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512 lines
15 KiB
512 lines
15 KiB
/* |
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* Copyright (C) 2015 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#include "dso.h" |
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#include <stdlib.h> |
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#include <string.h> |
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#include <algorithm> |
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#include <limits> |
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#include <vector> |
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#include <android-base/file.h> |
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#include <android-base/logging.h> |
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#include "environment.h" |
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#include "read_apk.h" |
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#include "read_elf.h" |
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#include "utils.h" |
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static OneTimeFreeAllocator symbol_name_allocator; |
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Symbol::Symbol(const std::string& name, uint64_t addr, uint64_t len) |
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: addr(addr), |
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len(len), |
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name_(symbol_name_allocator.AllocateString(name)), |
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demangled_name_(nullptr), |
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dump_id_(UINT_MAX) {} |
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const char* Symbol::DemangledName() const { |
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if (demangled_name_ == nullptr) { |
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const std::string s = Dso::Demangle(name_); |
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if (s == name_) { |
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demangled_name_ = name_; |
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} else { |
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demangled_name_ = symbol_name_allocator.AllocateString(s); |
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} |
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} |
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return demangled_name_; |
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} |
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bool Dso::demangle_ = true; |
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std::string Dso::symfs_dir_; |
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std::string Dso::vmlinux_; |
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std::string Dso::kallsyms_; |
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bool Dso::read_kernel_symbols_from_proc_; |
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std::unordered_map<std::string, BuildId> Dso::build_id_map_; |
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size_t Dso::dso_count_; |
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uint32_t Dso::g_dump_id_; |
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std::unique_ptr<TemporaryFile> Dso::vdso_64bit_; |
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std::unique_ptr<TemporaryFile> Dso::vdso_32bit_; |
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void Dso::SetDemangle(bool demangle) { demangle_ = demangle; } |
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extern "C" char* __cxa_demangle(const char* mangled_name, char* buf, size_t* n, |
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int* status); |
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std::string Dso::Demangle(const std::string& name) { |
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if (!demangle_) { |
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return name; |
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} |
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int status; |
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bool is_linker_symbol = (name.find(linker_prefix) == 0); |
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const char* mangled_str = name.c_str(); |
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if (is_linker_symbol) { |
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mangled_str += linker_prefix.size(); |
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} |
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std::string result = name; |
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char* demangled_name = __cxa_demangle(mangled_str, nullptr, nullptr, &status); |
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if (status == 0) { |
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if (is_linker_symbol) { |
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result = std::string("[linker]") + demangled_name; |
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} else { |
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result = demangled_name; |
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} |
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free(demangled_name); |
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} else if (is_linker_symbol) { |
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result = std::string("[linker]") + mangled_str; |
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} |
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return result; |
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} |
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bool Dso::SetSymFsDir(const std::string& symfs_dir) { |
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std::string dirname = symfs_dir; |
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if (!dirname.empty()) { |
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if (dirname.back() != '/') { |
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dirname.push_back('/'); |
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} |
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if (!IsDir(symfs_dir)) { |
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LOG(ERROR) << "Invalid symfs_dir '" << symfs_dir << "'"; |
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return false; |
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} |
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} |
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symfs_dir_ = dirname; |
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return true; |
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} |
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void Dso::SetVmlinux(const std::string& vmlinux) { vmlinux_ = vmlinux; } |
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void Dso::SetBuildIds( |
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const std::vector<std::pair<std::string, BuildId>>& build_ids) { |
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std::unordered_map<std::string, BuildId> map; |
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for (auto& pair : build_ids) { |
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LOG(DEBUG) << "build_id_map: " << pair.first << ", " |
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<< pair.second.ToString(); |
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map.insert(pair); |
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} |
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build_id_map_ = std::move(map); |
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} |
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void Dso::SetVdsoFile(std::unique_ptr<TemporaryFile> vdso_file, bool is_64bit) { |
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if (is_64bit) { |
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vdso_64bit_ = std::move(vdso_file); |
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} else { |
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vdso_32bit_ = std::move(vdso_file); |
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} |
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} |
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BuildId Dso::FindExpectedBuildIdForPath(const std::string& path) { |
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auto it = build_id_map_.find(path); |
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if (it != build_id_map_.end()) { |
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return it->second; |
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} |
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return BuildId(); |
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} |
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BuildId Dso::GetExpectedBuildId() { |
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return FindExpectedBuildIdForPath(path_); |
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} |
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std::unique_ptr<Dso> Dso::CreateDso(DsoType dso_type, const std::string& dso_path, |
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bool force_64bit) { |
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return std::unique_ptr<Dso>(new Dso(dso_type, dso_path, force_64bit)); |
