40#define GET_REGINFO_TARGET_DESC
41#include "X86GenRegisterInfo.inc"
45 cl::desc(
"Enable use of a base pointer for complex stack frames"));
50 cl::desc(
"Disable two address hints for register "
59 (TT.isX86_64() ?
X86::RIP :
X86::EIP)) {
63 Is64Bit = TT.isX86_64();
64 IsTarget64BitLP64 = Is64Bit && !TT.isX32();
65 IsWin64 = Is64Bit && TT.isOSWindows();
66 IsUEFI64 = Is64Bit && TT.isUEFI();
76 bool Use64BitReg = !TT.isX32();
77 StackPtr = Use64BitReg ? X86::RSP : X86::ESP;
78 FramePtr = Use64BitReg ? X86::RBP : X86::EBP;
79 BasePtr = Use64BitReg ? X86::RBX : X86::EBX;
93 if (!Is64Bit && Idx == X86::sub_8bit)
94 Idx = X86::sub_8bit_hi;
97 return X86GenRegisterInfo::getSubClassWithSubReg(RC, Idx);
103 unsigned SubIdx)
const {
105 if (!Is64Bit && SubIdx == X86::sub_8bit) {
106 A = X86GenRegisterInfo::getSubClassWithSubReg(
A, X86::sub_8bit_hi);
110 return X86GenRegisterInfo::getMatchingSuperRegClass(
A,
B, SubIdx);
124 if (RC == &X86::GR8_NOREXRegClass)
138 switch (Super->getID()) {
139 case X86::FR32RegClassID:
140 case X86::FR64RegClassID:
143 getRegSizeInBits(*Super) == getRegSizeInBits(*RC))
146 case X86::VR128RegClassID:
147 case X86::VR256RegClassID:
149 if (!Subtarget.hasVLX() &&
150 getRegSizeInBits(*Super) == getRegSizeInBits(*RC))
153 case X86::VR128XRegClassID:
154 case X86::VR256XRegClassID:
156 if (Subtarget.hasVLX() &&
157 getRegSizeInBits(*Super) == getRegSizeInBits(*RC))
160 case X86::FR32XRegClassID:
161 case X86::FR64XRegClassID:
164 getRegSizeInBits(*Super) == getRegSizeInBits(*RC))
167 case X86::GR8RegClassID:
168 case X86::GR16RegClassID:
169 case X86::GR32RegClassID:
170 case X86::GR64RegClassID:
171 case X86::GR8_NOREX2RegClassID:
172 case X86::GR16_NOREX2RegClassID:
173 case X86::GR32_NOREX2RegClassID:
174 case X86::GR64_NOREX2RegClassID:
175 case X86::RFP32RegClassID:
176 case X86::RFP64RegClassID:
177 case X86::RFP80RegClassID:
178 case X86::VR512_0_15RegClassID:
179 case X86::VR512RegClassID:
182 if (getRegSizeInBits(*Super) == getRegSizeInBits(*RC))
197 assert(Kind == 0 &&
"this should only be used for default cases");
198 if (IsTarget64BitLP64)
199 return &X86::GR64RegClass;
204 return Is64Bit ? &X86::LOW32_ADDR_ACCESSRegClass : &X86::GR32RegClass;
209 if (RC == &X86::CCRRegClass) {
211 return &X86::GR64RegClass;
213 return &X86::GR32RegClass;
223 unsigned FPDiff = TFI->
hasFP(MF) ? 1 : 0;
224 switch (RC->
getID()) {
227 case X86::GR32RegClassID:
229 case X86::GR64RegClassID:
231 case X86::VR128RegClassID:
232 return Is64Bit ? 10 : 4;
233 case X86::VR64RegClassID:
240 assert(MF &&
"MachineFunction required");
244 bool HasSSE = Subtarget.
hasSSE1();
245 bool HasAVX = Subtarget.
