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1 /*
2  * Copyright (C) 2016 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include <elf.h>
18 #include <inttypes.h>
19 #include <string.h>
20 #include <sys/mman.h>
21 
22 #include <memory>
23 #include <mutex>
24 #include <string>
25 #include <utility>
26 
27 #include <android-base/stringprintf.h>
28 
29 #include <unwindstack/Elf.h>
30 #include <unwindstack/ElfInterface.h>
31 #include <unwindstack/Log.h>
32 #include <unwindstack/MapInfo.h>
33 #include <unwindstack/Memory.h>
34 #include <unwindstack/Regs.h>
35 #include <unwindstack/SharedString.h>
36 
37 #include <android-base/stringprintf.h>
38 
39 #include "ElfInterfaceArm.h"
40 #include "Symbols.h"
41 
42 namespace unwindstack {
43 
44 bool Elf::cache_enabled_;
45 std::unordered_map<std::string, std::unordered_map<uint64_t, std::shared_ptr<Elf>>>* Elf::cache_;
46 std::mutex* Elf::cache_lock_;
47 
Init()48 bool Elf::Init() {
49   load_bias_ = 0;
50   if (!memory_) {
51     return false;
52   }
53 
54   interface_.reset(CreateInterfaceFromMemory(memory_));
55   if (!interface_) {
56     return false;
57   }
58 
59   valid_ = interface_->Init(&load_bias_);
60   if (valid_) {
61     interface_->InitHeaders();
62     InitGnuDebugdata();
63   } else {
64     interface_.reset(nullptr);
65   }
66   return valid_;
67 }
68 
69 // It is expensive to initialize the .gnu_debugdata section. Provide a method
70 // to initialize this data separately.
InitGnuDebugdata()71 void Elf::InitGnuDebugdata() {
72   if (!valid_ || interface_->gnu_debugdata_offset() == 0) {
73     return;
74   }
75 
76   auto memory = interface_->CreateGnuDebugdataMemory();
77   gnu_debugdata_interface_.reset(CreateInterfaceFromMemory(memory));
78   ElfInterface* gnu = gnu_debugdata_interface_.get();
79   if (gnu == nullptr) {
80     return;
81   }
82 
83   // Ignore the load_bias from the compressed section, the correct load bias
84   // is in the uncompressed data.
85   int64_t load_bias;
86   if (gnu->Init(&load_bias)) {
87     gnu->InitHeaders();
88     interface_->SetGnuDebugdataInterface(gnu);
89   } else {
90     gnu_debugdata_interface_.reset(nullptr);
91   }
92 }
93 
Invalidate()94 void Elf::Invalidate() {
95   interface_.reset(nullptr);
96   valid_ = false;
97 }
98 
GetSoname()99 std::string Elf::GetSoname() {
100   std::lock_guard<std::mutex> guard(lock_);
101   if (!valid_) {
102     return "";
103   }
104   return interface_->GetSoname();
105 }
106 
GetRelPc(uint64_t pc,MapInfo * map_info)107 uint64_t Elf::GetRelPc(uint64_t pc, MapInfo* map_info) {
108   return pc - map_info->start() + load_bias_ + map_info->elf_offset();
109 }
110 
GetFunctionName(uint64_t addr,SharedString * name,uint64_t * func_offset)111 bool Elf::GetFunctionName(uint64_t addr, SharedString* name, uint64_t* func_offset) {
112   std::lock_guard<std::mutex> guard(lock_);
113   return valid_ && (interface_->GetFunctionName(addr, name, func_offset) ||
114                     (gnu_debugdata_interface_ &&
115                      gnu_debugdata_interface_->GetFunctionName(addr, name, func_offset)));
116 }
117 
GetGlobalVariableOffset(const std::string & name,uint64_t * memory_offset)118 bool Elf::GetGlobalVariableOffset(const std::string& name, uint64_t* memory_offset) {
119   if (!valid_) {
120     return false;
121   }
122 
123   uint64_t vaddr;
124   if (!interface_->GetGlobalVariable(name, &vaddr) &&
125       (gnu_debugdata_interface_ == nullptr ||
126        !gnu_debugdata_interface_->GetGlobalVariable(name, &vaddr))) {
127     return false;
128   }
129 
130   if (arch() == ARCH_ARM64) {
131     // Tagged pointer after Android R would lead top byte to have random values
132     // https://source.android.com/devices/tech/debug/tagged-pointers
133     vaddr &= (1ULL << 56) - 1;
134   }
135 
136   // Check the .data section.
