbols() override;
87 void printUnwindInfo() override;
88
89 void printDynamicTable() override;
90 void printNeededLibraries() override;
91 void printProgramHeaders() override;
92 void printHashTable() override;
93 void printGnuHashTable() override;
94 void printLoadName() override;
95 void printVersionInfo() override;
Hemant Kulkarniab4a46f2016-01-26 19:46:39 +000096 void printGroupSections() override;
George Rimar47936762016-01-16 00:49:19 +000097
98 void printAttributes() override;
99 void printMipsPLTGOT() override;
100 void printMipsABIFlags() override;
101 void printMipsReginfo() override;
102
103 void printStackMap() const override;
104
105private:
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000106 std::unique_ptr<DumpStyle<ELFT>> ELFDumperStyle;
George Rimar47936762016-01-16 00:49:19 +0000107 typedef ELFFile<ELFT> ELFO;
108 typedef typename ELFO::Elf_Shdr Elf_Shdr;
109 typedef typename ELFO::Elf_Sym Elf_Sym;
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000110 typedef typename ELFO::Elf_Sym_Range Elf_Sym_Range;
George Rimar47936762016-01-16 00:49:19 +0000111 typedef typename ELFO::Elf_Dyn Elf_Dyn;
112 typedef typename ELFO::Elf_Dyn_Range Elf_Dyn_Range;
113 typedef typename ELFO::Elf_Rel Elf_Rel;
114 typedef typename ELFO::Elf_Rela Elf_Rela;
Simon Atanasyan72155c32016-01-16 22:40:09 +0000115 typedef typename ELFO::Elf_Rel_Range Elf_Rel_Range;
George Rimar47936762016-01-16 00:49:19 +0000116 typedef typename ELFO::Elf_Rela_Range Elf_Rela_Range;
117 typedef typename ELFO::Elf_Phdr Elf_Phdr;
118 typedef typename ELFO::Elf_Half Elf_Half;
119 typedef typename ELFO::Elf_Hash Elf_Hash;
120 typedef typename ELFO::Elf_GnuHash Elf_GnuHash;
121 typedef typename ELFO::Elf_Ehdr Elf_Ehdr;
122 typedef typename ELFO::Elf_Word Elf_Word;
123 typedef typename ELFO::uintX_t uintX_t;
124 typedef typename ELFO::Elf_Versym Elf_Versym;
125 typedef typename ELFO::Elf_Verneed Elf_Verneed;
126 typedef typename ELFO::Elf_Vernaux Elf_Vernaux;
127 typedef typename ELFO::Elf_Verdef Elf_Verdef;
128 typedef typename ELFO::Elf_Verdaux Elf_Verdaux;
129
Rafael Espindolae17c3f32016-02-17 16:48:00 +0000130 DynRegionInfo checkDRI(DynRegionInfo DRI) {
131 if (DRI.Addr < Obj->base() ||
132 (const uint8_t *)DRI.Addr + DRI.Size > Obj->base() + Obj->getBufSize())
133 error(llvm::object::object_error::parse_failed);
134 return DRI;
135 }
136
137 DynRegionInfo createDRIFrom(const Elf_Phdr *P, uintX_t EntSize) {
138 return checkDRI({Obj->base() + P->p_offset, P->p_filesz, EntSize});
139 }
140
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000141 DynRegionInfo createDRIFrom(const Elf_Shdr *S) {
Rafael Espindolae17c3f32016-02-17 16:48:00 +0000142 return checkDRI({Obj->base() + S->sh_offset, S->sh_size, S->sh_entsize});
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000143 }
144
Michael J. Spencer60d82b22016-02-11 04:59:37 +0000145 void parseDynamicTable(ArrayRef<const Elf_Phdr *> LoadSegments);
146
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000147 void printSymbolsHelper(bool IsDynamic);
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000148 void printSymbol(const Elf_Sym *Symbol, const Elf_Sym *FirstSym,
George Rimar47936762016-01-16 00:49:19 +0000149 StringRef StrTable, bool IsDynamic);
150
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000151 void printDynamicRelocation(Elf_Rela Rel);
152 void printRelocations(const Elf_Shdr *Sec);
153 void printRelocation(Elf_Rela Rel, const Elf_Shdr *SymTab);
George Rimar47936762016-01-16 00:49:19 +0000154 void printValue(uint64_t Type, uint64_t Value);
155
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000156 Elf_Rel_Range dyn_rels() const;
157 Elf_Rela_Range dyn_relas() const;
George Rimar47936762016-01-16 00:49:19 +0000158 StringRef getDynamicString(uint64_t Offset) const;
George Rimar47936762016-01-16 00:49:19 +0000159 StringRef getSymbolVersion(StringRef StrTab, const Elf_Sym *symb,
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000160 bool &IsDefault);
161 void LoadVersionMap();
George Rimar47936762016-01-16 00:49:19 +0000162 void LoadVersionNeeds(const Elf_Shdr *ec) const;
163 void LoadVersionDefs(const Elf_Shdr *sec) const;
164
165 const ELFO *Obj;
Simon Atanasyan72155c32016-01-16 22:40:09 +0000166 DynRegionInfo DynRelRegion;
George Rimar47936762016-01-16 00:49:19 +0000167 DynRegionInfo DynRelaRegion;
Rafael Espindola944f6552016-02-16 15:16:00 +0000168 DynRegionInfo DynPLTRelRegion;
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000169 DynRegionInfo DynSymRegion;
Rafael Espindolae17c3f32016-02-17 16:48:00 +0000170 DynRegionInfo DynamicTable;
George Rimar47936762016-01-16 00:49:19 +0000171 StringRef DynamicStringTable;
George Rimar47936762016-01-16 00:49:19 +0000172 StringRef SOName;
173 const Elf_Hash *HashTable = nullptr;
174 const Elf_GnuHash *GnuHashTable = nullptr;
George Rimar47936762016-01-16 00:49:19 +0000175 const Elf_Shdr *DotSymtabSec = nullptr;
176 ArrayRef<Elf_Word> ShndxTable;
177
178 const Elf_Shdr *dot_gnu_version_sec = nullptr; // .gnu.version
179 const Elf_Shdr *dot_gnu_version_r_sec = nullptr; // .gnu.version_r
180 const Elf_Shdr *dot_gnu_version_d_sec = nullptr; // .gnu.version_d
181
182 // Records for each version index the corresponding Verdef or Vernaux entry.
183 // This is filled the first time LoadVersionMap() is called.
184 class VersionMapEntry : public PointerIntPair<const void *, 1> {
185 public:
186 // If the integer is 0, this is an Elf_Verdef*.
187 // If the integer is 1, this is an Elf_Vernaux*.
188 VersionMapEntry() : PointerIntPair<const void *, 1>(nullptr, 0) {}
189 VersionMapEntry(const Elf_Verdef *verdef)
190 : PointerIntPair<const void *, 1>(verdef, 0) {}
191 VersionMapEntry(const Elf_Vernaux *vernaux)
192 : PointerIntPair<const void *, 1>(vernaux, 1) {}
193 bool isNull() const { return getPointer() == nullptr; }
194 bool isVerdef() const { return !isNull() && getInt() == 0; }
195 bool isVernaux() const { return !isNull() && getInt() == 1; }
196 const Elf_Verdef *getVerdef() const {
197 return isVerdef() ? (const Elf_Verdef *)getPointer() : nullptr;
198 }
199 const Elf_Vernaux *getVernaux() const {
200 return isVernaux() ? (const Elf_Vernaux *)getPointer() : nullptr;
201 }
202 };
203 mutable SmallVector<VersionMapEntry, 16> VersionMap;
204
205public:
206 Elf_Dyn_Range dynamic_table() const {
Rafael Espindolae17c3f32016-02-17 16:48:00 +0000207 return DynamicTable.getAsRange<Elf_Dyn>();
George Rimar47936762016-01-16 00:49:19 +0000208 }
209
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000210 Elf_Sym_Range dynamic_symbols() const {
211 return DynSymRegion.getAsRange<Elf_Sym>();
212 }
213
George Rimar47936762016-01-16 00:49:19 +0000214 std::string getFullSymbolName(const Elf_Sym *Symbol, StringRef StrTable,
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000215 bool IsDynamic);
George Rimar47936762016-01-16 00:49:19 +0000216 const Elf_Shdr *getDotSymtabSec() const { return DotSymtabSec; }
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000217 ArrayRef<Elf_Word> getShndxTable() { return ShndxTable; }
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000218 StringRef getDynamicStringTable() const { return DynamicStringTable; }
George Rimar47936762016-01-16 00:49:19 +0000219};
220
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000221template <typename ELFT> class DumpStyle {
222public:
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000223 virtual void printFileHeaders(const ELFFile<ELFT> *Obj) = 0;
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000224 virtual ~DumpStyle() { }
225};
226
227template <typename ELFT> class GNUStyle : public DumpStyle<ELFT> {
228 formatted_raw_ostream OS;
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000229
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000230public:
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000231 typedef typename ELFFile<ELFT>::Elf_Ehdr Elf_Ehdr;
232 GNUStyle(StreamWriter &W) : OS(W.getOStream()) {}
233 void printFileHeaders(const ELFFile<ELFT> *Obj) override;
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000234
235private:
236 template <typename T, typename TEnum>
237 std::string printEnum(T Value, ArrayRef<EnumEntry<TEnum>> EnumValues) {
238 for (const auto &EnumItem : EnumValues)
239 if (EnumItem.Value == Value)
240 return EnumItem.AltName;
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000241 return to_hexString(Value);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000242 }
243};
244
245template <typename ELFT> class LLVMStyle : public DumpStyle<ELFT> {
246public:
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000247 typedef typename ELFFile<ELFT>::Elf_Ehdr Elf_Ehdr;
248 LLVMStyle(StreamWriter &W) : W(W) {}
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000249
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000250 void printFileHeaders(const ELFFile<ELFT> *Obj) override;
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000251
252private:
253 StreamWriter &W;
254};
255
George Rimar47936762016-01-16 00:49:19 +0000256} // namespace
257
258namespace llvm {
259
260template <class ELFT>
261static std::error_code createELFDumper(const ELFFile<ELFT> *Obj,
262 StreamWriter &Writer,
263 std::unique_ptr<ObjDumper> &Result) {
264 Result.reset(new ELFDumper<ELFT>(Obj, Writer));
265 return readobj_error::success;
266}
267
268std::error_code createELFDumper(const object::ObjectFile *Obj,
269 StreamWriter &Writer,
270 std::unique_ptr<ObjDumper> &Result) {
271 // Little-endian 32-bit
272 if (const ELF32LEObjectFile *ELFObj = dyn_cast<ELF32LEObjectFile>(Obj))
273 return createELFDumper(ELFObj->getELFFile(), Writer, Result);
274
275 // Big-endian 32-bit
276 if (const ELF32BEObjectFile *ELFObj = dyn_cast<ELF32BEObjectFile>(Obj))
277 return createELFDumper(ELFObj->getELFFile(), Writer, Result);
278
279 // Little-endian 64-bit
280 if (const ELF64LEObjectFile *ELFObj = dyn_cast<ELF64LEObjectFile>(Obj))
281 return createELFDumper(ELFObj->getELFFile(), Writer, Result);
282
283 // Big-endian 64-bit
284 if (const ELF64BEObjectFile *ELFObj = dyn_cast<ELF64BEObjectFile>(Obj))
285 return createELFDumper(ELFObj->getELFFile(), Writer, Result);
286
287 return readobj_error::unsupported_obj_file_format;
288}
289
290} // namespace llvm
291
292// Iterate through the versions needed section, and place each Elf_Vernaux
293// in the VersionMap according to its index.
294template <class ELFT>
295void ELFDumper<ELFT>::LoadVersionNeeds(const Elf_Shdr *sec) const {
296 unsigned vn_size = sec->sh_size; // Size of section in bytes
297 unsigned vn_count = sec->sh_info; // Number of Verneed entries
298 const char *sec_start = (const char *)Obj->base() + sec->sh_offset;
299 const char *sec_end = sec_start + vn_size;
300 // The first Verneed entry is at the start of the section.
301 const char *p = sec_start;
302 for (unsigned i = 0; i < vn_count; i++) {
303 if (p + sizeof(Elf_Verneed) > sec_end)
304 report_fatal_error("Section ended unexpectedly while scanning "
305 "version needed records.");
306 const Elf_Verneed *vn = reinterpret_cast<const Elf_Verneed *>(p);
307 if (vn->vn_version != ELF::VER_NEED_CURRENT)
308 report_fatal_error("Unexpected verneed version");
309 // Iterate through the Vernaux entries
310 const char *paux = p + vn->vn_aux;
311 for (unsigned j = 0; j < vn->vn_cnt; j++) {
312 if (paux + sizeof(Elf_Vernaux) > sec_end)
313 report_fatal_error("Section ended unexpected while scanning auxiliary "
314 "version needed records.");
315 const Elf_Vernaux *vna = reinterpret_cast<const Elf_Vernaux *>(paux);
316 size_t index = vna->vna_other & ELF::VERSYM_VERSION;
317 if (index >= VersionMap.size())
318 VersionMap.resize(index + 1);
319 VersionMap[index] = VersionMapEntry(vna);
320 paux += vna->vna_next;
321 }
322 p += vn->vn_next;
323 }
324}
325
326// Iterate through the version definitions, and place each Elf_Verdef
327// in the VersionMap according to its index.
328template <class ELFT>
329void ELFDumper<ELFT>::LoadVersionDefs(const Elf_Shdr *sec) const {
330 unsigned vd_size = sec->sh_size; // Size of section in bytes
331 unsigned vd_count = sec->sh_info; // Number of Verdef entries
332 const char *sec_start = (const char *)Obj->base() + sec->sh_offset;
333 const char *sec_end = sec_start + vd_size;
334 // The first Verdef entry is at the start of the section.
335 const char *p = sec_start;
336 for (unsigned i = 0; i < vd_count; i++) {
337 if (p + sizeof(Elf_Verdef) > sec_end)
338 report_fatal_error("Section ended unexpectedly while scanning "
339 "version definitions.");
340 const Elf_Verdef *vd = reinterpret_cast<const Elf_Verdef *>(p);
341 if (vd->vd_version != ELF::VER_DEF_CURRENT)
342 report_fatal_error("Unexpected verdef version");
343 size_t index = vd->vd_ndx & ELF::VERSYM_VERSION;
344 if (index >= VersionMap.size())
345 VersionMap.resize(index + 1);
346 VersionMap[index] = VersionMapEntry(vd);
347 p += vd->vd_next;
348 }
349}
350
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000351template <class ELFT> void ELFDumper<ELFT>::LoadVersionMap() {
George Rimar47936762016-01-16 00:49:19 +0000352 // If there is no dynamic symtab or version table, there is nothing to do.
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000353 if (!DynSymRegion.Addr || !dot_gnu_version_sec)
George Rimar47936762016-01-16 00:49:19 +0000354 return;
355
356 // Has the VersionMap already been loaded?
357 if (VersionMap.size() > 0)
358 return;
359
360 // The first two version indexes are reserved.
361 // Index 0 is LOCAL, index 1 is GLOBAL.
362 VersionMap.push_back(VersionMapEntry());
363 VersionMap.push_back(VersionMapEntry());
364
365 if (dot_gnu_version_d_sec)
366 LoadVersionDefs(dot_gnu_version_d_sec);
367
368 if (dot_gnu_version_r_sec)
369 LoadVersionNeeds(dot_gnu_version_r_sec);
370}
371
372
373template <typename ELFO, class ELFT>
374static void printVersionSymbolSection(ELFDumper<ELFT> *Dumper,
375 const ELFO *Obj,
376 const typename ELFO::Elf_Shdr *Sec,
377 StreamWriter &W) {
378 DictScope SS(W, "Version symbols");
379 if (!Sec)
380 return;
Rafael Espindolaf04f1842016-02-17 16:21:49 +0000381 StringRef Name = unwrapOrError(Obj->getSectionName(Sec));
George Rimar47936762016-01-16 00:49:19 +0000382 W.printNumber("Section Name", Name, Sec->sh_name);
383 W.printHex("Address", Sec->sh_addr);
384 W.printHex("Offset", Sec->sh_offset);
385 W.printNumber("Link", Sec->sh_link);
386
George Rimar47936762016-01-16 00:49:19 +0000387 const uint8_t *P = (const uint8_t *)Obj->base() + Sec->sh_offset;
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000388 StringRef StrTable = Dumper->getDynamicStringTable();
George Rimar47936762016-01-16 00:49:19 +0000389
390 // Same number of entries in the dynamic symbol table (DT_SYMTAB).
