#include <stdint.h>
#include <string.h>
#include <functional>
#include <unwindstack/Elf.h>
#include <unwindstack/MachineArm.h>
#include <unwindstack/MapInfo.h>
#include <unwindstack/Memory.h>
#include <unwindstack/RegsArm.h>
#include <unwindstack/UcontextArm.h>
#include <unwindstack/UserArm.h>
namespace unwindstack {
RegsArm::RegsArm() : RegsImpl<uint32_t>(ARM_REG_LAST, Location(LOCATION_REGISTER, ARM_REG_LR)) {}
ArchEnum RegsArm::Arch() {
return ARCH_ARM;
}
uint64_t RegsArm::pc() {
return regs_[ARM_REG_PC];
}
uint64_t RegsArm::sp() {
return regs_[ARM_REG_SP];
}
void RegsArm::set_pc(uint64_t pc) {
regs_[ARM_REG_PC] = pc;
}
void RegsArm::set_sp(uint64_t sp) {
regs_[ARM_REG_SP] = sp;
}
bool RegsArm::SetPcFromReturnAddress(Memory*) {
uint32_t lr = regs_[ARM_REG_LR];
if (regs_[ARM_REG_PC] == lr) {
return false;
}
regs_[ARM_REG_PC] = lr;
return true;
}
void RegsArm::IterateRegisters(std::function<void(const char*, uint64_t)> fn) {
fn("r0", regs_[ARM_REG_R0]);
fn("r1", regs_[ARM_REG_R1]);
fn("r2", regs_[ARM_REG_R2]);
fn("r3", regs_[ARM_REG_R3]);
fn("r4", regs_[ARM_REG_R4]);
fn("r5", regs_[ARM_REG_R5]);
fn("r6", regs_[ARM_REG_R6]);
fn("r7", regs_[ARM_REG_R7]);
fn("r8", regs_[ARM_REG_R8]);
fn("r9", regs_[ARM_REG_R9]);
fn("r10", regs_[ARM_REG_R10]);
fn("r11", regs_[ARM_REG_R11]);
fn("ip", regs_[ARM_REG_R12]);
fn("sp", regs_[ARM_REG_SP]);
fn("lr", regs_[ARM_REG_LR]);
fn("pc", regs_[ARM_REG_PC]);
}
Regs* RegsArm::Read(void* remote_data) {
arm_user_regs* user = reinterpret_cast<arm_user_regs*>(remote_data);
RegsArm* regs = new RegsArm();
memcpy(regs->RawData(), &user->regs[0], ARM_REG_LAST * sizeof(uint32_t));
return regs;
}
Regs* RegsArm::CreateFromUcontext(void* ucontext) {
arm_ucontext_t* arm_ucontext = reinterpret_cast<arm_ucontext_t*>(ucontext);
RegsArm* regs = new RegsArm();
memcpy(regs->RawData(), &arm_ucontext->uc_mcontext.regs[0], ARM_REG_LAST * sizeof(uint32_t));
return regs;
}
bool RegsArm::StepIfSignalHandler(uint64_t elf_offset, Elf* elf, Memory* process_memory) {
uint32_t data;
Memory* elf_memory = elf->memory();
if (!elf_memory->ReadFully(elf_offset, &data, sizeof(data))) {
return false;
}
uint64_t offset = 0;
if (data == 0xe3a07077 || data == 0xef900077 || data == 0xdf002777) {
uint64_t sp = regs_[ARM_REG_SP];
if (!process_memory->ReadFully(sp, &data, sizeof(data))) {
return false;
}
if (data == 0x5ac3c35a) {
offset = sp + 0x14 + 0xc;
} else {
offset = sp + 0xc;
}
} else if (data == 0xe3a070ad || data == 0xef9000ad || data == 0xdf0027ad) {
uint64_t sp = regs_[ARM_REG_SP];
if (!process_memory->ReadFully(sp, &data, sizeof(data))) {
return false;
}
if (data == sp + 8) {
offset = sp + 8 + 0x80 + 0x14 + 0xc;
} else {
offset = sp + 0x80 + 0x14 + 0xc;
}
}
if (offset == 0) {
return false;
}
if (!process_memory->ReadFully(offset, regs_.data(), sizeof(uint32_t) * ARM_REG_LAST)) {
return false;
}
return true;
}
Regs* RegsArm::Clone() {
return new RegsArm(*this);
}
}