137   uint64_t vaddr_start = interface_->data_vaddr_start();
138   if (vaddr >= vaddr_start && vaddr < interface_->data_vaddr_end()) {
139     *memory_offset = vaddr - vaddr_start + interface_->data_offset();
140     return true;
141   }
142 
143   // Check the .dynamic section.
144   vaddr_start = interface_->dynamic_vaddr_start();
145   if (vaddr >= vaddr_start && vaddr < interface_->dynamic_vaddr_end()) {
146     *memory_offset = vaddr - vaddr_start + interface_->dynamic_offset();
147     return true;
148   }
149 
150   return false;
151 }
152 
GetBuildID()153 std::string Elf::GetBuildID() {
154   if (!valid_) {
155     return "";
156   }
157   return interface_->GetBuildID();
158 }
159 
GetLastError(ErrorData * data)160 void Elf::GetLastError(ErrorData* data) {
161   if (valid_) {
162     *data = interface_->last_error();
163   } else {
164     data->code = ERROR_INVALID_ELF;
165     data->address = 0;
166   }
167 }
168 
GetLastErrorCode()169 ErrorCode Elf::GetLastErrorCode() {
170   if (valid_) {
171     return interface_->LastErrorCode();
172   }
173   return ERROR_INVALID_ELF;
174 }
175 
GetLastErrorAddress()176 uint64_t Elf::GetLastErrorAddress() {
177   if (valid_) {
178     return interface_->LastErrorAddress();
179   }
180   return 0;
181 }
182 
183 // The relative pc expectd by this function is relative to the start of the elf.
StepIfSignalHandler(uint64_t rel_pc,Regs * regs,Memory * process_memory)184 bool Elf::StepIfSignalHandler(uint64_t rel_pc, Regs* regs, Memory* process_memory) {
185   if (!valid_) {
186     return false;
187   }
188 
189   // Convert the rel_pc to an elf_offset.
190   if (rel_pc < static_cast<uint64_t>(load_bias_)) {
191     return false;
192   }
193   return regs->StepIfSignalHandler(rel_pc - load_bias_, this, process_memory);
194 }
195 
196 // The relative pc is always relative to the start of the map from which it comes.
Step(uint64_t rel_pc,Regs * regs,Memory * process_memory,bool * finished,bool * is_signal_frame)197 bool Elf::Step(uint64_t rel_pc, Regs* regs, Memory* process_memory, bool* finished,
198                bool* is_signal_frame) {
199   if (!valid_) {
200     return false;
201   }
202 
203   // Lock during the step which can update information in the object.
204   std::lock_guard<std::mutex> guard(lock_);
205   return interface_->Step(rel_pc, regs, process_memory, finished, is_signal_frame);
206 }
207 
IsValidElf(Memory * memory)208 bool Elf::IsValidElf(Memory* memory) {
209   if (memory == nullptr) {
210     return false;
211   }
212 
213   // Verify that this is a valid elf file.
214   uint8_t e_ident[SELFMAG + 1];
215   if (!memory->ReadFully(0, e_ident, SELFMAG)) {
216     return false;
217   }
218 
219   if (memcmp(e_ident, ELFMAG, SELFMAG) != 0) {
220     return false;
221   }
222   return true;
223 }
224 
GetInfo(Memory * memory,uint64_t * size)225 bool Elf::GetInfo(Memory* memory, uint64_t* size) {
226   if (!IsValidElf(memory)) {
227     return false;
228   }
229   *size = 0;
230 
231   uint8_t class_type;
232   if (!memory->ReadFully(EI_CLASS, &class_type, 1)) {
233     return false;
234   }
235 
236   // Get the maximum size of the elf data from the header.