391 ListScope Syms(W, "Symbols");
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000392 for (const typename ELFO::Elf_Sym &Sym : Dumper->dynamic_symbols()) {
George Rimar47936762016-01-16 00:49:19 +0000393 DictScope S(W, "Symbol");
394 std::string FullSymbolName =
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000395 Dumper->getFullSymbolName(&Sym, StrTable, true /* IsDynamic */);
George Rimar47936762016-01-16 00:49:19 +0000396 W.printNumber("Version", *P);
397 W.printString("Name", FullSymbolName);
398 P += sizeof(typename ELFO::Elf_Half);
399 }
400}
401
402template <typename ELFO, class ELFT>
403static void printVersionDefinitionSection(ELFDumper<ELFT> *Dumper,
404 const ELFO *Obj,
405 const typename ELFO::Elf_Shdr *Sec,
406 StreamWriter &W) {
407 DictScope SD(W, "Version definition");
408 if (!Sec)
409 return;
Rafael Espindolaf04f1842016-02-17 16:21:49 +0000410 StringRef Name = unwrapOrError(Obj->getSectionName(Sec));
George Rimar47936762016-01-16 00:49:19 +0000411 W.printNumber("Section Name", Name, Sec->sh_name);
412 W.printHex("Address", Sec->sh_addr);
413 W.printHex("Offset", Sec->sh_offset);
414 W.printNumber("Link", Sec->sh_link);
415
416 unsigned verdef_entries = 0;
417 // The number of entries in the section SHT_GNU_verdef
418 // is determined by DT_VERDEFNUM tag.
419 for (const typename ELFO::Elf_Dyn &Dyn : Dumper->dynamic_table()) {
420 if (Dyn.d_tag == DT_VERDEFNUM)
421 verdef_entries = Dyn.d_un.d_val;
422 }
423 const uint8_t *SecStartAddress =
424 (const uint8_t *)Obj->base() + Sec->sh_offset;
425 const uint8_t *SecEndAddress = SecStartAddress + Sec->sh_size;
426 const uint8_t *P = SecStartAddress;
Rafael Espindolaf04f1842016-02-17 16:21:49 +0000427 const typename ELFO::Elf_Shdr *StrTab =
428 unwrapOrError(Obj->getSection(Sec->sh_link));
George Rimar47936762016-01-16 00:49:19 +0000429
430 ListScope Entries(W, "Entries");
431 for (unsigned i = 0; i < verdef_entries; ++i) {
432 if (P + sizeof(typename ELFO::Elf_Verdef) > SecEndAddress)
433 report_fatal_error("invalid offset in the section");
434 auto *VD = reinterpret_cast<const typename ELFO::Elf_Verdef *>(P);
435 DictScope Entry(W, "Entry");
436 W.printHex("Offset", (uintptr_t)P - (uintptr_t)SecStartAddress);
437 W.printNumber("Rev", VD->vd_version);
438 // FIXME: print something more readable.
439 W.printNumber("Flags", VD->vd_flags);
440 W.printNumber("Index", VD->vd_ndx);
441 W.printNumber("Cnt", VD->vd_cnt);
Rafael Espindolaf04f1842016-02-17 16:21:49 +0000442 W.printString("Name",
443 StringRef((const char *)(Obj->base() + StrTab->sh_offset +
444 VD->getAux()->vda_name)));
George Rimar47936762016-01-16 00:49:19 +0000445 P += VD->vd_next;
446 }
447}
448
449template <typename ELFT> void ELFDumper<ELFT>::printVersionInfo() {
450 // Dump version symbol section.
451 printVersionSymbolSection(this, Obj, dot_gnu_version_sec, W);
452
453 // Dump version definition section.
454 printVersionDefinitionSection(this, Obj, dot_gnu_version_d_sec, W);
455}
456
457template <typename ELFT>
458StringRef ELFDumper<ELFT>::getSymbolVersion(StringRef StrTab,
459 const Elf_Sym *symb,
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000460 bool &IsDefault) {
George Rimar47936762016-01-16 00:49:19 +0000461 // This is a dynamic symbol. Look in the GNU symbol version table.
462 if (!dot_gnu_version_sec) {
463 // No version table.
464 IsDefault = false;
465 return StringRef("");
466 }
467
468 // Determine the position in the symbol table of this entry.
469 size_t entry_index = (reinterpret_cast<uintptr_t>(symb) -
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000470 reinterpret_cast<uintptr_t>(DynSymRegion.Addr)) /
George Rimar47936762016-01-16 00:49:19 +0000471 sizeof(Elf_Sym);
472
473 // Get the corresponding version index entry
474 const Elf_Versym *vs =
475 Obj->template getEntry<Elf_Versym>(dot_gnu_version_sec, entry_index);
476 size_t version_index = vs->vs_index & ELF::VERSYM_VERSION;
477
478 // Special markers for unversioned symbols.
479 if (version_index == ELF::VER_NDX_LOCAL ||
480 version_index == ELF::VER_NDX_GLOBAL) {
481 IsDefault = false;
482 return StringRef("");
483 }
484
485 // Lookup this symbol in the version table
486 LoadVersionMap();
487 if (version_index >= VersionMap.size() || VersionMap[version_index].isNull())
488 reportError("Invalid version entry");
489 const VersionMapEntry &entry = VersionMap[version_index];
490
491 // Get the version name string
492 size_t name_offset;
493 if (entry.isVerdef()) {
494 // The first Verdaux entry holds the name.
495 name_offset = entry.getVerdef()->getAux()->vda_name;
496 IsDefault = !(vs->vs_index & ELF::VERSYM_HIDDEN);
497 } else {
498 name_offset = entry.getVernaux()->vna_name;
499 IsDefault = false;
500 }
501 if (name_offset >= StrTab.size())
502 reportError("Invalid string offset");
503 return StringRef(StrTab.data() + name_offset);
504}
505
506template <typename ELFT>
507std::string ELFDumper<ELFT>::getFullSymbolName(const Elf_Sym *Symbol,
508 StringRef StrTable,
Hemant Kulkarnide1152f2016-02-25 20:47:07 +0000509 bool IsDynamic) {
Rafael Espindolaf04f1842016-02-17 16:21:49 +0000510 StringRef SymbolName = unwrapOrError(Symbol->getName(StrTable));
George Rimar47936762016-01-16 00:49:19 +0000511 if (!IsDynamic)
512 return SymbolName;
513
514 std::string FullSymbolName(SymbolName);
515
516 bool IsDefault;
517 StringRef Version = getSymbolVersion(StrTable, &*Symbol, IsDefault);
518 FullSymbolName += (IsDefault ? "@@" : "@");
519 FullSymbolName += Version;
520 return FullSymbolName;
521}
522
523template <typename ELFO>
524static void
525getSectionNameIndex(const ELFO &Obj, const typename ELFO::Elf_Sym *Symbol,
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000526 const typename ELFO::Elf_Sym *FirstSym,
George Rimar47936762016-01-16 00:49:19 +0000527 ArrayRef<typename ELFO::Elf_Word> ShndxTable,
528 StringRef &SectionName, unsigned &SectionIndex) {
529 SectionIndex = Symbol->st_shndx;
530 if (Symbol->isUndefined())
531 SectionName = "Undefined";
532 else if (Symbol->isProcessorSpecific())
533 SectionName = "Processor Specific";
534 else if (Symbol->isOSSpecific())
535 SectionName = "Operating System Specific";
536 else if (Symbol->isAbsolute())
537 SectionName = "Absolute";
538 else if (Symbol->isCommon())
539 SectionName = "Common";
540 else if (Symbol->isReserved() && SectionIndex != SHN_XINDEX)
541 SectionName = "Reserved";
542 else {
543 if (SectionIndex == SHN_XINDEX)
544 SectionIndex =
Rafael Espindolace2fbdd2016-02-17 15:38:21 +0000545 Obj.getExtendedSymbolTableIndex(Symbol, FirstSym, ShndxTable);
Rafael Espindolaf04f1842016-02-17 16:21:49 +0000546 const typename ELFO::Elf_Shdr *Sec =
547 unwrapOrError(Obj.getSection(SectionIndex));
548 SectionName = unwrapOrError(Obj.getSectionName(Sec));
George Rimar47936762016-01-16 00:49:19 +0000549 }
550}
551
552template <class ELFO>
Simon Atanasyancb1175c2016-02-09 18:45:35 +0000553static const typename ELFO::Elf_Shdr *
554findNotEmptySectionByAddress(const ELFO *Obj, uint64_t Addr) {
George Rimar47936762016-01-16 00:49:19 +0000555 for (const auto &Shdr : Obj->sections())
Simon Atanasyancb1175c2016-02-09 18:45:35 +0000556 if (Shdr.sh_addr == Addr && Shdr.sh_size > 0)
George Rimar47936762016-01-16 00:49:19 +0000557 return &Shdr;
558 return nullptr;
559}
560
561template <class ELFO>
562static const typename ELFO::Elf_Shdr *findSectionByName(const ELFO &Obj,
563 StringRef Name) {
564 for (const auto &Shdr : Obj.sections()) {
Rafael Espindolaf04f1842016-02-17 16:21:49 +0000565 if (Name == unwrapOrError(Obj.getSectionName(&Shdr)))
George Rimar47936762016-01-16 00:49:19 +0000566 return &Shdr;
567 }
568 return nullptr;
569}
570
571static const EnumEntry<unsigned> ElfClass[] = {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000572 {"None", "none", ELF::ELFCLASSNONE},
573 {"32-bit", "ELF32", ELF::ELFCLASS32},
574 {"64-bit", "ELF64", ELF::ELFCLASS64},
George Rimar47936762016-01-16 00:49:19 +0000575};
576
577static const EnumEntry<unsigned> ElfDataEncoding[] = {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000578 {"None", "none", ELF::ELFDATANONE},
579 {"LittleEndian", "2's complement, little endian", ELF::ELFDATA2LSB},
580 {"BigEndian", "2's complement, big endian", ELF::ELFDATA2MSB},
George Rimar47936762016-01-16 00:49:19 +0000581};
582
583static const EnumEntry<unsigned> ElfObjectFileType[] = {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000584 {"None", "NONE (none)", ELF::ET_NONE},
585 {"Relocatable", "REL (Relocatable file)", ELF::ET_REL},
586 {"Executable", "EXEC (Executable file)", ELF::ET_EXEC},
587 {"SharedObject", "DYN (Shared object file)", ELF::ET_DYN},
588 {"Core", "CORE (Core file)", ELF::ET_CORE},
George Rimar47936762016-01-16 00:49:19 +0000589};
590
591static const EnumEntry<unsigned> ElfOSABI[] = {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000592 {"SystemV", "UNIX - System V", ELF::ELFOSABI_NONE},
593 {"HPUX", "UNIX - HP-UX", ELF::ELFOSABI_HPUX},
594 {"NetBSD", "UNIX - NetBSD", ELF::ELFOSABI_NETBSD},
595 {"GNU/Linux", "UNIX - GNU", ELF::ELFOSABI_LINUX},
596 {"GNU/Hurd", "GNU/Hurd", ELF::ELFOSABI_HURD},
597 {"Solaris", "UNIX - Solaris", ELF::ELFOSABI_SOLARIS},
598 {"AIX", "UNIX - AIX", ELF::ELFOSABI_AIX},
599 {"IRIX", "UNIX - IRIX", ELF::ELFOSABI_IRIX},
600 {"FreeBSD", "UNIX - FreeBSD", ELF::ELFOSABI_FREEBSD},
601 {"TRU64", "UNIX - TRU64", ELF::ELFOSABI_TRU64},
602 {"Modesto", "Novell - Modesto", ELF::ELFOSABI_MODESTO},
603 {"OpenBSD", "UNIX - OpenBSD", ELF::ELFOSABI_OPENBSD},
604 {"OpenVMS", "VMS - OpenVMS", ELF::ELFOSABI_OPENVMS},
605 {"NSK", "HP - Non-Stop Kernel", ELF::ELFOSABI_NSK},
606 {"AROS", "AROS", ELF::ELFOSABI_AROS},
607 {"FenixOS", "FenixOS", ELF::ELFOSABI_FENIXOS},
608 {"CloudABI", "CloudABI", ELF::ELFOSABI_CLOUDABI},
609 {"C6000_ELFABI", "Bare-metal C6000", ELF::ELFOSABI_C6000_ELFABI},
610 {"C6000_LINUX", "Linux C6000", ELF::ELFOSABI_C6000_LINUX},
611 {"ARM", "ARM", ELF::ELFOSABI_ARM},
612 {"Standalone", "Standalone App", ELF::ELFOSABI_STANDALONE}
George Rimar47936762016-01-16 00:49:19 +0000613};
614
615static const EnumEntry<unsigned> ElfMachineType[] = {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000616 ENUM_ENT(EM_NONE, "None"),
617 ENUM_ENT(EM_M32, "WE32100"),
618 ENUM_ENT(EM_SPARC, "Sparc"),
619 ENUM_ENT(EM_386, "Intel 80386"),
620 ENUM_ENT(EM_68K, "MC68000"),
621 ENUM_ENT(EM_88K, "MC88000"),
622 ENUM_ENT(EM_IAMCU, "EM_IAMCU"),
623 ENUM_ENT(EM_860, "Intel 80860"),
624 ENUM_ENT(EM_MIPS, "MIPS R3000"),
625 ENUM_ENT(EM_S370, "IBM System/370"),
626 ENUM_ENT(EM_MIPS_RS3_LE, "MIPS R3000 little-endian"),
627 ENUM_ENT(EM_PARISC, "HPPA"),
628 ENUM_ENT(EM_VPP500, "Fujitsu VPP500"),
629 ENUM_ENT(EM_SPARC32PLUS, "Sparc v8+"),
630 ENUM_ENT(EM_960, "Intel 80960"),
631 ENUM_ENT(EM_PPC, "PowerPC"),
632 ENUM_ENT(EM_PPC64, "PowerPC64"),
633 ENUM_ENT(EM_S390, "IBM S/390"),
634 ENUM_ENT(EM_SPU, "SPU"),
635 ENUM_ENT(EM_V800, "NEC V800 series"),
636 ENUM_ENT(EM_FR20, "Fujistsu FR20"),
637 ENUM_ENT(EM_RH32, "TRW RH-32"),
638 ENUM_ENT(EM_RCE, "Motorola RCE"),
639 ENUM_ENT(EM_ARM, "ARM"),
640 ENUM_ENT(EM_ALPHA, "EM_ALPHA"),
641 ENUM_ENT(EM_SH, "Hitachi SH"),
642 ENUM_ENT(EM_SPARCV9, "Sparc v9"),
643 ENUM_ENT(EM_TRICORE, "Siemens Tricore"),
644 ENUM_ENT(EM_ARC, "ARC"),
645 ENUM_ENT(EM_H8_300, "Hitachi H8/300"),
646 ENUM_ENT(EM_H8_300H, "Hitachi H8/300H"),
647 ENUM_ENT(EM_H8S, "Hitachi H8S"),
648 ENUM_ENT(EM_H8_500, "Hitachi H8/500"),
649 ENUM_ENT(EM_IA_64, "Intel IA-64"),
650 ENUM_ENT(EM_MIPS_X, "Stanford MIPS-X"),
651 ENUM_ENT(EM_COLDFIRE, "Motorola Coldfire"),
652 ENUM_ENT(EM_68HC12, "Motorola MC68HC12 Microcontroller"),
653 ENUM_ENT(EM_MMA, "Fujitsu Multimedia Accelerator"),
654 ENUM_ENT(EM_PCP, "Siemens PCP"),
655 ENUM_ENT(EM_NCPU, "Sony nCPU embedded RISC processor"),
656 ENUM_ENT(EM_NDR1, "Denso NDR1 microprocesspr"),
657 ENUM_ENT(EM_STARCORE, "Motorola Star*Core processor"),
