android_system_core/libunwindstack/tests/ElfFake.h
Christopher Ferris 150db124f3 Add ability to read jit gdb data.
Changes:
- New JitDebug class to handle all of the jit gdb interface.
- Add unit tests for all, along with new offline test using debug data.
- Add new Memory type called MemoryOfflineParts that has multiple
  MemoryOffline objects to support the offline test.
- Update the tools to use the JitDebug object.
- Modify libbacktrace to use the JitDebug, but only looking in libart.so
  and libartd.so.
- Change the Format32Bits to Is32Bit since it's more accurate and I use
  it in a different context where original name didn't make sense.
- Add a new function to find global variables in an elf file
  (GetGlobalVariable).
- Add a new function to determine if a pc is valid for this elf (IsValidPc).

Bug: 68396769

Test: Ran new unit tests. Added new offline test that uses jit debug data.
Test: Ran art test that generates jit data and verified a crash unwinds
Test: through the jit data.
Change-Id: I6e7ee2f5bab2242028a06feece156dff21c0a974
2018-01-12 11:18:42 -08:00

130 lines
4 KiB
C++

/*
* 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.
*/
#ifndef _LIBUNWINDSTACK_TESTS_ELF_FAKE_H
#define _LIBUNWINDSTACK_TESTS_ELF_FAKE_H
#include <stdint.h>
#include <deque>
#include <string>
#include <unordered_map>
#include <unwindstack/Elf.h>
#include <unwindstack/ElfInterface.h>
#include <unwindstack/Memory.h>
#include <unwindstack/Regs.h>
#include "ElfInterfaceArm.h"
namespace unwindstack {
struct StepData {
StepData(uint64_t pc, uint64_t sp, bool finished) : pc(pc), sp(sp), finished(finished) {}
uint64_t pc;
uint64_t sp;
bool finished;
};
struct FunctionData {
FunctionData(std::string name, uint64_t offset) : name(name), offset(offset) {}
std::string name;
uint64_t offset;
};
class ElfFake : public Elf {
public:
ElfFake(Memory* memory) : Elf(memory) { valid_ = true; }
virtual ~ElfFake() = default;
void FakeSetValid(bool valid) { valid_ = valid; }
void FakeSetLoadBias(uint64_t load_bias) { load_bias_ = load_bias; }
void FakeSetInterface(ElfInterface* interface) { interface_.reset(interface); }
void FakeSetGnuDebugdataInterface(ElfInterface* interface) {
gnu_debugdata_interface_.reset(interface);
}
};
class ElfInterfaceFake : public ElfInterface {
public:
ElfInterfaceFake(Memory* memory) : ElfInterface(memory) {}
virtual ~ElfInterfaceFake() = default;
bool Init(uint64_t*) override { return false; }
void InitHeaders() override {}
bool GetSoname(std::string*) override { return false; }
bool GetFunctionName(uint64_t, uint64_t, std::string*, uint64_t*) override;
bool GetGlobalVariable(const std::string&, uint64_t*) override;
bool Step(uint64_t, uint64_t, Regs*, Memory*, bool*) override;
void FakeSetGlobalVariable(const std::string& global, uint64_t offset) {
globals_[global] = offset;
}
static void FakePushFunctionData(const FunctionData data) { functions_.push_back(data); }
static void FakePushStepData(const StepData data) { steps_.push_back(data); }
static void FakeClear() {
functions_.clear();
steps_.clear();
}
private:
std::unordered_map<std::string, uint64_t> globals_;
static std::deque<FunctionData> functions_;
static std::deque<StepData> steps_;
};
class ElfInterface32Fake : public ElfInterface32 {
public:
ElfInterface32Fake(Memory* memory) : ElfInterface32(memory) {}
virtual ~ElfInterface32Fake() = default;
void FakeSetEhFrameOffset(uint64_t offset) { eh_frame_offset_ = offset; }
void FakeSetEhFrameSize(uint64_t size) { eh_frame_size_ = size; }
void FakeSetDebugFrameOffset(uint64_t offset) { debug_frame_offset_ = offset; }
void FakeSetDebugFrameSize(uint64_t size) { debug_frame_size_ = size; }
};
class ElfInterface64Fake : public ElfInterface64 {
public:
ElfInterface64Fake(Memory* memory) : ElfInterface64(memory) {}
virtual ~ElfInterface64Fake() = default;
void FakeSetEhFrameOffset(uint64_t offset) { eh_frame_offset_ = offset; }
void FakeSetEhFrameSize(uint64_t size) { eh_frame_size_ = size; }
void FakeSetDebugFrameOffset(uint64_t offset) { debug_frame_offset_ = offset; }
void FakeSetDebugFrameSize(uint64_t size) { debug_frame_size_ = size; }
};
class ElfInterfaceArmFake : public ElfInterfaceArm {
public:
ElfInterfaceArmFake(Memory* memory) : ElfInterfaceArm(memory) {}
virtual ~ElfInterfaceArmFake() = default;
void FakeSetStartOffset(uint64_t offset) { start_offset_ = offset; }
void FakeSetTotalEntries(size_t entries) { total_entries_ = entries; }
};
} // namespace unwindstack
#endif // _LIBUNWINDSTACK_TESTS_ELF_FAKE_H