hasAVX();
259 return CSR_NoRegs_SaveList;
264 return CSR_NoRegs_SaveList;
267 return CSR_64_AllRegs_AVX_SaveList;
268 return CSR_64_AllRegs_SaveList;
270 return IsWin64 ? CSR_Win64_RT_MostRegs_SaveList
271 : CSR_64_RT_MostRegs_SaveList;
274 return CSR_64_RT_AllRegs_AVX_SaveList;
275 return CSR_64_RT_AllRegs_SaveList;
277 return CSR_64_NoneRegs_SaveList;
281 CSR_64_CXX_TLS_Darwin_PE_SaveList : CSR_64_TLS_Darwin_SaveList;
284 if (HasAVX512 && IsWin64)
285 return CSR_Win64_Intel_OCL_BI_AVX512_SaveList;
286 if (HasAVX512 && Is64Bit)
287 return CSR_64_Intel_OCL_BI_AVX512_SaveList;
288 if (HasAVX && IsWin64)
289 return CSR_Win64_Intel_OCL_BI_AVX_SaveList;
290 if (HasAVX && Is64Bit)
291 return CSR_64_Intel_OCL_BI_AVX_SaveList;
292 if (!HasAVX && !IsWin64 && Is64Bit)
293 return CSR_64_Intel_OCL_BI_SaveList;
299 return (HasSSE ? CSR_Win64_RegCall_SaveList :
300 CSR_Win64_RegCall_NoSSE_SaveList);
302 return (HasSSE ? CSR_SysV64_RegCall_SaveList :
303 CSR_SysV64_RegCall_NoSSE_SaveList);
306 return (HasSSE ? CSR_32_RegCall_SaveList :
307 CSR_32_RegCall_NoSSE_SaveList);
310 assert(!Is64Bit &&
"CFGuard check mechanism only used on 32-bit X86");
311 return (HasSSE ? CSR_Win32_CFGuard_Check_SaveList
312 : CSR_Win32_CFGuard_Check_NoSSE_SaveList);
315 return CSR_64_MostRegs_SaveList;
319 return CSR_Win64_NoSSE_SaveList;
320 return CSR_Win64_SaveList;
323 return CSR_32_SaveList;
324 return IsWin64 ? CSR_Win64_SwiftTail_SaveList : CSR_64_SwiftTail_SaveList;
327 return CSR_64EHRet_SaveList;
328 return CSR_64_SaveList;
332 return CSR_64_AllRegs_AVX512_SaveList;
334 return CSR_64_AllRegs_AVX_SaveList;
336 return CSR_64_AllRegs_SaveList;
337 return CSR_64_AllRegs_NoSSE_SaveList;
340 return CSR_32_AllRegs_AVX512_SaveList;
342 return CSR_32_AllRegs_AVX_SaveList;
344 return CSR_32_AllRegs_SSE_SaveList;
345 return CSR_32_AllRegs_SaveList;
353 F.getAttributes().hasAttrSomewhere(Attribute::SwiftError);
355 return IsWin64 ? CSR_Win64_SwiftError_SaveList
356 : CSR_64_SwiftError_SaveList;
358 if (IsWin64 || IsUEFI64)
359 return HasSSE ? CSR_Win64_SaveList : CSR_Win64_NoSSE_SaveList;
361 return CSR_64EHRet_SaveList;
362 return CSR_64_SaveList;
365 return CallsEHReturn ? CSR_32EHRet_SaveList : CSR_32_SaveList;
370 return Is64Bit ? CSR_IPRA_64_SaveList : CSR_IPRA_32_SaveList;
375 assert(MF &&
"Invalid MachineFunction pointer.");
378 return CSR_64_CXX_TLS_Darwin_ViaCopy_SaveList;
386 bool HasSSE = Subtarget.
hasSSE1();
387 bool HasAVX = Subtarget.