658 ENUM_ENT(EM_ME16, "Toyota ME16 processor"),
659 ENUM_ENT(EM_ST100, "STMicroelectronics ST100 processor"),
660 ENUM_ENT(EM_TINYJ, "Advanced Logic Corp. TinyJ embedded processor"),
661 ENUM_ENT(EM_X86_64, "Advanced Micro Devices X86-64"),
662 ENUM_ENT(EM_PDSP, "Sony DSP processor"),
663 ENUM_ENT(EM_PDP10, "Digital Equipment Corp. PDP-10"),
664 ENUM_ENT(EM_PDP11, "Digital Equipment Corp. PDP-11"),
665 ENUM_ENT(EM_FX66, "Siemens FX66 microcontroller"),
666 ENUM_ENT(EM_ST9PLUS, "STMicroelectronics ST9+ 8/16 bit microcontroller"),
667 ENUM_ENT(EM_ST7, "STMicroelectronics ST7 8-bit microcontroller"),
668 ENUM_ENT(EM_68HC16, "Motorola MC68HC16 Microcontroller"),
669 ENUM_ENT(EM_68HC11, "Motorola MC68HC11 Microcontroller"),
670 ENUM_ENT(EM_68HC08, "Motorola MC68HC08 Microcontroller"),
671 ENUM_ENT(EM_68HC05, "Motorola MC68HC05 Microcontroller"),
672 ENUM_ENT(EM_SVX, "Silicon Graphics SVx"),
673 ENUM_ENT(EM_ST19, "STMicroelectronics ST19 8-bit microcontroller"),
674 ENUM_ENT(EM_VAX, "Digital VAX"),
675 ENUM_ENT(EM_CRIS, "Axis Communications 32-bit embedded processor"),
676 ENUM_ENT(EM_JAVELIN, "Infineon Technologies 32-bit embedded cpu"),
677 ENUM_ENT(EM_FIREPATH, "Element 14 64-bit DSP processor"),
678 ENUM_ENT(EM_ZSP, "LSI Logic's 16-bit DSP processor"),
679 ENUM_ENT(EM_MMIX, "Donald Knuth's educational 64-bit processor"),
680 ENUM_ENT(EM_HUANY, "Harvard Universitys's machine-independent object format"),
681 ENUM_ENT(EM_PRISM, "Vitesse Prism"),
682 ENUM_ENT(EM_AVR, "Atmel AVR 8-bit microcontroller"),
683 ENUM_ENT(EM_FR30, "Fujitsu FR30"),
684 ENUM_ENT(EM_D10V, "Mitsubishi D10V"),
685 ENUM_ENT(EM_D30V, "Mitsubishi D30V"),
686 ENUM_ENT(EM_V850, "NEC v850"),
687 ENUM_ENT(EM_M32R, "Renesas M32R (formerly Mitsubishi M32r)"),
688 ENUM_ENT(EM_MN10300, "Matsushita MN10300"),
689 ENUM_ENT(EM_MN10200, "Matsushita MN10200"),
690 ENUM_ENT(EM_PJ, "picoJava"),
691 ENUM_ENT(EM_OPENRISC, "OpenRISC 32-bit embedded processor"),
692 ENUM_ENT(EM_ARC_COMPACT, "EM_ARC_COMPACT"),
693 ENUM_ENT(EM_XTENSA, "Tensilica Xtensa Processor"),
694 ENUM_ENT(EM_VIDEOCORE, "Alphamosaic VideoCore processor"),
695 ENUM_ENT(EM_TMM_GPP, "Thompson Multimedia General Purpose Processor"),
696 ENUM_ENT(EM_NS32K, "National Semiconductor 32000 series"),
697 ENUM_ENT(EM_TPC, "Tenor Network TPC processor"),
698 ENUM_ENT(EM_SNP1K, "EM_SNP1K"),
699 ENUM_ENT(EM_ST200, "STMicroelectronics ST200 microcontroller"),
700 ENUM_ENT(EM_IP2K, "Ubicom IP2xxx 8-bit microcontrollers"),
701 ENUM_ENT(EM_MAX, "MAX Processor"),
702 ENUM_ENT(EM_CR, "National Semiconductor CompactRISC"),
703 ENUM_ENT(EM_F2MC16, "Fujitsu F2MC16"),
704 ENUM_ENT(EM_MSP430, "Texas Instruments msp430 microcontroller"),
705 ENUM_ENT(EM_BLACKFIN, "Analog Devices Blackfin"),
706 ENUM_ENT(EM_SE_C33, "S1C33 Family of Seiko Epson processors"),
707 ENUM_ENT(EM_SEP, "Sharp embedded microprocessor"),
708 ENUM_ENT(EM_ARCA, "Arca RISC microprocessor"),
709 ENUM_ENT(EM_UNICORE, "Unicore"),
710 ENUM_ENT(EM_EXCESS, "eXcess 16/32/64-bit configurable embedded CPU"),
711 ENUM_ENT(EM_DXP, "Icera Semiconductor Inc. Deep Execution Processor"),
712 ENUM_ENT(EM_ALTERA_NIOS2, "Altera Nios"),
713 ENUM_ENT(EM_CRX, "National Semiconductor CRX microprocessor"),
714 ENUM_ENT(EM_XGATE, "Motorola XGATE embedded processor"),
715 ENUM_ENT(EM_C166, "Infineon Technologies xc16x"),
716 ENUM_ENT(EM_M16C, "Renesas M16C"),
717 ENUM_ENT(EM_DSPIC30F, "Microchip Technology dsPIC30F Digital Signal Controller"),
718 ENUM_ENT(EM_CE, "Freescale Communication Engine RISC core"),
719 ENUM_ENT(EM_M32C, "Renesas M32C"),
720 ENUM_ENT(EM_TSK3000, "Altium TSK3000 core"),
721 ENUM_ENT(EM_RS08, "Freescale RS08 embedded processor"),
722 ENUM_ENT(EM_SHARC, "EM_SHARC"),
723 ENUM_ENT(EM_ECOG2, "Cyan Technology eCOG2 microprocessor"),
724 ENUM_ENT(EM_SCORE7, "SUNPLUS S+Core"),
725 ENUM_ENT(EM_DSP24, "New Japan Radio (NJR) 24-bit DSP Processor"),
726 ENUM_ENT(EM_VIDEOCORE3, "Broadcom VideoCore III processor"),
727 ENUM_ENT(EM_LATTICEMICO32, "Lattice Mico32"),
728 ENUM_ENT(EM_SE_C17, "Seiko Epson C17 family"),
729 ENUM_ENT(EM_TI_C6000, "Texas Instruments TMS320C6000 DSP family"),
730 ENUM_ENT(EM_TI_C2000, "Texas Instruments TMS320C2000 DSP family"),
731 ENUM_ENT(EM_TI_C5500, "Texas Instruments TMS320C55x DSP family"),
732 ENUM_ENT(EM_MMDSP_PLUS, "STMicroelectronics 64bit VLIW Data Signal Processor"),
733 ENUM_ENT(EM_CYPRESS_M8C, "Cypress M8C microprocessor"),
734 ENUM_ENT(EM_R32C, "Renesas R32C series microprocessors"),
735 ENUM_ENT(EM_TRIMEDIA, "NXP Semiconductors TriMedia architecture family"),
736 ENUM_ENT(EM_HEXAGON, "Qualcomm Hexagon"),
737 ENUM_ENT(EM_8051, "Intel 8051 and variants"),
738 ENUM_ENT(EM_STXP7X, "STMicroelectronics STxP7x family"),
739 ENUM_ENT(EM_NDS32, "Andes Technology compact code size embedded RISC processor family"),
740 ENUM_ENT(EM_ECOG1, "Cyan Technology eCOG1 microprocessor"),
741 ENUM_ENT(EM_ECOG1X, "Cyan Technology eCOG1X family"),
742 ENUM_ENT(EM_MAXQ30, "Dallas Semiconductor MAXQ30 Core microcontrollers"),
743 ENUM_ENT(EM_XIMO16, "New Japan Radio (NJR) 16-bit DSP Processor"),
744 ENUM_ENT(EM_MANIK, "M2000 Reconfigurable RISC Microprocessor"),
745 ENUM_ENT(EM_CRAYNV2, "Cray Inc. NV2 vector architecture"),
746 ENUM_ENT(EM_RX, "Renesas RX"),
747 ENUM_ENT(EM_METAG, "Imagination Technologies Meta processor architecture"),
748 ENUM_ENT(EM_MCST_ELBRUS, "MCST Elbrus general purpose hardware architecture"),
749 ENUM_ENT(EM_ECOG16, "Cyan Technology eCOG16 family"),
750 ENUM_ENT(EM_CR16, "Xilinx MicroBlaze"),
751 ENUM_ENT(EM_ETPU, "Freescale Extended Time Processing Unit"),
752 ENUM_ENT(EM_SLE9X, "Infineon Technologies SLE9X core"),
753 ENUM_ENT(EM_L10M, "EM_L10M"),
754 ENUM_ENT(EM_K10M, "EM_K10M"),
755 ENUM_ENT(EM_AARCH64, "AArch64"),
756 ENUM_ENT(EM_AVR32, "Atmel AVR 8-bit microcontroller"),
757 ENUM_ENT(EM_STM8, "STMicroeletronics STM8 8-bit microcontroller"),
758 ENUM_ENT(EM_TILE64, "Tilera TILE64 multicore architecture family"),
759 ENUM_ENT(EM_TILEPRO, "Tilera TILEPro multicore architecture family"),
760 ENUM_ENT(EM_CUDA, "NVIDIA CUDA architecture"),
761 ENUM_ENT(EM_TILEGX, "Tilera TILE-Gx multicore architecture family"),
762 ENUM_ENT(EM_CLOUDSHIELD, "EM_CLOUDSHIELD"),
763 ENUM_ENT(EM_COREA_1ST, "EM_COREA_1ST"),
764 ENUM_ENT(EM_COREA_2ND, "EM_COREA_2ND"),
765 ENUM_ENT(EM_ARC_COMPACT2, "EM_ARC_COMPACT2"),
766 ENUM_ENT(EM_OPEN8, "EM_OPEN8"),
767 ENUM_ENT(EM_RL78, "Renesas RL78"),
768 ENUM_ENT(EM_VIDEOCORE5, "Broadcom VideoCore V processor"),
769 ENUM_ENT(EM_78KOR, "EM_78KOR"),
770 ENUM_ENT(EM_56800EX, "EM_56800EX"),
771 ENUM_ENT(EM_AMDGPU, "EM_AMDGPU"),
772 ENUM_ENT(EM_WEBASSEMBLY, "EM_WEBASSEMBLY")
George Rimar47936762016-01-16 00:49:19 +0000773};
774
775static const EnumEntry<unsigned> ElfSymbolBindings[] = {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000776 {"Local", "LOCAL", ELF::STB_LOCAL},
777 {"Global", "GLOBAL", ELF::STB_GLOBAL},
778 {"Weak", "WEAK", ELF::STB_WEAK},
779 {"Unique", "UNIQUE", ELF::STB_GNU_UNIQUE}};
George Rimar47936762016-01-16 00:49:19 +0000780
781static const EnumEntry<unsigned> ElfSymbolTypes[] = {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000782 {"None", "NOTYPE", ELF::STT_NOTYPE},
783 {"Object", "OBJECT", ELF::STT_OBJECT},
784 {"Function", "FUNCTION", ELF::STT_FUNC},
785 {"Section", "SECTION", ELF::STT_SECTION},
786 {"File", "FILE", ELF::STT_FILE},
787 {"Common", "COMMON", ELF::STT_COMMON},
788 {"TLS", "TLS", ELF::STT_TLS},
789 {"GNU_IFunc", "IFUNC", ELF::STT_GNU_IFUNC}};
George Rimar47936762016-01-16 00:49:19 +0000790
791static const EnumEntry<unsigned> AMDGPUSymbolTypes[] = {
792 { "AMDGPU_HSA_KERNEL", ELF::STT_AMDGPU_HSA_KERNEL },
793 { "AMDGPU_HSA_INDIRECT_FUNCTION", ELF::STT_AMDGPU_HSA_INDIRECT_FUNCTION },
794 { "AMDGPU_HSA_METADATA", ELF::STT_AMDGPU_HSA_METADATA }
795};
796
797static const char *getElfSectionType(unsigned Arch, unsigned Type) {
798 switch (Arch) {
799 case ELF::EM_ARM:
800 switch (Type) {
801 LLVM_READOBJ_ENUM_CASE(ELF, SHT_ARM_EXIDX);
802 LLVM_READOBJ_ENUM_CASE(ELF, SHT_ARM_PREEMPTMAP);
803 LLVM_READOBJ_ENUM_CASE(ELF, SHT_ARM_ATTRIBUTES);
804 LLVM_READOBJ_ENUM_CASE(ELF, SHT_ARM_DEBUGOVERLAY);
805 LLVM_READOBJ_ENUM_CASE(ELF, SHT_ARM_OVERLAYSECTION);
806 }
807 case ELF::EM_HEXAGON:
808 switch (Type) { LLVM_READOBJ_ENUM_CASE(ELF, SHT_HEX_ORDERED); }
809 case ELF::EM_X86_64:
810 switch (Type) { LLVM_READOBJ_ENUM_CASE(ELF, SHT_X86_64_UNWIND); }
811 case ELF::EM_MIPS:
812 case ELF::EM_MIPS_RS3_LE:
813 switch (Type) {
814 LLVM_READOBJ_ENUM_CASE(ELF, SHT_MIPS_REGINFO);
815 LLVM_READOBJ_ENUM_CASE(ELF, SHT_MIPS_OPTIONS);
816 LLVM_READOBJ_ENUM_CASE(ELF, SHT_MIPS_ABIFLAGS);
817 }
818 }
819
820 switch (Type) {
821 LLVM_READOBJ_ENUM_CASE(ELF, SHT_NULL );
822 LLVM_READOBJ_ENUM_CASE(ELF, SHT_PROGBITS );
823 LLVM_READOBJ_ENUM_CASE(ELF, SHT_SYMTAB );
824 LLVM_READOBJ_ENUM_CASE(ELF, SHT_STRTAB );
825 LLVM_READOBJ_ENUM_CASE(ELF, SHT_RELA );
826 LLVM_READOBJ_ENUM_CASE(ELF, SHT_HASH );
827 LLVM_READOBJ_ENUM_CASE(ELF, SHT_DYNAMIC );
828 LLVM_READOBJ_ENUM_CASE(ELF, SHT_NOTE );
829 LLVM_READOBJ_ENUM_CASE(ELF, SHT_NOBITS );
830 LLVM_READOBJ_ENUM_CASE(ELF, SHT_REL );
831 LLVM_READOBJ_ENUM_CASE(ELF, SHT_SHLIB );
832 LLVM_READOBJ_ENUM_CASE(ELF, SHT_DYNSYM );
833 LLVM_READOBJ_ENUM_CASE(ELF, SHT_INIT_ARRAY );
834 LLVM_READOBJ_ENUM_CASE(ELF, SHT_FINI_ARRAY );
835 LLVM_READOBJ_ENUM_CASE(ELF, SHT_PREINIT_ARRAY );
836 LLVM_READOBJ_ENUM_CASE(ELF, SHT_GROUP );
837 LLVM_READOBJ_ENUM_CASE(ELF, SHT_SYMTAB_SHNDX );
838 LLVM_READOBJ_ENUM_CASE(ELF, SHT_GNU_ATTRIBUTES );
839 LLVM_READOBJ_ENUM_CASE(ELF, SHT_GNU_HASH );
840 LLVM_READOBJ_ENUM_CASE(ELF, SHT_GNU_verdef );
841 LLVM_READOBJ_ENUM_CASE(ELF, SHT_GNU_verneed );
842 LLVM_READOBJ_ENUM_CASE(ELF, SHT_GNU_versym );
843 default: return "";
844 }
845}
846
Hemant Kulkarniab4a46f2016-01-26 19:46:39 +0000847static const char *getGroupType(uint32_t Flag) {
848 if (Flag & ELF::GRP_COMDAT)
849 return "COMDAT";
850 else
851 return "(unknown)";
852}
853
George Rimar47936762016-01-16 00:49:19 +0000854static const EnumEntry<unsigned> ElfSectionFlags[] = {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +0000855 ENUM_ENT(SHF_WRITE, "W"),
856 ENUM_ENT(SHF_ALLOC, "A"),
857 ENUM_ENT(SHF_EXCLUDE, "E"),
858 ENUM_ENT(SHF_EXECINSTR, "X"),
859 ENUM_ENT(SHF_MERGE, "M"),
860 ENUM_ENT(SHF_STRINGS, "S"),
861 ENUM_ENT(SHF_INFO_LINK, "I"),
862 ENUM_ENT(SHF_LINK_ORDER, "L"),
863 ENUM_ENT(SHF_OS_NONCONFORMING, "o"),
864 ENUM_ENT(SHF_GROUP, "G"),
865 ENUM_ENT(SHF_TLS, "T"),
866 ENUM_ENT_1(XCORE_SHF_CP_SECTION),
867 ENUM_ENT_1(XCORE_SHF_DP_SECTION),
Simon Atanasyan2d0d8532016-01-20 19:15:18 +0000868};
869
870static const EnumEntry<unsigned> ElfAMDGPUSectionFlags[] = {
George Rimar47936762016-01-16 00:49:19 +0000871 LLVM_READOBJ_ENUM_ENT(ELF, SHF_AMDGPU_HSA_GLOBAL),
872 LLVM_READOBJ_ENUM_ENT(ELF, SHF_AMDGPU_HSA_READONLY),
873 LLVM_READOBJ_ENUM_ENT(ELF, SHF_AMDGPU_HSA_CODE),
874 LLVM_READOBJ_ENUM_ENT(ELF, SHF_AMDGPU_HSA_AGENT)
875};
876
Simon Atanasyan2d0d8532016-01-20 19:15:18 +0000877static const EnumEntry<unsigned> ElfHexagonSectionFlags[] = {
878 LLVM_READOBJ_ENUM_ENT(ELF, SHF_HEX_GPREL)
879};
880
881static const EnumEntry<unsigned> ElfMipsSectionFlags[] = {
882 LLVM_READOBJ_ENUM_ENT(ELF, SHF_MIPS_NODUPES),
883 LLVM_READOBJ_ENUM_ENT(ELF, SHF_MIPS_NAMES ),
884 LLVM_READOBJ_ENUM_ENT(ELF, SHF_MIPS_LOCAL ),
885 LLVM_READOBJ_ENUM_ENT(ELF, SHF_MIPS_NOSTRIP),
886 LLVM_READOBJ_ENUM_ENT(ELF, SHF_MIPS_GPREL ),
887 LLVM_READOBJ_ENUM_ENT(ELF, SHF_MIPS_MERGE ),
888 LLVM_READOBJ_ENUM_ENT(ELF, SHF_MIPS_ADDR ),
889 LLVM_READOBJ_ENUM_ENT(ELF, SHF_MIPS_STRING )
890};
891
892static const EnumEntry<unsigned> ElfX86_64SectionFlags[] = {
893 LLVM_READOBJ_ENUM_ENT(ELF, SHF_X86_64_LARGE)
894};
895
George Rimar47936762016-01-16 00:49:19 +0000896static const char *getElfSegmentType(unsigned Arch, unsigned Type) {
897 // Check potentially overlapped processor-specific
898 // program header type.
