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268b47b1fb
A side-effect of this change is asm printer is now using unified assembly. There are some minor clean ups and fixes as well. llvm-svn: 75359
367 lines
11 KiB
C++
367 lines
11 KiB
C++
//===- Thumb1InstrInfo.cpp - Thumb-1 Instruction Information --------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file contains the Thumb-1 implementation of the TargetInstrInfo class.
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//
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//===----------------------------------------------------------------------===//
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#include "ARMInstrInfo.h"
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#include "ARM.h"
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#include "ARMGenInstrInfo.inc"
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#include "ARMMachineFunctionInfo.h"
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#include "llvm/CodeGen/MachineFrameInfo.h"
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#include "llvm/CodeGen/MachineInstrBuilder.h"
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#include "llvm/ADT/SmallVector.h"
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#include "Thumb1InstrInfo.h"
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using namespace llvm;
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static inline
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const MachineInstrBuilder &AddDefaultPred(const MachineInstrBuilder &MIB) {
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return MIB.addImm((int64_t)ARMCC::AL).addReg(0);
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}
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Thumb1InstrInfo::Thumb1InstrInfo(const ARMSubtarget &STI)
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: ARMBaseInstrInfo(STI), RI(*this, STI) {
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}
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unsigned Thumb1InstrInfo::getUnindexedOpcode(unsigned Opc) const {
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return 0;
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}
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unsigned Thumb1InstrInfo::getOpcode(ARMII::Op Op) const {
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switch (Op) {
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case ARMII::ADDri: return ARM::tADDi8;
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case ARMII::ADDrs: return 0;
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case ARMII::ADDrr: return ARM::tADDrr;
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case ARMII::B: return ARM::tB;
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case ARMII::Bcc: return ARM::tBcc;
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case ARMII::BR_JTr: return ARM::tBR_JTr;
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case ARMII::BR_JTm: return 0;
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case ARMII::BR_JTadd: return 0;
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case ARMII::BX_RET: return ARM::tBX_RET;
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case ARMII::FCPYS: return 0;
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case ARMII::FCPYD: return 0;
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case ARMII::FLDD: return 0;
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case ARMII::FLDS: return 0;
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case ARMII::FSTD: return 0;
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case ARMII::FSTS: return 0;
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case ARMII::LDR: return ARM::tLDR;
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case ARMII::MOVr: return ARM::tMOVr;
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case ARMII::STR: return ARM::tSTR;
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case ARMII::SUBri: return ARM::tSUBi8;
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case ARMII::SUBrs: return 0;
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case ARMII::SUBrr: return ARM::tSUBrr;
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case ARMII::VMOVD: return 0;
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case ARMII::VMOVQ: return 0;
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default:
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break;
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}
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return 0;
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}
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bool
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Thumb1InstrInfo::BlockHasNoFallThrough(const MachineBasicBlock &MBB) const {
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if (MBB.empty()) return false;
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switch (MBB.back().getOpcode()) {
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case ARM::tBX_RET:
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case ARM::tBX_RET_vararg:
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case ARM::tPOP_RET:
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case ARM::tB:
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case ARM::tBR_JTr:
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return true;
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default:
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break;
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}
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return false;
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}
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bool Thumb1InstrInfo::isMoveInstr(const MachineInstr &MI,
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unsigned &SrcReg, unsigned &DstReg,
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unsigned& SrcSubIdx, unsigned& DstSubIdx) const {
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SrcSubIdx = DstSubIdx = 0; // No sub-registers.