237   if (class_type == ELFCLASS32) {
238     ElfInterface32::GetMaxSize(memory, size);
239   } else if (class_type == ELFCLASS64) {
240     ElfInterface64::GetMaxSize(memory, size);
241   } else {
242     return false;
243   }
244   return true;
245 }
246 
IsValidPc(uint64_t pc)247 bool Elf::IsValidPc(uint64_t pc) {
248   if (!valid_ || (load_bias_ > 0 && pc < static_cast<uint64_t>(load_bias_))) {
249     return false;
250   }
251 
252   if (interface_->IsValidPc(pc)) {
253     return true;
254   }
255 
256   if (gnu_debugdata_interface_ != nullptr && gnu_debugdata_interface_->IsValidPc(pc)) {
257     return true;
258   }
259 
260   return false;
261 }
262 
GetTextRange(uint64_t * addr,uint64_t * size)263 bool Elf::GetTextRange(uint64_t* addr, uint64_t* size) {
264   if (!valid_) {
265     return false;
266   }
267 
268   if (interface_->GetTextRange(addr, size)) {
269     *addr += load_bias_;
270     return true;
271   }
272 
273   if (gnu_debugdata_interface_ != nullptr && gnu_debugdata_interface_->GetTextRange(addr, size)) {
274     *addr += load_bias_;
275     return true;
276   }
277 
278   return false;
279 }
280 
CreateInterfaceFromMemory(std::shared_ptr<Memory> & memory)281 ElfInterface* Elf::CreateInterfaceFromMemory(std::shared_ptr<Memory>& memory) {
282   if (!IsValidElf(memory.get())) {
283     return nullptr;
284   }
285 
286   std::unique_ptr<ElfInterface> interface;
287   if (!memory->ReadFully(EI_CLASS, &class_type_, 1)) {
288     return nullptr;
289   }
290   if (class_type_ == ELFCLASS32) {
291     Elf32_Half e_machine;
292     if (!memory->ReadFully(EI_NIDENT + sizeof(Elf32_Half), &e_machine, sizeof(e_machine))) {
293       return nullptr;
294     }
295 
296     machine_type_ = e_machine;
297     if (e_machine == EM_ARM) {
298       arch_ = ARCH_ARM;
299       interface.reset(new ElfInterfaceArm(memory));
300     } else if (e_machine == EM_386) {
301       arch_ = ARCH_X86;
302       interface.reset(new ElfInterface32(memory));
303     } else {
304       // Unsupported.
305       return nullptr;
306     }
307   } else if (class_type_ == ELFCLASS64) {
308     Elf64_Half e_machine;
309     if (!memory->ReadFully(EI_NIDENT + sizeof(Elf64_Half), &e_machine, sizeof(e_machine))) {
310       return nullptr;
311     }
312 
313     machine_type_ = e_machine;
314     if (e_machine == EM_AARCH64) {
315       arch_ = ARCH_ARM64;
316     } else if (e_machine == EM_X86_64) {
317       arch_ = ARCH_X86_64;
318     } else if (e_machine == EM_RISCV) {
319       arch_ = ARCH_RISCV64;
320     } else {
321       // Unsupported.