899 switch (Arch) {
900 case ELF::EM_AMDGPU:
901 switch (Type) {
902 LLVM_READOBJ_ENUM_CASE(ELF, PT_AMDGPU_HSA_LOAD_GLOBAL_PROGRAM);
903 LLVM_READOBJ_ENUM_CASE(ELF, PT_AMDGPU_HSA_LOAD_GLOBAL_AGENT);
904 LLVM_READOBJ_ENUM_CASE(ELF, PT_AMDGPU_HSA_LOAD_READONLY_AGENT);
905 LLVM_READOBJ_ENUM_CASE(ELF, PT_AMDGPU_HSA_LOAD_CODE_AGENT);
906 }
907 case ELF::EM_ARM:
908 switch (Type) {
909 LLVM_READOBJ_ENUM_CASE(ELF, PT_ARM_EXIDX);
910 }
911 case ELF::EM_MIPS:
912 case ELF::EM_MIPS_RS3_LE:
913 switch (Type) {
914 LLVM_READOBJ_ENUM_CASE(ELF, PT_MIPS_REGINFO);
915 LLVM_READOBJ_ENUM_CASE(ELF, PT_MIPS_RTPROC);
916 LLVM_READOBJ_ENUM_CASE(ELF, PT_MIPS_OPTIONS);
917 LLVM_READOBJ_ENUM_CASE(ELF, PT_MIPS_ABIFLAGS);
918 }
919 }
920
921 switch (Type) {
922 LLVM_READOBJ_ENUM_CASE(ELF, PT_NULL );
923 LLVM_READOBJ_ENUM_CASE(ELF, PT_LOAD );
924 LLVM_READOBJ_ENUM_CASE(ELF, PT_DYNAMIC);
925 LLVM_READOBJ_ENUM_CASE(ELF, PT_INTERP );
926 LLVM_READOBJ_ENUM_CASE(ELF, PT_NOTE );
927 LLVM_READOBJ_ENUM_CASE(ELF, PT_SHLIB );
928 LLVM_READOBJ_ENUM_CASE(ELF, PT_PHDR );
929 LLVM_READOBJ_ENUM_CASE(ELF, PT_TLS );
930
931 LLVM_READOBJ_ENUM_CASE(ELF, PT_GNU_EH_FRAME);
932 LLVM_READOBJ_ENUM_CASE(ELF, PT_SUNW_UNWIND);
933
934 LLVM_READOBJ_ENUM_CASE(ELF, PT_GNU_STACK);
935 LLVM_READOBJ_ENUM_CASE(ELF, PT_GNU_RELRO);
936 default: return "";
937 }
938}
939
940static const EnumEntry<unsigned> ElfSegmentFlags[] = {
941 LLVM_READOBJ_ENUM_ENT(ELF, PF_X),
942 LLVM_READOBJ_ENUM_ENT(ELF, PF_W),
943 LLVM_READOBJ_ENUM_ENT(ELF, PF_R)
944};
945
946static const EnumEntry<unsigned> ElfHeaderMipsFlags[] = {
947 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_NOREORDER),
948 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_PIC),
949 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_CPIC),
950 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ABI2),
951 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_32BITMODE),
952 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_FP64),
953 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_NAN2008),
954 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ABI_O32),
955 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ABI_O64),
956 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ABI_EABI32),
957 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ABI_EABI64),
958 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_3900),
959 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_4010),
960 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_4100),
961 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_4650),
962 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_4120),
963 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_4111),
964 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_SB1),
965 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_OCTEON),
966 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_XLR),
967 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_OCTEON2),
968 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_OCTEON3),
969 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_5400),
970 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_5900),
971 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_5500),
972 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_9000),
973 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_LS2E),
974 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_LS2F),
975 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MACH_LS3A),
976 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_MICROMIPS),
977 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_ASE_M16),
978 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_ASE_MDMX),
979 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_1),
980 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_2),
981 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_3),
982 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_4),
983 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_5),
984 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_32),
985 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_64),
986 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_32R2),
987 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_64R2),
988 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_32R6),
989 LLVM_READOBJ_ENUM_ENT(ELF, EF_MIPS_ARCH_64R6)
990};
991
992template <typename ELFT>
993ELFDumper<ELFT>::ELFDumper(const ELFFile<ELFT> *Obj, StreamWriter &Writer)
994 : ObjDumper(Writer), Obj(Obj) {
995
996 SmallVector<const Elf_Phdr *, 4> LoadSegments;
997 for (const Elf_Phdr &Phdr : Obj->program_headers()) {
998 if (Phdr.p_type == ELF::PT_DYNAMIC) {
Rafael Espindolae17c3f32016-02-17 16:48:00 +0000999 DynamicTable = createDRIFrom(&Phdr, sizeof(Elf_Dyn));
George Rimar47936762016-01-16 00:49:19 +00001000 continue;
1001 }
1002 if (Phdr.p_type != ELF::PT_LOAD || Phdr.p_filesz == 0)
1003 continue;
1004 LoadSegments.push_back(&Phdr);
1005 }
1006
Michael J. Spencer37304f12016-02-11 04:59:26 +00001007 for (const Elf_Shdr &Sec : Obj->sections()) {
1008 switch (Sec.sh_type) {
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001009 case ELF::SHT_SYMTAB:
1010 if (DotSymtabSec != nullptr)
1011 reportError("Multilpe SHT_SYMTAB");
1012 DotSymtabSec = &Sec;
1013 break;
1014 case ELF::SHT_DYNSYM:
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00001015 if (DynSymRegion.Size)
Rafael Espindola6009db62016-02-16 14:17:48 +00001016 reportError("Multilpe SHT_DYNSYM");
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00001017 DynSymRegion = createDRIFrom(&Sec);
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001018 break;
Michael J. Spencer1c793ef2016-02-17 22:30:41 +00001019 case ELF::SHT_SYMTAB_SHNDX:
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001020 ShndxTable = unwrapOrError(Obj->getSHNDXTable(Sec));
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001021 break;
Michael J. Spencer37304f12016-02-11 04:59:26 +00001022 case ELF::SHT_GNU_versym:
1023 if (dot_gnu_version_sec != nullptr)
1024 reportError("Multiple SHT_GNU_versym");
1025 dot_gnu_version_sec = &Sec;
1026 break;
1027 case ELF::SHT_GNU_verdef:
1028 if (dot_gnu_version_d_sec != nullptr)
1029 reportError("Multiple SHT_GNU_verdef");
1030 dot_gnu_version_d_sec = &Sec;
1031 break;
1032 case ELF::SHT_GNU_verneed:
1033 if (dot_gnu_version_r_sec != nullptr)
1034 reportError("Multilpe SHT_GNU_verneed");
1035 dot_gnu_version_r_sec = &Sec;
1036 break;
Michael J. Spencer37304f12016-02-11 04:59:26 +00001037 }
1038 }
1039
Michael J. Spencer60d82b22016-02-11 04:59:37 +00001040 parseDynamicTable(LoadSegments);
1041
1042 if (opts::Output == opts::GNU)
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001043 ELFDumperStyle.reset(new GNUStyle<ELFT>(Writer));
Michael J. Spencer60d82b22016-02-11 04:59:37 +00001044 else
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001045 ELFDumperStyle.reset(new LLVMStyle<ELFT>(Writer));
Michael J. Spencer60d82b22016-02-11 04:59:37 +00001046}
1047
1048template <typename ELFT>
1049void ELFDumper<ELFT>::parseDynamicTable(
1050 ArrayRef<const Elf_Phdr *> LoadSegments) {
George Rimar47936762016-01-16 00:49:19 +00001051 auto toMappedAddr = [&](uint64_t VAddr) -> const uint8_t * {
Michael J. Spencer60d82b22016-02-11 04:59:37 +00001052 const Elf_Phdr *const *I = std::upper_bound(
George Rimar47936762016-01-16 00:49:19 +00001053 LoadSegments.begin(), LoadSegments.end(), VAddr, compareAddr<ELFT>);
1054 if (I == LoadSegments.begin())
Rafael Espindola6009db62016-02-16 14:17:48 +00001055 report_fatal_error("Virtual address is not in any segment");
George Rimar47936762016-01-16 00:49:19 +00001056 --I;
1057 const Elf_Phdr &Phdr = **I;
1058 uint64_t Delta = VAddr - Phdr.p_vaddr;
1059 if (Delta >= Phdr.p_filesz)
Rafael Espindola6009db62016-02-16 14:17:48 +00001060 report_fatal_error("Virtual address is not in any segment");
George Rimar47936762016-01-16 00:49:19 +00001061 return Obj->base() + Phdr.p_offset + Delta;
1062 };
1063
1064 uint64_t SONameOffset = 0;
1065 const char *StringTableBegin = nullptr;
1066 uint64_t StringTableSize = 0;
1067 for (const Elf_Dyn &Dyn : dynamic_table()) {
1068 switch (Dyn.d_tag) {
1069 case ELF::DT_HASH:
1070 HashTable =
1071 reinterpret_cast<const Elf_Hash *>(toMappedAddr(Dyn.getPtr()));
1072 break;
1073 case ELF::DT_GNU_HASH:
1074 GnuHashTable =
1075 reinterpret_cast<const Elf_GnuHash *>(toMappedAddr(Dyn.getPtr()));
1076 break;
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001077 case ELF::DT_STRTAB:
1078 StringTableBegin = (const char *)toMappedAddr(Dyn.getPtr());
Simon Atanasyan72155c32016-01-16 22:40:09 +00001079 break;
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001080 case ELF::DT_STRSZ:
1081 StringTableSize = Dyn.getVal();
Simon Atanasyan72155c32016-01-16 22:40:09 +00001082 break;
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001083 case ELF::DT_SYMTAB:
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00001084 DynSymRegion.Addr = toMappedAddr(Dyn.getPtr());
1085 DynSymRegion.EntSize = sizeof(Elf_Sym);
Simon Atanasyan72155c32016-01-16 22:40:09 +00001086 break;
George Rimar47936762016-01-16 00:49:19 +00001087 case ELF::DT_RELA:
1088 DynRelaRegion.Addr = toMappedAddr(Dyn.getPtr());
1089 break;
1090 case ELF::DT_RELASZ:
1091 DynRelaRegion.Size = Dyn.getVal();
1092 break;
1093 case ELF::DT_RELAENT:
1094 DynRelaRegion.EntSize = Dyn.getVal();
1095 break;
1096 case ELF::DT_SONAME:
1097 SONameOffset = Dyn.getVal();
1098 break;
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001099 case ELF::DT_REL:
1100 DynRelRegion.Addr = toMappedAddr(Dyn.getPtr());
George Rimar47936762016-01-16 00:49:19 +00001101 break;
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001102 case ELF::DT_RELSZ:
1103 DynRelRegion.Size = Dyn.getVal();
George Rimar47936762016-01-16 00:49:19 +00001104 break;
Michael J. Spencer94f060c2016-02-11 04:59:32 +00001105 case ELF::DT_RELENT:
1106 DynRelRegion.EntSize = Dyn.getVal();
George Rimar47936762016-01-16 00:49:19 +00001107 break;
Rafael Espindola944f6552016-02-16 15:16:00 +00001108 case ELF::DT_PLTREL:
1109 if (Dyn.getVal() == DT_REL)
1110 DynPLTRelRegion.EntSize = sizeof(Elf_Rel);
1111 else if (Dyn.getVal() == DT_RELA)
1112 DynPLTRelRegion.EntSize = sizeof(Elf_Rela);
1113 else
1114 reportError(Twine("unknown DT_PLTREL value of ") +
1115 Twine((uint64_t)Dyn.getVal()));
1116 break;
1117 case ELF::DT_JMPREL:
1118 DynPLTRelRegion.Addr = toMappedAddr(Dyn.getPtr());
1119 break;
1120 case ELF::DT_PLTRELSZ:
1121 DynPLTRelRegion.Size = Dyn.getVal();
1122 break;
George Rimar47936762016-01-16 00:49:19 +00001123 }
1124 }
1125 if (StringTableBegin)
1126 DynamicStringTable = StringRef(StringTableBegin, StringTableSize);
1127 if (SONameOffset)
1128 SOName = getDynamicString(SONameOffset);
Rafael Espindola6009db62016-02-16 14:17:48 +00001129}
George Rimar47936762016-01-16 00:49:19 +00001130
Rafael Espindola6009db62016-02-16 14:17:48 +00001131template <typename ELFT>
Simon Atanasyan72155c32016-01-16 22:40:09 +00001132typename ELFDumper<ELFT>::Elf_Rel_Range ELFDumper<ELFT>::dyn_rels() const {
Rafael Espindolac70aeda2016-02-16 14:50:39 +00001133 return DynRelRegion.getAsRange<Elf_Rel>();
George Rimar47936762016-01-16 00:49:19 +00001134}
1135
1136template <typename ELFT>
1137typename ELFDumper<ELFT>::Elf_Rela_Range ELFDumper<ELFT>::dyn_relas() const {
Rafael Espindolac70aeda2016-02-16 14:50:39 +00001138 return DynRelaRegion.getAsRange<Elf_Rela>();
George Rimar47936762016-01-16 00:49:19 +00001139}
1140
1141template<class ELFT>
1142void ELFDumper<ELFT>::printFileHeaders() {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00001143 ELFDumperStyle->printFileHeaders(Obj);
George Rimar47936762016-01-16 00:49:19 +00001144}
1145
1146template<class ELFT>
1147void ELFDumper<ELFT>::printSections() {
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001148 ListScope SectionsD(W, "Sections");
1149
1150 int SectionIndex = -1;
1151 for (const Elf_Shdr &Sec : Obj->sections()) {
1152 ++SectionIndex;
1153
1154 StringRef Name = unwrapOrError(Obj->getSectionName(&Sec));
1155
1156 DictScope SectionD(W, "Section");
1157 W.printNumber("Index", SectionIndex);
1158 W.printNumber("Name", Name, Sec.sh_name);
1159 W.printHex("Type",
1160 getElfSectionType(Obj->getHeader()->e_machine, Sec.sh_type),
1161 Sec.sh_type);
1162 std::vector<EnumEntry<unsigned>> SectionFlags(std::begin(ElfSectionFlags),
1163 std::end(ElfSectionFlags));
1164 switch (Obj->getHeader()->e_machine) {
1165 case EM_AMDGPU:
1166 SectionFlags.insert(SectionFlags.end(), std::begin(ElfAMDGPUSectionFlags),
1167 std::end(ElfAMDGPUSectionFlags));
1168 break;
1169 case EM_HEXAGON:
1170 SectionFlags.insert(SectionFlags.end(),
1171 std::begin(ElfHexagonSectionFlags),
1172 std::end(ElfHexagonSectionFlags));
1173 break;
1174 case EM_MIPS:
1175 SectionFlags.insert(SectionFlags.end(), std::begin(ElfMipsSectionFlags),
1176 std::end(ElfMipsSectionFlags));
1177 break;
1178 case EM_X86_64:
1179 SectionFlags.insert(SectionFlags.end(), std::begin(ElfX86_64SectionFlags),
1180 std::end(ElfX86_64SectionFlags));
1181 break;
1182 default:
1183 // Nothing to do.
