If a function crashes by jumping into unexecutable code, the old method could not unwind through that. Add a fallback method to set the pc from the default return address location. In addition, add a new finished check for steps. This will provide a method to indicate that this step is the last step. This prevents cases where the fallback method might be triggered incorrectly. Update the libbacktrace code to unwind using the new methodology. Update the unwind tool to use the new unwind methodology. Add a new option to crasher that calls through a null function. Create a new object, Unwinder, that encapsulates the a basic unwind. For now, libbacktrace will still use the custom code. Added new unit tests to cover the new cases. Also add a test that crashes calling a nullptr as a function, and then has call frames in the signal stack. Bug: 65842173 Test: Pass all unit tests, verify crasher dumps properly. Change-Id: Ia18430ab107e9f7bdf0e14a9b74710b1280bd7f4
177 lines
4.5 KiB
C++
177 lines
4.5 KiB
C++
/*
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* Copyright (C) 2016 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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#ifndef _LIBUNWINDSTACK_REGS_H
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#define _LIBUNWINDSTACK_REGS_H
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#include <stdint.h>
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#include <vector>
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namespace unwindstack {
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// Forward declarations.
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class Elf;
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struct MapInfo;
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class Memory;
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struct x86_ucontext_t;
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struct x86_64_ucontext_t;
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class Regs {
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public:
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enum LocationEnum : uint8_t {
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LOCATION_UNKNOWN = 0,
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LOCATION_REGISTER,
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LOCATION_SP_OFFSET,
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};
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struct Location {
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Location(LocationEnum type, int16_t value) : type(type), value(value) {}
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LocationEnum type;
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int16_t value;
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};
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Regs(uint16_t total_regs, uint16_t sp_reg, const Location& return_loc)
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: total_regs_(total_regs), sp_reg_(sp_reg), return_loc_(return_loc) {}
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virtual ~Regs() = default;
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virtual uint32_t MachineType() = 0;
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virtual void* RawData() = 0;
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virtual uint64_t pc() = 0;
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virtual uint64_t sp() = 0;
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virtual bool GetReturnAddressFromDefault(Memory* memory, uint64_t* value) = 0;
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virtual uint64_t GetAdjustedPc(uint64_t rel_pc, Elf* elf) = 0;
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virtual bool StepIfSignalHandler(uint64_t rel_pc, Elf* elf, Memory* process_memory) = 0;
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virtual void SetFromRaw() = 0;
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virtual bool SetPcFromReturnAddress(Memory* process_memory) = 0;
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uint16_t sp_reg() { return sp_reg_; }
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uint16_t total_regs() { return total_regs_; }
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static uint32_t CurrentMachineType();
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static Regs* RemoteGet(pid_t pid);
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static Regs* CreateFromUcontext(uint32_t machine_type, void* ucontext);
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static Regs* CreateFromLocal();
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protected:
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uint16_t total_regs_;
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uint16_t sp_reg_;
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Location return_loc_;
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};
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template <typename AddressType>
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class RegsImpl : public Regs {
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public:
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RegsImpl(uint16_t total_regs, uint16_t sp_reg, Location return_loc)
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: Regs(total_regs, sp_reg, return_loc), regs_(total_regs) {}
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virtual ~RegsImpl() = default;
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bool GetReturnAddressFromDefault(Memory* memory, uint64_t* value) override;
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uint64_t pc() override { return pc_; }
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uint64_t sp() override { return sp_; }
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void set_pc(AddressType pc) { pc_ = pc; }
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void set_sp(AddressType sp) { sp_ = sp; }
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inline AddressType& operator[](size_t reg) { return regs_[reg]; }
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void* RawData() override { return regs_.data(); }
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protected:
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AddressType pc_;
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AddressType sp_;
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std::vector<AddressType> regs_;
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};
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class RegsArm : public RegsImpl<uint32_t> {
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public:
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RegsArm();
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virtual ~RegsArm() = default;
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virtual uint32_t MachineType() override final;
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uint64_t GetAdjustedPc(uint64_t rel_pc, Elf* elf) override;
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void SetFromRaw() override;
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bool SetPcFromReturnAddress(Memory* process_memory) override;
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bool StepIfSignalHandler(uint64_t rel_pc, Elf* elf, Memory* process_memory) override;
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};
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class RegsArm64 : public RegsImpl<uint64_t> {
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public:
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RegsArm64();
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virtual ~RegsArm64() = default;
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virtual uint32_t MachineType() override final;
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uint64_t GetAdjustedPc(uint64_t rel_pc, Elf* elf) override;
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void SetFromRaw() override;
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bool SetPcFromReturnAddress(Memory* process_memory) override;
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bool StepIfSignalHandler(uint64_t rel_pc, Elf* elf, Memory* process_memory) override;
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};
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class RegsX86 : public RegsImpl<uint32_t> {
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public:
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RegsX86();
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virtual ~RegsX86() = default;
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virtual uint32_t MachineType() override final;
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uint64_t GetAdjustedPc(uint64_t rel_pc, Elf* elf) override;
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void SetFromRaw() override;
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bool SetPcFromReturnAddress(Memory* process_memory) override;
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bool StepIfSignalHandler(uint64_t rel_pc, Elf* elf, Memory* process_memory) override;
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void SetFromUcontext(x86_ucontext_t* ucontext);
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};
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class RegsX86_64 : public RegsImpl<uint64_t> {
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public:
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RegsX86_64();
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virtual ~RegsX86_64() = default;
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virtual uint32_t MachineType() override final;
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uint64_t GetAdjustedPc(uint64_t rel_pc, Elf* elf) override;
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void SetFromRaw() override;
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bool SetPcFromReturnAddress(Memory* process_memory) override;
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bool StepIfSignalHandler(uint64_t rel_pc, Elf* elf, Memory* process_memory) override;
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void SetFromUcontext(x86_64_ucontext_t* ucontext);
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};
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} // namespace unwindstack
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#endif // _LIBUNWINDSTACK_REGS_H
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