69 :
Value(Ty, MetadataAsValueVal), MD(MD) {
97 if (!
N ||
N->getNumOperands() != 1)
100 if (!
N->getOperand(0))
113 auto *&Entry = Context.pImpl->MetadataAsValues[MD];
122 auto &
Store = Context.pImpl->MetadataAsValues;
123 return Store.lookup(MD);
126void MetadataAsValue::handleChangedMetadata(
Metadata *MD) {
129 auto &
Store = Context.pImpl->MetadataAsValues;
132 Store.erase(this->MD);
137 auto *&Entry =
Store[MD];
149void MetadataAsValue::track() {
154void MetadataAsValue::untrack() {
169 auto OldMD =
static_cast<Metadata **
>(Old);
180void DebugValueUser::trackDebugValue(
size_t Idx) {
181 assert(Idx < 3 &&
"Invalid debug value index.");
187void DebugValueUser::trackDebugValues() {
193void DebugValueUser::untrackDebugValue(
size_t Idx) {
194 assert(Idx < 3 &&
"Invalid debug value index.");
200void DebugValueUser::untrackDebugValues() {
207 assert(DebugValueUser::operator==(
X) &&
"Expected values to match");
211 X.DebugValues.fill(
nullptr);
215 assert(
Ref &&
"Expected live reference");
217 "Reference without owner must be direct");
218 if (
auto *R = ReplaceableMetadataImpl::getOrCreate(MD)) {
223 assert(!PH->Use &&
"Placeholders can only be used once");
232 assert(
Ref &&
"Expected live reference");
233 if (
auto *R = ReplaceableMetadataImpl::getIfExists(MD))
240 assert(
Ref &&
"Expected live reference");
241 assert(New &&
"Expected live reference");
243 if (
auto *R = ReplaceableMetadataImpl::getIfExists(MD)) {
244 R->moveRef(
Ref, New, MD);
248 "Unexpected move of an MDOperand");
250 "Expected un-replaceable metadata, since we didn't move a reference");
255 return ReplaceableMetadataImpl::isReplaceable(MD);
260 for (
auto Pair : UseMap) {
268 MDUsersWithID.
push_back(&UseMap[Pair.first]);
270 llvm::sort(MDUsersWithID, [](
auto UserA,
auto UserB) {
271 return UserA->second < UserB->second;
274 for (
auto *UserWithID : MDUsersWithID)
282 for (
auto Pair : UseMap) {
288 DVRUsersWithID.
push_back(&UseMap[Pair.first]);
295 llvm::sort(DVRUsersWithID, [](
auto UserA,
auto UserB) {
296 return UserA->second > UserB->second;
299 for (
auto UserWithID : DVRUsersWithID)
304void ReplaceableMetadataImpl::addRef(
void *
Ref, OwnerTy
Owner) {
306 UseMap.insert(std::make_pair(
Ref, std::make_pair(
Owner, NextIndex)))
309 assert(WasInserted &&
"Expected to add a reference");
312 assert(NextIndex != 0 &&
"Unexpected overflow");
315void ReplaceableMetadataImpl::dropRef(
void *
Ref) {
316 bool WasErased = UseMap.erase(
Ref);
318 assert(WasErased &&
"Expected to drop a reference");
321void ReplaceableMetadataImpl::moveRef(
void *
Ref,
void *New,
323 auto I = UseMap.find(
Ref);
324 assert(
I != UseMap.end() &&
"Expected to move a reference");
325 auto OwnerAndIndex =
I->second;
327 bool WasInserted = UseMap.insert(std::make_pair(New, OwnerAndIndex)).second;
329 assert(WasInserted &&
"Expected to add a reference");
334 "Reference without owner must be direct");
335 assert((OwnerAndIndex.first || *
static_cast<Metadata **
>(New) == &MD) &&
336 "Reference without owner must be direct");
340 if (!
C.isUsedByMetadata()) {
345 auto &
Store = Context.pImpl->ValuesAsMetadata;
349 std::pair<void *, std::pair<MetadataTracking::OwnerTy, uint64_t>>;
354 for (
const auto &Pair :
Uses) {
370 OwnerMD->handleChangedOperand(
381 using UseTy = std::pair<void *, std::pair<OwnerTy, uint64_t>>;
384 return L.second.second < R.second.second;
386 for (
const auto &Pair :
Uses) {
389 if (!UseMap.count(Pair.first))
399 UseMap.erase(Pair.first);
410 DVU->handleChangedValue(Pair.first, MD);
417#define HANDLE_METADATA_LEAF(CLASS) \
418 case Metadata::CLASS##Kind: \
419 cast<CLASS>(OwnerMD)->handleChangedOperand(Pair.first, MD); \
421#include "llvm/IR/Metadata.def"
426 assert(UseMap.empty() &&
"Expected all uses to be replaced");
439 using UseTy = std::pair<void *, std::pair<OwnerTy, uint64_t>>;
442 return L.second.second < R.second.second;
445 for (
const auto &Pair :
Uses) {
446 auto Owner = Pair.second.first;
456 if (OwnerMD->isResolved())
458 OwnerMD->decrementUnresolvedOperandCount();
467 return !
N->isResolved() ||
N->isAlwaysReplaceable()
468 ?
N->Context.getOrCreateReplaceableUses()
478 return !
