1 // Copyright 2017 The Abseil Authors.
2 //
3 // Licensed under the Apache License, Version 2.0 (the "License");
4 // you may not use this file except in compliance with the License.
5 // You may obtain a copy of the License at
6 //
7 //      https://www.apache.org/licenses/LICENSE-2.0
8 //
9 // Unless required by applicable law or agreed to in writing, software
10 // distributed under the License is distributed on an "AS IS" BASIS,
11 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 // See the License for the specific language governing permissions and
13 // limitations under the License.
14 
15 // Allow dynamic symbol lookup in an in-memory Elf image.
16 //
17 
18 #include "absl/debugging/internal/elf_mem_image.h"
19 
20 #ifdef ABSL_HAVE_ELF_MEM_IMAGE  // defined in elf_mem_image.h
21 
22 #include <string.h>
23 #include <cassert>
24 #include <cstddef>
25 #include "absl/base/internal/raw_logging.h"
26 
27 // From binutils/include/elf/common.h (this doesn't appear to be documented
28 // anywhere else).
29 //
30 //   /* This flag appears in a Versym structure.  It means that the symbol
31 //      is hidden, and is only visible with an explicit version number.
32 //      This is a GNU extension.  */
33 //   #define VERSYM_HIDDEN           0x8000
34 //
35 //   /* This is the mask for the rest of the Versym information.  */
36 //   #define VERSYM_VERSION          0x7fff
37 
38 #define VERSYM_VERSION 0x7fff
39 
40 namespace absl {
41 ABSL_NAMESPACE_BEGIN
42 namespace debugging_internal {
43 
44 namespace {
45 
46 #if __WORDSIZE == 32
47 const int kElfClass = ELFCLASS32;
ElfBind(const ElfW (Sym)* symbol)48 int ElfBind(const ElfW(Sym) *symbol) { return ELF32_ST_BIND(symbol->st_info); }
ElfType(const ElfW (Sym)* symbol)49 int ElfType(const ElfW(Sym) *symbol) { return ELF32_ST_TYPE(symbol->st_info); }
50 #elif __WORDSIZE == 64
51 const int kElfClass = ELFCLASS64;
52 int ElfBind(const ElfW(Sym) *symbol) { return ELF64_ST_BIND(symbol->st_info); }
53 int ElfType(const ElfW(Sym) *symbol) { return ELF64_ST_TYPE(symbol->st_info); }
54 #else
55 const int kElfClass = -1;
56 int ElfBind(const ElfW(Sym) *) {
57   ABSL_RAW_LOG(FATAL, "Unexpected word size");
58   return 0;
59 }
60 int ElfType(const ElfW(Sym) *) {
61   ABSL_RAW_LOG(FATAL, "Unexpected word size");
62   return 0;
63 }
64 #endif
65 
66 // Extract an element from one of the ELF tables, cast it to desired type.
67 // This is just a simple arithmetic and a glorified cast.
68 // Callers are responsible for bounds checking.
69 template <typename T>
GetTableElement(const ElfW (Ehdr)* ehdr,ElfW (Off)table_offset,ElfW (Word)element_size,size_t index)70 const T *GetTableElement(const ElfW(Ehdr) * ehdr, ElfW(Off) table_offset,
71                          ElfW(Word) element_size, size_t index) {
72   return reinterpret_cast<const T*>(reinterpret_cast<const char *>(ehdr)
73                                     + table_offset
74                                     + index * element_size);
75 }
76 
77 }  // namespace
78 
79 // The value of this variable doesn't matter; it's used only for its
80 // unique address.