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} |
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Dso::Dso(DsoType type, const std::string& path, bool force_64bit) |
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: type_(type), |
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path_(path), |
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debug_file_path_(path), |
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min_vaddr_(std::numeric_limits<uint64_t>::max()), |
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is_loaded_(false), |
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dump_id_(UINT_MAX), |
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symbol_dump_id_(0) { |
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if (type_ == DSO_KERNEL) { |
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min_vaddr_ = 0; |
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} |
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// Check if file matching path_ exists in symfs directory before using it as |
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// debug_file_path_. |
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if (!symfs_dir_.empty()) { |
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std::string path_in_symfs = symfs_dir_ + path_; |
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std::tuple<bool, std::string, std::string> tuple = |
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SplitUrlInApk(path_in_symfs); |
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std::string file_path = |
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std::get<0>(tuple) ? std::get<1>(tuple) : path_in_symfs; |
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if (IsRegularFile(file_path)) { |
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debug_file_path_ = path_in_symfs; |
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} |
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} else if (path == "[vdso]") { |
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if (force_64bit && vdso_64bit_ != nullptr) { |
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debug_file_path_ = vdso_64bit_->path; |
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} else if (!force_64bit && vdso_32bit_ != nullptr) { |
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debug_file_path_ = vdso_32bit_->path; |
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} |
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} |
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size_t pos = path.find_last_of("/\\"); |
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if (pos != std::string::npos) { |
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file_name_ = path.substr(pos + 1); |
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} else { |
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file_name_ = path; |
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} |
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dso_count_++; |
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} |
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Dso::~Dso() { |
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if (--dso_count_ == 0) { |
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// Clean up global variables when no longer used. |
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symbol_name_allocator.Clear(); |
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demangle_ = true; |
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symfs_dir_.clear(); |
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vmlinux_.clear(); |
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kallsyms_.clear(); |
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read_kernel_symbols_from_proc_ = false; |
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build_id_map_.clear(); |
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g_dump_id_ = 0; |
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vdso_64bit_ = nullptr; |
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vdso_32bit_ = nullptr; |
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} |
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} |
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uint32_t Dso::CreateDumpId() { |
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CHECK(!HasDumpId()); |
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return dump_id_ = g_dump_id_++; |
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} |
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uint32_t Dso::CreateSymbolDumpId(const Symbol* symbol) { |
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CHECK(!symbol->HasDumpId()); |
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symbol->dump_id_ = symbol_dump_id_++; |
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return symbol->dump_id_; |
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} |
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const Symbol* Dso::FindSymbol(uint64_t vaddr_in_dso) { |
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if (!is_loaded_) { |
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Load(); |
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} |
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if (!symbols_.empty()) { |
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auto it = std::upper_bound(symbols_.begin(), symbols_.end(), |
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Symbol("", vaddr_in_dso, 0), |
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Symbol::CompareValueByAddr); |
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if (it != symbols_.begin()) { |
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--it; |
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if (it->addr <= vaddr_in_dso && (it->addr + it->len > vaddr_in_dso)) { |
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return &*it; |
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} |
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} |
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} |
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if (!unknown_symbols_.empty()) { |
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auto it = unknown_symbols_.find(vaddr_in_dso); |
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if (it != unknown_symbols_.end()) { |
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return &it->second; |
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} |
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} |
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return nullptr; |
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} |
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const std::vector<Symbol>& Dso::GetSymbols() { |
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if (!is_loaded_) { |
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Load(); |
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} |
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return symbols_; |
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} |
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void Dso::SetSymbols(std::vector<Symbol>* symbols) { |
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symbols_ = std::move(*symbols); |
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symbols->clear(); |
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} |
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void Dso::AddUnknownSymbol(uint64_t vaddr_in_dso, const std::string& name) { |
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unknown_symbols_.insert(std::make_pair(vaddr_in_dso, Symbol(name, vaddr_in_dso, 1))); |
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} |
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uint64_t Dso::MinVirtualAddress() { |
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if (min_vaddr_ == std::numeric_limits<uint64_t>::max()) { |
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min_vaddr_ = 0; |
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if (type_ == DSO_ELF_FILE) { |
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BuildId build_id = GetExpectedBuildId(); |
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uint64_t addr; |
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ElfStatus result = ReadMinExecutableVirtualAddressFromElfFile( |
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GetDebugFilePath(), build_id, &addr); |
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if (result != ElfStatus::NO_ERROR) { |
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LOG(WARNING) << "failed to read min virtual address of " |
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<< GetDebugFilePath() << ": " << result; |
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} else { |
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min_vaddr_ = addr; |
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} |
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} |
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} |
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return min_vaddr_; |
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} |
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static std::vector<Symbol> MergeSortedSymbols(const std::vector<Symbol>& s1, |
