19#define OPCODES(...) __VA_ARGS__
20#define DEF_INSTR(ID, OPC, CLASS) OPC
21#include "llvm/SandboxIR/Values.def"
28 if (Prev ==
nullptr) {
30 return &*cast<llvm::BasicBlock>(
getParent()->
Val)->begin();
39 auto *
I = cast<llvm::Instruction>(
Val);
49 auto *LLVMI = cast<llvm::Instruction>(
Val);
50 assert(LLVMI->getParent() !=
nullptr &&
"LLVM IR instr is detached!");
51 auto *NextLLVMI = LLVMI->getNextNode();
52 auto *NextI = cast_or_null<Instruction>(
Ctx.
getValue(NextLLVMI));
71 I->removeFromParent();
75 assert(
users().empty() &&
"Still connected to users, can't erase!");
82 if (Tracker.isTracking()) {
83 Tracker.
track(std::make_unique<EraseFromParent>(std::move(Detached)));
88 I->removeFromParent();
92 I->dropAllReferences();
108 auto *LLVMBB = cast<llvm::BasicBlock>(BB.
Val);
110 if (WhereIt == BB.
end()) {
114 It = WhereI->getTopmostLLVMInstruction()->
getIterator();
118 [](
auto *I1,
auto *I2) {
return I1->comesBefore(I2); }) &&
119 "Expected program order!");
122 I->moveBefore(*LLVMBB, It);
144 if (WhereIt != BB->
end()) {
146 LLVMBeforeI = BeforeI->getTopmostLLVMInstruction();
150 LLVMBeforeI =
nullptr;
151 LLVMBeforeIt = LLVMBB->
end();
158 I->insertInto(LLVMBB, LLVMBeforeIt);
171 switch (
From->getSubclassID()) {
172#define DEF_INSTR(ID, OPC, CLASS) \
175#include "llvm/SandboxIR/Values.def"
186 cast<llvm::Instruction>(
Val)->setHasNoUnsignedWrap(
B);
193 cast<llvm::Instruction>(
Val)->setHasNoSignedWrap(
B);
199 GenericSetter<&Instruction::isFast, &Instruction::setFast>>(
this);
200 cast<llvm::Instruction>(
Val)->setFast(
B);
206 GenericSetter<&Instruction::isExact, &Instruction::setIsExact>>(
this);
207 cast<llvm::Instruction>(
Val)->setIsExact(
B);
214 cast<llvm::Instruction>(
Val)->setHasAllowReassoc(
B);
220 GenericSetter<&Instruction::hasNoNaNs, &Instruction::setHasNoNaNs>>(
222 cast<llvm::Instruction>(
Val)->setHasNoNaNs(
B);
230 cast<llvm::Instruction>(
Val)->setHasNoInfs(
B);
238 cast<llvm::Instruction>(
Val)->setHasNoSignedZeros(
B);
246 cast<llvm::Instruction>(
Val)->setHasAllowReciprocal(
B);
254 cast<llvm::Instruction>(
Val)->setHasAllowContract(
B);
261 cast<llvm::Instruction>(
Val)->setFastMathFlags(FMF);
268 cast<llvm::Instruction>(
Val)->copyFastMathFlags(FMF);
279 cast<llvm::Instruction>(
Val)->setHasApproxFunc(
B);
284 OS <<
"Unimplemented! Please override dump().";
292 cast<llvm::VAArgInst>(Builder.CreateVAArg(
List->Val, Ty->
LLVMTy,
Name));
303 auto *LLVMI = cast<llvm::FreezeInst>(Builder.CreateFreeze(V->Val,
Name));
319 cast<llvm::FenceInst>(
Val)->setOrdering(Ordering);
326 cast<llvm::FenceInst>(
Val)->setSyncScopeID(SSID);
334 if (
auto *NewSI = dyn_cast<llvm::SelectInst>(NewV))
336 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
343 cast<llvm::SelectInst>(
Val)->swapValues();
347 return From->getSubclassID() == ClassID::Select;
354 Builder.CreateBr(cast<llvm::BasicBlock>(IfTrue->
Val));
362 Builder.CreateCondBr(
Cond->Val, cast<llvm::BasicBlock>(IfTrue->
Val),
363 cast<llvm::BasicBlock>(IfFalse->
Val));
368 return From->getSubclassID() == ClassID::Br;
378 "Successor # out of range for Branch!");
379 return cast_or_null<BasicBlock>(
380 Ctx.
getValue(cast<llvm::BranchInst>(
Val)->getSuccessor(SuccIdx)));
389 return cast<BasicBlock>(Ctx.
getValue(BB));
392BranchInst::ConstLLVMBBToSBBB::operator()(
const llvm::BasicBlock *BB)
const {
393 return cast<BasicBlock>(Ctx.