81 const int ElfMemImage::kInvalidBaseSentinel = 0;
82 
ElfMemImage(const void * base)83 ElfMemImage::ElfMemImage(const void *base) {
84   ABSL_RAW_CHECK(base != kInvalidBase, "bad pointer");
85   Init(base);
86 }
87 
GetNumSymbols() const88 int ElfMemImage::GetNumSymbols() const {
89   if (!hash_) {
90     return 0;
91   }
92   // See http://www.caldera.com/developers/gabi/latest/ch5.dynamic.html#hash
93   return hash_[1];
94 }
95 
ElfW(Sym)96 const ElfW(Sym) *ElfMemImage::GetDynsym(int index) const {
97   ABSL_RAW_CHECK(index < GetNumSymbols(), "index out of range");
98   return dynsym_ + index;
99 }
100 
ElfW(Versym)101 const ElfW(Versym) *ElfMemImage::GetVersym(int index) const {
102   ABSL_RAW_CHECK(index < GetNumSymbols(), "index out of range");
103   return versym_ + index;
104 }
105 
ElfW(Phdr)106 const ElfW(Phdr) *ElfMemImage::GetPhdr(int index) const {
107   ABSL_RAW_CHECK(index < ehdr_->e_phnum, "index out of range");
108   return GetTableElement<ElfW(Phdr)>(ehdr_,
109                                      ehdr_->e_phoff,
110                                      ehdr_->e_phentsize,
111                                      index);
112 }
113 
GetDynstr(ElfW (Word)offset) const114 const char *ElfMemImage::GetDynstr(ElfW(Word) offset) const {
115   ABSL_RAW_CHECK(offset < strsize_, "offset out of range");
116   return dynstr_ + offset;
117 }
118 
GetSymAddr(const ElfW (Sym)* sym) const119 const void *ElfMemImage::GetSymAddr(const ElfW(Sym) *sym) const {
120   if (sym->st_shndx == SHN_UNDEF || sym->st_shndx >= SHN_LORESERVE) {
121     // Symbol corresponds to "special" (e.g. SHN_ABS) section.
122     return reinterpret_cast<const void *>(sym->st_value);
123   }
124   ABSL_RAW_CHECK(link_base_ < sym->st_value, "symbol out of range");
125   return GetTableElement<char>(ehdr_, 0, 1, sym->st_value - link_base_);
126 }
127 
ElfW(Verdef)128 const ElfW(Verdef) *ElfMemImage::GetVerdef(int index) const {
129   ABSL_RAW_CHECK(0 <= index && static_cast<size_t>(index) <= verdefnum_,
130                  "index out of range");
131   const ElfW(Verdef) *version_definition = verdef_;
132   while (version_definition->vd_ndx < index && version_definition->vd_next) {
133     const char *const version_definition_as_char =
134         reinterpret_cast<const char *>(version_definition);
135     version_definition =
136         reinterpret_cast<const ElfW(Verdef) *>(version_definition_as_char +
137                                                version_definition->vd_next);
138   }
139   return version_definition->vd_ndx == index ? version_definition : nullptr;
140 }
141 
ElfW(Verdaux)142 const ElfW(Verdaux) *ElfMemImage::GetVerdefAux(
143     const ElfW(Verdef) *verdef) const {
144   return reinterpret_cast<const ElfW(Verdaux) *>(verdef+1);
145 }
146 
GetVerstr(ElfW (Word)offset) const147 const char *ElfMemImage::GetVerstr(ElfW(Word) offset) const {
148   ABSL_RAW_CHECK(offset < strsize_, "offset out of range");
149   return dynstr_ + offset;
150 }
151 
Init(const void * base)152 void ElfMemImage::Init(const void *base) {
153   ehdr_      = nullptr;
154   dynsym_    = nullptr;
155   dynstr_    = nullptr;
156   versym_    = nullptr;
157   verdef_    = nullptr;
158   hash_      = nullptr;
159   strsize_   = 0;
160   verdefnum_ = 0;
161   link_base_ = ~0L;  // Sentinel: PT_LOAD .p_vaddr can't possibly be this.