1184 break;
1185 }
1186 W.printFlags("Flags", Sec.sh_flags, makeArrayRef(SectionFlags));
1187 W.printHex("Address", Sec.sh_addr);
1188 W.printHex("Offset", Sec.sh_offset);
1189 W.printNumber("Size", Sec.sh_size);
1190 W.printNumber("Link", Sec.sh_link);
1191 W.printNumber("Info", Sec.sh_info);
1192 W.printNumber("AddressAlignment", Sec.sh_addralign);
1193 W.printNumber("EntrySize", Sec.sh_entsize);
1194
1195 if (opts::SectionRelocations) {
1196 ListScope D(W, "Relocations");
1197 printRelocations(&Sec);
1198 }
1199
1200 if (opts::SectionSymbols) {
1201 ListScope D(W, "Symbols");
1202 const Elf_Shdr *Symtab = DotSymtabSec;
1203 StringRef StrTable = unwrapOrError(Obj->getStringTableForSymtab(*Symtab));
1204
1205 for (const Elf_Sym &Sym : Obj->symbols(Symtab)) {
1206 const Elf_Shdr *SymSec =
1207 unwrapOrError(Obj->getSection(&Sym, Symtab, ShndxTable));
1208 if (SymSec == &Sec)
1209 printSymbol(&Sym, Obj->symbol_begin(Symtab), StrTable, false);
1210 }
1211 }
1212
1213 if (opts::SectionData && Sec.sh_type != ELF::SHT_NOBITS) {
1214 ArrayRef<uint8_t> Data = unwrapOrError(Obj->getSectionContents(&Sec));
1215 W.printBinaryBlock("SectionData",
1216 StringRef((const char *)Data.data(), Data.size()));
1217 }
1218 }
George Rimar47936762016-01-16 00:49:19 +00001219}
1220
1221template<class ELFT>
1222void ELFDumper<ELFT>::printRelocations() {
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001223 ListScope D(W, "Relocations");
1224
1225 int SectionNumber = -1;
1226 for (const Elf_Shdr &Sec : Obj->sections()) {
1227 ++SectionNumber;
1228
1229 if (Sec.sh_type != ELF::SHT_REL && Sec.sh_type != ELF::SHT_RELA)
1230 continue;
1231
1232 StringRef Name = unwrapOrError(Obj->getSectionName(&Sec));
1233
1234 W.startLine() << "Section (" << SectionNumber << ") " << Name << " {\n";
1235 W.indent();
1236
1237 printRelocations(&Sec);
1238
1239 W.unindent();
1240 W.startLine() << "}\n";
1241 }
George Rimar47936762016-01-16 00:49:19 +00001242}
1243
Simon Atanasyan72155c32016-01-16 22:40:09 +00001244template <class ELFT> void ELFDumper<ELFT>::printDynamicRelocations() {
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001245 if (DynRelRegion.Size && DynRelaRegion.Size)
1246 report_fatal_error("There are both REL and RELA dynamic relocations");
1247 W.startLine() << "Dynamic Relocations {\n";
1248 W.indent();
1249 if (DynRelaRegion.Size > 0)
1250 for (const Elf_Rela &Rela : dyn_relas())
1251 printDynamicRelocation(Rela);
1252 else
1253 for (const Elf_Rel &Rel : dyn_rels()) {
1254 Elf_Rela Rela;
1255 Rela.r_offset = Rel.r_offset;
1256 Rela.r_info = Rel.r_info;
1257 Rela.r_addend = 0;
1258 printDynamicRelocation(Rela);
1259 }
1260 if (DynPLTRelRegion.EntSize == sizeof(Elf_Rela))
1261 for (const Elf_Rela &Rela : DynPLTRelRegion.getAsRange<Elf_Rela>())
1262 printDynamicRelocation(Rela);
1263 else
1264 for (const Elf_Rel &Rel : DynPLTRelRegion.getAsRange<Elf_Rel>()) {
1265 Elf_Rela Rela;
1266 Rela.r_offset = Rel.r_offset;
1267 Rela.r_info = Rel.r_info;
1268 Rela.r_addend = 0;
1269 printDynamicRelocation(Rela);
1270 }
1271 W.unindent();
1272 W.startLine() << "}\n";
George Rimar47936762016-01-16 00:49:19 +00001273}
1274
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001275template <class ELFT>
1276void ELFDumper<ELFT>::printRelocations(const Elf_Shdr *Sec) {
1277 const Elf_Shdr *SymTab = unwrapOrError(Obj->getSection(Sec->sh_link));
1278
1279 switch (Sec->sh_type) {
1280 case ELF::SHT_REL:
1281 for (const Elf_Rel &R : Obj->rels(Sec)) {
1282 Elf_Rela Rela;
1283 Rela.r_offset = R.r_offset;
1284 Rela.r_info = R.r_info;
1285 Rela.r_addend = 0;
1286 printRelocation(Rela, SymTab);
1287 }
1288 break;
1289 case ELF::SHT_RELA:
1290 for (const Elf_Rela &R : Obj->relas(Sec))
1291 printRelocation(R, SymTab);
1292 break;
1293 }
1294}
1295
1296template <class ELFT>
1297void ELFDumper<ELFT>::printRelocation(Elf_Rela Rel, const Elf_Shdr *SymTab) {
1298 SmallString<32> RelocName;
1299 Obj->getRelocationTypeName(Rel.getType(Obj->isMips64EL()), RelocName);
1300 StringRef TargetName;
1301 const Elf_Sym *Sym = Obj->getRelocationSymbol(&Rel, SymTab);
1302 if (Sym && Sym->getType() == ELF::STT_SECTION) {
1303 const Elf_Shdr *Sec =
1304 unwrapOrError(Obj->getSection(Sym, SymTab, ShndxTable));
1305 TargetName = unwrapOrError(Obj->getSectionName(Sec));
1306 } else if (Sym) {
1307 StringRef StrTable = unwrapOrError(Obj->getStringTableForSymtab(*SymTab));
1308 TargetName = unwrapOrError(Sym->getName(StrTable));
1309 }
1310
1311 if (opts::ExpandRelocs) {
1312 DictScope Group(W, "Relocation");
1313 W.printHex("Offset", Rel.r_offset);
1314 W.printNumber("Type", RelocName, (int)Rel.getType(Obj->isMips64EL()));
1315 W.printNumber("Symbol", TargetName.size() > 0 ? TargetName : "-",
1316 Rel.getSymbol(Obj->isMips64EL()));
1317 W.printHex("Addend", Rel.r_addend);
1318 } else {
1319 raw_ostream& OS = W.startLine();
1320 OS << W.hex(Rel.r_offset) << " " << RelocName << " "
1321 << (TargetName.size() > 0 ? TargetName : "-") << " "
1322 << W.hex(Rel.r_addend) << "\n";
1323 }
1324}
1325
1326template <class ELFT>
1327void ELFDumper<ELFT>::printDynamicRelocation(Elf_Rela Rel) {
1328 SmallString<32> RelocName;
1329 Obj->getRelocationTypeName(Rel.getType(Obj->isMips64EL()), RelocName);
1330 StringRef SymbolName;
1331 uint32_t SymIndex = Rel.getSymbol(Obj->isMips64EL());
1332 const Elf_Sym *Sym = dynamic_symbols().begin() + SymIndex;
1333 SymbolName = unwrapOrError(Sym->getName(DynamicStringTable));
1334 if (opts::ExpandRelocs) {
1335 DictScope Group(W, "Relocation");
1336 W.printHex("Offset", Rel.r_offset);
1337 W.printNumber("Type", RelocName, (int)Rel.getType(Obj->isMips64EL()));
1338 W.printString("Symbol", SymbolName.size() > 0 ? SymbolName : "-");
1339 W.printHex("Addend", Rel.r_addend);
1340 } else {
1341 raw_ostream &OS = W.startLine();
1342 OS << W.hex(Rel.r_offset) << " " << RelocName << " "
1343 << (SymbolName.size() > 0 ? SymbolName : "-") << " "
1344 << W.hex(Rel.r_addend) << "\n";
1345 }
1346}
1347
1348template<class ELFT>
1349void ELFDumper<ELFT>::printSymbolsHelper(bool IsDynamic) {
1350 StringRef StrTable;
1351 Elf_Sym_Range Syms(nullptr, nullptr);
1352
1353 if (IsDynamic) {
1354 StrTable = DynamicStringTable;
1355 Syms = dynamic_symbols();
1356 } else {
1357 if (!DotSymtabSec)
1358 return;
1359 StrTable = unwrapOrError(Obj->getStringTableForSymtab(*DotSymtabSec));
1360 Syms = Obj->symbols(DotSymtabSec);
1361 }
1362 for (const Elf_Sym &Sym : Syms)
1363 printSymbol(&Sym, Syms.begin(), StrTable, IsDynamic);
1364}
George Rimar47936762016-01-16 00:49:19 +00001365
1366template<class ELFT>
1367void ELFDumper<ELFT>::printSymbols() {
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001368 ListScope Group(W, "Symbols");
1369 printSymbolsHelper(false);
George Rimar47936762016-01-16 00:49:19 +00001370}
1371
1372template<class ELFT>
1373void ELFDumper<ELFT>::printDynamicSymbols() {
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001374 ListScope Group(W, "DynamicSymbols");
1375 printSymbolsHelper(true);
George Rimar47936762016-01-16 00:49:19 +00001376}
1377
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00001378template <class ELFT>
1379void ELFDumper<ELFT>::printSymbol(const Elf_Sym *Symbol,
1380 const Elf_Sym *FirstSym, StringRef StrTable,
1381 bool IsDynamic) {
1382 unsigned SectionIndex = 0;
1383 StringRef SectionName;
1384 getSectionNameIndex(*Obj, Symbol, FirstSym, ShndxTable, SectionName,
1385 SectionIndex);
1386 std::string FullSymbolName = getFullSymbolName(Symbol, StrTable, IsDynamic);
1387 unsigned char SymbolType = Symbol->getType();
1388
1389 DictScope D(W, "Symbol");
1390 W.printNumber("Name", FullSymbolName, Symbol->st_name);
1391 W.printHex ("Value", Symbol->st_value);
1392 W.printNumber("Size", Symbol->st_size);
1393 W.printEnum ("Binding", Symbol->getBinding(),
1394 makeArrayRef(ElfSymbolBindings));
1395 if (Obj->getHeader()->e_machine == ELF::EM_AMDGPU &&
1396 SymbolType >= ELF::STT_LOOS && SymbolType < ELF::STT_HIOS)
1397 W.printEnum ("Type", SymbolType, makeArrayRef(AMDGPUSymbolTypes));
1398 else
1399 W.printEnum ("Type", SymbolType, makeArrayRef(ElfSymbolTypes));
1400 W.printNumber("Other", Symbol->st_other);
1401 W.printHex("Section", SectionName, SectionIndex);
1402}
George Rimar47936762016-01-16 00:49:19 +00001403
1404#define LLVM_READOBJ_TYPE_CASE(name) \
1405 case DT_##name: return #name
1406
1407static const char *getTypeString(uint64_t Type) {
1408 switch (Type) {
1409 LLVM_READOBJ_TYPE_CASE(BIND_NOW);
1410 LLVM_READOBJ_TYPE_CASE(DEBUG);
1411 LLVM_READOBJ_TYPE_CASE(FINI);
1412 LLVM_READOBJ_TYPE_CASE(FINI_ARRAY);
1413 LLVM_READOBJ_TYPE_CASE(FINI_ARRAYSZ);
1414 LLVM_READOBJ_TYPE_CASE(FLAGS);
1415 LLVM_READOBJ_TYPE_CASE(FLAGS_1);
1416 LLVM_READOBJ_TYPE_CASE(HASH);
1417 LLVM_READOBJ_TYPE_CASE(INIT);
1418 LLVM_READOBJ_TYPE_CASE(INIT_ARRAY);
1419 LLVM_READOBJ_TYPE_CASE(INIT_ARRAYSZ);
1420 LLVM_READOBJ_TYPE_CASE(PREINIT_ARRAY);
1421 LLVM_READOBJ_TYPE_CASE(PREINIT_ARRAYSZ);
1422 LLVM_READOBJ_TYPE_CASE(JMPREL);
1423 LLVM_READOBJ_TYPE_CASE(NEEDED);
1424 LLVM_READOBJ_TYPE_CASE(NULL);
1425 LLVM_READOBJ_TYPE_CASE(PLTGOT);
1426 LLVM_READOBJ_TYPE_CASE(PLTREL);
1427 LLVM_READOBJ_TYPE_CASE(PLTRELSZ);
1428 LLVM_READOBJ_TYPE_CASE(REL);
1429 LLVM_READOBJ_TYPE_CASE(RELA);
1430 LLVM_READOBJ_TYPE_CASE(RELENT);
1431 LLVM_READOBJ_TYPE_CASE(RELSZ);
1432 LLVM_READOBJ_TYPE_CASE(RELAENT);
1433 LLVM_READOBJ_TYPE_CASE(RELASZ);
1434 LLVM_READOBJ_TYPE_CASE(RPATH);
1435 LLVM_READOBJ_TYPE_CASE(RUNPATH);
1436 LLVM_READOBJ_TYPE_CASE(SONAME);
1437 LLVM_READOBJ_TYPE_CASE(STRSZ);
1438 LLVM_READOBJ_TYPE_CASE(STRTAB);
1439 LLVM_READOBJ_TYPE_CASE(SYMBOLIC);
1440 LLVM_READOBJ_TYPE_CASE(SYMENT);
1441 LLVM_READOBJ_TYPE_CASE(SYMTAB);
1442 LLVM_READOBJ_TYPE_CASE(TEXTREL);
1443 LLVM_READOBJ_TYPE_CASE(VERDEF);
1444 LLVM_READOBJ_TYPE_CASE(VERDEFNUM);
1445 LLVM_READOBJ_TYPE_CASE(VERNEED);
1446 LLVM_READOBJ_TYPE_CASE(VERNEEDNUM);
George Rimare05fcec2016-01-16 10:38:32 +00001447 LLVM_READOBJ_TYPE_CASE(VERSYM);
Davide Italiano8c503672016-01-16 06:06:36 +00001448 LLVM_READOBJ_TYPE_CASE(RELACOUNT);
George Rimare05fcec2016-01-16 10:38:32 +00001449 LLVM_READOBJ_TYPE_CASE(RELCOUNT);
1450 LLVM_READOBJ_TYPE_CASE(GNU_HASH);
1451 LLVM_READOBJ_TYPE_CASE(TLSDESC_PLT);
1452 LLVM_READOBJ_TYPE_CASE(TLSDESC_GOT);
1453 LLVM_READOBJ_TYPE_CASE(MIPS_RLD_VERSION);
1454 LLVM_READOBJ_TYPE_CASE(MIPS_RLD_MAP_REL);
1455 LLVM_READOBJ_TYPE_CASE(MIPS_FLAGS);
George Rimar47936762016-01-16 00:49:19 +00001456 LLVM_READOBJ_TYPE_CASE(MIPS_BASE_ADDRESS);
1457 LLVM_READOBJ_TYPE_CASE(MIPS_LOCAL_GOTNO);
1458 LLVM_READOBJ_TYPE_CASE(MIPS_SYMTABNO);
1459 LLVM_READOBJ_TYPE_CASE(MIPS_UNREFEXTNO);
1460 LLVM_READOBJ_TYPE_CASE(MIPS_GOTSYM);
1461 LLVM_READOBJ_TYPE_CASE(MIPS_RLD_MAP);
1462 LLVM_READOBJ_TYPE_CASE(MIPS_PLTGOT);
1463 LLVM_READOBJ_TYPE_CASE(MIPS_OPTIONS);
1464 default: return "unknown";
1465 }
1466}
1467
1468#undef LLVM_READOBJ_TYPE_CASE
1469
1470#define LLVM_READOBJ_DT_FLAG_ENT(prefix, enum) \
1471 { #enum, prefix##_##enum }
1472
1473static const EnumEntry<unsigned> ElfDynamicDTFlags[] = {
1474 LLVM_READOBJ_DT_FLAG_ENT(DF, ORIGIN),
1475 LLVM_READOBJ_DT_FLAG_ENT(DF, SYMBOLIC),
1476 LLVM_READOBJ_DT_FLAG_ENT(DF, TEXTREL),
1477 LLVM_READOBJ_DT_FLAG_ENT(DF, BIND_NOW),
1478 LLVM_READOBJ_DT_FLAG_ENT(DF, STATIC_TLS)
1479};
1480
1481static const EnumEntry<unsigned> ElfDynamicDTFlags1[] = {
1482 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NOW),
1483 LLVM_READOBJ_DT_FLAG_ENT(DF_1, GLOBAL),
1484 LLVM_READOBJ_DT_FLAG_ENT(DF_1, GROUP),
1485 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NODELETE),
1486 LLVM_READOBJ_DT_FLAG_ENT(DF_1, LOADFLTR),
1487 LLVM_READOBJ_DT_FLAG_ENT(DF_1, INITFIRST),
1488 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NOOPEN),
1489 LLVM_READOBJ_DT_FLAG_ENT(DF_1, ORIGIN),
1490 LLVM_READOBJ_DT_FLAG_ENT(DF_1, DIRECT),
1491 LLVM_READOBJ_DT_FLAG_ENT(DF_1, TRANS),
1492 LLVM_READOBJ_DT_FLAG_ENT(DF_1, INTERPOSE),
1493 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NODEFLIB),
1494 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NODUMP),
1495 LLVM_READOBJ_DT_FLAG_ENT(DF_1, CONFALT),
1496 LLVM_READOBJ_DT_FLAG_ENT(DF_1, ENDFILTEE),
1497 LLVM_READOBJ_DT_FLAG_ENT(DF_1, DISPRELDNE),
1498 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NODIRECT),