N->isResolved() ||
N->isAlwaysReplaceable()
479 ?
N->Context.getReplaceableUses()
487bool ReplaceableMetadataImpl::isReplaceable(
const Metadata &MD) {
489 return !
N->isResolved() ||
N->isAlwaysReplaceable();
494 assert(V &&
"Expected value");
496 if (
auto *Fn =
A->getParent())
497 return Fn->getSubprogram();
502 if (
auto *Fn = BB->getParent())
503 return Fn->getSubprogram();
511 assert(V &&
"Unexpected null Value");
513 auto &Context = V->getContext();
514 auto *&Entry = Context.pImpl->ValuesAsMetadata[V];
517 "Expected constant or function-local value");
518 assert(!V->IsUsedByMD &&
"Expected this to be the only metadata use");
519 V->IsUsedByMD =
true;
530 assert(V &&
"Unexpected null Value");
531 return V->getContext().pImpl->ValuesAsMetadata.lookup(V);
535 assert(V &&
"Expected valid value");
537 auto &
Store = V->getType()->getContext().pImpl->ValuesAsMetadata;
544 assert(MD &&
"Expected valid metadata");
554 assert(From &&
"Expected valid value");
555 assert(To &&
"Expected valid value");
556 assert(From != To &&
"Expected changed value");
560 auto &
Store = Context.pImpl->ValuesAsMetadata;
561 auto I =
Store.find(From);
571 assert(MD &&
"Expected valid metadata");
596 auto *&Entry =
Store[To];
616 auto &
Store = Context.pImpl->MDStringCache;
617 auto I =
Store.try_emplace(Str);
618 auto &MapEntry =
I.first->getValue();
621 MapEntry.Entry = &*
I.first;
626 auto &
Store = Context.pImpl->MDStringCache;
630 return &
I->getValue();
634 assert(Entry &&
"Expected to find string map entry");
635 return Entry->first();
644#define HANDLE_MDNODE_LEAF(CLASS) \
646 alignof(uint64_t) >= alignof(CLASS), \
647 "Alignment is insufficient after objects prepended to " #CLASS);
648#include "llvm/IR/Metadata.def"
653 static_assert(
sizeof(Header) ==
sizeof(size_t) + 2 *
sizeof(
uint32_t),
654 "MDNode header fields poorly packed");
657 char *Mem =
reinterpret_cast<char *
>(::operator
new(AllocSize +
Size));
658 Header *
H =
new (Mem + AllocSize -
sizeof(Header)) Header(
NumOps,
Storage);
659 return reinterpret_cast<void *
>(
H + 1);
662void MDNode::operator
delete(
void *
N) {
663 Header *
H =
reinterpret_cast<Header *
>(
N) - 1;
664 void *Mem =
H->getAllocation();
666 ::operator
delete(Mem);
672 getHeader().MetadataPrintID = Context.pImpl->allocateMetadataPrintID();
685 countUnresolvedOperands();
692#define HANDLE_MDNODE_LEAF(CLASS) \
694 return cast<CLASS>(this)->cloneImpl();
695#include "llvm/IR/Metadata.def"
699MDNode::Header::Header(
size_t NumOps, StorageType Storage) {
700 IsLarge = isLarge(
NumOps);
701 IsResizable = isResizable(
Storage);
702 SmallSize = getSmallSize(
NumOps, IsResizable, IsLarge);
705 new (getLargePtr()) LargeStorageVector();
715MDNode::Header::~Header() {
717 getLarge().~LargeStorageVector();
720 MDOperand *
O =
reinterpret_cast<MDOperand *
>(
this);
721 for (MDOperand *
E = O - SmallSize;
O !=
E; --
O)
722 (O - 1)->~MDOperand();
725void *MDNode::Header::getSmallPtr() {
726 static_assert(
alignof(MDOperand) <=
alignof(Header),
727 "MDOperand too strongly aligned");
728 return reinterpret_cast<char *
>(
const_cast<Header *
>(
this)) -
729 sizeof(MDOperand) * SmallSize;
732void MDNode::Header::resize(
size_t NumOps) {
733 assert(IsResizable &&
"Node is not resizable");
738 getLarge().resize(
NumOps);
739 else if (
NumOps <= SmallSize)
742 resizeSmallToLarge(
NumOps);
745void MDNode::Header::resizeSmall(
size_t NumOps) {
746 assert(!IsLarge &&
"Expected a small MDNode");
747 assert(
NumOps <= SmallSize &&
"NumOps too large for small resize");
752 int NumNew = (int)
NumOps - (
int)ExistingOps.
size();
753 MDOperand *
O = ExistingOps.
end();
754 for (
int I = 0,
E = NumNew;
I <
E; ++
I)
756 for (
int I = 0,
E = NumNew;
I >
E; --
I)
762void MDNode::Header::resizeSmallToLarge(
size_t NumOps) {
763 assert(!IsLarge &&
"Expected a small MDNode");
764 assert(
NumOps > SmallSize &&
"Expected NumOps to be larger than allocation");
765 LargeStorageVector NewOps;
769 new (getLargePtr()) LargeStorageVector(std::move(NewOps));
775 return !
