For windows __security_check_cookie call gets call everytime function is return without fixup. Since this function is defined in runtime library, it incures cost of call in dll which simply does comparison and returns most time. With Fixup, We selective move to call in DLL only if comparison fails.
248 lines
8.1 KiB
C++
248 lines
8.1 KiB
C++
//===- X86WinFixupBufferSecurityCheck.cpp Fix Buffer Security Check Call -===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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// Buffer Security Check implementation inserts windows specific callback into
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// code. On windows, __security_check_cookie call gets call everytime function
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// is return without fixup. Since this function is defined in runtime library,
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// it incures cost of call in dll which simply does comparison and returns most
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// time. With Fixup, We selective move to call in DLL only if comparison fails.
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//===----------------------------------------------------------------------===//
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#include "X86.h"
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#include "X86FrameLowering.h"
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#include "X86InstrInfo.h"
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#include "X86Subtarget.h"
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#include "llvm/CodeGen/LivePhysRegs.h"
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#include "llvm/CodeGen/MachineFunctionPass.h"
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#include "llvm/CodeGen/MachineInstrBuilder.h"
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#include "llvm/CodeGen/MachineRegisterInfo.h"
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#include "llvm/IR/Module.h"
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#include <iterator>
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using namespace llvm;
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#define DEBUG_TYPE "x86-win-fixup-bscheck"
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namespace {
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class X86WinFixupBufferSecurityCheckPass : public MachineFunctionPass {
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public:
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static char ID;
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X86WinFixupBufferSecurityCheckPass() : MachineFunctionPass(ID) {}
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StringRef getPassName() const override {
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return "X86 Windows Fixup Buffer Security Check";
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}
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bool runOnMachineFunction(MachineFunction &MF) override;
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std::pair<MachineBasicBlock *, MachineInstr *>
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getSecurityCheckerBasicBlock(MachineFunction &MF);
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void getGuardCheckSequence(MachineBasicBlock *CurMBB, MachineInstr *CheckCall,
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MachineInstr *SeqMI[5]);
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void SplitBasicBlock(MachineBasicBlock *CurMBB, MachineBasicBlock *NewRetMBB,
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MachineBasicBlock::iterator SplitIt);
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void FinishBlock(MachineBasicBlock *MBB);
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void FinishFunction(MachineBasicBlock *FailMBB, MachineBasicBlock *NewRetMBB);
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std::pair<MachineInstr *, MachineInstr *>
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CreateFailCheckSequence(MachineBasicBlock *CurMBB, MachineBasicBlock *FailMBB,
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MachineInstr *SeqMI[5]);
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};
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} // end anonymous namespace
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char X86WinFixupBufferSecurityCheckPass::ID = 0;
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INITIALIZE_PASS(X86WinFixupBufferSecurityCheckPass, DEBUG_TYPE, DEBUG_TYPE,
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false, false)
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FunctionPass *llvm::createX86WinFixupBufferSecurityCheckPass() {
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return new X86WinFixupBufferSecurityCheckPass();
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}
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void X86WinFixupBufferSecurityCheckPass::SplitBasicBlock(
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MachineBasicBlock *CurMBB, MachineBasicBlock *NewRetMBB,
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MachineBasicBlock::iterator SplitIt) {
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NewRetMBB->splice(NewRetMBB->end(), CurMBB, SplitIt, CurMBB->end());
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}
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std::pair<MachineBasicBlock *, MachineInstr *>
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X86WinFixupBufferSecurityCheckPass::getSecurityCheckerBasicBlock(
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MachineFunction &MF) {
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MachineBasicBlock::reverse_iterator RBegin, REnd;
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for (auto &MBB : llvm::reverse(MF)) {
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for (RBegin = MBB.rbegin(), REnd = MBB.rend(); RBegin != REnd; ++RBegin) {
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auto &MI = *RBegin;
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if (MI.getOpcode() == X86::CALL64pcrel32 &&
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MI.getNumExplicitOperands() == 1) {
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auto MO = MI.getOperand(0);
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if (MO.isGlobal()) {
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auto Callee = dyn_cast<Function>(MO.getGlobal());
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if (Callee && Callee->getName() == "__security_check_cookie") {
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return std::make_pair(&MBB, &MI);
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break;
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}
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}
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}
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}
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}
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return std::make_pair(nullptr, nullptr);
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}
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void X86WinFixupBufferSecurityCheckPass::getGuardCheckSequence(
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MachineBasicBlock *CurMBB, MachineInstr *CheckCall,
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MachineInstr *SeqMI[5]) {
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MachineBasicBlock::iterator UIt(CheckCall);
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MachineBasicBlock::reverse_iterator DIt(CheckCall);
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// Seq From StackUp to Stack Down Is fixed.