162   if (!base) {
163     return;
164   }
165   const char *const base_as_char = reinterpret_cast<const char *>(base);
166   if (base_as_char[EI_MAG0] != ELFMAG0 || base_as_char[EI_MAG1] != ELFMAG1 ||
167       base_as_char[EI_MAG2] != ELFMAG2 || base_as_char[EI_MAG3] != ELFMAG3) {
168     assert(false);
169     return;
170   }
171   int elf_class = base_as_char[EI_CLASS];
172   if (elf_class != kElfClass) {
173     assert(false);
174     return;
175   }
176   switch (base_as_char[EI_DATA]) {
177     case ELFDATA2LSB: {
178       if (__LITTLE_ENDIAN != __BYTE_ORDER) {
179         assert(false);
180         return;
181       }
182       break;
183     }
184     case ELFDATA2MSB: {
185       if (__BIG_ENDIAN != __BYTE_ORDER) {
186         assert(false);
187         return;
188       }
189       break;
190     }
191     default: {
192       assert(false);
193       return;
194     }
195   }
196 
197   ehdr_ = reinterpret_cast<const ElfW(Ehdr) *>(base);
198   const ElfW(Phdr) *dynamic_program_header = nullptr;
199   for (int i = 0; i < ehdr_->e_phnum; ++i) {
200     const ElfW(Phdr) *const program_header = GetPhdr(i);
201     switch (program_header->p_type) {
202       case PT_LOAD:
203         if (!~link_base_) {
204           link_base_ = program_header->p_vaddr;
205         }
206         break;
207       case PT_DYNAMIC:
208         dynamic_program_header = program_header;
209         break;
210     }
211   }
212   if (!~link_base_ || !dynamic_program_header) {
213     assert(false);
214     // Mark this image as not present. Can not recur infinitely.
215     Init(nullptr);
216     return;
217   }
218   ptrdiff_t relocation =
219       base_as_char - reinterpret_cast<const char *>(link_base_);
220   ElfW(Dyn) *dynamic_entry =
221       reinterpret_cast<ElfW(Dyn) *>(dynamic_program_header->p_vaddr +
222                                     relocation);
223   for (; dynamic_entry->d_tag != DT_NULL; ++dynamic_entry) {
224     const ElfW(Xword) value = dynamic_entry->d_un.d_val + relocation;
225     switch (dynamic_entry->d_tag) {
226       case DT_HASH:
227         hash_ = reinterpret_cast<ElfW(Word) *>(value);
228         break;
229       case DT_SYMTAB:
230         dynsym_ = reinterpret_cast<ElfW(Sym) *>(value);
231         break;
232       case DT_STRTAB:
233         dynstr_ = reinterpret_cast<const char *>(value);
234         break;
235       case DT_VERSYM:
236         versym_ = reinterpret_cast<ElfW(Versym) *>(value);
237         break;
238       case DT_VERDEF:
239         verdef_ = reinterpret_cast<ElfW(Verdef) *>(value);
240         break;
241       case DT_VERDEFNUM:
242         verdefnum_ = dynamic_entry->d_un.d_val;
243         break;
244       case DT_STRSZ:
245         strsize_ = dynamic_entry->d_un.d_val;
246         break;
247       default:
248         // Unrecognized entries explicitly ignored.
249         break;
250     }
251   }
252   if (!hash_ || !dynsym_ || !dynstr_ || !versym_ ||
253       !verdef_ || !verdefnum_ || !strsize_) {
254     assert(false);  // invalid VDSO
255     // Mark this image as not present. Can not recur infinitely.
256     Init(nullptr);
257     return;
258   }
259 }
260 
LookupSymbol(const char * name,const char * version,int type,SymbolInfo * info_out) const261 bool ElfMemImage::LookupSymbol(const char *name,
262                                const char *version,
263                                int type,
264                                SymbolInfo *info_out) const {
265   for (const SymbolInfo& info : *this) {
266     if (strcmp(info.name, name) == 0 && strcmp(info.version, version) == 0 &&
267         ElfType(info.symbol) == type) {
268       if (info_out) {
269         *info_out = info;
270       }
271       return true;
272     }
273   }
274   return false;
275 }
276 
LookupSymbolByAddress(const void * address,SymbolInfo * info_out) const277 bool ElfMemImage::LookupSymbolByAddress(const void *address,
278                                         SymbolInfo *info_out) const {
279   for (const SymbolInfo& info : *this) {
280     const char *const symbol_start =
281         reinterpret_cast<const char *>(info.address);
282     const char *const symbol_end = symbol_start + info.symbol->st_size;
283     if (symbol_start <= address && address < symbol_end) {
284       if (info_out) {
285         // Client wants to know details for that symbol (the usual case).