hasAVX();
393 return CSR_NoRegs_RegMask;
396 return CSR_64_AllRegs_AVX_RegMask;
397 return CSR_64_AllRegs_RegMask;
399 return IsWin64 ? CSR_Win64_RT_MostRegs_RegMask : CSR_64_RT_MostRegs_RegMask;
402 return CSR_64_RT_AllRegs_AVX_RegMask;
403 return CSR_64_RT_AllRegs_RegMask;
405 return CSR_64_NoneRegs_RegMask;
408 return CSR_64_TLS_Darwin_RegMask;
411 if (HasAVX512 && IsWin64)
412 return CSR_Win64_Intel_OCL_BI_AVX512_RegMask;
413 if (HasAVX512 && Is64Bit)
414 return CSR_64_Intel_OCL_BI_AVX512_RegMask;
415 if (HasAVX && IsWin64)
416 return CSR_Win64_Intel_OCL_BI_AVX_RegMask;
417 if (HasAVX && Is64Bit)
418 return CSR_64_Intel_OCL_BI_AVX_RegMask;
419 if (!HasAVX && !IsWin64 && Is64Bit)
420 return CSR_64_Intel_OCL_BI_RegMask;
426 return (HasSSE ? CSR_Win64_RegCall_RegMask :
427 CSR_Win64_RegCall_NoSSE_RegMask);
429 return (HasSSE ? CSR_SysV64_RegCall_RegMask :
430 CSR_SysV64_RegCall_NoSSE_RegMask);
433 return (HasSSE ? CSR_32_RegCall_RegMask :
434 CSR_32_RegCall_NoSSE_RegMask);
437 assert(!Is64Bit &&
"CFGuard check mechanism only used on 32-bit X86");
438 return (HasSSE ? CSR_Win32_CFGuard_Check_RegMask
439 : CSR_Win32_CFGuard_Check_NoSSE_RegMask);
442 return CSR_64_MostRegs_RegMask;
445 return CSR_Win64_RegMask;
448 return CSR_32_RegMask;
449 return IsWin64 ? CSR_Win64_SwiftTail_RegMask : CSR_64_SwiftTail_RegMask;
451 return CSR_64_RegMask;
455 return CSR_64_AllRegs_AVX512_RegMask;
457 return CSR_64_AllRegs_AVX_RegMask;
459 return CSR_64_AllRegs_RegMask;
460 return CSR_64_AllRegs_NoSSE_RegMask;
463 return CSR_32_AllRegs_AVX512_RegMask;
465 return CSR_32_AllRegs_AVX_RegMask;
467 return CSR_32_AllRegs_SSE_RegMask;
468 return CSR_32_AllRegs_RegMask;
479 F.getAttributes().hasAttrSomewhere(Attribute::SwiftError);
481 return IsWin64 ? CSR_Win64_SwiftError_RegMask : CSR_64_SwiftError_RegMask;
483 return (IsWin64 || IsUEFI64) ? CSR_Win64_RegMask : CSR_64_RegMask;
486 return CSR_32_RegMask;
491 return CSR_NoRegs_RegMask;
495 return CSR_64_TLS_Darwin_RegMask;
527 "Frame pointer clobbered by function invoke is not supported.");
537 "Stack realignment in presence of dynamic "
538 "allocas is not supported with "
539 "this calling convention.");
555 for (
unsigned n = 0; n != 8; ++n)
571 for (
unsigned n = 0; n != 8; ++n) {
582 for (
unsigned n = 0; n != 16; ++n) {
591 Reserved.set(X86::R16, X86::R31WH + 1);
601 {X86::SIL, X86::DIL, X86::BPL, X86::SPL,
602 X86::SIH, X86::DIH, X86::BPH, X86::SPH}));
618 static_assert((X86::R15WH + 1 == X86::YMM0) && (X86::YMM15 + 1 == X86::K0) &&
619 (X86::K6_K7 + 1 == X86::TMMCFG) &&
620 (X86::TMM7 + 1 == X86::R16) &&
621 (X86::R31WH + 1 == X86::NUM_TARGET_REGS),
622 "Register number may be incorrect");
626 return X86::NUM_TARGET_REGS;
628 return X86::TMM7 + 1;
630 return X86::K6_K7 + 1;
632 return X86::YMM15 + 1;
633 return X86::R15WH + 1;
641 return TRI.isSuperOrSubRegisterEq(RegA, RegB);
647 [&](
MCRegister &RegA) {
return IsSubReg(RegA, Reg); }) ||
648 (ST.hasMMX() && X86::VR64RegClass.contains(Reg));
657 [&](
MCRegister &RegA) {
return IsSubReg(RegA, Reg); }))
662 [&](
MCRegister &RegA) {
return IsSubReg(RegA, Reg); }))
667 X86::XMM3, X86::XMM4, X86::XMM5,
668 X86::XMM6, X86::XMM7},
669 [&](
MCRegister &RegA) { return IsSubReg(RegA, Reg); }))
672 return X86GenRegisterInfo::isArgumentRegister(MF, Reg);
681 if (
TRI.isSuperOrSubRegisterEq(X86::RSP, PhysReg))
686 if (TFI.
hasFP(MF) &&
TRI.isSuperOrSubRegisterEq(X86::RBP, PhysReg))
689 return X86GenRegisterInfo::isFixedRegister(MF, PhysReg);
693 return RC->
getID() == X86::TILERegClassID;
704 assert(!(Mask[X86::EFLAGS / 32] & (1U << (X86::EFLAGS % 32))) &&
705 "EFLAGS are not live-out from a patchpoint.");
708 for (
auto Reg : {X86::EFLAGS, X86::RIP, X86::EIP, X86::IP})
709 Mask[Reg / 32] &= ~(1U << (Reg % 32));
740 bool CantUseFP = hasStackRealignment(MF);
753 if (!