1499 LLVM_READOBJ_DT_FLAG_ENT(DF_1, IGNMULDEF),
1500 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NOKSYMS),
1501 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NOHDR),
1502 LLVM_READOBJ_DT_FLAG_ENT(DF_1, EDITED),
1503 LLVM_READOBJ_DT_FLAG_ENT(DF_1, NORELOC),
1504 LLVM_READOBJ_DT_FLAG_ENT(DF_1, SYMINTPOSE),
1505 LLVM_READOBJ_DT_FLAG_ENT(DF_1, GLOBAUDIT),
1506 LLVM_READOBJ_DT_FLAG_ENT(DF_1, SINGLETON)
1507};
1508
1509static const EnumEntry<unsigned> ElfDynamicDTMipsFlags[] = {
1510 LLVM_READOBJ_DT_FLAG_ENT(RHF, NONE),
1511 LLVM_READOBJ_DT_FLAG_ENT(RHF, QUICKSTART),
1512 LLVM_READOBJ_DT_FLAG_ENT(RHF, NOTPOT),
1513 LLVM_READOBJ_DT_FLAG_ENT(RHS, NO_LIBRARY_REPLACEMENT),
1514 LLVM_READOBJ_DT_FLAG_ENT(RHF, NO_MOVE),
1515 LLVM_READOBJ_DT_FLAG_ENT(RHF, SGI_ONLY),
1516 LLVM_READOBJ_DT_FLAG_ENT(RHF, GUARANTEE_INIT),
1517 LLVM_READOBJ_DT_FLAG_ENT(RHF, DELTA_C_PLUS_PLUS),
1518 LLVM_READOBJ_DT_FLAG_ENT(RHF, GUARANTEE_START_INIT),
1519 LLVM_READOBJ_DT_FLAG_ENT(RHF, PIXIE),
1520 LLVM_READOBJ_DT_FLAG_ENT(RHF, DEFAULT_DELAY_LOAD),
1521 LLVM_READOBJ_DT_FLAG_ENT(RHF, REQUICKSTART),
1522 LLVM_READOBJ_DT_FLAG_ENT(RHF, REQUICKSTARTED),
1523 LLVM_READOBJ_DT_FLAG_ENT(RHF, CORD),
1524 LLVM_READOBJ_DT_FLAG_ENT(RHF, NO_UNRES_UNDEF),
1525 LLVM_READOBJ_DT_FLAG_ENT(RHF, RLD_ORDER_SAFE)
1526};
1527
1528#undef LLVM_READOBJ_DT_FLAG_ENT
1529
1530template <typename T, typename TFlag>
1531void printFlags(T Value, ArrayRef<EnumEntry<TFlag>> Flags, raw_ostream &OS) {
1532 typedef EnumEntry<TFlag> FlagEntry;
1533 typedef SmallVector<FlagEntry, 10> FlagVector;
1534 FlagVector SetFlags;
1535
1536 for (const auto &Flag : Flags) {
1537 if (Flag.Value == 0)
1538 continue;
1539
1540 if ((Value & Flag.Value) == Flag.Value)
1541 SetFlags.push_back(Flag);
1542 }
1543
1544 for (const auto &Flag : SetFlags) {
1545 OS << Flag.Name << " ";
1546 }
1547}
1548
1549template <class ELFT>
1550StringRef ELFDumper<ELFT>::getDynamicString(uint64_t Value) const {
1551 if (Value >= DynamicStringTable.size())
1552 reportError("Invalid dynamic string table reference");
1553 return StringRef(DynamicStringTable.data() + Value);
1554}
1555
1556template <class ELFT>
1557void ELFDumper<ELFT>::printValue(uint64_t Type, uint64_t Value) {
1558 raw_ostream &OS = W.getOStream();
1559 switch (Type) {
1560 case DT_PLTREL:
1561 if (Value == DT_REL) {
1562 OS << "REL";
1563 break;
1564 } else if (Value == DT_RELA) {
1565 OS << "RELA";
1566 break;
1567 }
1568 // Fallthrough.
1569 case DT_PLTGOT:
1570 case DT_HASH:
1571 case DT_STRTAB:
1572 case DT_SYMTAB:
1573 case DT_RELA:
1574 case DT_INIT:
1575 case DT_FINI:
1576 case DT_REL:
1577 case DT_JMPREL:
1578 case DT_INIT_ARRAY:
1579 case DT_FINI_ARRAY:
1580 case DT_PREINIT_ARRAY:
1581 case DT_DEBUG:
1582 case DT_VERDEF:
1583 case DT_VERNEED:
1584 case DT_VERSYM:
1585 case DT_GNU_HASH:
1586 case DT_NULL:
1587 case DT_MIPS_BASE_ADDRESS:
1588 case DT_MIPS_GOTSYM:
1589 case DT_MIPS_RLD_MAP:
1590 case DT_MIPS_RLD_MAP_REL:
1591 case DT_MIPS_PLTGOT:
1592 case DT_MIPS_OPTIONS:
1593 OS << format("0x%" PRIX64, Value);
1594 break;
Davide Italiano8c503672016-01-16 06:06:36 +00001595 case DT_RELACOUNT:
George Rimar47936762016-01-16 00:49:19 +00001596 case DT_RELCOUNT:
1597 case DT_VERDEFNUM:
1598 case DT_VERNEEDNUM:
1599 case DT_MIPS_RLD_VERSION:
1600 case DT_MIPS_LOCAL_GOTNO:
1601 case DT_MIPS_SYMTABNO:
1602 case DT_MIPS_UNREFEXTNO:
1603 OS << Value;
1604 break;
1605 case DT_PLTRELSZ:
1606 case DT_RELASZ:
1607 case DT_RELAENT:
1608 case DT_STRSZ:
1609 case DT_SYMENT:
1610 case DT_RELSZ:
1611 case DT_RELENT:
1612 case DT_INIT_ARRAYSZ:
1613 case DT_FINI_ARRAYSZ:
1614 case DT_PREINIT_ARRAYSZ:
1615 OS << Value << " (bytes)";
1616 break;
1617 case DT_NEEDED:
1618 OS << "SharedLibrary (" << getDynamicString(Value) << ")";
1619 break;
1620 case DT_SONAME:
1621 OS << "LibrarySoname (" << getDynamicString(Value) << ")";
1622 break;
1623 case DT_RPATH:
1624 case DT_RUNPATH:
1625 OS << getDynamicString(Value);
1626 break;
1627 case DT_MIPS_FLAGS:
1628 printFlags(Value, makeArrayRef(ElfDynamicDTMipsFlags), OS);
1629 break;
1630 case DT_FLAGS:
1631 printFlags(Value, makeArrayRef(ElfDynamicDTFlags), OS);
1632 break;
1633 case DT_FLAGS_1:
1634 printFlags(Value, makeArrayRef(ElfDynamicDTFlags1), OS);
1635 break;
1636 default:
1637 OS << format("0x%" PRIX64, Value);
1638 break;
1639 }
1640}
1641
1642template<class ELFT>
1643void ELFDumper<ELFT>::printUnwindInfo() {
1644 W.startLine() << "UnwindInfo not implemented.\n";
1645}
1646
1647namespace {
1648template <> void ELFDumper<ELFType<support::little, false>>::printUnwindInfo() {
1649 const unsigned Machine = Obj->getHeader()->e_machine;
1650 if (Machine == EM_ARM) {
1651 ARM::EHABI::PrinterContext<ELFType<support::little, false>> Ctx(
1652 W, Obj, DotSymtabSec);
1653 return Ctx.PrintUnwindInformation();
1654 }
1655 W.startLine() << "UnwindInfo not implemented.\n";
1656}
1657}
1658
1659template<class ELFT>
1660void ELFDumper<ELFT>::printDynamicTable() {
Rafael Espindolae17c3f32016-02-17 16:48:00 +00001661 auto I = dynamic_table().begin();
1662 auto E = dynamic_table().end();
George Rimar47936762016-01-16 00:49:19 +00001663
1664 if (I == E)
1665 return;
1666
1667 --E;
1668 while (I != E && E->getTag() == ELF::DT_NULL)
1669 --E;
1670 if (E->getTag() != ELF::DT_NULL)
1671 ++E;
1672 ++E;
1673
1674 ptrdiff_t Total = std::distance(I, E);
1675 if (Total == 0)
1676 return;
1677
1678 raw_ostream &OS = W.getOStream();
1679 W.startLine() << "DynamicSection [ (" << Total << " entries)\n";
1680
1681 bool Is64 = ELFT::Is64Bits;
1682
1683 W.startLine()
1684 << " Tag" << (Is64 ? " " : " ") << "Type"
1685 << " " << "Name/Value\n";
1686 while (I != E) {
1687 const Elf_Dyn &Entry = *I;
1688 uintX_t Tag = Entry.getTag();
1689 ++I;
1690 W.startLine() << " " << format_hex(Tag, Is64 ? 18 : 10, true) << " "
1691 << format("%-21s", getTypeString(Tag));
1692 printValue(Tag, Entry.getVal());
1693 OS << "\n";
1694 }
1695
1696 W.startLine() << "]\n";
1697}
1698
1699template<class ELFT>
1700void ELFDumper<ELFT>::printNeededLibraries() {
1701 ListScope D(W, "NeededLibraries");
1702
1703 typedef std::vector<StringRef> LibsTy;
1704 LibsTy Libs;
1705
1706 for (const auto &Entry : dynamic_table())
1707 if (Entry.d_tag == ELF::DT_NEEDED)
1708 Libs.push_back(getDynamicString(Entry.d_un.d_val));
1709
1710 std::stable_sort(Libs.begin(), Libs.end());
1711
1712 for (const auto &L : Libs) {
1713 outs() << " " << L << "\n";
1714 }
1715}
1716
1717template<class ELFT>
1718void ELFDumper<ELFT>::printProgramHeaders() {
1719 ListScope L(W, "ProgramHeaders");
1720
1721 for (const Elf_Phdr &Phdr : Obj->program_headers()) {
1722 DictScope P(W, "ProgramHeader");
1723 W.printHex("Type",
1724 getElfSegmentType(Obj->getHeader()->e_machine, Phdr.p_type),
1725 Phdr.p_type);
1726 W.printHex("Offset", Phdr.p_offset);
1727 W.printHex("VirtualAddress", Phdr.p_vaddr);
1728 W.printHex("PhysicalAddress", Phdr.p_paddr);
1729 W.printNumber("FileSize", Phdr.p_filesz);
1730 W.printNumber("MemSize", Phdr.p_memsz);
1731 W.printFlags("Flags", Phdr.p_flags, makeArrayRef(ElfSegmentFlags));
1732 W.printNumber("Alignment", Phdr.p_align);
1733 }
1734}
1735
1736template <typename ELFT>
1737void ELFDumper<ELFT>::printHashTable() {
1738 DictScope D(W, "HashTable");
1739 if (!HashTable)
1740 return;
1741 W.printNumber("Num Buckets", HashTable->nbucket);
1742 W.printNumber("Num Chains", HashTable->nchain);
1743 W.printList("Buckets", HashTable->buckets());
1744 W.printList("Chains", HashTable->chains());
1745}
1746
1747template <typename ELFT>
1748void ELFDumper<ELFT>::printGnuHashTable() {
1749 DictScope D(W, "GnuHashTable");
1750 if (!GnuHashTable)
1751 return;
1752 W.printNumber("Num Buckets", GnuHashTable->nbuckets);
1753 W.printNumber("First Hashed Symbol Index", GnuHashTable->symndx);
1754 W.printNumber("Num Mask Words", GnuHashTable->maskwords);
1755 W.printNumber("Shift Count", GnuHashTable->shift2);
1756 W.printHexList("Bloom Filter", GnuHashTable->filter());
1757 W.printList("Buckets", GnuHashTable->buckets());
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00001758 Elf_Sym_Range Syms = dynamic_symbols();
1759 unsigned NumSyms = std::distance(Syms.begin(), Syms.end());
1760 if (!NumSyms)
George Rimar47936762016-01-16 00:49:19 +00001761 reportError("No dynamic symbol section");
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00001762 W.printHexList("Values", GnuHashTable->values(NumSyms));
George Rimar47936762016-01-16 00:49:19 +00001763}
1764
1765template <typename ELFT> void ELFDumper<ELFT>::printLoadName() {
1766 outs() << "LoadName: " << SOName << '\n';
1767}
1768
1769template <class ELFT>
1770void ELFDumper<ELFT>::printAttributes() {
1771 W.startLine() << "Attributes not implemented.\n";
1772}
1773
1774namespace {
1775template <> void ELFDumper<ELFType<support::little, false>>::printAttributes() {
1776 if (Obj->getHeader()->e_machine != EM_ARM) {
1777 W.startLine() << "Attributes not implemented.\n";
1778 return;
1779 }
1780
1781 DictScope BA(W, "BuildAttributes");
1782 for (const ELFO::Elf_Shdr &Sec : Obj->sections()) {
1783 if (Sec.sh_type != ELF::SHT_ARM_ATTRIBUTES)
1784 continue;
1785
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001786 ArrayRef<uint8_t> Contents = unwrapOrError(Obj->getSectionContents(&Sec));
1787 if (Contents[0] != ARMBuildAttrs::Format_Version) {
1788 errs() << "unrecognised FormatVersion: 0x" << utohexstr(Contents[0])
George Rimar47936762016-01-16 00:49:19 +00001789 << '\n';
1790 continue;
1791 }
1792
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001793 W.printHex("FormatVersion", Contents[0]);
1794 if (Contents.size() == 1)
George Rimar47936762016-01-16 00:49:19 +00001795 continue;
1796
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001797 ARMAttributeParser(W).Parse(Contents);
George Rimar47936762016-01-16 00:49:19 +00001798 }
1799}
1800}
1801
1802namespace {
1803template <class ELFT> class MipsGOTParser {
1804public:
1805 typedef object::ELFFile<ELFT> ELFO;
1806 typedef typename ELFO::Elf_Shdr Elf_Shdr;
1807 typedef typename ELFO::Elf_Sym Elf_Sym;
1808 typedef typename ELFO::Elf_Dyn_Range Elf_Dyn_Range;
1809 typedef typename ELFO::Elf_Addr GOTEntry;
1810 typedef typename ELFO::Elf_Rel Elf_Rel;
1811 typedef typename ELFO::Elf_Rela Elf_Rela;
1812
1813 MipsGOTParser(ELFDumper<ELFT> *Dumper, const ELFO *Obj,
1814 Elf_Dyn_Range DynTable, StreamWriter &W);
1815
1816 void parseGOT();
1817 void parsePLT();
1818
1819private:
1820 ELFDumper<ELFT> *Dumper;
1821 const ELFO *Obj;
1822 StreamWriter &W;
1823 llvm::Optional<uint64_t> DtPltGot;
1824 llvm::Optional<uint64_t> DtLocalGotNum;
1825 llvm::Optional<uint64_t> DtGotSym;
1826 llvm::Optional<uint64_t> DtMipsPltGot;
1827 llvm::Optional<uint64_t> DtJmpRel;
1828
1829 std::size_t getGOTTotal(ArrayRef<uint8_t> GOT) const;
1830 const GOTEntry *makeGOTIter(ArrayRef<uint8_t> GOT, std::size_t EntryNum);
1831
1832 void printGotEntry(uint64_t GotAddr, const GOTEntry *BeginIt,
1833 const GOTEntry *It);
1834 void printGlobalGotEntry(uint64_t GotAddr, const GOTEntry *BeginIt,
1835 const GOTEntry *It, const Elf_Sym *Sym,
1836 StringRef StrTable, bool IsDynamic);
1837 void printPLTEntry(uint64_t PLTAddr, const GOTEntry *BeginIt,
1838 const GOTEntry *It, StringRef Purpose);
1839 void printPLTEntry(uint64_t PLTAddr, const GOTEntry *BeginIt,
1840 const GOTEntry *It, StringRef StrTable,
1841 const Elf_Sym *Sym);
1842};
1843}
1844
1845template <class ELFT>
1846MipsGOTParser<ELFT>::MipsGOTParser(ELFDumper<ELFT> *Dumper, const ELFO *Obj,
1847 Elf_Dyn_Range DynTable, StreamWriter &W)
1848 : Dumper(Dumper), Obj(Obj), W(W) {
1849 for (const auto &Entry : DynTable) {
1850 switch (Entry.getTag()) {
1851 case ELF::DT_PLTGOT:
1852 DtPltGot = Entry.getVal();
1853 break;
1854 case ELF::DT_MIPS_LOCAL_GOTNO:
1855 DtLocalGotNum = Entry.getVal();
1856 break;
1857 case ELF::DT_MIPS_GOTSYM:
1858 DtGotSym = Entry.getVal();
1859 break;
1860 case ELF::DT_MIPS_PLTGOT:
1861 DtMipsPltGot = Entry.getVal();
1862 break;
1863 case ELF::DT_JMPREL:
1864 DtJmpRel = Entry.getVal();
1865 break;
1866 }
1867 }
1868}
1869
1870template <class ELFT> void MipsGOTParser<ELFT>::parseGOT() {
1871 // See "Global Offset Table" in Chapter 5 in the following document
1872 // for detailed GOT description.