286         if (ElfBind(info.symbol) == STB_GLOBAL) {
287           // Strong symbol; just return it.
288           *info_out = info;
289           return true;
290         } else {
291           // Weak or local. Record it, but keep looking for a strong one.
292           *info_out = info;
293         }
294       } else {
295         // Client only cares if there is an overlapping symbol.
296         return true;
297       }
298     }
299   }
300   return false;
301 }
302 
SymbolIterator(const void * const image,int index)303 ElfMemImage::SymbolIterator::SymbolIterator(const void *const image, int index)
304     : index_(index), image_(image) {
305 }
306 
operator ->() const307 const ElfMemImage::SymbolInfo *ElfMemImage::SymbolIterator::operator->() const {
308   return &info_;
309 }
310 
operator *() const311 const ElfMemImage::SymbolInfo& ElfMemImage::SymbolIterator::operator*() const {
312   return info_;
313 }
314 
operator ==(const SymbolIterator & rhs) const315 bool ElfMemImage::SymbolIterator::operator==(const SymbolIterator &rhs) const {
316   return this->image_ == rhs.image_ && this->index_ == rhs.index_;
317 }
318 
operator !=(const SymbolIterator & rhs) const319 bool ElfMemImage::SymbolIterator::operator!=(const SymbolIterator &rhs) const {
320   return !(*this == rhs);
321 }
322 
operator ++()323 ElfMemImage::SymbolIterator &ElfMemImage::SymbolIterator::operator++() {
324   this->Update(1);
325   return *this;
326 }
327 
begin() const328 ElfMemImage::SymbolIterator ElfMemImage::begin() const {
329   SymbolIterator it(this, 0);
330   it.Update(0);
331   return it;
332 }
333 
end() const334 ElfMemImage::SymbolIterator ElfMemImage::end() const {
335   return SymbolIterator(this, GetNumSymbols());
336 }
337 
Update(int increment)338 void ElfMemImage::SymbolIterator::Update(int increment) {
339   const ElfMemImage *image = reinterpret_cast<const ElfMemImage *>(image_);
340   ABSL_RAW_CHECK(image->IsPresent() || increment == 0, "");
341   if (!image->IsPresent()) {
342     return;
343   }
344   index_ += increment;
345   if (index_ >= image->GetNumSymbols()) {
346     index_ = image->GetNumSymbols();
347     return;
348   }
349   const ElfW(Sym)    *symbol = image->GetDynsym(index_);
350   const ElfW(Versym) *version_symbol = image->GetVersym(index_);
351   ABSL_RAW_CHECK(symbol && version_symbol, "");
352   const char *const symbol_name = image->GetDynstr(symbol->st_name);
353   const ElfW(Versym) version_index = version_symbol[0] & VERSYM_VERSION;
354   const ElfW(Verdef) *version_definition = nullptr;
355   const char *version_name = "";
356   if (symbol->st_shndx == SHN_UNDEF) {
357     // Undefined symbols reference DT_VERNEED, not DT_VERDEF, and
358     // version_index could well be greater than verdefnum_, so calling
359     // GetVerdef(version_index) may trigger assertion.
360   } else {
361     version_definition = image->GetVerdef(version_index);
362   }
363   if (version_definition) {
364     // I am expecting 1 or 2 auxiliary entries: 1 for the version itself,
365     // optional 2nd if the version has a parent.
366     ABSL_RAW_CHECK(
367         version_definition->vd_cnt == 1 || version_definition->vd_cnt == 2,
368         "wrong number of entries");
369     const ElfW(Verdaux) *version_aux = image->GetVerdefAux(version_definition);
370     version_name = image->GetVerstr(version_aux->vda_name);
371   }
372   info_.name    = symbol_name;
373   info_.version = version_name;
374   info_.address = image->GetSymAddr(symbol);
375   info_.symbol  = symbol;
376 }
377 
378 }  // namespace debugging_internal
379 ABSL_NAMESPACE_END
380 }  // namespace absl
381 
382 #endif  // ABSL_HAVE_ELF_MEM_IMAGE
383