MRI->canReserveReg(FramePtr))
759 return MRI->canReserveReg(BasePtr);
776 unsigned Opc =
II->getOpcode();
778 if ((
Opc != X86::LEA32r &&
Opc != X86::LEA64r &&
Opc != X86::LEA64_32r) ||
779 MI.getOperand(2).getImm() != 1 ||
780 MI.getOperand(3).getReg() != X86::NoRegister ||
781 MI.getOperand(4).getImm() != 0 ||
782 MI.getOperand(5).getReg() != X86::NoRegister)
788 if (
Opc == X86::LEA64_32r)
790 Register NewDestReg =
MI.getOperand(0).getReg();
792 MI.getParent()->getParent()->getSubtarget<
X86Subtarget>().getInstrInfo();
793 TII->copyPhysReg(*
MI.getParent(),
II,
MI.getDebugLoc(), NewDestReg, BasePtr,
794 MI.getOperand(1).isKill());
795 MI.eraseFromParent();
800 switch (
MI.getOpcode()) {
802 case X86::CLEANUPRET:
811 unsigned FIOperandNum,
813 int FIOffset)
const {
815 unsigned Opc =
MI.getOpcode();
816 if (
Opc == TargetOpcode::LOCAL_ESCAPE) {
822 MI.getOperand(FIOperandNum).ChangeToRegister(BaseReg,
false);
826 if (
Opc == TargetOpcode::STACKMAP ||
Opc == TargetOpcode::PATCHPOINT) {
827 assert(BasePtr == FramePtr &&
"Expected the FP as base register");
828 int64_t
Offset =
MI.getOperand(FIOperandNum + 1).getImm() + FIOffset;
829 MI.getOperand(FIOperandNum + 1).ChangeToImmediate(
Offset);
833 if (
MI.getOperand(FIOperandNum + 3).isImm()) {
835 int Imm = (int)(
MI.getOperand(FIOperandNum + 3).getImm());
836 int Offset = FIOffset + Imm;
838 "Requesting 64-bit offset in 32-bit immediate!");
840 MI.getOperand(FIOperandNum + 3).ChangeToImmediate(
Offset);
844 FIOffset + (
uint64_t)
MI.getOperand(FIOperandNum + 3).getOffset();
845 MI.getOperand(FIOperandNum + 3).setOffset(
Offset);
851 int SPAdj,
unsigned FIOperandNum,
860 int FrameIndex =
MI.getOperand(FIOperandNum).getIndex();
866 assert((!hasStackRealignment(MF) ||
868 "Return instruction can only reference SP relative frame objects");
871 }
else if (TFI->
Is64Bit && (
MBB.isEHFuncletEntry() || IsEHFuncletEpilogue)) {
882 unsigned Opc =
MI.getOpcode();
883 if (
Opc == TargetOpcode::LOCAL_ESCAPE) {
894 if (
Opc == X86::LEA64_32r && X86::GR32RegClass.
contains(BasePtr))
899 MI.getOperand(FIOperandNum).ChangeToRegister(MachineBasePtr,
false);
901 if (BasePtr == StackPtr)
906 if (
Opc == TargetOpcode::STACKMAP ||
Opc == TargetOpcode::PATCHPOINT) {
907 assert(BasePtr == FramePtr &&
"Expected the FP as base register");
908 int64_t
Offset =
MI.getOperand(FIOperandNum + 1).getImm() + FIOffset;
909 MI.getOperand(FIOperandNum + 1).ChangeToImmediate(
Offset);
913 if (
MI.getOperand(FIOperandNum+3).isImm()) {
916 int64_t Imm =
MI.getOperand(FIOperandNum + 3).getImm();
917 int64_t
Offset = FIOffset + Imm;
921 if (Is64Bit && !FitsIn32Bits) {
922 assert(RS &&
"RegisterScavenger was NULL");
924 RS->enterBasicBlockEnd(
MBB);
925 RS->backward(std::next(
II));
927 Register ScratchReg = RS->scavengeRegisterBackwards(
928 X86::GR64RegClass,
II,
false, 0,
930 assert(ScratchReg != 0 &&
"scratch reg was 0");
931 RS->setRegUsed(ScratchReg);
935 MI.getOperand(FIOperandNum + 3).setImm(0);
936 MI.getOperand(FIOperandNum + 2).setReg(ScratchReg);
942 if (!Is64Bit && !FitsIn32Bits) {
943 MI.emitGenericError(
"64-bit offset calculated but target is 32-bit");
950 MI.getOperand(FIOperandNum + 3).ChangeToImmediate(
Offset);
954 (
uint64_t)
MI.getOperand(FIOperandNum+3).getOffset();