getValue(BB));
400 cast<llvm::LoadInst>(
Val)->setVolatile(V);
414 return From->getSubclassID() == ClassID::Load;
425 cast<llvm::StoreInst>(
Val)->setVolatile(V);
432 auto *NewSI = Builder.CreateAlignedStore(V->Val,
Ptr->Val,
Align, IsVolatile);
438 return From->getSubclassID() == ClassID::Store;
456 return From->getSubclassID() == ClassID::Unreachable;
462 if (RetVal !=
nullptr)
472 return createCommon(RetVal, Builder,
Ctx);
476 auto *LLVMRetVal = cast<llvm::ReturnInst>(
Val)->getReturnValue();
477 return LLVMRetVal !=
nullptr ?
Ctx.
getValue(LLVMRetVal) :
nullptr;
481 return cast<FunctionType>(
490 llvm::Use *LLVMUse = &cast<llvm::CallBase>(
Val)->getCalledOperandUse();
495 return cast_or_null<Function>(
499 return cast<Function>(
Ctx.
getValue(cast<llvm::CallBase>(
Val)->getCaller()));
510 cast<llvm::CallBase>(
Val)->setCalledFunction(
511 cast<llvm::FunctionType>(
F->getFunctionType()->LLVMTy),
512 cast<llvm::Function>(
F->Val));
521 for (
Value *Arg : Args)
524 cast<llvm::FunctionType>(FTy->
LLVMTy), Func->Val, LLVMArgs, NameStr);
535 for (
Value *Arg : Args)
538 cast<llvm::FunctionType>(FTy->
LLVMTy), Func->Val,
539 cast<llvm::BasicBlock>(IfNormal->
Val),
540 cast<llvm::BasicBlock>(IfException->
Val), LLVMArgs, NameStr);
545 return cast<BasicBlock>(
549 return cast<BasicBlock>(
561 return cast<LandingPadInst>(
566 return cast<BasicBlock>(
567 Ctx.
getValue(cast<llvm::InvokeInst>(
Val)->getSuccessor(SuccIdx)));
579 LLVMIndirectDests.
push_back(cast<llvm::BasicBlock>(IndDest->Val));
583 for (
Value *Arg : Args)
588 cast<llvm::BasicBlock>(DefaultDest->
Val),
589 LLVMIndirectDests, LLVMArgs, NameStr);
601 return cast<BasicBlock>(
605 return cast<BasicBlock>(
619 cast<llvm::CallBrInst>(
Val)->setDefaultDest(cast<llvm::BasicBlock>(BB->
Val));
626 cast<llvm::CallBrInst>(
Val)->setIndirectDest(
Idx,
627 cast<llvm::BasicBlock>(BB->
Val));
630 return cast<BasicBlock>(
647 cast<llvm::LandingPadInst>(
Val)->setCleanup(V);
651 return cast<Constant>(
663 cast<llvm::FuncletPadInst>(
Val)->setParentPad(ParentPad->
Val);
675 cast<llvm::FuncletPadInst>(
Val)->setArgOperand(
Idx, V->Val);
679 return cast<CatchSwitchInst>(
689 for (
auto *Arg : Args)
702 for (
auto *Arg : Args)
713 cast<llvm::CatchPadInst>(CatchPad->
Val), cast<llvm::BasicBlock>(BB->
Val));
718 return cast<CatchPadInst>(
726 cast<llvm::CatchReturnInst>(
Val)->setCatchPad(
727 cast<llvm::CatchPadInst>(CatchPad->
Val));
731 return cast<BasicBlock>(
739 cast<llvm::CatchReturnInst>(
Val)->setSuccessor(
740 cast<llvm::BasicBlock>(NewSucc->
Val));
753 UnwindBB !=
nullptr ? cast<llvm::BasicBlock>(UnwindBB->
Val) :
nullptr;
755 cast<llvm::CleanupPadInst>(CleanupPad->
Val), LLVMUnwindBB);
760 return cast<CleanupPadInst>(
761 Ctx.
getValue(cast<llvm::CleanupReturnInst>(
Val)->getCleanupPad()));
769 cast<llvm::CleanupReturnInst>(
Val)->setCleanupPad(
770 cast<llvm::CleanupPadInst>(CleanupPad->
Val));