N->isResolved();
779void MDNode::countUnresolvedOperands() {
785void MDNode::makeUniqued() {
789 assert(WasTracked &&
"Temporary node not tracked");
794 Op.reset(
Op.get(),
this);
798 countUnresolvedOperands();
800 dropReplaceableUses();
807void MDNode::makeDistinct() {
812 dropReplaceableUses();
824 dropReplaceableUses();
829void MDNode::dropReplaceableUses() {
833 if (Context.hasReplaceableUses())
834 Context.takeReplaceableUses()->resolveAllUses();
847 decrementUnresolvedOperandCount();
850void MDNode::decrementUnresolvedOperandCount() {
861 dropReplaceableUses();
879 "Expected all forward declarations to be resolved");
880 if (!
N->isResolved())
889MDNode *MDNode::replaceWithPermanentImpl() {
893 return replaceWithDistinctImpl();
895#define HANDLE_MDNODE_LEAF_UNIQUABLE(CLASS) \
898#include "llvm/IR/Metadata.def"
903 return replaceWithDistinctImpl();
904 return replaceWithUniquedImpl();
907MDNode *MDNode::replaceWithUniquedImpl() {
909 MDNode *UniquedNode = uniquify();
911 if (UniquedNode ==
this) {
922MDNode *MDNode::replaceWithDistinctImpl() {
927void MDTuple::recalculateHash() {
928 setHash(MDTupleInfo::KeyTy::calculateHash(
this));
934 if (Context.hasReplaceableUses()) {
935 Context.getReplaceableUses()->resolveAllUses(
false);
936 (void)Context.takeReplaceableUses();
940void MDNode::handleChangedOperand(
void *
Ref,
Metadata *New) {
968 resolveAfterOperandChange(Old, New);
980 if (Context.hasReplaceableUses())
981 Context.getReplaceableUses()->replaceAllUsesWith(
Uniqued);
990void MDNode::deleteAsSubclass() {
993 assert(WasTracked &&
"Temporary node not tracked");
999#define HANDLE_MDNODE_LEAF(CLASS) \
1001 delete cast<CLASS>(this); \
1003#include "llvm/IR/Metadata.def"
1007template <
class T,
class InfoT>
1016template <
class NodeTy>
struct MDNode::HasCachedHash {
1019 template <
class U>
static std::false_type
check(...);
1024MDNode *MDNode::uniquify() {
1031#define HANDLE_MDNODE_LEAF_UNIQUABLE(CLASS) \
1032 case CLASS##Kind: { \
1033 CLASS *SubclassThis = cast<CLASS>(this); \
1034 dispatchRecalculateHash(SubclassThis); \
1035 return uniquifyImpl(SubclassThis, getContext().pImpl->CLASS##s); \
1037#include "llvm/IR/Metadata.def"
1041void MDNode::eraseFromStore() {
1045#define HANDLE_MDNODE_LEAF_UNIQUABLE(CLASS) \
1047 getContext().pImpl->CLASS##s.erase(cast<CLASS>(this)); \
1049#include "llvm/IR/Metadata.def"
1057 MDTupleInfo::KeyTy
Key(MDs);
1062 Hash =
Key.getHash();
1064 assert(ShouldCreate &&
"Expected non-uniqued nodes to always be created");
1068 MDTuple(Context,
Storage, Hash, MDs),
1069 Storage, Context.pImpl->MDTuples);
1073 assert(
N->isTemporary() &&
"Expected temporary node");
1074 N->replaceAllUsesWith(
nullptr);
1075 N->deleteAsSubclass();
1079 assert(!Context.hasReplaceableUses() &&
"Unexpected replaceable uses");
1083 assert(WasTracked &&
"Temporary node not tracked");
1093#define HANDLE_MDNODE_LEAF(CLASS) \
1094 case CLASS##Kind: { \
1095 dispatchResetHash(cast<CLASS>(this)); \
1098#include "llvm/IR/Metadata.def"
1131 if (
N->getNumOperands() ==
Ops.size() &&
N ==
N->getOperand(0)) {
1132 for (
unsigned I = 1,
E =
Ops.size();
I !=
E; ++
I)
1133 if (
Ops[
I] !=
N->getOperand(
I))
1148 MDs.
insert(
B->op_begin(),
B->op_end());
1196 return MDs.
empty() ? nullptr
1217 assert(
A &&
B && AInstr && BInstr &&
"Caller should guarantee");
1222 assert(
A->getNumOperands() >= 2 &&
B->getNumOperands() >= 2 &&
1223 "!prof annotations should have no less than 2 operands");
1227 assert(AMDS !=
nullptr && BMDS !=
nullptr &&
1228 "first operand should be a non-null MDString");
1237 assert(AInstrWeight && BInstrWeight &&
"verified by LLVM verifier");
1240 MDHelper.createConstant(ConstantInt::get(
1255 switch (
I.getOpcode()) {
1256 case Instruction::Invoke:
1257 case Instruction::CondBr:
1258 case Instruction::Switch:
1259 case Instruction::Call:
1260 case Instruction::IndirectBr:
1261 case Instruction::Select:
1262 case Instruction::CallBr:
1268 if (AInstr && !IsLegal(*AInstr))
1270 if (BInstr && !IsLegal(*BInstr))
1278 "Caller should guarantee");
1280 "Caller should guarantee");
1288 return mergeDirectCallProfMetadata(
A,
B, AInstr, BInstr);
1299 return A.getUpper() ==
B.getLower() ||
A.getLower() ==
B.getUpper();
1310 const APInt &LB = EndPoints[
Size - 2]->getValue();
1311 const APInt &LE = EndPoints[
Size - 1]->getValue();
1316 EndPoints[
Size - 2] =
1318 EndPoints[
Size - 1] =
1327 if (!EndPoints.
