mirror of
https://github.com/c64scene-ar/llvm-6502.git
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f660c171c8
Also, if LV isn't around, then TwoAddr doesn't need to be updating flags, since they won't have been set in the first place. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@53058 91177308-0d34-0410-b5e6-96231b3b80d8
237 lines
8.6 KiB
C++
237 lines
8.6 KiB
C++
//===- ARMInstrInfo.h - ARM 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 ARM implementation of the TargetInstrInfo class.
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//
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//===----------------------------------------------------------------------===//
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#ifndef ARMINSTRUCTIONINFO_H
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#define ARMINSTRUCTIONINFO_H
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#include "llvm/Target/TargetInstrInfo.h"
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#include "ARMRegisterInfo.h"
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namespace llvm {
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class ARMSubtarget;
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/// ARMII - This namespace holds all of the target specific flags that
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/// instruction info tracks.
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///
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namespace ARMII {
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enum {
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//===------------------------------------------------------------------===//
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// Instruction Flags.
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//===------------------------------------------------------------------===//
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// This three-bit field describes the addressing mode used. Zero is unused
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// so that we can tell if we forgot to set a value.
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AddrModeMask = 0xf,
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AddrModeNone = 0,
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AddrMode1 = 1,
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AddrMode2 = 2,
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AddrMode3 = 3,
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AddrMode4 = 4,
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AddrMode5 = 5,
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AddrModeT1 = 6,
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AddrModeT2 = 7,
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AddrModeT4 = 8,
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AddrModeTs = 9, // i8 * 4 for pc and sp relative data
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// Size* - Flags to keep track of the size of an instruction.
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SizeShift = 4,
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SizeMask = 7 << SizeShift,
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SizeSpecial = 1, // 0 byte pseudo or special case.
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Size8Bytes = 2,
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Size4Bytes = 3,
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Size2Bytes = 4,
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// IndexMode - Unindex, pre-indexed, or post-indexed. Only valid for load
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// and store ops
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IndexModeShift = 7,
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IndexModeMask = 3 << IndexModeShift,
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IndexModePre = 1,
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IndexModePost = 2,
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// Opcode
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OpcodeShift = 9,
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OpcodeMask = 0xf << OpcodeShift,
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// Format
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FormShift = 13,
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FormMask = 31 << FormShift,
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// Pseudo instructions
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Pseudo = 1 << FormShift,
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// Multiply instructions
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MulFrm = 2 << FormShift,
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MulSMLAW = 3 << FormShift,
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MulSMULW = 4 << FormShift,
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MulSMLA = 5 << FormShift,
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MulSMUL = 6 << FormShift,
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// Branch instructions
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Branch = 7 << FormShift,
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BranchMisc = 8 << FormShift,
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// Data Processing instructions
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DPRdIm = 9 << FormShift,
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DPRdReg = 10 << FormShift,
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DPRdSoReg = 11 << FormShift,
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DPRdMisc = 12 << FormShift,
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DPRnIm = 13 << FormShift,
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DPRnReg = 14 << FormShift,
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DPRnSoReg = 15 << FormShift,
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DPRIm = 16 << FormShift,
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DPRReg = 17 << FormShift,
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DPRSoReg = 18 << FormShift,
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DPRImS = 19 << FormShift,
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DPRRegS = 20 << FormShift,
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DPRSoRegS = 21 << FormShift,
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// Load and Store
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LdFrm = 22 << FormShift,
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StFrm = 23 << FormShift,
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// Miscellaneous arithmetic instructions
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ArithMisc = 24 << FormShift,
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// Thumb format
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ThumbFrm = 25 << FormShift,
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// VFP format
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VPFFrm = 26 << FormShift,
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// Field shifts - such shifts are used to set field while generating
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// machine instructions.
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RegRsShift = 8,
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RegRdShift = 12,
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RegRnShift = 16,
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L_BitShift = 20,
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S_BitShift = 20,
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U_BitShift = 23,
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IndexShift = 24,
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I_BitShift = 25
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};
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}
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class ARMInstrInfo : public TargetInstrInfoImpl {
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const ARMRegisterInfo RI;
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public:
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explicit ARMInstrInfo(const ARMSubtarget &STI);
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/// getRegisterInfo - TargetInstrInfo is a superset of MRegister info. As
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/// such, whenever a client has an instance of instruction info, it should
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/// always be able to get register info as well (through this method).