322       return nullptr;
323     }
324     interface.reset(new ElfInterface64(memory));
325   }
326 
327   return interface.release();
328 }
329 
GetLoadBias(Memory * memory)330 int64_t Elf::GetLoadBias(Memory* memory) {
331   if (!IsValidElf(memory)) {
332     return 0;
333   }
334 
335   uint8_t class_type;
336   if (!memory->Read(EI_CLASS, &class_type, 1)) {
337     return 0;
338   }
339 
340   if (class_type == ELFCLASS32) {
341     return ElfInterface::GetLoadBias<Elf32_Ehdr, Elf32_Phdr>(memory);
342   } else if (class_type == ELFCLASS64) {
343     return ElfInterface::GetLoadBias<Elf64_Ehdr, Elf64_Phdr>(memory);
344   }
345   return 0;
346 }
347 
SetCachingEnabled(bool enable)348 void Elf::SetCachingEnabled(bool enable) {
349   if (!cache_enabled_ && enable) {
350     cache_enabled_ = true;
351     cache_ =
352         new std::unordered_map<std::string, std::unordered_map<uint64_t, std::shared_ptr<Elf>>>;
353     cache_lock_ = new std::mutex;
354   } else if (cache_enabled_ && !enable) {
355     cache_enabled_ = false;
356     delete cache_;
357     delete cache_lock_;
358   }
359 }
360 
CacheLock()361 void Elf::CacheLock() {
362   cache_lock_->lock();
363 }
364 
CacheUnlock()365 void Elf::CacheUnlock() {
366   cache_lock_->unlock();
367 }
368 
CacheAdd(MapInfo * info)369 void Elf::CacheAdd(MapInfo* info) {
370   if (!info->elf()->valid()) {
371     return;
372   }
373   (*cache_)[std::string(info->name())].emplace(info->elf_start_offset(), info->elf());
374 }
375 
CacheGet(MapInfo * info)376 bool Elf::CacheGet(MapInfo* info) {
377   auto name_entry = cache_->find(std::string(info->name()));
378   if (name_entry == cache_->end()) {
379     return false;
380   }
381   // First look to see if there is a zero offset entry, this indicates
382   // the whole elf is the file.
383   auto& offset_cache = name_entry->second;
384   uint64_t elf_start_offset = 0;
385   auto entry = offset_cache.find(elf_start_offset);
386   if (entry == offset_cache.end()) {
387     // Try and find using the current offset.
388     elf_start_offset = info->offset();
389     entry = offset_cache.find(elf_start_offset);
390     if (entry == offset_cache.end()) {
391       // If this is an execute map, then see if the previous read-only
392       // map is the start of the elf.
393       if (!(info->flags() & PROT_EXEC)) {
394         return false;
395       }
396       auto prev_map = info->GetPrevRealMap();
397       if (prev_map == nullptr || info->offset() <= prev_map->offset() ||
398           (prev_map->flags() != PROT_READ)) {
399         return false;
400       }
401       elf_start_offset = prev_map->offset();
402       entry = offset_cache.find(elf_start_offset);
403       if (entry == offset_cache.end()) {
404         return false;
405       }
406     }
407   }
408 
409   info->set_elf(entry->second);
410   info->set_elf_start_offset(elf_start_offset);
411   info->set_elf_offset(info->offset() - elf_start_offset);
412   return true;
413 }
414 
GetBuildID(Memory * memory)415 std::string Elf::GetBuildID(Memory* memory) {
416   if (!IsValidElf(memory)) {
417     return "";
418   }
419 
420   uint8_t class_type;
421   if (!memory->Read(EI_CLASS, &class_type, 1)) {
422     return "";
423   }
424 
425   if (class_type == ELFCLASS32) {
426     return ElfInterface::ReadBuildIDFromMemory<Elf32_Ehdr, Elf32_Shdr, Elf32_Nhdr>(memory);
427   } else if (class_type == ELFCLASS64) {
428     return ElfInterface::ReadBuildIDFromMemory<Elf64_Ehdr, Elf64_Shdr, Elf64_Nhdr>(memory);
429   }
430   return "";
431 }
432 
GetPrintableBuildID(std::string & build_id)433 std::string Elf::GetPrintableBuildID(std::string& build_id) {
434   if (build_id.empty()) {
435     return "";
436   }
437   std::string printable_build_id;
438   for (const char& c : build_id) {
439     // Use %hhx to avoid sign extension on abis that have signed chars.
440     printable_build_id += android::base::StringPrintf("%02hhx", c);
441   }
442   return printable_build_id;
443 }
444 
GetPrintableBuildID()445 std::string Elf::GetPrintableBuildID() {
446   std::string build_id = GetBuildID();
447   return Elf::GetPrintableBuildID(build_id);
448 }
449 
450 }  // namespace unwindstack
451