1873 // ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
1874 if (!DtPltGot) {
1875 W.startLine() << "Cannot find PLTGOT dynamic table tag.\n";
1876 return;
1877 }
1878 if (!DtLocalGotNum) {
1879 W.startLine() << "Cannot find MIPS_LOCAL_GOTNO dynamic table tag.\n";
1880 return;
1881 }
1882 if (!DtGotSym) {
1883 W.startLine() << "Cannot find MIPS_GOTSYM dynamic table tag.\n";
1884 return;
1885 }
1886
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00001887 StringRef StrTable = Dumper->getDynamicStringTable();
1888 const Elf_Sym *DynSymBegin = Dumper->dynamic_symbols().begin();
1889 const Elf_Sym *DynSymEnd = Dumper->dynamic_symbols().end();
George Rimar47936762016-01-16 00:49:19 +00001890 std::size_t DynSymTotal = std::size_t(std::distance(DynSymBegin, DynSymEnd));
1891
Simon Atanasyancb1175c2016-02-09 18:45:35 +00001892 if (*DtGotSym > DynSymTotal)
1893 report_fatal_error("MIPS_GOTSYM exceeds a number of dynamic symbols");
George Rimar47936762016-01-16 00:49:19 +00001894
1895 std::size_t GlobalGotNum = DynSymTotal - *DtGotSym;
1896
Simon Atanasyancb1175c2016-02-09 18:45:35 +00001897 if (*DtLocalGotNum + GlobalGotNum == 0) {
1898 W.startLine() << "GOT is empty.\n";
George Rimar47936762016-01-16 00:49:19 +00001899 return;
1900 }
1901
Simon Atanasyancb1175c2016-02-09 18:45:35 +00001902 const Elf_Shdr *GOTShdr = findNotEmptySectionByAddress(Obj, *DtPltGot);
1903 if (!GOTShdr)
1904 report_fatal_error("There is no not empty GOT section at 0x" +
1905 Twine::utohexstr(*DtPltGot));
1906
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001907 ArrayRef<uint8_t> GOT = unwrapOrError(Obj->getSectionContents(GOTShdr));
Simon Atanasyancb1175c2016-02-09 18:45:35 +00001908
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001909 if (*DtLocalGotNum + GlobalGotNum > getGOTTotal(GOT))
Simon Atanasyancb1175c2016-02-09 18:45:35 +00001910 report_fatal_error("Number of GOT entries exceeds the size of GOT section");
1911
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001912 const GOTEntry *GotBegin = makeGOTIter(GOT, 0);
1913 const GOTEntry *GotLocalEnd = makeGOTIter(GOT, *DtLocalGotNum);
George Rimar47936762016-01-16 00:49:19 +00001914 const GOTEntry *It = GotBegin;
1915
1916 DictScope GS(W, "Primary GOT");
1917
1918 W.printHex("Canonical gp value", GOTShdr->sh_addr + 0x7ff0);
1919 {
1920 ListScope RS(W, "Reserved entries");
1921
1922 {
1923 DictScope D(W, "Entry");
1924 printGotEntry(GOTShdr->sh_addr, GotBegin, It++);
1925 W.printString("Purpose", StringRef("Lazy resolver"));
1926 }
1927
1928 if (It != GotLocalEnd && (*It >> (sizeof(GOTEntry) * 8 - 1)) != 0) {
1929 DictScope D(W, "Entry");
1930 printGotEntry(GOTShdr->sh_addr, GotBegin, It++);
1931 W.printString("Purpose", StringRef("Module pointer (GNU extension)"));
1932 }
1933 }
1934 {
1935 ListScope LS(W, "Local entries");
1936 for (; It != GotLocalEnd; ++It) {
1937 DictScope D(W, "Entry");
1938 printGotEntry(GOTShdr->sh_addr, GotBegin, It);
1939 }
1940 }
1941 {
1942 ListScope GS(W, "Global entries");
1943
1944 const GOTEntry *GotGlobalEnd =
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001945 makeGOTIter(GOT, *DtLocalGotNum + GlobalGotNum);
George Rimar47936762016-01-16 00:49:19 +00001946 const Elf_Sym *GotDynSym = DynSymBegin + *DtGotSym;
1947 for (; It != GotGlobalEnd; ++It) {
1948 DictScope D(W, "Entry");
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00001949 printGlobalGotEntry(GOTShdr->sh_addr, GotBegin, It, GotDynSym++, StrTable,
1950 true);
George Rimar47936762016-01-16 00:49:19 +00001951 }
1952 }
1953
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001954 std::size_t SpecGotNum = getGOTTotal(GOT) - *DtLocalGotNum - GlobalGotNum;
George Rimar47936762016-01-16 00:49:19 +00001955 W.printNumber("Number of TLS and multi-GOT entries", uint64_t(SpecGotNum));
1956}
1957
1958template <class ELFT> void MipsGOTParser<ELFT>::parsePLT() {
1959 if (!DtMipsPltGot) {
1960 W.startLine() << "Cannot find MIPS_PLTGOT dynamic table tag.\n";
1961 return;
1962 }
1963 if (!DtJmpRel) {
1964 W.startLine() << "Cannot find JMPREL dynamic table tag.\n";
1965 return;
1966 }
1967
Simon Atanasyancb1175c2016-02-09 18:45:35 +00001968 const Elf_Shdr *PLTShdr = findNotEmptySectionByAddress(Obj, *DtMipsPltGot);
1969 if (!PLTShdr)
1970 report_fatal_error("There is no not empty PLTGOT section at 0x " +
1971 Twine::utohexstr(*DtMipsPltGot));
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001972 ArrayRef<uint8_t> PLT = unwrapOrError(Obj->getSectionContents(PLTShdr));
George Rimar47936762016-01-16 00:49:19 +00001973
Simon Atanasyancb1175c2016-02-09 18:45:35 +00001974 const Elf_Shdr *PLTRelShdr = findNotEmptySectionByAddress(Obj, *DtJmpRel);
1975 if (!PLTRelShdr)
1976 report_fatal_error("There is no not empty RELPLT section at 0x" +
1977 Twine::utohexstr(*DtJmpRel));
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001978 const Elf_Shdr *SymTable =
1979 unwrapOrError(Obj->getSection(PLTRelShdr->sh_link));
1980 StringRef StrTable = unwrapOrError(Obj->getStringTableForSymtab(*SymTable));
George Rimar47936762016-01-16 00:49:19 +00001981
Rafael Espindolaf04f1842016-02-17 16:21:49 +00001982 const GOTEntry *PLTBegin = makeGOTIter(PLT, 0);
1983 const GOTEntry *PLTEnd = makeGOTIter(PLT, getGOTTotal(PLT));
George Rimar47936762016-01-16 00:49:19 +00001984 const GOTEntry *It = PLTBegin;
1985
1986 DictScope GS(W, "PLT GOT");
1987 {
1988 ListScope RS(W, "Reserved entries");
1989 printPLTEntry(PLTShdr->sh_addr, PLTBegin, It++, "PLT lazy resolver");
1990 if (It != PLTEnd)
1991 printPLTEntry(PLTShdr->sh_addr, PLTBegin, It++, "Module pointer");
1992 }
1993 {
1994 ListScope GS(W, "Entries");
1995
1996 switch (PLTRelShdr->sh_type) {
1997 case ELF::SHT_REL:
1998 for (const Elf_Rel *RI = Obj->rel_begin(PLTRelShdr),
1999 *RE = Obj->rel_end(PLTRelShdr);
2000 RI != RE && It != PLTEnd; ++RI, ++It) {
2001 const Elf_Sym *Sym = Obj->getRelocationSymbol(&*RI, SymTable);
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002002 printPLTEntry(PLTShdr->sh_addr, PLTBegin, It, StrTable, Sym);
George Rimar47936762016-01-16 00:49:19 +00002003 }
2004 break;
2005 case ELF::SHT_RELA:
2006 for (const Elf_Rela *RI = Obj->rela_begin(PLTRelShdr),
2007 *RE = Obj->rela_end(PLTRelShdr);
2008 RI != RE && It != PLTEnd; ++RI, ++It) {
2009 const Elf_Sym *Sym = Obj->getRelocationSymbol(&*RI, SymTable);
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002010 printPLTEntry(PLTShdr->sh_addr, PLTBegin, It, StrTable, Sym);
George Rimar47936762016-01-16 00:49:19 +00002011 }
2012 break;
2013 }
2014 }
2015}
2016
2017template <class ELFT>
2018std::size_t MipsGOTParser<ELFT>::getGOTTotal(ArrayRef<uint8_t> GOT) const {
2019 return GOT.size() / sizeof(GOTEntry);
2020}
2021
2022template <class ELFT>
2023const typename MipsGOTParser<ELFT>::GOTEntry *
2024MipsGOTParser<ELFT>::makeGOTIter(ArrayRef<uint8_t> GOT, std::size_t EntryNum) {
2025 const char *Data = reinterpret_cast<const char *>(GOT.data());
2026 return reinterpret_cast<const GOTEntry *>(Data + EntryNum * sizeof(GOTEntry));
2027}
2028
2029template <class ELFT>
2030void MipsGOTParser<ELFT>::printGotEntry(uint64_t GotAddr,
2031 const GOTEntry *BeginIt,
2032 const GOTEntry *It) {
2033 int64_t Offset = std::distance(BeginIt, It) * sizeof(GOTEntry);
2034 W.printHex("Address", GotAddr + Offset);
2035 W.printNumber("Access", Offset - 0x7ff0);
2036 W.printHex("Initial", *It);
2037}
2038
2039template <class ELFT>
2040void MipsGOTParser<ELFT>::printGlobalGotEntry(
2041 uint64_t GotAddr, const GOTEntry *BeginIt, const GOTEntry *It,
2042 const Elf_Sym *Sym, StringRef StrTable, bool IsDynamic) {
2043 printGotEntry(GotAddr, BeginIt, It);
2044
2045 W.printHex("Value", Sym->st_value);
2046 W.printEnum("Type", Sym->getType(), makeArrayRef(ElfSymbolTypes));
2047
2048 unsigned SectionIndex = 0;
2049 StringRef SectionName;
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00002050 getSectionNameIndex(*Obj, Sym, Dumper->dynamic_symbols().begin(),
George Rimar47936762016-01-16 00:49:19 +00002051 Dumper->getShndxTable(), SectionName, SectionIndex);
2052 W.printHex("Section", SectionName, SectionIndex);
2053
2054 std::string FullSymbolName =
2055 Dumper->getFullSymbolName(Sym, StrTable, IsDynamic);
2056 W.printNumber("Name", FullSymbolName, Sym->st_name);
2057}
2058
2059template <class ELFT>
2060void MipsGOTParser<ELFT>::printPLTEntry(uint64_t PLTAddr,
2061 const GOTEntry *BeginIt,
2062 const GOTEntry *It, StringRef Purpose) {
2063 DictScope D(W, "Entry");
2064 int64_t Offset = std::distance(BeginIt, It) * sizeof(GOTEntry);
2065 W.printHex("Address", PLTAddr + Offset);
2066 W.printHex("Initial", *It);
2067 W.printString("Purpose", Purpose);
2068}
2069
2070template <class ELFT>
2071void MipsGOTParser<ELFT>::printPLTEntry(uint64_t PLTAddr,
2072 const GOTEntry *BeginIt,
2073 const GOTEntry *It, StringRef StrTable,
2074 const Elf_Sym *Sym) {
2075 DictScope D(W, "Entry");
2076 int64_t Offset = std::distance(BeginIt, It) * sizeof(GOTEntry);
2077 W.printHex("Address", PLTAddr + Offset);
2078 W.printHex("Initial", *It);
2079 W.printHex("Value", Sym->st_value);
2080 W.printEnum("Type", Sym->getType(), makeArrayRef(ElfSymbolTypes));
2081
2082 unsigned SectionIndex = 0;
2083 StringRef SectionName;
Rafael Espindolace2fbdd2016-02-17 15:38:21 +00002084 getSectionNameIndex(*Obj, Sym, Dumper->dynamic_symbols().begin(),
George Rimar47936762016-01-16 00:49:19 +00002085 Dumper->getShndxTable(), SectionName, SectionIndex);
2086 W.printHex("Section", SectionName, SectionIndex);
2087
2088 std::string FullSymbolName = Dumper->getFullSymbolName(Sym, StrTable, true);
2089 W.printNumber("Name", FullSymbolName, Sym->st_name);
2090}
2091
2092template <class ELFT> void ELFDumper<ELFT>::printMipsPLTGOT() {
2093 if (Obj->getHeader()->e_machine != EM_MIPS) {
2094 W.startLine() << "MIPS PLT GOT is available for MIPS targets only.\n";
2095 return;
2096 }
2097
2098 MipsGOTParser<ELFT> GOTParser(this, Obj, dynamic_table(), W);
2099 GOTParser.parseGOT();
2100 GOTParser.parsePLT();
2101}
2102
2103static const EnumEntry<unsigned> ElfMipsISAExtType[] = {
2104 {"None", Mips::AFL_EXT_NONE},
2105 {"Broadcom SB-1", Mips::AFL_EXT_SB1},
2106 {"Cavium Networks Octeon", Mips::AFL_EXT_OCTEON},
2107 {"Cavium Networks Octeon2", Mips::AFL_EXT_OCTEON2},
2108 {"Cavium Networks OcteonP", Mips::AFL_EXT_OCTEONP},
2109 {"Cavium Networks Octeon3", Mips::AFL_EXT_OCTEON3},
2110 {"LSI R4010", Mips::AFL_EXT_4010},
2111 {"Loongson 2E", Mips::AFL_EXT_LOONGSON_2E},
2112 {"Loongson 2F", Mips::AFL_EXT_LOONGSON_2F},
2113 {"Loongson 3A", Mips::AFL_EXT_LOONGSON_3A},
2114 {"MIPS R4650", Mips::AFL_EXT_4650},
2115 {"MIPS R5900", Mips::AFL_EXT_5900},
2116 {"MIPS R10000", Mips::AFL_EXT_10000},
2117 {"NEC VR4100", Mips::AFL_EXT_4100},
2118 {"NEC VR4111/VR4181", Mips::AFL_EXT_4111},
2119 {"NEC VR4120", Mips::AFL_EXT_4120},
2120 {"NEC VR5400", Mips::AFL_EXT_5400},
2121 {"NEC VR5500", Mips::AFL_EXT_5500},
2122 {"RMI Xlr", Mips::AFL_EXT_XLR},
2123 {"Toshiba R3900", Mips::AFL_EXT_3900}
2124};
2125
2126static const EnumEntry<unsigned> ElfMipsASEFlags[] = {
2127 {"DSP", Mips::AFL_ASE_DSP},
2128 {"DSPR2", Mips::AFL_ASE_DSPR2},
2129 {"Enhanced VA Scheme", Mips::AFL_ASE_EVA},
2130 {"MCU", Mips::AFL_ASE_MCU},
2131 {"MDMX", Mips::AFL_ASE_MDMX},
2132 {"MIPS-3D", Mips::AFL_ASE_MIPS3D},
2133 {"MT", Mips::AFL_ASE_MT},
2134 {"SmartMIPS", Mips::AFL_ASE_SMARTMIPS},
2135 {"VZ", Mips::AFL_ASE_VIRT},
2136 {"MSA", Mips::AFL_ASE_MSA},
2137 {"MIPS16", Mips::AFL_ASE_MIPS16},
2138 {"microMIPS", Mips::AFL_ASE_MICROMIPS},
2139 {"XPA", Mips::AFL_ASE_XPA}
2140};
2141
2142static const EnumEntry<unsigned> ElfMipsFpABIType[] = {
2143 {"Hard or soft float", Mips::Val_GNU_MIPS_ABI_FP_ANY},
2144 {"Hard float (double precision)", Mips::Val_GNU_MIPS_ABI_FP_DOUBLE},
2145 {"Hard float (single precision)", Mips::Val_GNU_MIPS_ABI_FP_SINGLE},
2146 {"Soft float", Mips::Val_GNU_MIPS_ABI_FP_SOFT},
2147 {"Hard float (MIPS32r2 64-bit FPU 12 callee-saved)",
2148 Mips::Val_GNU_MIPS_ABI_FP_OLD_64},
2149 {"Hard float (32-bit CPU, Any FPU)", Mips::Val_GNU_MIPS_ABI_FP_XX},
2150 {"Hard float (32-bit CPU, 64-bit FPU)", Mips::Val_GNU_MIPS_ABI_FP_64},
2151 {"Hard float compat (32-bit CPU, 64-bit FPU)",
2152 Mips::Val_GNU_MIPS_ABI_FP_64A}
2153};
2154
2155static const EnumEntry<unsigned> ElfMipsFlags1[] {
2156 {"ODDSPREG", Mips::AFL_FLAGS1_ODDSPREG},
2157};
2158
2159static int getMipsRegisterSize(uint8_t Flag) {
2160 switch (Flag) {
2161 case Mips::AFL_REG_NONE:
2162 return 0;
2163 case Mips::AFL_REG_32:
2164 return 32;