empty())
1342 auto AddUniqueCallees = [&AB, &MergedCallees](
const MDNode *
N) {
1344 if (MergedCallees.
insert(MD).second)
1348 AddUniqueCallees(
A);
1349 AddUniqueCallees(
B);
1360 return const_cast<MDNode *
>(
A);
1361 if (
A->getNumOperands() != 2 ||
B->getNumOperands() != 2)
1370 if (!NameA || !NameB)
1374 return CIA->isOne() ?
const_cast<MDNode *
>(
A) :
const_cast<MDNode *
>(
B);
1386 bool MergedContainsPointer = CIA->isOne() || CIB->isOne();
1409 unsigned AN =
A->getNumOperands() / 2;
1410 unsigned BN =
B->getNumOperands() / 2;
1411 while (AI < AN && BI < BN) {
1444 for (
unsigned i = 0; i <
Size - 2; ++i) {
1445 EndPoints[i] = EndPoints[i + 2];
1453 if (EndPoints.
size() == 2) {
1455 if (
Range.isFullSet())
1461 for (
auto *
I : EndPoints)
1480 AVal->
getType(), Intersect)));
1491 for (
unsigned I = 0, E =
A->getNumOperands() / 2;
I != E; ++
I) {
1497 for (
unsigned I = 0, E =
B->getNumOperands() / 2;
I != E; ++
I) {
1512 ConstantInt::get(
A->getContext(), CR.getLower())));
1514 ConstantInt::get(
A->getContext(), CR.getUpper())));
1573NamedMDNode::NamedMDNode(
const Twine &
N)
1582 return (
unsigned)
getNMDOps(Operands).size();
1608unsigned &Value::getMetadataIndex() {
1610 return I->MetadataIndex;
1614unsigned Value::getMetadataIndex()
const {
1615 return const_cast<Value *
>(
this)->getMetadataIndex();
1625 unsigned Idx = getMetadataIndex();
1628 if (
A.MDKind == KindID)
1641 if (
A.MDKind == KindID)
1646 std::reverse(MDs.
begin(), MDs.
end());
1657 unsigned Idx = getMetadataIndex();
1660 MDs.emplace_back(
A.MDKind,
A.Node);
1665 if (MDs.
size() > 1) {
1666 std::reverse(MDs.
begin(), MDs.
end());
1674 if (getMetadataIndex() != 0)
1681 if (!
Node && getMetadataIndex() == 0)
1688 unsigned &Idx = getMetadataIndex();
1689 unsigned NewIdx = Ctx.pImpl->MetadataRecycleHead;
1691 NewIdx = Ctx.pImpl->Metadatas.size();
1694 Ctx.pImpl->Metadatas.resize(NewIdx + 1);
1696 Ctx.pImpl->MetadataRecycleHead = Ctx.pImpl->Metadatas[NewIdx].Next;
1698 Ctx.pImpl->MetadataRecycleSize -= 1;
1701 Ctx.pImpl->Metadatas[NewIdx] =
1714 return MDKind == KindID;
1720 unsigned *Idx = &getMetadataIndex();
1724 if (Pred(
A.MDKind,
A.Node)) {
1726 unsigned FreeIdx = *Idx;
1728 A.Next = Ctx.pImpl->MetadataRecycleHead;
1729 Ctx.pImpl->MetadataRecycleHead = FreeIdx;
1731 Ctx.pImpl->MetadataRecycleSize += 1;
1744 if (!
Node && MetadataIndex == 0)
1751 unsigned KindID = Ctx.getMDKindID(Kind);
1752 if (KindID == LLVMContext::MD_dbg)
1758 if (DbgLoc && Pred(LLVMContext::MD_dbg, DbgLoc.getAsMDNode()))
1771 KnownSet.
insert(LLVMContext::MD_DIAssignID);
1774 return !KnownSet.
