43#include "llvm/Config/llvm-config.h"
82#define DEBUG_TYPE "codegen"
85 "align-all-functions",
86 cl::desc(
"Force the alignment of all functions in log2 format (e.g. 4 "
87 "means align on 16B boundaries)."),
95 case P::FailedISel:
return "FailedISel";
96 case P::IsSSA:
return "IsSSA";
97 case P::Legalized:
return "Legalized";
98 case P::NoPHIs:
return "NoPHIs";
99 case P::NoVRegs:
return "NoVRegs";
100 case P::RegBankSelected:
return "RegBankSelected";
101 case P::Selected:
return "Selected";
102 case P::TracksLiveness:
return "TracksLiveness";
103 case P::TiedOpsRewritten:
return "TiedOpsRewritten";
104 case P::FailsVerification:
return "FailsVerification";
105 case P::FailedRegAlloc:
return "FailedRegAlloc";
106 case P::TracksDebugUserValues:
return "TracksDebugUserValues";
113 if (!
F.hasFnAttribute(Attribute::SafeStack))
117 dyn_cast_or_null<MDTuple>(
F.getMetadata(LLVMContext::MD_annotation));
119 if (!Existing || Existing->getNumOperands() != 2)
122 auto *MetadataName =
"unsafe-stack-size";
123 if (
auto &
N = Existing->getOperand(0)) {
124 if (
N.equalsStr(MetadataName)) {
125 if (
auto &
Op = Existing->getOperand(1)) {
126 auto Val = mdconst::extract<ConstantInt>(
Op)->getZExtValue();
134void MachineFunction::Delegate::anchor() {}
137 const char *Separator =
"";
141 OS << Separator << getPropertyName(static_cast<Property>(
I));
159 if (
auto MA =
F.getFnStackAlign())
166 unsigned FunctionNum)
168 FunctionNumber = FunctionNum;
188void MachineFunction::init() {
190 Properties.setIsSSA();
191 Properties.setTracksLiveness();
200 bool ForceRealignSP = F.
hasFnAttribute(Attribute::StackAlignment) ||
204 ForceRealignSP && CanRealignSP);
216 Alignment = std::max(Alignment,
223 if (F.
hasMetadata(LLVMContext::MD_func_sanitize) ||
225 Alignment = std::max(Alignment,
Align(4));
230 JumpTableInfo =
nullptr;
243 "Can't create a MachineFunction using a Module with a "
244 "Target-incompatible DataLayout attached\n");
246 PSVManager = std::make_unique<PseudoSourceValueManager>(
getTarget());
251 assert(!MFInfo &&
"MachineFunctionInfo already set");
252 MFInfo =
Target.createMachineFunctionInfo(Allocator, F, &STI);
259void MachineFunction::clear() {
265 JumpTableInfo->~MachineJumpTableInfo();
267 JumpTableInfo =
nullptr;
275 I->Insts.clearAndLeakNodesUnsafely();
276 MBBNumbering.clear();
278 InstructionRecycler.clear(Allocator);
279 OperandRecycler.
clear(Allocator);
280 BasicBlockRecycler.clear(Allocator);
281 CodeViewAnnotations.clear();
284 RegInfo->~MachineRegisterInfo();
292 FrameInfo->~MachineFrameInfo();
299 WinEHInfo->~WinEHFuncInfo();
304 WasmEHInfo->~WasmEHFuncInfo();
317 if (JumpTableInfo)
return JumpTableInfo;
319 JumpTableInfo =
new (Allocator)
321 return JumpTableInfo;
333[[nodiscard]]
unsigned
335 FrameInstructions.push_back(Inst);
336 return FrameInstructions.size() - 1;
344 if (
empty()) { MBBNumbering.clear();
return; }
352 unsigned BlockNo = 0;
354 BlockNo = std::prev(
MBBI)->getNumber() + 1;
356 for (;
MBBI != E; ++
MBBI, ++BlockNo) {
361 "MBB number mismatch!");
366 if (MBBNumbering[BlockNo])
367 MBBNumbering[BlockNo]->setNumber(-1);
369 MBBNumbering[BlockNo] = &*
MBBI;
376 assert(BlockNo <= MBBNumbering.size() &&
"Mismatch!");
377 MBBNumbering.resize(BlockNo);
398 if (Alignment <= FunctionAlignment) {
404 FunctionAlignment.
value();
422 std::prev(
MBBI)->setIsEndSection();
432 return new (InstructionRecycler.Allocate<
MachineInstr>(Allocator))
440 return new (InstructionRecycler.Allocate<
MachineInstr>(Allocator))
452 if (FirstClone ==
nullptr) {
458 if (!
I->isBundledWithSucc())
479 assert((!
MI->isCandidateForAdditionalCallInfo() ||
481 "Call site info was not updated!");
483 assert((!
MI->isCandidateForAdditionalCallInfo() ||
485 "Called globals info was not updated!");
493 InstructionRecycler.Deallocate(Allocator,
MI);
500 std::optional<UniqueBBID> BBID) {
506 if (
Target.Options.BBAddrMap ||
518 MBB->~MachineBasicBlock();
519 BasicBlockRecycler.Deallocate(Allocator,
MBB);
528 Size.getValue().getKnownMinValue() != ~UINT64_C(0)) &&
529 "Unexpected an unknown size to be represented using "
530 "LocationSize::beforeOrAfter()");
531 return new (Allocator)
533 Ordering, FailureOrdering);
541 return new (Allocator)
543 Ordering, FailureOrdering);
551 Size.getValue().getKnownMinValue() != ~UINT64_C(0)) &&
552 "Unexpected an unknown size to be represented using "
553 "LocationSize::beforeOrAfter()");
554 return new (Allocator)
562 return new (Allocator)
613 return MachineInstr::ExtraInfo::create(Allocator, MMOs, PreInstrSymbol,
614 PostInstrSymbol, HeapAllocMarker,
615 PCSections, CFIType, MMRAs);
621 Dest[
Name.size()] = 0;
629 memset(Mask, 0,
Size *
sizeof(Mask[0]));
634 int* AllocMask = Allocator.