955 MI.getOperand(FIOperandNum + 3).setOffset(
Offset);
970 switch (
MBBI->getOpcode()) {
973 case TargetOpcode::PATCHABLE_RET:
979 case X86::TCRETURNdi:
980 case X86::TCRETURNri:
981 case X86::TCRETURN_WIN64ri:
982 case X86::TCRETURN_HIPE32ri:
983 case X86::TCRETURNmi:
984 case X86::TCRETURNdi64:
985 case X86::TCRETURNri64:
986 case X86::TCRETURNri64_ImpCall:
987 case X86::TCRETURNmi64:
988 case X86::TCRETURN_WINmi64:
990 case X86::EH_RETURN64: {
996 Is64Bit ? X86::GR64_NOSPRegClass : X86::GR32_NOSPRegClass;
1009 return TFI->
hasFP(MF) ? FramePtr : StackPtr;
1037 unsigned OpCode =
MI->getOpcode();
1043 Register SrcReg =
MI->getOperand(1).getReg();
1049 case X86::PTILELOADDV:
1050 case X86::PTILELOADDT1V:
1051 case X86::PTDPBSSDV:
1052 case X86::PTDPBSUDV:
1053 case X86::PTDPBUSDV:
1054 case X86::PTDPBUUDV:
1055 case X86::PTILEZEROV:
1056 case X86::PTDPBF16PSV:
1057 case X86::PTDPFP16PSV:
1058 case X86::PTCMMIMFP16PSV:
1059 case X86::PTCMMRLFP16PSV:
1060 case X86::PTILELOADDRSV:
1061 case X86::PTILELOADDRST1V:
1062 case X86::PTMMULTF32PSV:
1063 case X86::PTDPBF8PSV:
1064 case X86::PTDPBHF8PSV:
1065 case X86::PTDPHBF8PSV:
1066 case X86::PTDPHF8PSV: {
1085 VirtReg, Order, Hints, MF, VRM,
Matrix);
1092 return BaseImplRetVal;
1094 if (
ID != X86::TILERegClassID) {
1096 !
TRI.isGeneralPurposeRegisterClass(&RC))
1097 return BaseImplRetVal;
1105 if (PhysReg && !
MRI->isReserved(PhysReg) && !
is_contained(Hints, PhysReg))
1106 TwoAddrHints.
insert(PhysReg);
1111 for (
auto &MO :
MRI->reg_nodbg_operands(VirtReg)) {
1115 unsigned OpIdx =
MI.getOperandNo(&MO);
1118 TryAddNDDHint(
MI.getOperand(1));
1119 if (
MI.isCommutable()) {
1121 TryAddNDDHint(
MI.getOperand(2));
1123 }
else if (
OpIdx == 1) {
1124 TryAddNDDHint(
MI.getOperand(0));
1125 }
else if (
MI.isCommutable() &&
OpIdx == 2) {
1126 TryAddNDDHint(
MI.getOperand(0));
1131 if (TwoAddrHints.
count(OrderReg))
1134 return BaseImplRetVal;
1145 if (PhysShape == VirtShape)
1151 for (
auto Hint : CopyHints) {
1157 !
MRI->isReserved(PhysReg))
1161#define DEBUG_TYPE "tile-hint"
1163 dbgs() <<
"Hints for virtual register " <<
format_hex(VirtReg, 8) <<
"\n";
1164 for (
auto Hint : Hints) {
1165 dbgs() <<
"tmm" << Hint <<
",";
1176 switch (RC->
getID()) {
1179 case X86::GR8RegClassID:
1180 return &X86::GR8_NOREX2RegClass;
1181 case X86::GR16RegClassID:
1182 return &X86::GR16_NOREX2RegClass;
1183 case X86::GR32RegClassID:
1184 return &X86::GR32_NOREX2RegClass;
1185 case X86::GR64RegClassID:
1186 return &X86::GR64_NOREX2RegClass;
1187 case X86::GR32_NOSPRegClassID:
1188 return &X86::GR32_NOREX2_NOSPRegClass;
1189 case X86::GR64_NOSPRegClassID:
1190 return &X86::GR64_NOREX2_NOSPRegClass;
1195 switch (RC->
getID()) {
1198 case X86::GR8_NOREX2RegClassID:
1199 case X86::GR16_NOREX2RegClassID:
1200 case X86::GR32_NOREX2RegClassID:
1201 case X86::GR64_NOREX2RegClassID:
1202 case X86::GR32_NOREX2_NOSPRegClassID:
1203 case X86::GR64_NOREX2_NOSPRegClassID:
1204 case X86::GR64_with_sub_16bit_in_GR16_NOREX2RegClassID:
unsigned const MachineRegisterInfo * MRI
static const TargetRegisterClass * getRegClass(const MachineInstr &MI, Register Reg)
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
MachineBasicBlock MachineBasicBlock::iterator MBBI
This file implements the BitVector class.