count(MDKind);
1778void Instruction::updateDIAssignIDMapping(
DIAssignID *ID) {
1783 if (ID == CurrentID)
1787 auto InstrsIt = IDToInstrs.find(CurrentID);
1788 assert(InstrsIt != IDToInstrs.end() &&
1789 "Expect existing attachment to be mapped");
1791 auto &InstVec = InstrsIt->second;
1793 assert(InstIt != InstVec.end() &&
1794 "Expect instruction to be mapped to attachment");
1798 if (InstVec.size() == 1)
1799 IDToInstrs.erase(InstrsIt);
1801 InstVec.erase(InstIt);
1806 IDToInstrs[ID].push_back(
this);
1814 if (KindID == LLVMContext::MD_dbg) {
1820 if (KindID == LLVMContext::MD_DIAssignID) {
1825 "Temporary DIAssignIDs are invalid");
1834 if (
auto *Existing =
getMetadata(LLVMContext::MD_annotation)) {
1838 for (
auto &
N : Tuple->operands()) {
1844 if (
any_of(MDAnnotationTuple->operands(), [&AnnotationsSet](
auto &
Op) {
1845 return AnnotationsSet.contains(cast<MDString>(Op)->getString());
1864 if (
auto *Existing =
getMetadata(LLVMContext::MD_annotation)) {
1866 for (
auto &
N : Tuple->operands()) {
1883 unsigned Idx = MetadataIndex;
1888 case LLVMContext::MD_tbaa:
1889 Result.TBAA =
A.Node;
1891 case LLVMContext::MD_tbaa_struct:
1892 Result.TBAAStruct =
A.Node;
1894 case LLVMContext::MD_alias_scope:
1895 Result.Scope =
A.Node;
1897 case LLVMContext::MD_noalias:
1898 Result.NoAlias =
A.Node;
1900 case LLVMContext::MD_noalias_addrspace:
1901 Result.NoAliasAddrSpace =
A.Node;
1912 setMetadata(LLVMContext::MD_tbaa_struct,
N.TBAAStruct);
1915 setMetadata(LLVMContext::MD_noalias_addrspace,
N.NoAliasAddrSpace);
1923void Instruction::getAllMetadataImpl(
1930 std::make_pair((
unsigned)LLVMContext::MD_dbg, DbgLoc.
getAsMDNode()));
1940 getOpcode() == Instruction::IndirectBr ||
1942 "Looking for branch weights on something besides branch");
1944 return ::extractProfTotalWeight(*
this, TotalVal);
1949 Other->getAllMetadata(MDs);
1950 for (
auto &MD : MDs) {
1952 if (
Offset != 0 && MD.first == LLVMContext::MD_type) {
1955 Metadata *TypeId = MD.second->getOperand(1);
1957 OffsetConst->getType(), OffsetConst->getValue() +
Offset));
1965 auto *Attachment = MD.second;
1966 if (
Offset != 0 && MD.first == LLVMContext::MD_dbg) {
1971 GV = GVE->getVariable();
1972 E = GVE->getExpression();
1976 OrigElements = E->getElements();
1977 std::vector<uint64_t> Elements(OrigElements.
size() + 2);
1978 Elements[0] = dwarf::DW_OP_plus_uconst;
1980 llvm::copy(OrigElements, Elements.begin() + 2);
1990 LLVMContext::MD_type,
2012 assert(Val <= 2 &&
"unknown vcall visibility!");
2029 return CU->getDebugInfoForProfiling();
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
This file defines the StringMap class.
This file declares a class to represent arbitrary precision floating point values and provide a varie...
This file implements a class to represent arbitrary precision integral constant values and operations...
static const Function * getParent(const Value *V)
static GCRegistry::Add< ShadowStackGC > C("shadow-stack", "Very portable GC for uncooperative code generators")
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
static GCRegistry::Add< CoreCLRGC > E("coreclr", "CoreCLR-compatible GC")
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
This file contains the declarations for the subclasses of Constant, which represent the different fla...
static ManagedStatic< DebugCounterOwner > Owner
This file defines the DenseSet and SmallDenseSet classes.
Module.h This file contains the declarations for the Module class.
static constexpr Value * getValue(Ty &ValueOrUse)
const size_t AbstractManglingParser< Derived, Alloc >::NumOps
const AbstractManglingParser< Derived, Alloc >::OperatorInfo AbstractManglingParser< Derived, Alloc >::Ops[]
ConstantRange Range(APInt(BitWidth, Low), APInt(BitWidth, High))
This file contains the declarations for profiling metadata utility functions.
Remove Loads Into Fake Uses
This file implements a set that has insertion order iteration characteristics.
This file defines the SmallPtrSet class.
This file defines the SmallSet class.
This file defines the SmallString class.
This file defines the SmallVector class.
Class for arbitrary precision integers.
bool slt(const APInt &RHS) const
Signed less than comparison.
This is a simple wrapper around an MDNode which provides a higher-level interface by hiding the detai...
Annotations lets you mark points and ranges inside source code, for tests:
Represent a constant reference to an array (0 or more elements consecutively in memory),...
size_t size() const
Get the array size.
LLVM Basic Block Representation.
Function * getCalledFunction() const
Returns the function called, or null if this is an indirect function invocation or the function signa...
This class represents a function call, abstracting a target machine's calling convention.
This is the shared class of boolean and integer constants.
uint64_t getZExtValue() const
Return the constant as a 64-bit unsigned integer value after it has been zero extended as appropriate...
const APInt & getValue() const
Return the constant as an APInt value reference.
This class represents a list of constant ranges.
LLVM_ABI ConstantRangeList intersectWith(const ConstantRangeList &CRL) const
Return the range list that results from the intersection of this ConstantRangeList with another Const...
This class represents a range of values.
LLVM_ABI ConstantRange unionWith(const ConstantRange &CR, PreferredRangeType Type=Smallest) const
Return the range that results from the union of this range with another range.
This is an important base class in LLVM.
A pair of DIGlobalVariable and DIExpression.
Subprogram description. Uses SubclassData1.
Record of a variable value-assignment, aka a non instruction representation of the dbg....
LLVM_ABI MDNode * getAsMDNode() const
Return this as a bar MDNode.
Base class for tracking ValueAsMetadata/DIArgLists with user lookups and Owner callbacks outside of V...