Allocate<
int>(Mask.size());
635 copy(Mask, AllocMask);
636 return {AllocMask, Mask.size()};
639#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
650 OS <<
"# Machine code for function " <<
getName() <<
": ";
667 OS <<
"Function Live Ins: ";
673 if (std::next(
I) != E)
681 for (
const auto &BB : *
this) {
684 BB.print(
OS, MST, Indexes,
true);
687 OS <<
"\n# End machine code for function " <<
getName() <<
".\n\n";
718 ConstantInt::get(Int64Ty, TypeIdVal,
false));
729 return (
"CFG for '" +
F->getName() +
"' function").str();
740 if (
const BasicBlock *BB = Node->getBasicBlock())
741 OSS <<
": " << BB->getName();
746 if (OutStr[0] ==
'\n') OutStr.erase(OutStr.begin());
749 for (
unsigned i = 0; i != OutStr.length(); ++i)
750 if (OutStr[i] ==
'\n') {
752 OutStr.insert(OutStr.begin()+i+1,
'l');
765 errs() <<
"MachineFunction::viewCFG is only available in debug builds on "
766 <<
"systems with Graphviz or gv!\n";
775 errs() <<
"MachineFunction::viewCFGOnly is only available in debug builds on "
776 <<
"systems with Graphviz or gv!\n";
796 "Register class mismatch!");
799 VReg =
MRI.createVirtualRegister(RC);
800 MRI.addLiveIn(PReg, VReg);
808 bool isLinkerPrivate)
const {
810 assert(JumpTableInfo &&
"No jump tables");
811 assert(JTI < JumpTableInfo->getJumpTables().
size() &&
"Invalid JTI!");
813 StringRef Prefix = isLinkerPrivate ?
DL.getLinkerPrivateGlobalPrefix()
814 :
DL.getPrivateGlobalPrefix();
833 unsigned N = LandingPads.size();
834 for (
unsigned i = 0; i <
N; ++i) {
841 return LandingPads[
N];
858 if (
const auto *LPI = dyn_cast<LandingPadInst>(FirstI)) {
861 if (LPI->isCleanup() && LPI->getNumClauses() != 0)
867 for (
unsigned I = LPI->getNumClauses();
I != 0; --
I) {
868 Value *Val = LPI->getClause(
I - 1);
869 if (LPI->isCatch(
I - 1)) {
874 auto *CVal = cast<Constant>(Val);
876 for (
const Use &U : CVal->operands())
878 getTypeIDFor(cast<GlobalValue>(U->stripPointerCasts())));
884 }
else if (
const auto *CPI = dyn_cast<CatchPadInst>(FirstI)) {
885 for (
unsigned I = CPI->arg_size();
I != 0; --
I) {
887 dyn_cast<GlobalValue>(CPI->getArgOperand(
I - 1)->stripPointerCasts());
892 assert(isa<CleanupPadInst>(FirstI) &&
"Invalid landingpad!");
895 return LandingPadLabel;
900 LPadToCallSiteMap[
Sym].append(Sites.
begin(), Sites.
end());
904 for (
unsigned i = 0,
N = TypeInfos.size(); i !=
N; ++i)
905 if (TypeInfos[i] == TI)
return i + 1;
907 TypeInfos.push_back(TI);
908 return TypeInfos.size();
915 for (
unsigned i : FilterEnds) {
916 unsigned j = TyIds.
size();
919 if (FilterIds[--i] != TyIds[--j])
930 int FilterID = -(1 + FilterIds.size());
931 FilterIds.reserve(FilterIds.size() + TyIds.
size() + 1);
933 FilterEnds.push_back(FilterIds.size());
934 FilterIds.push_back(0);
940 assert(
MI->isCandidateForAdditionalCallInfo() &&
941 "Call site info refers only to call (MI) candidates");
943 if (!
Target.Options.EmitCallSiteInfo && !
Target.Options.EmitCallGraphSection)
944 return CallSitesInfo.
end();
945 return CallSitesInfo.
find(
MI);
955 if (BMI.isCandidateForAdditionalCallInfo())
962 assert(
MI->shouldUpdateAdditionalCallInfo() &&
963 "Call info refers only to call (MI) candidates or "
964 "candidates inside bundles");
969 if (CSIt != CallSitesInfo.
end())
970 CallSitesInfo.
erase(CSIt);
972 CalledGlobalsInfo.
erase(CallMI);
978 "Call info refers only to call (MI) candidates or "
979 "candidates inside bundles");
981 if (!New->isCandidateForAdditionalCallInfo())
986 if (CSIt != CallSitesInfo.
end()) {
988 CallSitesInfo[New] = std::move(CSInfo);
992 if (CGIt != CalledGlobalsInfo.
end()) {
994 CalledGlobalsInfo[New] = std::move(CGInfo);
1001 "Call info refers only to call (MI) candidates or "
1002 "candidates inside bundles");
1004 if (!New->isCandidateForAdditionalCallInfo())
1009 if (CSIt != CallSitesInfo.
end()) {
1011 CallSitesInfo.
erase(CSIt);
1012 CallSitesInfo[New] = std::move(CSInfo);
1016 if (CGIt != CalledGlobalsInfo.