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// ADJCALLSTACKUP64
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++UIt;
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SeqMI[4] = &*UIt;
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// CALL __security_check_cookie
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SeqMI[3] = CheckCall;
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// COPY function slot cookie
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++DIt;
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SeqMI[2] = &*DIt;
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// ADJCALLSTACKDOWN64
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++DIt;
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SeqMI[1] = &*DIt;
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MachineBasicBlock::reverse_iterator XIt(SeqMI[1]);
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for (; XIt != CurMBB->rbegin(); ++XIt) {
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auto &CI = *XIt;
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if ((CI.getOpcode() == X86::XOR64_FP) || (CI.getOpcode() == X86::XOR32_FP))
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break;
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}
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SeqMI[0] = &*XIt;
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}
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std::pair<MachineInstr *, MachineInstr *>
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X86WinFixupBufferSecurityCheckPass::CreateFailCheckSequence(
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MachineBasicBlock *CurMBB, MachineBasicBlock *FailMBB,
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MachineInstr *SeqMI[5]) {
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auto MF = CurMBB->getParent();
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Module &M = *MF->getFunction().getParent();
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GlobalVariable *GV = M.getGlobalVariable("__security_cookie");
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assert(GV && " Security Cookie was not installed!");
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const TargetInstrInfo *TII = MF->getSubtarget().getInstrInfo();
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MachineInstr *GuardXor = SeqMI[0];
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MachineBasicBlock::iterator InsertPt(GuardXor);
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++InsertPt;
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// Compare security_Cookie with XOR_Val, if not same, we have violation
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auto CMI = BuildMI(*CurMBB, InsertPt, DebugLoc(), TII->get(X86::CMP64rm))
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.addReg(GuardXor->getOperand(0).getReg())
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.addReg(X86::RIP)
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.addImm(1)
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.addReg(X86::NoRegister)
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.addGlobalAddress(GV)
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.addReg(X86::NoRegister);
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BuildMI(*CurMBB, InsertPt, DebugLoc(), TII->get(X86::JCC_1))
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.addMBB(FailMBB)
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.addImm(X86::COND_NE);
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auto JMI = BuildMI(*CurMBB, InsertPt, DebugLoc(), TII->get(X86::JMP_1));
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return std::make_pair(CMI.getInstr(), JMI.getInstr());
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}
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void X86WinFixupBufferSecurityCheckPass::FinishBlock(MachineBasicBlock *MBB) {
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LivePhysRegs LiveRegs;
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computeAndAddLiveIns(LiveRegs, *MBB);
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}
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void X86WinFixupBufferSecurityCheckPass::FinishFunction(
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MachineBasicBlock *FailMBB, MachineBasicBlock *NewRetMBB) {
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FailMBB->getParent()->RenumberBlocks();
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// FailMBB includes call to MSCV RT where is __security_check_cookie
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// function is called. This function uses regcall and it expects cookie
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// value from stack slot.( even if this is modified)
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// Before going further we compute back livein for this block to make sure
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// it is live and provided.
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FinishBlock(FailMBB);
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FinishBlock(NewRetMBB);
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}
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bool X86WinFixupBufferSecurityCheckPass::runOnMachineFunction(
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MachineFunction &MF) {
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bool Changed = false;
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const X86Subtarget &STI = MF.getSubtarget<X86Subtarget>();
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if (!(STI.isTargetWindowsItanium() || STI.isTargetWindowsMSVC()))
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return Changed;
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// Check if security cookie was installed or not
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Module &M = *MF.getFunction().getParent();
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GlobalVariable *GV = M.getGlobalVariable("__security_cookie");
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if (!GV)
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return Changed;
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const TargetInstrInfo *TII = MF.getSubtarget().getInstrInfo();
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// Check if security check cookie was installed or not
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auto [CurMBB, CheckCall] = getSecurityCheckerBasicBlock(MF);
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if (!CheckCall)
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return Changed;
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MachineBasicBlock *FailMBB = MF.CreateMachineBasicBlock();
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MachineBasicBlock *NewRetMBB = MF.CreateMachineBasicBlock();
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MF.insert(MF.end(), NewRetMBB);
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MF.insert(MF.end(), FailMBB);
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MachineInstr *SeqMI[5];
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getGuardCheckSequence(CurMBB, CheckCall, SeqMI);
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// MachineInstr * GuardXor = SeqMI[0];
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auto FailSeqRange = CreateFailCheckSequence(CurMBB, FailMBB, SeqMI);
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MachineInstrBuilder JMI(MF, FailSeqRange.second);
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// After Inserting JMP_1, we can not have two terminators
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// in same block, split CurrentMBB after JMP_1
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MachineBasicBlock::iterator SplitIt(SeqMI[4]);
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++SplitIt;
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SplitBasicBlock(CurMBB, NewRetMBB, SplitIt);
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// Fill up Failure Routine, move Fail Check Squence from CurMBB to FailMBB
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MachineBasicBlock::iterator U1It(SeqMI[1]);
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MachineBasicBlock::iterator U2It(SeqMI[4]);
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++U2It;
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FailMBB->splice(FailMBB->end(), CurMBB, U1It, U2It);
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BuildMI(*FailMBB, FailMBB->end(), DebugLoc(), TII->get(X86::INT3));
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// Move left over instruction after StackUp
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// from Current Basic BLocks into New Return Block
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JMI.addMBB(NewRetMBB);
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MachineBasicBlock::iterator SplicePt(JMI.getInstr());
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++SplicePt;
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if (SplicePt != CurMBB->end())
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NewRetMBB->splice(NewRetMBB->end(), CurMBB, SplicePt);
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// Restructure Basic Blocks
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CurMBB->addSuccessor(NewRetMBB);
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CurMBB->addSuccessor(FailMBB);
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FinishFunction(FailMBB, NewRetMBB);
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return !Changed;
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}
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