LLVM_ABI void handleChangedValue(void *Old, Metadata *NewDebugValue)
To be called by ReplaceableMetadataImpl::replaceAllUsesWith, where Old is a pointer to one of the poi...
std::array< Metadata *, 3 > DebugValues
void resetDebugValue(size_t Idx, Metadata *DebugValue)
LLVM_ABI DbgVariableRecord * getUser()
Implements a dense probed hash-table based set.
void setSubprogram(DISubprogram *SP)
Set the attached subprogram.
DISubprogram * getSubprogram() const
Get the attached subprogram.
bool shouldEmitDebugInfoForProfiling() const
Returns true if we should emit debug info for profiling.
LLVM_ABI void addTypeMetadata(unsigned Offset, Metadata *TypeID)
unsigned MetadataIndex
Index of first metadata attachment in context, or zero.
LLVM_ABI void setMetadata(unsigned KindID, MDNode *Node)
Set a particular kind of metadata attachment.
GlobalObject(Type *Ty, ValueTy VTy, AllocInfo AllocInfo, LinkageTypes Linkage, const Twine &Name, unsigned AddressSpace=0)
LLVM_ABI void copyMetadata(const GlobalObject *Src, unsigned Offset)
Copy metadata from Src, adjusting offsets by Offset.
LLVM_ABI VCallVisibility getVCallVisibility() const
LLVM_ABI bool eraseMetadata(unsigned KindID)
Erase all metadata attachments with the given kind.
LLVM_ABI void addMetadata(unsigned KindID, MDNode &MD)
Add a metadata attachment.
MDNode * getMetadata(unsigned KindID) const
Get the metadata of given kind attached to this GlobalObject.
LLVM_ABI void setVCallVisibilityMetadata(VCallVisibility Visibility)
LLVM_ABI void getDebugInfo(SmallVectorImpl< DIGlobalVariableExpression * > &GVs) const
Fill the vector with all debug info attachements.
LLVM_ABI void addDebugInfo(DIGlobalVariableExpression *GV)
Attach a DIGlobalVariableExpression.
LLVM_ABI void setAAMetadata(const AAMDNodes &N)
Sets the AA metadata on this instruction from the AAMDNodes structure.
LLVM_ABI bool extractProfTotalWeight(uint64_t &TotalVal) const
Retrieve total raw weight values of a branch.
bool hasMetadataOtherThanDebugLoc() const
Return true if this instruction has metadata attached to it other than a debug location.
bool hasMetadata() const
Return true if this instruction has any metadata attached to it.
LLVM_ABI void addAnnotationMetadata(StringRef Annotation)
Adds an !annotation metadata node with Annotation to this instruction.
MDNode * getMetadata(unsigned KindID) const
Get the metadata of given kind attached to this Instruction.
LLVM_ABI void setMetadata(unsigned KindID, MDNode *Node)
Set the metadata of the specified kind to the specified node.
LLVM_ABI void setNoSanitizeMetadata()
Sets the nosanitize metadata on this instruction.
LLVM_ABI void dropUnknownNonDebugMetadata(ArrayRef< unsigned > KnownIDs={})
Drop all unknown metadata except for debug locations.
LLVM_ABI AAMDNodes getAAMetadata() const
Returns the AA metadata for this instruction.
unsigned getOpcode() const
Returns a member of one of the enums like Instruction::Add.
LLVM_ABI void eraseMetadataIf(function_ref< bool(unsigned, MDNode *)> Pred)
Erase all metadata that matches the predicate.
DenseMap< Metadata *, MetadataAsValue * > MetadataAsValues
SmallVector< MDAttachment, 0 > Metadatas
Collection of metadata attachments in this context.
DenseMap< DIAssignID *, SmallVector< Instruction *, 1 > > AssignmentIDToInstrs
Map DIAssignID -> Instructions with that attachment.
std::vector< MDNode * > DistinctMDNodes
DenseSet< MDNode * > TemporaryMDNodes
This is an important class for using LLVM in a threaded context.
LLVM_ABI unsigned getMDKindID(StringRef Name) const
getMDKindID - Return a unique non-zero ID for the specified metadata kind.
LLVMContextImpl *const pImpl
LLVM_ABI MDString * createString(StringRef Str)
Return the given string as metadata.
static LLVM_ABI MDNode * getMostGenericAliasScope(MDNode *A, MDNode *B)
LLVM_ABI void replaceOperandWith(unsigned I, Metadata *New)
Replace a specific operand.
LLVM_ABI void resolveCycles()
Resolve cycles.
static LLVM_ABI CaptureComponents toCaptureComponents(const MDNode *MD)
Convert !captures metadata to CaptureComponents. MD may be nullptr.
mutable_op_range mutable_operands()
static LLVM_ABI MDNode * getMergedCalleeTypeMetadata(const MDNode *A, const MDNode *B)
void replaceAllUsesWith(Metadata *MD)
RAUW a temporary.
static LLVM_ABI MDNode * concatenate(MDNode *A, MDNode *B)
Methods for metadata merging.
static LLVM_ABI void deleteTemporary(MDNode *N)
Deallocate a node created by getTemporary.