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///
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virtual const ARMRegisterInfo &getRegisterInfo() const { return RI; }
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/// getPointerRegClass - Return the register class to use to hold pointers.
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/// This is used for addressing modes.
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virtual const TargetRegisterClass *getPointerRegClass() const;
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/// Return true if the instruction is a register to register move and
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/// leave the source and dest operands in the passed parameters.
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///
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virtual bool isMoveInstr(const MachineInstr &MI,
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unsigned &SrcReg, unsigned &DstReg) const;
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virtual unsigned isLoadFromStackSlot(MachineInstr *MI, int &FrameIndex) const;
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virtual unsigned isStoreToStackSlot(MachineInstr *MI, int &FrameIndex) const;
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void reMaterialize(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI,
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unsigned DestReg, const MachineInstr *Orig) const;
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virtual MachineInstr *convertToThreeAddress(MachineFunction::iterator &MFI,
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MachineBasicBlock::iterator &MBBI,
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LiveVariables *LV) const;
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// Branch analysis.
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virtual bool AnalyzeBranch(MachineBasicBlock &MBB, MachineBasicBlock *&TBB,
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MachineBasicBlock *&FBB,
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std::vector<MachineOperand> &Cond) const;
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virtual unsigned RemoveBranch(MachineBasicBlock &MBB) const;
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virtual unsigned InsertBranch(MachineBasicBlock &MBB, MachineBasicBlock *TBB,
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MachineBasicBlock *FBB,
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const std::vector<MachineOperand> &Cond) const;
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virtual void 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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virtual void storeRegToStackSlot(MachineBasicBlock &MBB,
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MachineBasicBlock::iterator MBBI,
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unsigned SrcReg, bool isKill, int FrameIndex,
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const TargetRegisterClass *RC) const;
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virtual void storeRegToAddr(MachineFunction &MF, unsigned SrcReg, 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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virtual void loadRegFromStackSlot(MachineBasicBlock &MBB,
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MachineBasicBlock::iterator MBBI,
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unsigned DestReg, int FrameIndex,
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const TargetRegisterClass *RC) const;
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virtual void 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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virtual bool spillCalleeSavedRegisters(MachineBasicBlock &MBB,
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MachineBasicBlock::iterator MI,
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const std::vector<CalleeSavedInfo> &CSI) const;
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virtual bool restoreCalleeSavedRegisters(MachineBasicBlock &MBB,
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MachineBasicBlock::iterator MI,
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const std::vector<CalleeSavedInfo> &CSI) const;
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virtual MachineInstr* foldMemoryOperand(MachineFunction &MF,
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MachineInstr* MI,
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SmallVectorImpl<unsigned> &Ops,
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int FrameIndex) const;
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virtual MachineInstr* foldMemoryOperand(MachineFunction &MF,
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MachineInstr* MI,
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SmallVectorImpl<unsigned> &Ops,
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MachineInstr* LoadMI) const {
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return 0;
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}
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virtual bool canFoldMemoryOperand(MachineInstr *MI,
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SmallVectorImpl<unsigned> &Ops) const;
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virtual bool BlockHasNoFallThrough(MachineBasicBlock &MBB) const;
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virtual bool ReverseBranchCondition(std::vector<MachineOperand> &Cond) const;
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// Predication support.
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virtual bool isPredicated(const MachineInstr *MI) const;
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virtual
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bool PredicateInstruction(MachineInstr *MI,
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const std::vector<MachineOperand> &Pred) const;
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virtual
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bool SubsumesPredicate(const std::vector<MachineOperand> &Pred1,
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const std::vector<MachineOperand> &Pred2) const;
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virtual bool DefinesPredicate(MachineInstr *MI,
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std::vector<MachineOperand> &Pred) const;
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/// GetInstSize - Returns the size of the specified MachineInstr.
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///
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virtual unsigned GetInstSizeInBytes(const MachineInstr* MI) const;
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};
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}
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#endif
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