end()) {
1018 CalledGlobalsInfo.
erase(CGIt);
1019 CalledGlobalsInfo[New] = std::move(CGInfo);
1040 unsigned MaxOperand) {
1052 for (
unsigned int I = 0;
I < MaxOperand; ++
I) {
1054 auto &NewMO = New.getOperand(
I);
1057 if (!OldMO.isReg() || !OldMO.isDef())
1061 unsigned NewInstrNum = New.getDebugInstrNum();
1063 std::make_pair(NewInstrNum,
I));
1075 if (
auto CopyDstSrc =
TII.isCopyLikeInstr(
MI)) {
1076 Dest = CopyDstSrc->Destination->getReg();
1079 Dest =
MI.getOperand(0).getReg();
1082 auto CacheIt = DbgPHICache.find(Dest);
1083 if (CacheIt != DbgPHICache.end())
1084 return CacheIt->second;
1088 DbgPHICache.insert({Dest, OperandPair});
1114 auto GetRegAndSubreg =
1115 [&](
const MachineInstr &Cpy) -> std::pair<Register, unsigned> {
1119 OldReg = Cpy.getOperand(0).getReg();
1120 NewReg = Cpy.getOperand(1).getReg();
1121 SubReg = Cpy.getOperand(1).getSubReg();
1122 }
else if (Cpy.isSubregToReg()) {
1123 OldReg = Cpy.getOperand(0).getReg();
1124 NewReg = Cpy.getOperand(2).getReg();
1125 SubReg = Cpy.getOperand(3).getImm();
1127 auto CopyDetails = *
TII.isCopyInstr(Cpy);
1131 NewReg = Src.getReg();
1132 SubReg = Src.getSubReg();
1142 auto State = GetRegAndSubreg(
MI);
1143 auto CurInst =
MI.getIterator();
1147 if (!State.first.isVirtual())
1161 State = GetRegAndSubreg(Inst);
1168 auto ApplySubregisters =
1170 for (
unsigned Subreg :
reverse(SubregsSeen)) {
1178 P = {NewInstrNumber, 0};
1185 if (State.first.isVirtual()) {
1188 for (
auto &MO : Inst->
all_defs()) {
1189 if (MO.getReg() != State.first)
1199 assert(CurInst->isCopyLike() ||
TII.isCopyInstr(*CurInst));
1200 State = GetRegAndSubreg(*CurInst);
1203 auto RMII = CurInst->getReverseIterator();
1204 auto PrevInstrs =
make_range(RMII, CurInst->getParent()->instr_rend());
1205 for (
auto &ToExamine : PrevInstrs) {
1206 for (
auto &MO : ToExamine.all_defs()) {
1208 if (!
TRI.regsOverlap(RegToSeek, MO.getReg()))
1211 return ApplySubregisters(
1212 {ToExamine.getDebugInstrNum(), MO.getOperandNo()});
1229 TII.get(TargetOpcode::DBG_PHI));
1230 Builder.addReg(State.first);
1232 Builder.addImm(NewNum);
1233 return ApplySubregisters({NewNum, 0u});
1240 const MCInstrDesc &RefII =
TII->get(TargetOpcode::DBG_VALUE_LIST);
1242 MI.setDebugValueUndef();
1246 for (
auto &
MBB : *
this) {
1247 for (
auto &
MI :
MBB) {
1248 if (!
MI.isDebugRef())
1251 bool IsValidRef =
true;
1275 MO.ChangeToDbgInstrRef(Result.first, Result.second);
1278 unsigned OperandIdx = 0;
1279 for (
const auto &DefMO :
DefMI.operands()) {
1280 if (DefMO.isReg() && DefMO.isDef() && DefMO.getReg() ==
Reg)
1287 unsigned ID =
DefMI.getDebugInstrNum();
1288 MO.ChangeToDbgInstrRef(
ID, OperandIdx);
1293 MakeUndefDbgValue(
MI);
1307 if (
F.hasFnAttribute(Attribute::OptimizeNone))
1334 const std::vector<MachineBasicBlock *> &MBBs)
1380 const std::vector<MachineBasicBlock*> &DestBBs) {
1381 assert(!DestBBs.empty() &&
"Cannot create an empty jump table!");
1383 return JumpTables.size()-1;
1388 assert(JTI < JumpTables.size() &&
"Invalid JTI!");
1390 if (Hotness <= JumpTables[JTI].Hotness)
1393 JumpTables[JTI].Hotness = Hotness;
1401 assert(Old != New &&
"Not making a change?");
1402 bool MadeChange =
false;
1403 for (
size_t i = 0, e = JumpTables.size(); i != e; ++i)
1410 bool MadeChange =
false;
1412 auto removeBeginItr = std::remove(JTE.MBBs.begin(), JTE.MBBs.end(),
MBB);
1413 MadeChange |= (removeBeginItr != JTE.MBBs.end());
1414 JTE.MBBs.erase(removeBeginItr, JTE.MBBs.end());
1424 assert(Old != New &&
"Not making a change?");
1425 bool MadeChange =
false;
1436 if (JumpTables.empty())
return;
1438 OS <<
"Jump Tables:\n";
1440 for (
unsigned i = 0, e = JumpTables.size(); i != e; ++i) {
1451#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
1463void MachineConstantPoolValue::anchor() {}
1466 return DL.getTypeAllocSize(Ty);
1471 return Val.MachineCPVal->getSizeInBytes(
DL);
1472 return DL.getTypeAllocSize(
Val.ConstVal->getType());
1478 return Val.ConstVal->needsDynamicRelocation();
1504 if (
C.isMachineConstantPoolEntry()) {
1505 Deleted.insert(
C.Val.MachineCPVal);
1506 delete C.Val.MachineCPVal;
1519 if (
A ==
B)
return true;
1523 if (
A->getType() ==
B->getType())
return false;
1526 if (isa<StructType>(
A->getType()) || isa<ArrayType>(
A->getType()) ||
1527 isa<StructType>(
B->getType()) || isa<ArrayType>(
B->getType()))
1531 uint64_t StoreSize =
DL.getTypeStoreSize(
A->getType());
1532 if (StoreSize !=
DL.getTypeStoreSize(
B->getType()) || StoreSize > 128)
1535 bool ContainsUndefOrPoisonA =
A->containsUndefOrPoisonElement();
1543 if (isa<PointerType>(
A->getType()))
1546 else if (
A->getType() != IntTy)
1549 if (isa<PointerType>(
B->getType()))
1552 else if (
B->getType() != IntTy)
1563 return !ContainsUndefOrPoisonA;
1570 if (Alignment > PoolAlignment) PoolAlignment = Alignment;
1575 for (
unsigned i = 0, e = Constants.size(); i != e; ++i)
1576 if (!Constants[i].isMachineConstantPoolEntry() &&
1578 if (Constants[i].