2165 case Mips::AFL_REG_64:
2166 return 64;
2167 case Mips::AFL_REG_128:
2168 return 128;
2169 default:
2170 return -1;
2171 }
2172}
2173
2174template <class ELFT> void ELFDumper<ELFT>::printMipsABIFlags() {
2175 const Elf_Shdr *Shdr = findSectionByName(*Obj, ".MIPS.abiflags");
2176 if (!Shdr) {
2177 W.startLine() << "There is no .MIPS.abiflags section in the file.\n";
2178 return;
2179 }
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002180 ArrayRef<uint8_t> Sec = unwrapOrError(Obj->getSectionContents(Shdr));
2181 if (Sec.size() != sizeof(Elf_Mips_ABIFlags<ELFT>)) {
George Rimar47936762016-01-16 00:49:19 +00002182 W.startLine() << "The .MIPS.abiflags section has a wrong size.\n";
2183 return;
2184 }
2185
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002186 auto *Flags = reinterpret_cast<const Elf_Mips_ABIFlags<ELFT> *>(Sec.data());
George Rimar47936762016-01-16 00:49:19 +00002187
2188 raw_ostream &OS = W.getOStream();
2189 DictScope GS(W, "MIPS ABI Flags");
2190
2191 W.printNumber("Version", Flags->version);
2192 W.startLine() << "ISA: ";
2193 if (Flags->isa_rev <= 1)
2194 OS << format("MIPS%u", Flags->isa_level);
2195 else
2196 OS << format("MIPS%ur%u", Flags->isa_level, Flags->isa_rev);
2197 OS << "\n";
2198 W.printEnum("ISA Extension", Flags->isa_ext, makeArrayRef(ElfMipsISAExtType));
2199 W.printFlags("ASEs", Flags->ases, makeArrayRef(ElfMipsASEFlags));
2200 W.printEnum("FP ABI", Flags->fp_abi, makeArrayRef(ElfMipsFpABIType));
2201 W.printNumber("GPR size", getMipsRegisterSize(Flags->gpr_size));
2202 W.printNumber("CPR1 size", getMipsRegisterSize(Flags->cpr1_size));
2203 W.printNumber("CPR2 size", getMipsRegisterSize(Flags->cpr2_size));
2204 W.printFlags("Flags 1", Flags->flags1, makeArrayRef(ElfMipsFlags1));
2205 W.printHex("Flags 2", Flags->flags2);
2206}
2207
2208template <class ELFT> void ELFDumper<ELFT>::printMipsReginfo() {
2209 const Elf_Shdr *Shdr = findSectionByName(*Obj, ".reginfo");
2210 if (!Shdr) {
2211 W.startLine() << "There is no .reginfo section in the file.\n";
2212 return;
2213 }
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002214 ArrayRef<uint8_t> Sec = unwrapOrError(Obj->getSectionContents(Shdr));
2215 if (Sec.size() != sizeof(Elf_Mips_RegInfo<ELFT>)) {
George Rimar47936762016-01-16 00:49:19 +00002216 W.startLine() << "The .reginfo section has a wrong size.\n";
2217 return;
2218 }
2219
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002220 auto *Reginfo = reinterpret_cast<const Elf_Mips_RegInfo<ELFT> *>(Sec.data());
George Rimar47936762016-01-16 00:49:19 +00002221
2222 DictScope GS(W, "MIPS RegInfo");
2223 W.printHex("GP", Reginfo->ri_gp_value);
2224 W.printHex("General Mask", Reginfo->ri_gprmask);
2225 W.printHex("Co-Proc Mask0", Reginfo->ri_cprmask[0]);
2226 W.printHex("Co-Proc Mask1", Reginfo->ri_cprmask[1]);
2227 W.printHex("Co-Proc Mask2", Reginfo->ri_cprmask[2]);
2228 W.printHex("Co-Proc Mask3", Reginfo->ri_cprmask[3]);
2229}
2230
2231template <class ELFT> void ELFDumper<ELFT>::printStackMap() const {
2232 const Elf_Shdr *StackMapSection = nullptr;
2233 for (const auto &Sec : Obj->sections()) {
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002234 StringRef Name = unwrapOrError(Obj->getSectionName(&Sec));
2235 if (Name == ".llvm_stackmaps") {
George Rimar47936762016-01-16 00:49:19 +00002236 StackMapSection = &Sec;
2237 break;
2238 }
2239 }
2240
2241 if (!StackMapSection)
2242 return;
2243
2244 StringRef StackMapContents;
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002245 ArrayRef<uint8_t> StackMapContentsArray =
2246 unwrapOrError(Obj->getSectionContents(StackMapSection));
George Rimar47936762016-01-16 00:49:19 +00002247
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002248 prettyPrintStackMap(llvm::outs(), StackMapV1Parser<ELFT::TargetEndianness>(
2249 StackMapContentsArray));
George Rimar47936762016-01-16 00:49:19 +00002250}
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002251
Hemant Kulkarniab4a46f2016-01-26 19:46:39 +00002252template <class ELFT> void ELFDumper<ELFT>::printGroupSections() {
2253 DictScope Lists(W, "Groups");
2254 uint32_t SectionIndex = 0;
2255 bool HasGroups = false;
2256 for (const Elf_Shdr &Sec : Obj->sections()) {
2257 if (Sec.sh_type == ELF::SHT_GROUP) {
2258 HasGroups = true;
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002259 const Elf_Shdr *Symtab = unwrapOrError(Obj->getSection(Sec.sh_link));
2260 StringRef StrTable = unwrapOrError(Obj->getStringTableForSymtab(*Symtab));
2261 const Elf_Sym *Sym = Obj->template getEntry<Elf_Sym>(Symtab, Sec.sh_info);
2262 auto Data = unwrapOrError(
Hemant Kulkarniae1acb02016-01-26 20:28:15 +00002263 Obj->template getSectionContentsAsArray<Elf_Word>(&Sec));
Hemant Kulkarniab4a46f2016-01-26 19:46:39 +00002264 DictScope D(W, "Group");
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002265 StringRef Name = unwrapOrError(Obj->getSectionName(&Sec));
Hemant Kulkarniab4a46f2016-01-26 19:46:39 +00002266 W.printNumber("Name", Name, Sec.sh_name);
2267 W.printNumber("Index", SectionIndex);
2268 W.printHex("Type", getGroupType(Data[0]), Data[0]);
2269 W.startLine() << "Signature: " << StrTable.data() + Sym->st_name << "\n";
2270 {
2271 ListScope L(W, "Section(s) in group");
Hemant Kulkarni44476682016-01-26 20:38:15 +00002272 size_t Member = 1;
Hemant Kulkarniab4a46f2016-01-26 19:46:39 +00002273 while (Member < Data.size()) {
Rafael Espindolaf04f1842016-02-17 16:21:49 +00002274 auto Sec = unwrapOrError(Obj->getSection(Data[Member]));
2275 const StringRef Name = unwrapOrError(Obj->getSectionName(Sec));
Benjamin Kramer73ae2492016-01-27 13:22:39 +00002276 W.startLine() << Name << " (" << Data[Member++] << ")\n";
Hemant Kulkarniab4a46f2016-01-26 19:46:39 +00002277 }
2278 }
2279 }
2280 ++SectionIndex;
2281 }
2282 if (!HasGroups)
2283 W.startLine() << "There are no group sections in the file.\n";
2284}
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002285
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002286static inline void printFields(formatted_raw_ostream &OS, StringRef Str1,
2287 StringRef Str2) {
2288 OS.PadToColumn(2u);
2289 OS << Str1;
2290 OS.PadToColumn(37u);
2291 OS << Str2 << "\n";
2292 OS.flush();
2293}
2294
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00002295template <class ELFT>
2296void GNUStyle<ELFT>::printFileHeaders(const ELFFile<ELFT> *Obj) {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002297 const Elf_Ehdr *e = Obj->getHeader();
2298 OS << "ELF Header:\n";
2299 OS << " Magic: ";
2300 std::string Str;
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002301 for (int i = 0; i < ELF::EI_NIDENT; i++)
2302 OS << format(" %02x", static_cast<int>(e->e_ident[i]));
2303 OS << "\n";
2304 Str = printEnum(e->e_ident[ELF::EI_CLASS], makeArrayRef(ElfClass));
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002305 printFields(OS, "Class:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002306 Str = printEnum(e->e_ident[ELF::EI_DATA], makeArrayRef(ElfDataEncoding));
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002307 printFields(OS, "Data:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002308 OS.PadToColumn(2u);
2309 OS << "Version:";
2310 OS.PadToColumn(37u);
2311 OS << to_hexString(e->e_ident[ELF::EI_VERSION]);
2312 if (e->e_version == ELF::EV_CURRENT)
2313 OS << " (current)";
2314 OS << "\n";
2315 Str = printEnum(e->e_ident[ELF::EI_OSABI], makeArrayRef(ElfOSABI));
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002316 printFields(OS, "OS/ABI:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002317 Str = "0x" + to_hexString(e->e_version);
2318 Str = to_hexString(e->e_ident[ELF::EI_ABIVERSION]);
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002319 printFields(OS, "ABI Version:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002320 Str = printEnum(e->e_type, makeArrayRef(ElfObjectFileType));
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002321 printFields(OS, "Type:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002322 Str = printEnum(e->e_machine, makeArrayRef(ElfMachineType));
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002323 printFields(OS, "Machine:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002324 Str = "0x" + to_hexString(e->e_version);
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002325 printFields(OS, "Version:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002326 Str = "0x" + to_hexString(e->e_entry);
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002327 printFields(OS, "Entry point address:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002328 Str = to_string(e->e_phoff) + " (bytes into file)";
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002329 printFields(OS, "Start of program headers:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002330 Str = to_string(e->e_shoff) + " (bytes into file)";
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002331 printFields(OS, "Start of section headers:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002332 Str = "0x" + to_hexString(e->e_flags);
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002333 printFields(OS, "Flags:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002334 Str = to_string(e->e_ehsize) + " (bytes)";
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002335 printFields(OS, "Size of this header:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002336 Str = to_string(e->e_phentsize) + " (bytes)";
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002337 printFields(OS, "Size of program headers:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002338 Str = to_string(e->e_phnum);
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002339 printFields(OS, "Number of program headers:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002340 Str = to_string(e->e_shentsize) + " (bytes)";
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002341 printFields(OS, "Size of section headers:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002342 Str = to_string(e->e_shnum);
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002343 printFields(OS, "Number of section headers:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002344 Str = to_string(e->e_shstrndx);
Hemant Kulkarnif84cda72016-02-11 03:41:34 +00002345 printFields(OS, "Section header string table index:", Str);
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002346}
2347
2348template <class ELFT>
Hemant Kulkarnide1152f2016-02-25 20:47:07 +00002349void LLVMStyle<ELFT>::printFileHeaders(const ELFFile<ELFT> *Obj) {
Hemant Kulkarnid8a985e2016-02-10 20:40:55 +00002350 const Elf_Ehdr *e = Obj->getHeader();
2351 {
2352 DictScope D(W, "ElfHeader");
2353 {
2354 DictScope D(W, "Ident");
2355 W.printBinary("Magic", makeArrayRef(e->e_ident).slice(ELF::EI_MAG0, 4));
2356 W.printEnum("Class", e->e_ident[ELF::EI_CLASS], makeArrayRef(ElfClass));
2357 W.printEnum("DataEncoding", e->e_ident[ELF::EI_DATA],
2358 makeArrayRef(ElfDataEncoding));
2359 W.printNumber("FileVersion", e->e_ident[ELF::EI_VERSION]);
2360
2361 // Handle architecture specific OS/ABI values.
2362 if (e->e_machine == ELF::EM_AMDGPU &&
2363 e->e_ident[ELF::EI_OSABI] == ELF::ELFOSABI_AMDGPU_HSA)
2364 W.printHex("OS/ABI", "AMDGPU_HSA", ELF::ELFOSABI_AMDGPU_HSA);
2365 else
2366 W.printEnum("OS/ABI", e->e_ident[ELF::EI_OSABI],
2367 makeArrayRef(ElfOSABI));
2368 W.printNumber("ABIVersion", e->e_ident[ELF::EI_ABIVERSION]);
2369 W.printBinary("Unused", makeArrayRef(e->e_ident).slice(ELF::EI_PAD));
2370 }
2371
2372 W.printEnum("Type", e->e_type, makeArrayRef(ElfObjectFileType));
2373 W.printEnum("Machine", e->e_machine, makeArrayRef(ElfMachineType));
2374 W.printNumber("Version", e->e_version);
2375 W.printHex("Entry", e->e_entry);
2376 W.printHex("ProgramHeaderOffset", e->e_phoff);
2377 W.printHex("SectionHeaderOffset", e->e_shoff);
2378 if (e->e_machine == EM_MIPS)
2379 W.printFlags("Flags", e->e_flags, makeArrayRef(ElfHeaderMipsFlags),
2380 unsigned(ELF::EF_MIPS_ARCH), unsigned(ELF::EF_MIPS_ABI),
2381 unsigned(ELF::EF_MIPS_MACH));
2382 else
2383 W.printFlags("Flags", e->e_flags);
2384 W.printNumber("HeaderSize", e->e_ehsize);
2385 W.printNumber("ProgramHeaderEntrySize", e->e_phentsize);
2386 W.printNumber("ProgramHeaderCount", e->e_phnum);
2387 W.printNumber("SectionHeaderEntrySize", e->e_shentsize);
2388 W.printNumber("SectionHeaderCount", e->e_shnum);
2389 W.printNumber("StringTableSectionIndex", e->e_shstrndx);
2390 }
2391}