LLVM_ABI void resolve()
Resolve a unique, unresolved node.
const MDOperand & getOperand(unsigned I) const
static LLVM_ABI MDNode * getMostGenericNoaliasAddrspace(MDNode *A, MDNode *B)
LLVM_ABI void storeDistinctInContext()
ArrayRef< MDOperand > operands() const
static MDTuple * get(LLVMContext &Context, ArrayRef< Metadata * > MDs)
static LLVM_ABI MDNode * getMergedProfMetadata(MDNode *A, MDNode *B, const Instruction *AInstr, const Instruction *BInstr)
Merge !prof metadata from two instructions.
static LLVM_ABI MDNode * getMergedAllocTokenMetadata(const MDNode *A, const MDNode *B)
static LLVM_ABI MDNode * getMostGenericFPMath(MDNode *A, MDNode *B)
void setNumUnresolved(unsigned N)
unsigned getNumOperands() const
Return number of MDNode operands.
MDOperand * mutable_begin()
LLVM_ABI MDNode(LLVMContext &Context, unsigned ID, StorageType Storage, ArrayRef< Metadata * > Ops1, ArrayRef< Metadata * > Ops2={})
LLVM_ABI TempMDNode clone() const
Create a (temporary) clone of this.
static LLVM_ABI MDNode * getMostGenericRange(MDNode *A, MDNode *B)
LLVM_ABI void setOperand(unsigned I, Metadata *New)
Set an operand.
bool isResolved() const
Check if node is fully resolved.
op_iterator op_begin() const
static LLVM_ABI MDNode * intersect(MDNode *A, MDNode *B)
static LLVM_ABI MDNode * getMostGenericNoFPClass(MDNode *A, MDNode *B)
static T * storeImpl(T *N, StorageType Storage, StoreT &Store)
LLVMContext & getContext() const
static LLVM_ABI MDNode * fromCaptureComponents(LLVMContext &Ctx, CaptureComponents CC)
Convert CaptureComponents to !captures metadata.
LLVM_ABI void dropAllReferences()
static LLVM_ABI MDNode * getMostGenericAlignmentOrDereferenceable(MDNode *A, MDNode *B)
unsigned getNumUnresolved() const
Tracking metadata reference owned by Metadata.
LLVM_ABI StringRef getString() const
static LLVM_ABI MDString * getIfExists(LLVMContext &Context, StringRef Str)
static LLVM_ABI MDString * get(LLVMContext &Context, StringRef Str)
static MDTuple * get(LLVMContext &Context, ArrayRef< Metadata * > MDs)
void eraseNamedMetadata(NamedMDNode *NMD)
Remove the given NamedMDNode from this module and delete it.
LLVM_ABI void setOperand(unsigned I, MDNode *New)
LLVM_ABI StringRef getName() const
void dropAllReferences()
Remove all uses and clear node vector.
LLVM_ABI void eraseFromParent()
Drop all references and remove the node from parent module.
LLVM_ABI MDNode * getOperand(unsigned i) const
LLVM_ABI unsigned getNumOperands() const
LLVM_ABI void clearOperands()
Drop all references to this node's operands.
Module * getParent()
Get the module that holds this named metadata collection.
LLVM_ABI void addOperand(MDNode *M)
static LLVM_ABI PoisonValue * get(Type *T)
Static factory methods - Return an 'poison' object of the specified type.
ArrayRef< value_type > getArrayRef() const
bool remove_if(UnaryPredicate P)
Remove items from the set vector based on a predicate function.
bool empty() const
Determine if the SetVector is empty or not.
bool insert(const value_type &X)
Insert a new element into the SetVector.
size_type count(ConstPtrType Ptr) const
count - Return 1 if the specified pointer is in the set, 0 otherwise.
std::pair< iterator, bool > insert(PtrType Ptr)
Inserts Ptr if and only if there is no element in the container equal to Ptr.
bool contains(ConstPtrType Ptr) const
SmallPtrSet - This class implements a set which is optimized for holding SmallSize or less elements.
A SetVector that performs no allocations if smaller than a certain size.
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.
SmallString - A SmallString is just a SmallVector with methods and accessors that make it work better...
void append(StringRef RHS)
Append from a StringRef.
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
void reserve(size_type N)
void push_back(const T &Elt)
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
Represent a constant reference to a string, i.e.
constexpr size_t size() const
Get the string size.
A switch()-like statement whose cases are string literals.
StringSwitch & Case(StringLiteral S, T Value)
The instances of the Type class are immutable: once they are created, they are never changed.
static LLVM_ABI IntegerType * getInt64Ty(LLVMContext &C)
static LLVM_ABI Type * getMetadataTy(LLVMContext &C)
LLVMContext & getContext() const
Return the LLVMContext in which this type was uniqued.
static LLVM_ABI IntegerType * getInt1Ty(LLVMContext &C)
LLVM Value Representation.
Type * getType() const
All values are typed, get the type of this value.
LLVM_ABI void setMetadata(unsigned KindID, MDNode *Node)
Set a particular kind of metadata attachment.
LLVM_ABI void replaceAllUsesWith(Value *V)
Change all uses of this to point to a new Value.
LLVMContext & getContext() const
All values hold a context through their type.
LLVM_ABI void getAllMetadata(SmallVectorImpl< std::pair< unsigned, MDNode * > > &MDs) const
Appends all metadata attached to this value to MDs, sorting by KindID.