getAlign() < Alignment)
1579 Constants[i].Alignment = Alignment;
1584 return Constants.size()-1;
1589 if (Alignment > PoolAlignment) PoolAlignment = Alignment;
1594 int Idx = V->getExistingMachineCPValue(
this, Alignment);
1596 MachineCPVsSharingEntries.insert(V);
1597 return (
unsigned)
Idx;
1601 return Constants.size()-1;
1605 if (Constants.empty())
return;
1607 OS <<
"Constant Pool:\n";
1608 for (
unsigned i = 0, e = Constants.size(); i != e; ++i) {
1609 OS <<
" cp#" << i <<
": ";
1610 if (Constants[i].isMachineConstantPoolEntry())
1611 Constants[i].Val.MachineCPVal->print(
OS);
1613 Constants[i].Val.ConstVal->printAsOperand(
OS,
false);
1614 OS <<
", align=" << Constants[i].getAlign().value();
1624std::optional<Function::ProfileCount>
1625ProfileSummaryInfo::getEntryCount<llvm::MachineFunction>(
1627 return F->getFunction().getEntryCount();
1630#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
unsigned const MachineRegisterInfo * MRI
MachineInstrBuilder MachineInstrBuilder & DefMI
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
MachineBasicBlock MachineBasicBlock::iterator MBBI
This file contains the simple types necessary to represent the attributes associated with functions a...
static const Function * getParent(const Value *V)
This file implements the BitVector class.
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
#define LLVM_DUMP_METHOD
Mark debug helper function definitions like dump() that should not be stripped from debug builds.
Returns the sub type a function will return at a given Idx Should correspond to the result type of an ExtractValue instruction executed with just that one unsigned Idx
This file defines the DenseMap class.
This file defines the DenseSet and SmallDenseSet classes.
const HexagonInstrInfo * TII
Module.h This file contains the declarations for the Module class.
This file declares the MachineConstantPool class which is an abstract constant pool to keep track of ...
static cl::opt< unsigned > AlignAllFunctions("align-all-functions", cl::desc("Force the alignment of all functions in log2 format (e.g. 4 " "means align on 16B boundaries)."), cl::init(0), cl::Hidden)
static const MachineInstr * getCallInstr(const MachineInstr *MI)
Return the call machine instruction or find a call within bundle.
static Align getFnStackAlignment(const TargetSubtargetInfo &STI, const Function &F)
static bool CanShareConstantPoolEntry(const Constant *A, const Constant *B, const DataLayout &DL)
Test whether the given two constants can be allocated the same constant pool entry referenced by.
void setUnsafeStackSize(const Function &F, MachineFrameInfo &FrameInfo)
static const char * getPropertyName(MachineFunctionProperties::Property Prop)
Register const TargetRegisterInfo * TRI
static bool isSimple(Instruction *I)
This file defines the SmallString class.
This file defines the SmallVector class.
static const int BlockSize
This file describes how to lower LLVM code to machine code.
void clear(AllocatorType &Allocator)
Release all the tracked allocations to the allocator.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
size_t size() const
size - Get the array size.
LLVM Basic Block Representation.
LLVM_ABI InstListType::const_iterator getFirstNonPHIIt() const
Returns an iterator to the first instruction in this block that is not a PHINode instruction.
InstListType::const_iterator const_iterator
LLVM_ATTRIBUTE_RETURNS_NONNULL void * Allocate(size_t Size, Align Alignment)
Allocate space at the specified alignment.
void Deallocate(const void *Ptr, size_t Size, size_t)
Base class for all callable instructions (InvokeInst and CallInst) Holds everything related to callin...
LLVM_ABI bool isIndirectCall() const
Return true if the callsite is an indirect call.
This is an important base class in LLVM.
This class represents an Operation in the Expression.
A parsed version of the target data layout string in and methods for querying it.
Align getABIIntegerTypeAlignment(unsigned BitWidth) const
Returns the minimum ABI-required alignment for an integer type of the specified bitwidth.
LLVM_ABI unsigned getPointerSize(unsigned AS=0) const
The pointer representation size in bytes, rounded up to a whole number of bytes.
LLVM_ABI Align getPointerABIAlignment(unsigned AS) const
Layout pointer alignment.
iterator find(const_arg_type_t< KeyT > Val)
bool erase(const KeyT &Val)
bool contains(const_arg_type_t< KeyT > Val) const
Return true if the specified key is in the map, false otherwise.
Implements a dense probed hash-table based set.
bool hasOptSize() const
Optimize this function for size (-Os) or minimum size (-Oz).
const DataLayout & getDataLayout() const
Get the data layout of the module this function belongs to.
MaybeAlign getFnStackAlign() const
Return the stack alignment for the function.
bool hasPersonalityFn() const
Check whether this function has a personality function.
Constant * getPersonalityFn() const
Get the personality function associated with this function.
DenormalMode getDenormalMode(const fltSemantics &FPType) const
Returns the denormal handling type for the default rounding mode of the function.
bool needsUnwindTableEntry() const
True if this function needs an unwind table.
bool hasFnAttribute(Attribute::AttrKind Kind) const
Return true if the function has the attribute.
bool hasMetadata() const
Return true if this value has any metadata attached to it.
MDNode * getMetadata(unsigned KindID) const
Get the current metadata attachments for the given kind, if any.
Module * getParent()
Get the module that this global value is contained inside of...
MDNode * getMetadata(unsigned KindID) const
Get the metadata of given kind attached to this Instruction.
Class to represent integer types.
static LLVM_ABI IntegerType * get(LLVMContext &C, unsigned NumBits)
This static method is the primary way of constructing an IntegerType.
Context object for machine code objects.
LLVM_ABI MCSymbol * createTempSymbol()
Create a temporary symbol with a unique name.
LLVM_ABI MCSymbol * getOrCreateSymbol(const Twine &Name)
Lookup the symbol inside with the specified Name.
Describe properties that are true of each instruction in the target description file.
unsigned getNumRegs() const
Return the number of registers this target has (useful for sizing arrays holding per register informa...
Wrapper class representing physical registers. Should be passed by value.