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
const HexagonInstrInfo * TII
static cl::opt< bool > EnableBasePointer("m68k-use-base-pointer", cl::Hidden, cl::init(true), cl::desc("Enable use of a base pointer for complex stack frames"))
static bool CantUseSP(const MachineFrameInfo &MFI)
Register const TargetRegisterInfo * TRI
Promote Memory to Register
MachineInstr unsigned OpIdx
uint64_t IntrinsicInst * II
This file declares the machine register scavenger class.
static bool contains(SmallPtrSetImpl< ConstantExpr * > &Cache, ConstantExpr *Expr, Constant *C)
This file defines the SmallSet class.
cl::opt< bool > X86EnableAPXForRelocation
static cl::opt< bool > EnableBasePointer("x86-use-base-pointer", cl::Hidden, cl::init(true), cl::desc("Enable use of a base pointer for complex stack frames"))
static bool tryOptimizeLEAtoMOV(MachineBasicBlock::iterator II)
static cl::opt< bool > DisableRegAllocNDDHints("x86-disable-regalloc-hints-for-ndd", cl::Hidden, cl::init(false), cl::desc("Disable two address hints for register " "allocation"))
static ShapeT getTileShape(Register VirtReg, VirtRegMap *VRM, const MachineRegisterInfo *MRI)
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
CallingConv::ID getCallingConv() const
getCallingConv()/setCallingConv(CC) - These method get and set the calling convention of this functio...
bool hasFnAttribute(Attribute::AttrKind Kind) const
Return true if the function has the attribute.
A set of register units used to track register liveness.
bool available(MCRegister Reg) const
Returns true if no part of physical register Reg is live.
LLVM_ABI void stepBackward(const MachineInstr &MI)
Updates liveness when stepping backwards over the instruction MI.
LLVM_ABI void addLiveOuts(const MachineBasicBlock &MBB)
Adds registers living out of block MBB.
LLVM_ABI void reportError(SMLoc L, const Twine &Msg)
MCRegAliasIterator enumerates all registers aliasing Reg.
Wrapper class representing physical registers. Should be passed by value.
static constexpr unsigned NoRegister
MachineInstrBundleIterator< MachineInstr > iterator
The MachineFrameInfo class represents an abstract stack frame until prolog/epilog code is inserted.
bool hasVarSizedObjects() const
This method may be called any time after instruction selection is complete to determine if the stack ...
bool hasOpaqueSPAdjustment() const
Returns true if the function contains opaque dynamic stack adjustments.
bool isFixedObjectIndex(int ObjectIdx) const
Returns true if the specified index corresponds to a fixed stack object.
const TargetSubtargetInfo & getSubtarget() const
getSubtarget - Return the subtarget for which this machine code is being compiled.
MachineFrameInfo & getFrameInfo()
getFrameInfo - Return the frame info object for the current function.
MCContext & getContext() const
bool callsEHReturn() const
MachineRegisterInfo & getRegInfo()
getRegInfo - Return information about the registers currently in use.
Function & getFunction()
Return the LLVM function that this machine code represents.
Ty * getInfo()
getInfo - Keep track of various per-function pieces of information for backends that would like to do...
const TargetMachine & getTarget() const
getTarget - Return the target machine this machine code is compiled with
const MachineInstrBuilder & addImm(int64_t Val) const
Add a new immediate operand.
Representation of each machine instruction.
MachineOperand class - Representation of each machine instruction operand.
LLVM_ABI void ChangeToImmediate(int64_t ImmVal, unsigned TargetFlags=0)
ChangeToImmediate - Replace this operand with a new immediate operand of the specified value.
MachineRegisterInfo - Keep track of information for virtual and physical registers,...
Wrapper class representing virtual and physical registers.
constexpr bool isPhysical() const
Return true if the specified register number is in the physical register namespace.
Represents a location in source code.