LLVM_ABI MDNode * getMetadataImpl(unsigned KindID) const LLVM_READONLY
Get metadata for the given kind, if any.
LLVM_ABI bool eraseMetadata(unsigned KindID)
Erase all metadata attachments with the given kind.
LLVM_ABI void addMetadata(unsigned KindID, MDNode &MD)
Add a metadata attachment.
LLVM_ABI MDNode * getMetadata(StringRef Kind) const LLVM_READONLY
Get the current metadata attachments for the given kind, if any.
LLVM_ABI void eraseMetadataIf(function_ref< bool(unsigned, MDNode *)> Pred)
Erase all metadata attachments matching the given predicate.
LLVM_ABI void clearMetadata()
Erase all metadata attached to this Value.
An efficient, type-erasing, non-owning reference to a callable.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
std::enable_if_t< detail::IsValidPointer< X, Y >::value, X * > dyn_extract_or_null(Y &&MD)
Extract a Value from Metadata, if any, allowing null.
std::enable_if_t< detail::IsValidPointer< X, Y >::value, X * > dyn_extract(Y &&MD)
Extract a Value from Metadata, if any.
std::enable_if_t< detail::IsValidPointer< X, Y >::value, X * > extract(Y &&MD)
Extract a Value from Metadata.
This is an optimization pass for GlobalISel generic memory operations.
@ Low
Lower the current thread's priority such that it does not affect foreground tasks significantly.
detail::zippy< detail::zip_shortest, T, U, Args... > zip(T &&t, U &&u, Args &&...args)
zip iterator for two or more iteratable types.
bool capturesReadProvenanceOnly(CaptureComponents CC)
void stable_sort(R &&Range)
auto find(R &&Range, const T &Val)
Provide wrappers to std::find which take ranges instead of having to pass begin/end explicitly.
bool capturesAddressIsNullOnly(CaptureComponents CC)
LLVM_ABI cl::opt< bool > ProfcheckDisableMetadataFixes
TypedTrackingMDRef< MDNode > TrackingMDNodeRef
auto size(R &&Range, std::enable_if_t< std::is_base_of< std::random_access_iterator_tag, typename std::iterator_traits< decltype(Range.begin())>::iterator_category >::value, void > *=nullptr)
Get the size of a range.
LLVM_ABI unsigned getBranchWeightOffset(const MDNode *ProfileData)
Return the offset to the first branch weight data.
static T * getUniqued(DenseSet< T *, InfoT > &Store, const typename InfoT::KeyTy &Key)
bool capturesAddress(CaptureComponents CC)
decltype(auto) dyn_cast(const From &Val)
dyn_cast<X> - Return the argument parameter cast to the specified type.
@ Store
The extracted value is stored (ExtractElement only).
constexpr from_range_t from_range
auto dyn_cast_if_present(const Y &Val)
dyn_cast_if_present<X> - Functionally identical to dyn_cast, except that a null (or none in the case ...
auto cast_or_null(const Y &Val)
auto dyn_cast_or_null(const Y &Val)
bool any_of(R &&range, UnaryPredicate P)
Provide wrappers to std::any_of which take ranges instead of having to pass begin/end explicitly.
bool capturesFullProvenance(CaptureComponents CC)
void sort(IteratorTy Start, IteratorTy End)
constexpr uint64_t alignTo(uint64_t Size, Align A)
Returns a multiple of A needed to store Size bytes.
CaptureComponents
Components of the pointer that may be captured.
class LLVM_GSL_OWNER SmallVector
Forward declaration of SmallVector so that calculateSmallVectorDefaultInlinedElements can reference s...
bool isa(const From &Val)
isa<X> - Return true if the parameter to the template is an instance of one of the template type argu...
LLVM_ATTRIBUTE_VISIBILITY_DEFAULT AnalysisKey InnerAnalysisManagerProxy< AnalysisManagerT, IRUnitT, ExtraArgTs... >::Key
MutableArrayRef(T &OneElt) -> MutableArrayRef< T >
@ Ref
The access may reference the value stored in memory.
DWARFExpression::Operation Op
ArrayRef(const T &OneElt) -> ArrayRef< T >
OutputIt copy(R &&Range, OutputIt Out)
OutputIt move(R &&Range, OutputIt Out)
Provide wrappers to std::move which take ranges instead of having to pass begin/end explicitly.
auto count_if(R &&Range, UnaryPredicate P)
Wrapper function around std::count_if to count the number of times an element satisfying a given pred...
decltype(auto) cast(const From &Val)
cast<X> - Return the argument parameter cast to the specified type.
bool is_contained(R &&Range, const E &Element)
Returns true if Element is found in Range.
bool capturesAll(CaptureComponents CC)
std::enable_if_t< std::is_unsigned_v< T >, T > SaturatingAdd(T X, T Y, bool *ResultOverflowed=nullptr)
Add two unsigned integers, X and Y, of type T.
bool capturesNothing(CaptureComponents CC)
static constexpr bool value
static std::false_type check(...)
static std::true_type check(SameType< void(U::*)(unsigned), &U::setHash > *)
A collection of metadata nodes that might be associated with a memory access used by the alias-analys...
Single metadata attachment, forms linked list ended by index 0.
static LLVM_ABI const char * BranchWeights
Function object to check whether the first component of a container supported by std::get (like std::...