MCSymbol - Instances of this class represent a symbol name in the MC file, and MCSymbols are created ...
const MDOperand & getOperand(unsigned I) const
ArrayRef< MDOperand > operands() const
Tracking metadata reference owned by Metadata.
LLVM_ABI StringRef getString() const
void setBBID(const UniqueBBID &V)
Sets the fixed BBID of this basic block.
void setIsEndSection(bool V=true)
LLVM_ABI instr_iterator insert(instr_iterator I, MachineInstr *M)
Insert MI into the instruction list before I, possibly inside a bundle.
int getNumber() const
MachineBasicBlocks are uniquely numbered at the function level, unless they're not in a MachineFuncti...
const BasicBlock * getBasicBlock() const
Return the LLVM basic block that this instance corresponded to originally.
MBBSectionID getSectionID() const
Returns the section ID of this basic block.
LLVM_ABI iterator getFirstNonPHI()
Returns a pointer to the first instruction in this block that is not a PHINode instruction.
Instructions::const_iterator const_instr_iterator
const MachineFunction * getParent() const
Return the MachineFunction containing this basic block.
Align getAlignment() const
Return alignment of the basic block.
void setIsBeginSection(bool V=true)
This class is a data container for one entry in a MachineConstantPool.
bool needsRelocation() const
This method classifies the entry according to whether or not it may generate a relocation entry.
union llvm::MachineConstantPoolEntry::@205 Val
The constant itself.
bool isMachineConstantPoolEntry() const
isMachineConstantPoolEntry - Return true if the MachineConstantPoolEntry is indeed a target specific ...
unsigned getSizeInBytes(const DataLayout &DL) const
SectionKind getSectionKind(const DataLayout *DL) const
Abstract base class for all machine specific constantpool value subclasses.
virtual unsigned getSizeInBytes(const DataLayout &DL) const
The MachineConstantPool class keeps track of constants referenced by a function which must be spilled...
void dump() const
dump - Call print(cerr) to be called from the debugger.
void print(raw_ostream &OS) const
print - Used by the MachineFunction printer to print information about constant pool objects.
unsigned getConstantPoolIndex(const Constant *C, Align Alignment)
getConstantPoolIndex - Create a new entry in the constant pool or return an existing one.
The MachineFrameInfo class represents an abstract stack frame until prolog/epilog code is inserted.
LLVM_ABI void ensureMaxAlignment(Align Alignment)
Make sure the function is at least Align bytes aligned.
LLVM_ABI void print(const MachineFunction &MF, raw_ostream &OS) const
Used by the MachineFunction printer to print information about stack objects.
void setUnsafeStackSize(uint64_t Size)
LLVM_ABI void print(raw_ostream &OS) const
Print the MachineFunctionProperties in human-readable form.
MachineFunctionProperties & reset(Property P)
virtual void MF_HandleChangeDesc(MachineInstr &MI, const MCInstrDesc &TID)
Callback before changing MCInstrDesc.
virtual void MF_HandleRemoval(MachineInstr &MI)=0
Callback before a removal. This should not modify the MI directly.
virtual void MF_HandleInsertion(MachineInstr &MI)=0
Callback after an insertion. This should not modify the MI directly.
MachineInstr::ExtraInfo * createMIExtraInfo(ArrayRef< MachineMemOperand * > MMOs, MCSymbol *PreInstrSymbol=nullptr, MCSymbol *PostInstrSymbol=nullptr, MDNode *HeapAllocMarker=nullptr, MDNode *PCSections=nullptr, uint32_t CFIType=0, MDNode *MMRAs=nullptr)
Allocate and construct an extra info structure for a MachineInstr.
int getFilterIDFor(ArrayRef< unsigned > TyIds)
Return the id of the filter encoded by TyIds. This is function wide.
bool UseDebugInstrRef
Flag for whether this function contains DBG_VALUEs (false) or DBG_INSTR_REF (true).
void moveAdditionalCallInfo(const MachineInstr *Old, const MachineInstr *New)
Move the call site info from Old to \New call site info.
std::pair< unsigned, unsigned > DebugInstrOperandPair
Pair of instruction number and operand number.
unsigned addFrameInst(const MCCFIInstruction &Inst)
bool useDebugInstrRef() const
Returns true if the function's variable locations are tracked with instruction referencing.
SmallVector< DebugSubstitution, 8 > DebugValueSubstitutions
Debug value substitutions: a collection of DebugSubstitution objects, recording changes in where a va...
unsigned getFunctionNumber() const
getFunctionNumber - Return a unique ID for the current function.
MCSymbol * getPICBaseSymbol() const
getPICBaseSymbol - Return a function-local symbol to represent the PIC base.
void viewCFGOnly() const
viewCFGOnly - This function is meant for use from the debugger.
ArrayRef< int > allocateShuffleMask(ArrayRef< int > Mask)
void substituteDebugValuesForInst(const MachineInstr &Old, MachineInstr &New, unsigned MaxOperand=UINT_MAX)
Create substitutions for any tracked values in Old, to point at New.
const TargetSubtargetInfo & getSubtarget() const
getSubtarget - Return the subtarget for which this machine code is being compiled.
MachineInstr & cloneMachineInstrBundle(MachineBasicBlock &MBB, MachineBasicBlock::iterator InsertBefore, const MachineInstr &Orig)
Clones instruction or the whole instruction bundle Orig and insert into MBB before InsertBefore.
MachineJumpTableInfo * getOrCreateJumpTableInfo(unsigned JTEntryKind)
getOrCreateJumpTableInfo - Get the JumpTableInfo for this function, if it does already exist,...
StringRef getName() const
getName - Return the name of the corresponding LLVM function.
unsigned getNewDebugInstrNum()
void dump() const
dump - Print the current MachineFunction to cerr, useful for debugger use.
MachineInstr * CreateMachineInstr(const MCInstrDesc &MCID, DebugLoc DL, bool NoImplicit=false)
CreateMachineInstr - Allocate a new MachineInstr.
void makeDebugValueSubstitution(DebugInstrOperandPair, DebugInstrOperandPair, unsigned SubReg=0)
Create a substitution between one <instr,operand> value to a different, new value.