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unsigned oc = MI.getOpcode();
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switch (oc) {
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default:
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return false;
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case ARM::tMOVr:
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case ARM::tMOVhir2lor:
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case ARM::tMOVlor2hir:
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case ARM::tMOVhir2hir:
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assert(MI.getDesc().getNumOperands() >= 2 &&
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MI.getOperand(0).isReg() &&
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MI.getOperand(1).isReg() &&
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"Invalid Thumb MOV instruction");
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SrcReg = MI.getOperand(1).getReg();
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DstReg = MI.getOperand(0).getReg();
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return true;
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}
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}
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unsigned Thumb1InstrInfo::isLoadFromStackSlot(const MachineInstr *MI,
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int &FrameIndex) const {
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switch (MI->getOpcode()) {
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default: break;
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case ARM::tRestore:
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if (MI->getOperand(1).isFI() &&
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MI->getOperand(2).isImm() &&
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MI->getOperand(2).getImm() == 0) {
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FrameIndex = MI->getOperand(1).getIndex();
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return MI->getOperand(0).getReg();
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}
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break;
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}
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return 0;
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}
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unsigned Thumb1InstrInfo::isStoreToStackSlot(const MachineInstr *MI,
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int &FrameIndex) const {
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switch (MI->getOpcode()) {
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default: break;
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case ARM::tSpill:
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if (MI->getOperand(1).isFI() &&
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MI->getOperand(2).isImm() &&
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MI->getOperand(2).getImm() == 0) {
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FrameIndex = MI->getOperand(1).getIndex();
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return MI->getOperand(0).getReg();
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}
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break;
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}
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return 0;
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}
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bool Thumb1InstrInfo::copyRegToReg(MachineBasicBlock &MBB,
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MachineBasicBlock::iterator I,
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unsigned DestReg, unsigned SrcReg,
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const TargetRegisterClass *DestRC,
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const TargetRegisterClass *SrcRC) const {
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DebugLoc DL = DebugLoc::getUnknownLoc();
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if (I != MBB.end()) DL = I->getDebugLoc();
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if (DestRC == ARM::GPRRegisterClass) {
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if (SrcRC == ARM::GPRRegisterClass) {
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BuildMI(MBB, I, DL, get(ARM::tMOVhir2hir), DestReg).addReg(SrcReg);
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return true;
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} else if (SrcRC == ARM::tGPRRegisterClass) {
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BuildMI(MBB, I, DL, get(ARM::tMOVlor2hir), DestReg).addReg(SrcReg);
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return true;
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}
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} else if (DestRC == ARM::tGPRRegisterClass) {
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if (SrcRC == ARM::GPRRegisterClass) {
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BuildMI(MBB, I, DL, get(ARM::tMOVhir2lor), DestReg).addReg(SrcReg);
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return true;
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} else if (SrcRC == ARM::tGPRRegisterClass) {
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BuildMI(MBB, I, DL, get(ARM::tMOVr), DestReg).addReg(SrcReg);
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return true;
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}
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}
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return false;
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}
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bool Thumb1InstrInfo::
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canFoldMemoryOperand(const MachineInstr *MI,
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const SmallVectorImpl<unsigned> &Ops) const {
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if (Ops.size() != 1) return false;
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unsigned OpNum = Ops[0];
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unsigned Opc = MI->getOpcode();
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switch (Opc) {
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default: break;
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case ARM::tMOVr:
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case ARM::tMOVlor2hir:
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case ARM::tMOVhir2lor:
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case ARM::tMOVhir2hir: {
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if (OpNum == 0) { // move -> store
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unsigned SrcReg = MI->getOperand(1).getReg();
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if (RI.isPhysicalRegister(SrcReg) && !isARMLowRegister(SrcReg))
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// tSpill cannot take a high register operand.
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return false;
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} else { // move -> load
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unsigned DstReg = MI->getOperand(0).getReg();
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if (RI.isPhysicalRegister(DstReg) && !isARMLowRegister(DstReg))
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// tRestore cannot target a high register operand.
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return false;
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}
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return true;
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}
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}
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return false;
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}
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void Thumb1InstrInfo::
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storeRegToStackSlot(MachineBasicBlock &MBB, MachineBasicBlock::iterator I,
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unsigned SrcReg, bool isKill, int FI,
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const TargetRegisterClass *RC) const {
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DebugLoc DL = DebugLoc::getUnknownLoc();
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if (I != MBB.end()) DL = I->getDebugLoc();
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assert(RC == ARM::tGPRRegisterClass && "Unknown regclass!");
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if (RC == ARM::tGPRRegisterClass) {
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AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::tSpill))
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.addReg(SrcReg, getKillRegState(isKill))
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.addFrameIndex(FI).addImm(0));
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}
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}
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void Thumb1InstrInfo::storeRegToAddr(MachineFunction &MF, unsigned SrcReg,
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bool isKill,
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SmallVectorImpl<MachineOperand> &Addr,
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const TargetRegisterClass *RC,
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SmallVectorImpl<MachineInstr*> &NewMIs) const{
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DebugLoc DL = DebugLoc::getUnknownLoc();
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unsigned Opc = 0;
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assert(RC == ARM::GPRRegisterClass && "Unknown regclass!");
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if (RC == ARM::GPRRegisterClass) {
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Opc = Addr[0].isFI() ? ARM::tSpill : ARM::tSTR;
