* Copyright (C) 2017 The Android Open Source Project
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include <stdint.h>
#include <sys/mman.h>
#include <sys/types.h>
#include <unistd.h>
#include <memory>
#include <mutex>
#include <string>
#include <android-base/stringprintf.h>
#include <unwindstack/Elf.h>
#include <unwindstack/MapInfo.h>
#include <unwindstack/Maps.h>
#include "MemoryFileAtOffset.h"
#include "MemoryRange.h"
namespace unwindstack {
bool MapInfo::InitFileMemoryFromPreviousReadOnlyMap(MemoryFileAtOffset* memory) {
if (prev_real_map == nullptr || prev_real_map->flags != PROT_READ) {
return false;
}
uint64_t map_size = end - prev_real_map->end;
if (!memory->Init(name, prev_real_map->offset, map_size)) {
return false;
}
uint64_t max_size;
if (!Elf::GetInfo(memory, &max_size) || max_size < map_size) {
return false;
}
if (!memory->Init(name, prev_real_map->offset, max_size)) {
return false;
}
elf_offset = offset - prev_real_map->offset;
elf_start_offset = prev_real_map->offset;
return true;
}
Memory* MapInfo::GetFileMemory() {
std::unique_ptr<MemoryFileAtOffset> memory(new MemoryFileAtOffset);
if (offset == 0) {
if (memory->Init(name, 0)) {
return memory.release();
}
return nullptr;
}
uint64_t map_size = end - start;
if (!memory->Init(name, offset, map_size)) {
return nullptr;
}
uint64_t max_size = 0;
if (Elf::GetInfo(memory.get(), &max_size)) {
elf_start_offset = offset;
if (max_size > map_size) {
if (memory->Init(name, offset, max_size)) {
return memory.release();
}
if (memory->Init(name, offset, map_size)) {
return memory.release();
}
elf_start_offset = 0;
return nullptr;
}
return memory.release();
}
if (memory->Init(name, 0) && Elf::IsValidElf(memory.get())) {
elf_offset = offset;
if (prev_real_map == nullptr || prev_real_map->offset != 0 ||
prev_real_map->flags != PROT_READ || prev_real_map->name != name) {
elf_start_offset = offset;
}
return memory.release();
}
if (InitFileMemoryFromPreviousReadOnlyMap(memory.get())) {
return memory.release();
}
if (memory->Init(name, offset, map_size)) {
return memory.release();
}
return nullptr;
}
Memory* MapInfo::CreateMemory(const std::shared_ptr<Memory>& process_memory) {
if (end <= start) {
return nullptr;
}
elf_offset = 0;
if (flags & MAPS_FLAGS_DEVICE_MAP) {
return nullptr;
}
if (!name.empty()) {
Memory* memory = GetFileMemory();
if (memory != nullptr) {
return memory;
}
}
if (process_memory == nullptr) {
return nullptr;
}
std::unique_ptr<MemoryRange> memory(new MemoryRange(process_memory, start, end - start, 0));
if (Elf::IsValidElf(memory.get())) {
memory_backed_elf = true;
return memory.release();
}
if (offset == 0 || name.empty() || prev_real_map == nullptr || prev_real_map->name != name ||
prev_real_map->offset >= offset) {
return nullptr;
}
elf_offset = offset - prev_real_map->offset;
elf_start_offset = prev_real_map->offset;
MemoryRanges* ranges = new MemoryRanges;
ranges->Insert(new MemoryRange(process_memory, prev_real_map->start,
prev_real_map->end - prev_real_map->start, 0));
ranges->Insert(new MemoryRange(process_memory, start, end - start, elf_offset));
memory_backed_elf = true;
return ranges;
}
Elf* MapInfo::GetElf(const std::shared_ptr<Memory>& process_memory, ArchEnum expected_arch) {
{
std::lock_guard<std::mutex> guard(mutex_);
if (elf.get() != nullptr) {
return elf.get();
}
bool locked = false;
if (Elf::CachingEnabled() && !name.empty()) {
Elf::CacheLock();
locked = true;
if (Elf::CacheGet(this)) {
Elf::CacheUnlock();
return elf.get();
}
}
Memory* memory = CreateMemory(process_memory);
if (locked) {
if (Elf::CacheAfterCreateMemory(this)) {
delete memory;
Elf::CacheUnlock();
return elf.get();
}
}
elf.reset(new Elf(memory));
elf->Init();
if (elf->valid() && expected_arch != elf->arch()) {
elf->Invalidate();
}
if (locked) {
Elf::CacheAdd(this);
Elf::CacheUnlock();
}
}
if (!elf->valid()) {
elf_start_offset = offset;
} else if (prev_real_map != nullptr && elf_start_offset != offset &&
prev_real_map->offset == elf_start_offset && prev_real_map->name == name) {
std::lock_guard<std::mutex> guard(prev_real_map->mutex_);
if (prev_real_map->elf.get() == nullptr) {
prev_real_map->elf = elf;
prev_real_map->memory_backed_elf = memory_backed_elf;
}
}
return elf.get();
}
bool MapInfo::GetFunctionName(uint64_t addr, std::string* name, uint64_t* func_offset) {
{
std::lock_guard<std::mutex> guard(mutex_);
if (elf == nullptr) {
return false;
}
}
return elf->GetFunctionName(addr, name, func_offset);
}
uint64_t MapInfo::GetLoadBias(const std::shared_ptr<Memory>& process_memory) {
int64_t cur_load_bias = load_bias.load();
if (cur_load_bias != INT64_MAX) {
return cur_load_bias;
}
{
std::lock_guard<std::mutex> guard(mutex_);
if (elf != nullptr) {
if (elf->valid()) {
cur_load_bias = elf->GetLoadBias();
load_bias = cur_load_bias;
return cur_load_bias;
} else {
load_bias = 0;
return 0;
}
}
}
std::unique_ptr<Memory> memory(CreateMemory(process_memory));
cur_load_bias = Elf::GetLoadBias(memory.get());
load_bias = cur_load_bias;
return cur_load_bias;
}
MapInfo::~MapInfo() {
uintptr_t id = build_id.load();
if (id != 0) {
delete reinterpret_cast<std::string*>(id);
}
}
std::string MapInfo::GetBuildID() {
uintptr_t id = build_id.load();
if (id != 0) {
return *reinterpret_cast<std::string*>(id);
}
std::unique_ptr<std::string> cur_build_id(new std::string);
mutex_.lock();
Elf* elf_obj = elf.get();
mutex_.unlock();
if (elf_obj != nullptr) {
*cur_build_id = elf_obj->GetBuildID();
} else {
std::unique_ptr<Memory> memory(GetFileMemory());
if (memory != nullptr) {
*cur_build_id = Elf::GetBuildID(memory.get());
}
}
id = reinterpret_cast<uintptr_t>(cur_build_id.get());
uintptr_t expected_id = 0;
if (build_id.compare_exchange_weak(expected_id, id)) {
cur_build_id.release();
}
return *reinterpret_cast<std::string*>(id);
}
std::string MapInfo::GetPrintableBuildID() {
std::string raw_build_id = GetBuildID();
if (raw_build_id.empty()) {
return "";
}
std::string printable_build_id;
for (const char& c : raw_build_id) {
printable_build_id += android::base::StringPrintf("%02hhx", c);
}
return printable_build_id;
}
}