MachineMemOperand * getMachineMemOperand(MachinePointerInfo PtrInfo, MachineMemOperand::Flags f, LLT MemTy, Align base_alignment, const AAMDNodes &AAInfo=AAMDNodes(), const MDNode *Ranges=nullptr, SyncScope::ID SSID=SyncScope::System, AtomicOrdering Ordering=AtomicOrdering::NotAtomic, AtomicOrdering FailureOrdering=AtomicOrdering::NotAtomic)
getMachineMemOperand - Allocate a new MachineMemOperand.
MachineFunction(Function &F, const TargetMachine &Target, const TargetSubtargetInfo &STI, MCContext &Ctx, unsigned FunctionNum)
bool needsFrameMoves() const
True if this function needs frame moves for debug or exceptions.
unsigned getTypeIDFor(const GlobalValue *TI)
Return the type id for the specified typeinfo. This is function wide.
void finalizeDebugInstrRefs()
Finalise any partially emitted debug instructions.
void deallocateOperandArray(OperandCapacity Cap, MachineOperand *Array)
Dellocate an array of MachineOperands and recycle the memory.
DenormalMode getDenormalMode(const fltSemantics &FPType) const
Returns the denormal handling type for the default rounding mode of the function.
void deleteMachineInstr(MachineInstr *MI)
DeleteMachineInstr - Delete the given MachineInstr.
void initTargetMachineFunctionInfo(const TargetSubtargetInfo &STI)
Initialize the target specific MachineFunctionInfo.
const char * createExternalSymbolName(StringRef Name)
Allocate a string and populate it with the given external symbol name.
uint32_t * allocateRegMask()
Allocate and initialize a register mask with NumRegister bits.
MCSymbol * getJTISymbol(unsigned JTI, MCContext &Ctx, bool isLinkerPrivate=false) const
getJTISymbol - Return the MCSymbol for the specified non-empty jump table.
void setCallSiteLandingPad(MCSymbol *Sym, ArrayRef< unsigned > Sites)
Map the landing pad's EH symbol to the call site indexes.
void setUseDebugInstrRef(bool UseInstrRef)
Set whether this function will use instruction referencing or not.
LandingPadInfo & getOrCreateLandingPadInfo(MachineBasicBlock *LandingPad)
Find or create an LandingPadInfo for the specified MachineBasicBlock.
MachineRegisterInfo & getRegInfo()
getRegInfo - Return information about the registers currently in use.
const DataLayout & getDataLayout() const
Return the DataLayout attached to the Module associated to this MF.
MCSymbol * addLandingPad(MachineBasicBlock *LandingPad)
Add a new panding pad, and extract the exception handling information from the landingpad instruction...
unsigned DebugInstrNumberingCount
A count of how many instructions in the function have had numbers assigned to them.
void deleteMachineBasicBlock(MachineBasicBlock *MBB)
DeleteMachineBasicBlock - Delete the given MachineBasicBlock.
Align getAlignment() const
getAlignment - Return the alignment of the function.
void handleChangeDesc(MachineInstr &MI, const MCInstrDesc &TID)
static const unsigned int DebugOperandMemNumber
A reserved operand number representing the instructions memory operand, for instructions that have a ...
Function & getFunction()
Return the LLVM function that this machine code represents.
DebugInstrOperandPair salvageCopySSAImpl(MachineInstr &MI)
const MachineBasicBlock & back() const
BasicBlockListType::iterator iterator
void setDebugInstrNumberingCount(unsigned Num)
Set value of DebugInstrNumberingCount field.
bool shouldSplitStack() const
Should we be emitting segmented stack stuff for the function.
void viewCFG() const
viewCFG - This function is meant for use from the debugger.
bool shouldUseDebugInstrRef() const
Determine whether, in the current machine configuration, we should use instruction referencing or not...
const MachineFunctionProperties & getProperties() const
Get the function properties.
void eraseAdditionalCallInfo(const MachineInstr *MI)
Following functions update call site info.
MachineInstr * CloneMachineInstr(const MachineInstr *Orig)
Create a new MachineInstr which is a copy of Orig, identical in all ways except the instruction has n...
void RenumberBlocks(MachineBasicBlock *MBBFrom=nullptr)
RenumberBlocks - This discards all of the MachineBasicBlock numbers and recomputes them.
const MachineBasicBlock & front() const
Register addLiveIn(MCRegister PReg, const TargetRegisterClass *RC)
addLiveIn - Add the specified physical register as a live-in value and create a corresponding virtual...
int64_t estimateFunctionSizeInBytes()
Return an estimate of the function's code size, taking into account block and function alignment.
void print(raw_ostream &OS, const SlotIndexes *=nullptr) const
print - Print out the MachineFunction in a format suitable for debugging to the specified stream.
void addInvoke(MachineBasicBlock *LandingPad, MCSymbol *BeginLabel, MCSymbol *EndLabel)
Provide the begin and end labels of an invoke style call and associate it with a try landing pad bloc...
MachineBasicBlock * CreateMachineBasicBlock(const BasicBlock *BB=nullptr, std::optional< UniqueBBID > BBID=std::nullopt)
CreateMachineBasicBlock - Allocate a new MachineBasicBlock.
void copyAdditionalCallInfo(const MachineInstr *Old, const MachineInstr *New)
Copy the call site info from Old to \ New.
VariableDbgInfoMapTy VariableDbgInfos
void assignBeginEndSections()
Assign IsBeginSection IsEndSection fields for basic blocks in this function.
const TargetMachine & getTarget() const
getTarget - Return the target machine this machine code is compiled with
DebugInstrOperandPair salvageCopySSA(MachineInstr &MI, DenseMap< Register, DebugInstrOperandPair > &DbgPHICache)
Find the underlying defining instruction / operand for a COPY instruction while in SSA form.
Representation of each machine instruction.