SmallSet - This maintains a set of unique values, optimizing for the case when the set is small (less...
size_type count(const T &V) const
count - Return 1 if the element is in the set, 0 otherwise.
std::pair< const_iterator, bool > insert(const T &V)
insert - Insert an element into the set if it isn't already there.
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
void push_back(const T &Elt)
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
static StackOffset getFixed(int64_t Fixed)
bool hasFP(const MachineFunction &MF) const
hasFP - Return true if the specified function should have a dedicated frame pointer register.
LLVM_ABI bool FramePointerIsReserved(const MachineFunction &MF) const
FramePointerIsReserved - This returns true if the frame pointer must always either point to a new fra...
unsigned getID() const
Return the register class ID number.
bool contains(Register Reg) const
Return true if the specified register is included in this register class.
ArrayRef< unsigned > superclasses() const
Returns a list of super-classes.
TargetRegisterInfo base class - We assume that the target defines a static array of TargetRegisterDes...
virtual bool canRealignStack(const MachineFunction &MF) const
True if the stack can be realigned for the target.
virtual bool shouldRealignStack(const MachineFunction &MF) const
True if storage within the function requires the stack pointer to be aligned more than the normal cal...
virtual bool getRegAllocationHints(Register VirtReg, ArrayRef< MCPhysReg > Order, SmallVectorImpl< MCPhysReg > &Hints, const MachineFunction &MF, const VirtRegMap *VRM=nullptr, const LiveRegMatrix *Matrix=nullptr) const
Get a list of 'hint' registers that the register allocator should try first when allocating a physica...
Triple - Helper class for working with autoconf configuration names.
bool hasShape(Register virtReg) const
ShapeT getShape(Register virtReg) const
MCRegister getPhys(Register virtReg) const
returns the physical register mapped to the specified virtual register
void assignVirt2Shape(Register virtReg, ShapeT shape)
StackOffset getFrameIndexReferenceSP(const MachineFunction &MF, int FI, Register &SPReg, int Adjustment) const
StackOffset getFrameIndexReference(const MachineFunction &MF, int FI, Register &FrameReg) const override
getFrameIndexReference - This method should return the base register and offset used to reference a f...
bool Is64Bit
Is64Bit implies that x86_64 instructions are available.
int getWin64EHFrameIndexRef(const MachineFunction &MF, int FI, Register &SPReg) const
X86MachineFunctionInfo - This class is derived from MachineFunction and contains private X86 target-s...
bool getBPClobberedByInvoke() const
bool hasPreallocatedCall() const
MachineInstr * getStackPtrSaveMI() const
bool getFPClobberedByInvoke() const
bool hasBasePointer(const MachineFunction &MF) const
const TargetRegisterClass * getPointerRegClass(unsigned Kind=0) const override
getPointerRegClass - Returns a TargetRegisterClass used for pointer values.
const MCPhysReg * getCalleeSavedRegsViaCopy(const MachineFunction *MF) const
bool canRealignStack(const MachineFunction &MF) const override
BitVector getReservedRegs(const MachineFunction &MF) const override
getReservedRegs - Returns a bitset indexed by physical register number indicating if a register is a ...
Register getPtrSizedFrameRegister(const MachineFunction &MF) const
bool shouldRealignStack(const MachineFunction &MF) const override
unsigned getNumSupportedRegs(const MachineFunction &MF) const override
Return the number of registers for the function.
const MCPhysReg * getIPRACSRegs(const MachineFunction *MF) const override
getIPRACSRegs - This API can be removed when rbp is safe to optimized out when IPRA is on.
Register getFrameRegister(const MachineFunction &MF) const override
unsigned findDeadCallerSavedReg(MachineBasicBlock &MBB, MachineBasicBlock::iterator &MBBI) const
findDeadCallerSavedReg - Return a caller-saved register that isn't live when it reaches the "return" ...
const uint32_t * getDarwinTLSCallPreservedMask() const
bool isTileRegisterClass(const TargetRegisterClass *RC) const
Return true if it is tile register class.
bool isNonRex2RegClass(const TargetRegisterClass *RC) const
const uint32_t * getCallPreservedMask(const MachineFunction &MF, CallingConv::ID) const override
Register getPtrSizedStackRegister(const MachineFunction &MF) const
bool isArgumentRegister(const MachineFunction &MF, MCRegister Reg) const override
isArgumentReg - Returns true if Reg can be used as an argument to a function.