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const std::vector<Symbol>& s2) { |
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std::vector<Symbol> result; |
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std::set_union(s1.begin(), s1.end(), s2.begin(), s2.end(), std::back_inserter(result), |
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Symbol::CompareValueByAddr); |
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return result; |
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} |
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void Dso::Load() { |
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is_loaded_ = true; |
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std::vector<Symbol> dumped_symbols; |
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if (!symbols_.empty()) { |
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// If symbols has been read from file feature section of perf.data, move it to |
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// dumped_symbols, so later we can merge them with symbols read from file system. |
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dumped_symbols = std::move(symbols_); |
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symbols_.clear(); |
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} |
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bool result = false; |
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switch (type_) { |
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case DSO_KERNEL: |
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result = LoadKernel(); |
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break; |
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case DSO_KERNEL_MODULE: |
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result = LoadKernelModule(); |
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break; |
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case DSO_ELF_FILE: { |
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if (std::get<0>(SplitUrlInApk(path_))) { |
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result = LoadEmbeddedElfFile(); |
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} else { |
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result = LoadElfFile(); |
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} |
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break; |
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} |
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} |
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if (result) { |
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std::sort(symbols_.begin(), symbols_.end(), Symbol::CompareValueByAddr); |
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FixupSymbolLength(); |
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} else { |
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symbols_.clear(); |
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} |
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if (symbols_.empty()) { |
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symbols_ = std::move(dumped_symbols); |
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} else if (!dumped_symbols.empty()) { |
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symbols_ = MergeSortedSymbols(symbols_, dumped_symbols); |
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} |
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if (symbols_.empty()) { |
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LOG(DEBUG) << "failed to load dso: " << path_; |
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} |
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} |
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static bool IsKernelFunctionSymbol(const KernelSymbol& symbol) { |
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return (symbol.type == 'T' || symbol.type == 't' || symbol.type == 'W' || |
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symbol.type == 'w'); |
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} |
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static bool KernelSymbolCallback(const KernelSymbol& kernel_symbol, |
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std::vector<Symbol>* symbols) { |
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if (IsKernelFunctionSymbol(kernel_symbol)) { |
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symbols->emplace_back(Symbol(kernel_symbol.name, kernel_symbol.addr, 0)); |
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} |
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return false; |
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} |
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static void VmlinuxSymbolCallback(const ElfFileSymbol& elf_symbol, |
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std::vector<Symbol>* symbols) { |
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if (elf_symbol.is_func) { |
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symbols->emplace_back( |
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Symbol(elf_symbol.name, elf_symbol.vaddr, elf_symbol.len)); |
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} |
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} |
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bool Dso::CheckReadSymbolResult(ElfStatus result, const std::string& filename) { |
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if (result == ElfStatus::NO_ERROR) { |
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LOG(VERBOSE) << "Read symbols from " << filename << " successfully"; |
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return true; |
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} else if (result == ElfStatus::NO_SYMBOL_TABLE) { |
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if (path_ == "[vdso]") { |
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// Vdso only contains dynamic symbol table, and we can't change that. |
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return true; |
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} |
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// Lacking symbol table isn't considered as an error but worth reporting. |
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LOG(WARNING) << filename << " doesn't contain symbol table"; |
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return true; |
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} else { |
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LOG(WARNING) << "failed to read symbols from " << filename |
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<< ": " << result; |
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return false; |
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} |
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} |
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bool Dso::LoadKernel() { |
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BuildId build_id = GetExpectedBuildId(); |
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if (!vmlinux_.empty()) { |
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ElfStatus result = ParseSymbolsFromElfFile(vmlinux_, build_id, |
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std::bind(VmlinuxSymbolCallback, std::placeholders::_1, &symbols_)); |
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return CheckReadSymbolResult(result, vmlinux_); |
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} else if (!kallsyms_.empty()) { |
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ProcessKernelSymbols(kallsyms_, std::bind(&KernelSymbolCallback, |
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std::placeholders::_1, &symbols_)); |
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bool all_zero = true; |
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for (const auto& symbol : symbols_) { |
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if (symbol.addr != 0) { |
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all_zero = false; |
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break; |
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} |
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} |
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if (all_zero) { |
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LOG(WARNING) |
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<< "Symbol addresses in /proc/kallsyms on device are all zero. " |
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"`echo 0 >/proc/sys/kernel/kptr_restrict` if possible."; |
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symbols_.clear(); |
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return false; |
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} |
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} else if (read_kernel_symbols_from_proc_ || !build_id.IsEmpty()) { |
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// Try /proc/kallsyms only when asked to do so, or when build id matches. |
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// Otherwise, it is likely to use /proc/kallsyms on host for perf.data recorded on device. |
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if (!build_id.IsEmpty()) { |
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BuildId real_build_id; |