LLVM_ABI void bundleWithPred()
Bundle this instruction with its predecessor.
bool isCopyLike() const
Return true if the instruction behaves like a copy.
filtered_mop_range all_defs()
Returns an iterator range over all operands that are (explicit or implicit) register defs.
unsigned getNumOperands() const
Retuns the total number of operands.
unsigned peekDebugInstrNum() const
Examine the instruction number of this MachineInstr.
LLVM_ABI unsigned getDebugInstrNum()
Fetch the instruction number of this MachineInstr.
const MachineOperand & getOperand(unsigned i) const
LLVM_ABI bool shouldUpdateAdditionalCallInfo() const
Return true if copying, moving, or erasing this instruction requires updating additional call info (s...
LLVM_ABI bool RemoveMBBFromJumpTables(MachineBasicBlock *MBB)
RemoveMBBFromJumpTables - If MBB is present in any jump tables, remove it.
LLVM_ABI bool ReplaceMBBInJumpTables(MachineBasicBlock *Old, MachineBasicBlock *New)
ReplaceMBBInJumpTables - If Old is the target of any jump tables, update the jump tables to branch to...
LLVM_ABI void print(raw_ostream &OS) const
print - Used by the MachineFunction printer to print information about jump tables.
LLVM_ABI unsigned getEntrySize(const DataLayout &TD) const
getEntrySize - Return the size of each entry in the jump table.
LLVM_ABI unsigned createJumpTableIndex(const std::vector< MachineBasicBlock * > &DestBBs)
createJumpTableIndex - Create a new jump table.
LLVM_ABI void dump() const
dump - Call to stderr.
LLVM_ABI bool ReplaceMBBInJumpTable(unsigned Idx, MachineBasicBlock *Old, MachineBasicBlock *New)
ReplaceMBBInJumpTable - If Old is a target of the jump tables, update the jump table to branch to New...
LLVM_ABI bool updateJumpTableEntryHotness(size_t JTI, MachineFunctionDataHotness Hotness)
JTEntryKind
JTEntryKind - This enum indicates how each entry of the jump table is represented and emitted.
@ EK_GPRel32BlockAddress
EK_GPRel32BlockAddress - Each entry is an address of block, encoded with a relocation as gp-relative,...
@ EK_Inline
EK_Inline - Jump table entries are emitted inline at their point of use.
@ EK_LabelDifference32
EK_LabelDifference32 - Each entry is the address of the block minus the address of the jump table.
@ EK_Custom32
EK_Custom32 - Each entry is a 32-bit value that is custom lowered by the TargetLowering::LowerCustomJ...
@ EK_LabelDifference64
EK_LabelDifference64 - Each entry is the address of the block minus the address of the jump table.
@ EK_BlockAddress
EK_BlockAddress - Each entry is a plain address of block, e.g.: .word LBB123.
@ EK_GPRel64BlockAddress
EK_GPRel64BlockAddress - Each entry is an address of block, encoded with a relocation as gp-relative,...
LLVM_ABI unsigned getEntryAlignment(const DataLayout &TD) const
getEntryAlignment - Return the alignment of each entry in the jump table.
JTEntryKind getEntryKind() const
A description of a memory reference used in the backend.
LocationSize getSize() const
Return the size in bytes of the memory reference.
AtomicOrdering getFailureOrdering() const
For cmpxchg atomic operations, return the atomic ordering requirements when store does not occur.
const PseudoSourceValue * getPseudoValue() const
const MDNode * getRanges() const
Return the range tag for the memory reference.
SyncScope::ID getSyncScopeID() const
Returns the synchronization scope ID for this memory operation.
Flags
Flags values. These may be or'd together.
AtomicOrdering getSuccessOrdering() const
Return the atomic ordering requirements for this memory operation.
const MachinePointerInfo & getPointerInfo() const
Flags getFlags() const
Return the raw flags of the source value,.
AAMDNodes getAAInfo() const
Return the AA tags for the memory reference.
const Value * getValue() const
Return the base address of the memory access.
Align getBaseAlign() const
Return the minimum known alignment in bytes of the base address, without the offset.
int64_t getOffset() const
For normal values, this is a byte offset added to the base address.
MachineOperand class - Representation of each machine instruction operand.
static unsigned getRegMaskSize(unsigned NumRegs)
Returns number of elements needed for a regmask array.
Register getReg() const
getReg - Returns the register number.
MachineRegisterInfo - Keep track of information for virtual and physical registers,...
bool livein_empty() const
def_instr_iterator def_instr_begin(Register RegNo) const
std::vector< std::pair< MCRegister, Register > >::const_iterator livein_iterator
bool hasOneDef(Register RegNo) const
Return true if there is exactly one operand defining the specified register.
livein_iterator livein_end() const
livein_iterator livein_begin() const
Manage lifetime of a slot tracker for printing IR.
void incorporateFunction(const Function &F)
Incorporate the given function.
iterator_range< debug_compile_units_iterator > debug_compile_units() const
Return an iterator for all DICompileUnits listed in this Module's llvm.dbg.cu named metadata node and...
bool isNull() const
Test if the pointer held in the union is null, regardless of which type it is.
Simple wrapper around std::function<void(raw_ostream&)>.
Wrapper class representing virtual and physical registers.
constexpr bool isVirtual() const
Return true if the specified register number is in the virtual register namespace.
SectionKind - This is a simple POD value that classifies the properties of a section.
static SectionKind getMergeableConst4()
static SectionKind getReadOnlyWithRel()
static SectionKind getMergeableConst8()
static SectionKind getMergeableConst16()
static SectionKind getReadOnly()
static SectionKind getMergeableConst32()
SmallString - A SmallString is just a SmallVector with methods and accessors that make it work better...
void push_back(const T &Elt)
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
StringRef - Represent a constant reference to a string, i.e.
bool isStackRealignable() const
isStackRealignable - This method returns whether the stack can be realigned.
Align getStackAlign() const
getStackAlignment - This method returns the number of bytes to which the stack pointer must be aligne...
TargetInstrInfo - Interface to description of machine instruction set.
Align getPrefFunctionAlignment() const
Return the preferred function alignment.
Align getMinFunctionAlignment() const
Return the minimum function alignment.