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}
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MachineInstrBuilder MIB =
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BuildMI(MF, DL, get(Opc)).addReg(SrcReg, getKillRegState(isKill));
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for (unsigned i = 0, e = Addr.size(); i != e; ++i)
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MIB.addOperand(Addr[i]);
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AddDefaultPred(MIB);
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NewMIs.push_back(MIB);
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return;
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}
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void Thumb1InstrInfo::
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loadRegFromStackSlot(MachineBasicBlock &MBB, MachineBasicBlock::iterator I,
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unsigned DestReg, int FI,
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const TargetRegisterClass *RC) const {
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DebugLoc DL = DebugLoc::getUnknownLoc();
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if (I != MBB.end()) DL = I->getDebugLoc();
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assert(RC == ARM::tGPRRegisterClass && "Unknown regclass!");
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if (RC == ARM::tGPRRegisterClass) {
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AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::tRestore), DestReg)
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.addFrameIndex(FI).addImm(0));
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}
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}
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void Thumb1InstrInfo::
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loadRegFromAddr(MachineFunction &MF, unsigned DestReg,
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SmallVectorImpl<MachineOperand> &Addr,
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const TargetRegisterClass *RC,
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SmallVectorImpl<MachineInstr*> &NewMIs) const {
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DebugLoc DL = DebugLoc::getUnknownLoc();
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unsigned Opc = 0;
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if (RC == ARM::GPRRegisterClass) {
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Opc = Addr[0].isFI() ? ARM::tRestore : ARM::tLDR;
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}
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MachineInstrBuilder MIB = BuildMI(MF, DL, get(Opc), DestReg);
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for (unsigned i = 0, e = Addr.size(); i != e; ++i)
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MIB.addOperand(Addr[i]);
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AddDefaultPred(MIB);
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NewMIs.push_back(MIB);
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return;
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}
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bool Thumb1InstrInfo::
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spillCalleeSavedRegisters(MachineBasicBlock &MBB,
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MachineBasicBlock::iterator MI,
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const std::vector<CalleeSavedInfo> &CSI) const {
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if (CSI.empty())
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return false;
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DebugLoc DL = DebugLoc::getUnknownLoc();
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if (MI != MBB.end()) DL = MI->getDebugLoc();
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MachineInstrBuilder MIB = BuildMI(MBB, MI, DL, get(ARM::tPUSH));
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for (unsigned i = CSI.size(); i != 0; --i) {
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unsigned Reg = CSI[i-1].getReg();
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// Add the callee-saved register as live-in. It's killed at the spill.
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MBB.addLiveIn(Reg);
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MIB.addReg(Reg, RegState::Kill);
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}
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return true;
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}
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bool Thumb1InstrInfo::
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restoreCalleeSavedRegisters(MachineBasicBlock &MBB,
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MachineBasicBlock::iterator MI,
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const std::vector<CalleeSavedInfo> &CSI) const {
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MachineFunction &MF = *MBB.getParent();
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ARMFunctionInfo *AFI = MF.getInfo<ARMFunctionInfo>();
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if (CSI.empty())
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return false;
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bool isVarArg = AFI->getVarArgsRegSaveSize() > 0;
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MachineInstr *PopMI = MF.CreateMachineInstr(get(ARM::tPOP),MI->getDebugLoc());
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for (unsigned i = CSI.size(); i != 0; --i) {
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unsigned Reg = CSI[i-1].getReg();
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if (Reg == ARM::LR) {
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// Special epilogue for vararg functions. See emitEpilogue
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if (isVarArg)
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continue;
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Reg = ARM::PC;
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PopMI->setDesc(get(ARM::tPOP_RET));
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MI = MBB.erase(MI);
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}
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PopMI->addOperand(MachineOperand::CreateReg(Reg, true));
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}
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// It's illegal to emit pop instruction without operands.
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if (PopMI->getNumOperands() > 0)
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MBB.insert(MI, PopMI);
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return true;
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}
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MachineInstr *Thumb1InstrInfo::
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foldMemoryOperandImpl(MachineFunction &MF, MachineInstr *MI,
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const SmallVectorImpl<unsigned> &Ops, int FI) const {
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if (Ops.size() != 1) return NULL;
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unsigned OpNum = Ops[0];
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unsigned Opc = MI->getOpcode();
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MachineInstr *NewMI = NULL;
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switch (Opc) {
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default: break;
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case ARM::tMOVr:
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case ARM::tMOVlor2hir:
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case ARM::tMOVhir2lor:
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case ARM::tMOVhir2hir: {
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if (OpNum == 0) { // move -> store
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unsigned SrcReg = MI->getOperand(1).getReg();
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bool isKill = MI->getOperand(1).isKill();
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if (RI.isPhysicalRegister(SrcReg) && !isARMLowRegister(SrcReg))
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// tSpill cannot take a high register operand.
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break;
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NewMI = AddDefaultPred(BuildMI(MF, MI->getDebugLoc(), get(ARM::tSpill))
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.addReg(SrcReg, getKillRegState(isKill))
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.addFrameIndex(FI).addImm(0));
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} else { // move -> load
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unsigned DstReg = MI->getOperand(0).getReg();
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if (RI.isPhysicalRegister(DstReg) && !isARMLowRegister(DstReg))
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// tRestore cannot target a high register operand.
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break;
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bool isDead = MI->getOperand(0).isDead();
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NewMI = AddDefaultPred(BuildMI(MF, MI->getDebugLoc(), get(ARM::tRestore))
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.addReg(DstReg,
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RegState::Define | getDeadRegState(isDead))
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.addFrameIndex(FI).addImm(0));
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}
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break;
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}
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}
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return NewMI;
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}
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