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if (!GetKernelBuildId(&real_build_id)) { |
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return false; |
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} |
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bool match = (build_id == real_build_id); |
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if (!match) { |
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LOG(WARNING) << "failed to read symbols from /proc/kallsyms: Build id " |
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<< "mismatch"; |
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return false; |
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} |
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} |
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std::string kallsyms; |
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if (!android::base::ReadFileToString("/proc/kallsyms", &kallsyms)) { |
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LOG(DEBUG) << "failed to read /proc/kallsyms"; |
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return false; |
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} |
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ProcessKernelSymbols(kallsyms, std::bind(&KernelSymbolCallback, |
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std::placeholders::_1, &symbols_)); |
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bool all_zero = true; |
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for (const auto& symbol : symbols_) { |
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if (symbol.addr != 0) { |
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all_zero = false; |
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break; |
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} |
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} |
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if (all_zero) { |
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LOG(WARNING) << "Symbol addresses in /proc/kallsyms are all zero. " |
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"`echo 0 >/proc/sys/kernel/kptr_restrict` if possible."; |
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symbols_.clear(); |
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return false; |
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} |
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} |
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return true; |
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} |
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static void ElfFileSymbolCallback(const ElfFileSymbol& elf_symbol, |
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bool (*filter)(const ElfFileSymbol&), |
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std::vector<Symbol>* symbols) { |
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if (filter(elf_symbol)) { |
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symbols->emplace_back(elf_symbol.name, elf_symbol.vaddr, elf_symbol.len); |
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} |
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} |
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static bool SymbolFilterForKernelModule(const ElfFileSymbol& elf_symbol) { |
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// TODO: Parse symbol outside of .text section. |
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return (elf_symbol.is_func && elf_symbol.is_in_text_section); |
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} |
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bool Dso::LoadKernelModule() { |
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BuildId build_id = GetExpectedBuildId(); |
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ElfStatus result = ParseSymbolsFromElfFile(GetDebugFilePath(), build_id, |
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std::bind(ElfFileSymbolCallback, std::placeholders::_1, |
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SymbolFilterForKernelModule, &symbols_)); |
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return CheckReadSymbolResult(result, GetDebugFilePath()); |
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} |
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static bool SymbolFilterForDso(const ElfFileSymbol& elf_symbol) { |
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return elf_symbol.is_func || |
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(elf_symbol.is_label && elf_symbol.is_in_text_section); |
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} |
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bool Dso::LoadElfFile() { |
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BuildId build_id = GetExpectedBuildId(); |
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if (symfs_dir_.empty()) { |
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// Linux host can store debug shared libraries in /usr/lib/debug. |
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ElfStatus result = ParseSymbolsFromElfFile( |
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"/usr/lib/debug" + path_, build_id, |
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std::bind(ElfFileSymbolCallback, std::placeholders::_1, |
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SymbolFilterForDso, &symbols_)); |
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if (result == ElfStatus::NO_ERROR) { |
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return CheckReadSymbolResult(result, "/usr/lib/debug" + path_); |
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} |
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} |
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// TODO: load std::vector<Symbol> directly from ParseSymbolsFromElfFile |
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// instead of needing to call a callback function for each symbol. |
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ElfStatus result = ParseSymbolsFromElfFile( |
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GetDebugFilePath(), build_id, |
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std::bind(ElfFileSymbolCallback, std::placeholders::_1, |
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SymbolFilterForDso, &symbols_)); |
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return CheckReadSymbolResult(result, GetDebugFilePath()); |
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} |
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bool Dso::LoadEmbeddedElfFile() { |
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BuildId build_id = GetExpectedBuildId(); |
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auto tuple = SplitUrlInApk(GetDebugFilePath()); |
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CHECK(std::get<0>(tuple)); |
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ElfStatus result = ParseSymbolsFromApkFile( |
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std::get<1>(tuple), std::get<2>(tuple), build_id, |
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std::bind(ElfFileSymbolCallback, std::placeholders::_1, |
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SymbolFilterForDso, &symbols_)); |
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return CheckReadSymbolResult(result, GetDebugFilePath()); |
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} |
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void Dso::FixupSymbolLength() { |
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Symbol* prev_symbol = nullptr; |
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for (auto& symbol : symbols_) { |
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if (prev_symbol != nullptr && prev_symbol->len == 0) { |
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prev_symbol->len = symbol.addr - prev_symbol->addr; |
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} |
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prev_symbol = const_cast<Symbol*>(&symbol); |
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} |
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if (prev_symbol != nullptr && prev_symbol->len == 0) { |
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prev_symbol->len = std::numeric_limits<uint64_t>::max() - prev_symbol->addr; |
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} |
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} |
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const char* DsoTypeToString(DsoType dso_type) { |
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switch (dso_type) { |
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case DSO_KERNEL: |
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return "dso_kernel"; |
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case DSO_KERNEL_MODULE: |
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return "dso_kernel_module"; |
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case DSO_ELF_FILE: |
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return "dso_elf_file"; |
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default: |
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return "unknown"; |
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} |
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}
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