Primary interface to the complete machine description for the target machine.
unsigned ForceDwarfFrameSection
Emit DWARF debug frame section.
bool contains(Register Reg) const
Return true if the specified register is included in this register class.
bool hasSubClassEq(const TargetRegisterClass *RC) const
Returns true if RC is a sub-class of or equal to this class.
TargetRegisterInfo base class - We assume that the target defines a static array of TargetRegisterDes...
TargetSubtargetInfo - Generic base class for all target subtargets.
virtual const TargetFrameLowering * getFrameLowering() const
virtual const TargetInstrInfo * getInstrInfo() const
virtual const TargetRegisterInfo * getRegisterInfo() const =0
Return the target's register information.
virtual const TargetLowering * getTargetLowering() const
Target - Wrapper for Target specific information.
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
The instances of the Type class are immutable: once they are created, they are never changed.
static LLVM_ABI IntegerType * getInt64Ty(LLVMContext &C)
A Use represents the edge between a Value definition and its users.
LLVM Value Representation.
LLVM_ABI const Value * stripPointerCasts() const
Strip off pointer casts, all-zero GEPs and address space casts.
LLVM_ABI LLVMContext & getContext() const
All values hold a context through their type.
LLVM_ABI StringRef getName() const
Return a constant reference to the value's name.
self_iterator getIterator()
iterator erase(iterator where)
This class implements an extremely fast bulk output stream that can only output to a stream.
A raw_ostream that writes to an std::string.
A raw_ostream that writes to an SmallVector or SmallString.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
@ C
The default llvm calling convention, compatible with C.
initializer< Ty > init(const Ty &Val)
uint64_t MD5Hash(const FunctionId &Obj)
This is an optimization pass for GlobalISel generic memory operations.
MachineBasicBlock::instr_iterator getBundleStart(MachineBasicBlock::instr_iterator I)
Returns an iterator to the first instruction in the bundle containing I.
MaybeAlign getAlign(const CallInst &I, unsigned Index)
MachineInstrBuilder BuildMI(MachineFunction &MF, const MIMetadata &MIMD, const MCInstrDesc &MCID)
Builder interface. Specify how to create the initial instruction itself.
iterator_range< T > make_range(T x, T y)
Convenience function for iterating over sub-ranges.
void append_range(Container &C, Range &&R)
Wrapper function to append range R to container C.
LLVM_ABI Printable printJumpTableEntryReference(unsigned Idx)
Prints a jump table entry reference.
bool isScopedEHPersonality(EHPersonality Pers)
Returns true if this personality uses scope-style EH IR instructions: catchswitch,...
MachineFunctionDataHotness
auto reverse(ContainerTy &&C)
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
MachineBasicBlock::instr_iterator getBundleEnd(MachineBasicBlock::instr_iterator I)
Returns an iterator pointing beyond the bundle containing I.
LLVM_ABI Constant * ConstantFoldCastOperand(unsigned Opcode, Constant *C, Type *DestTy, const DataLayout &DL)
Attempt to constant fold a cast with the specified operand.
LLVM_ABI EHPersonality classifyEHPersonality(const Value *Pers)
See if the given exception handling personality function is one that we understand.
LLVM_ABI raw_fd_ostream & errs()
This returns a reference to a raw_ostream for standard error.
AtomicOrdering
Atomic ordering for LLVM's memory model.
bool isFuncletEHPersonality(EHPersonality Pers)
Returns true if this is a personality function that invokes handler funclets (which must return to it...
uint64_t alignTo(uint64_t Size, Align A)
Returns a multiple of A needed to store Size bytes.
void ViewGraph(const GraphType &G, const Twine &Name, bool ShortNames=false, const Twine &Title="", GraphProgram::Name Program=GraphProgram::DOT)
ViewGraph - Emit a dot graph, run 'dot', run gv on the postscript file, then cleanup.
OutputIt copy(R &&Range, OutputIt Out)
Align commonAlignment(Align A, uint64_t Offset)
Returns the alignment that satisfies both alignments.
LLVM_ABI Printable printReg(Register Reg, const TargetRegisterInfo *TRI=nullptr, unsigned SubIdx=0, const MachineRegisterInfo *MRI=nullptr)
Prints virtual and physical registers with or without a TRI instance.
LLVM_ABI Printable printMBBReference(const MachineBasicBlock &MBB)
Prints a machine basic block reference.
bool debuginfoShouldUseDebugInstrRef(const Triple &T)
A collection of metadata nodes that might be associated with a memory access used by the alias-analys...
This struct is a compact representation of a valid (non-zero power of two) alignment.
uint64_t value() const
This is a hole in the type system and should not be abused.
std::string getNodeLabel(const MachineBasicBlock *Node, const MachineFunction *Graph)
DOTGraphTraits(bool isSimple=false)
static std::string getGraphName(const MachineFunction *F)
DOTGraphTraits - Template class that can be specialized to customize how graphs are converted to 'dot...
DefaultDOTGraphTraits - This class provides the default implementations of all of the DOTGraphTraits ...
Represent subnormal handling kind for floating point instruction inputs and outputs.
This structure is used to retain landing pad info for the current function.
SmallVector< MCSymbol *, 1 > EndLabels
MCSymbol * LandingPadLabel
MachineBasicBlock * LandingPadBlock
SmallVector< MCSymbol *, 1 > BeginLabels
std::vector< int > TypeIds
virtual ~MachineFunctionInfo()
SmallVector< ConstantInt *, 4 > CalleeTypeIds
Callee type ids.
MachineJumpTableEntry - One jump table in the jump table info.
LLVM_ABI MachineJumpTableEntry(const std::vector< MachineBasicBlock * > &M)
std::vector< MachineBasicBlock * > MBBs
MBBs - The vector of basic blocks from which to create the jump table.
This class contains a discriminated union of information about pointers in memory operands,...
PointerUnion< const Value *, const PseudoSourceValue * > V
This is the IR pointer value for the access, or it is null if unknown.
MachinePointerInfo getWithOffset(int64_t O) const
static void deleteNode(NodeTy *V)