Register getStackRegister() const
const TargetRegisterClass * getLargestLegalSuperClass(const TargetRegisterClass *RC, const MachineFunction &MF) const override
const TargetRegisterClass * getMatchingSuperRegClass(const TargetRegisterClass *A, const TargetRegisterClass *B, unsigned Idx) const override
getMatchingSuperRegClass - Return a subclass of the specified register class A so that each register ...
unsigned getRegPressureLimit(const TargetRegisterClass *RC, MachineFunction &MF) const override
const TargetRegisterClass * getCrossCopyRegClass(const TargetRegisterClass *RC) const override
getCrossCopyRegClass - Returns a legal register class to copy a register in the specified class to or...
X86RegisterInfo(const Triple &TT)
const TargetRegisterClass * constrainRegClassToNonRex2(const TargetRegisterClass *RC) const
Register getBaseRegister() const
bool getRegAllocationHints(Register VirtReg, ArrayRef< MCPhysReg > Order, SmallVectorImpl< MCPhysReg > &Hints, const MachineFunction &MF, const VirtRegMap *VRM, const LiveRegMatrix *Matrix) const override
void eliminateFrameIndex(MachineBasicBlock::iterator II, unsigned FIOperandNum, Register BaseReg, int FIOffset) const
const uint32_t * getNoPreservedMask() const override
bool isFixedRegister(const MachineFunction &MF, MCRegister PhysReg) const override
Returns true if PhysReg is a fixed register.
const TargetRegisterClass * getSubClassWithSubReg(const TargetRegisterClass *RC, unsigned Idx) const override
const MCPhysReg * getCalleeSavedRegs(const MachineFunction *MF) const override
getCalleeSavedRegs - Return a null-terminated list of all of the callee-save registers on this target...
void adjustStackMapLiveOutMask(uint32_t *Mask) const override
const X86TargetLowering * getTargetLowering() const override
bool isTarget64BitILP32() const
Is this x86_64 with the ILP32 programming model (x32 ABI)?
bool supportSwiftError() const override
Return true if the target supports swifterror attribute.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
unsigned ID
LLVM IR allows to use arbitrary numbers as calling convention identifiers.
@ X86_64_SysV
The C convention as specified in the x86-64 supplement to the System V ABI, used on most non-Windows ...
@ HiPE
Used by the High-Performance Erlang Compiler (HiPE).
@ CFGuard_Check
Special calling convention on Windows for calling the Control Guard Check ICall funtion.
@ PreserveMost
Used for runtime calls that preserves most registers.
@ AnyReg
OBSOLETED - Used for stack based JavaScript calls.
@ CXX_FAST_TLS
Used for access functions.
@ X86_INTR
x86 hardware interrupt context.
@ GHC
Used by the Glasgow Haskell Compiler (GHC).
@ Cold
Attempts to make code in the caller as efficient as possible under the assumption that the call is no...
@ PreserveAll
Used for runtime calls that preserves (almost) all registers.
@ Intel_OCL_BI
Used for Intel OpenCL built-ins.
@ PreserveNone
Used for runtime calls that preserves none general registers.
@ Win64
The C convention as implemented on Windows/x86-64 and AArch64.
@ SwiftTail
This follows the Swift calling convention in how arguments are passed but guarantees tail calls will ...
@ GRAAL
Used by GraalVM. Two additional registers are reserved.
@ X86_RegCall
Register calling convention used for parameters transfer optimization.
void initLLVMToSEHAndCVRegMapping(MCRegisterInfo *MRI)
Define some predicates that are used for node matching.
unsigned getNonNDVariant(unsigned Opc)
initializer< Ty > init(const Ty &Val)
This is an optimization pass for GlobalISel generic memory operations.
MachineInstrBuilder BuildMI(MachineFunction &MF, const MIMetadata &MIMD, const MCInstrDesc &MCID)
Builder interface. Specify how to create the initial instruction itself.
constexpr bool isInt(int64_t x)
Checks if an integer fits into the given bit width.
MCRegister getX86SubSuperRegister(MCRegister Reg, unsigned Size, bool High=false)
constexpr from_range_t from_range
bool any_of(R &&range, UnaryPredicate P)
Provide wrappers to std::any_of which take ranges instead of having to pass begin/end explicitly.
static bool isFuncletReturnInstr(const MachineInstr &MI)
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
FormattedNumber format_hex(uint64_t N, unsigned Width, bool Upper=false)
format_hex - Output N as a fixed width hexadecimal.
uint16_t MCPhysReg
An unsigned integer type large enough to represent all physical registers, but not necessarily virtua...
bool is_contained(R &&Range, const E &Element)
Returns true if Element is found in Range.