774 return cast_or_null<BasicBlock>(
775 Ctx.
getValue(cast<llvm::CleanupReturnInst>(
Val)->getUnwindDest()));
783 cast<llvm::CleanupReturnInst>(
Val)->setUnwindDest(
784 cast<llvm::BasicBlock>(NewDest->
Val));
797 if (
auto *NewGEP = dyn_cast<llvm::GetElementPtrInst>(NewV))
799 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
823 return cast<BasicBlock>(Ctx.getValue(LLVMBB));
835 return From->getSubclassID() == ClassID::PHI;
846 cast<llvm::PHINode>(
Val)->setIncomingValue(
Idx, V->Val);
849 return cast<BasicBlock>(
865 cast<llvm::PHINode>(
Val)->setIncomingBlock(
Idx,
866 cast<llvm::BasicBlock>(BB->
Val));
872 cast<llvm::PHINode>(
Val)->addIncoming(V->Val,
873 cast<llvm::BasicBlock>(BB->
Val));
879 cast<llvm::PHINode>(
Val)->removeIncomingValue(
Idx,
887 auto *LLVMBB = cast<llvm::BasicBlock>(BB->
Val);
889 cast<llvm::PHINode>(
Val)->removeIncomingValue(LLVMBB,
894 auto *LLVMBB = cast<llvm::BasicBlock>(BB->
Val);
895 return cast<llvm::PHINode>(
Val)->getBasicBlockIndex(LLVMBB);
898 auto *LLVMBB = cast<llvm::BasicBlock>(BB->
Val);
900 cast<llvm::PHINode>(
Val)->getIncomingValueForBlock(LLVMBB);
904 llvm::Value *LLVMV = cast<llvm::PHINode>(
Val)->hasConstantValue();
905 return LLVMV !=
nullptr ?
Ctx.
getValue(LLVMV) :
nullptr;
908 assert(New && Old &&
"Sandbox IR PHI node got a null basic block!");
923 if (Predicate(
Idx - 1))
934 if (
auto *LLVMC = dyn_cast<llvm::Constant>(LLVMV))
936 if (isa<llvm::ICmpInst>(LLVMV))
945 if (
auto *
C = dyn_cast<Constant>(V))
947 cast<llvm::CmpInst>(V->Val)->copyIRFlags(
F->Val);
952 if (
auto *VT = dyn_cast<VectorType>(OpndType)) {
957 cast<llvm::VectorType>(VT->LLVMTy)->getElementCount()));
966 cast<llvm::CmpInst>(
Val)->setPredicate(
P);
970 if (
ICmpInst *IC = dyn_cast<ICmpInst>(
this))
973 cast<FCmpInst>(
this)->swapOperands();
978 cast<llvm::ICmpInst>(
Val)->swapOperands();
983 cast<llvm::FCmpInst>(
Val)->swapOperands();
1000 case Instruction::Opcode::ZExt:
1002 case Instruction::Opcode::SExt:
1004 case Instruction::Opcode::FPToUI:
1006 case Instruction::Opcode::FPToSI:
1008 case Instruction::Opcode::FPExt:
1010 case Instruction::Opcode::PtrToAddr:
1012 llvm::Instruction::PtrToAddr);
1013 case Instruction::Opcode::PtrToInt:
1015 case Instruction::Opcode::IntToPtr:
1017 case Instruction::Opcode::SIToFP:
1019 case Instruction::Opcode::UIToFP:
1021 case Instruction::Opcode::Trunc:
1023 case Instruction::Opcode::FPTrunc:
1025 case Instruction::Opcode::BitCast:
1027 case Instruction::Opcode::AddrSpaceCast:
1029 llvm::Instruction::AddrSpaceCast);
1038 case Instruction::Opcode::FNeg:
1046 unsigned NumHandlers,
1051 ParentPad->
Val, cast<llvm::BasicBlock>(UnwindBB->
Val), NumHandlers,
Name);
1063 cast<llvm::CatchSwitchInst>(
Val)->setParentPad(ParentPad->
Val);
1067 return cast_or_null<BasicBlock>(
1068 Ctx.
getValue(cast<llvm::CatchSwitchInst>(
Val)->getUnwindDest()));
1075 cast<llvm::CatchSwitchInst>(
Val)->setUnwindDest(
1076 cast<llvm::BasicBlock>(UnwindDest->
Val));
1081 cast<llvm::CatchSwitchInst>(
Val)->addHandler(
1082 cast<llvm::BasicBlock>(Dest->
Val));
1100 Builder.
CreateSwitch(V->Val, cast<llvm::BasicBlock>(Dest->
Val), NumCases);
1113 cast<llvm::SwitchInst>(
Val)->setCondition(V->Val);
1117 return cast<BasicBlock>(
1125 cast<llvm::SwitchInst>(
Val)->setDefaultDest(
1126 cast<llvm::BasicBlock>(DefaultCase->
Val));
1129 auto *LLVMC = cast<llvm::SwitchInst>(
Val)->findCaseDest(
1130 cast<llvm::BasicBlock>(BB->
Val));
1131 return LLVMC !=
nullptr ? cast<ConstantInt>(
Ctx.
getValue(LLVMC)) :
nullptr;
1137 cast<llvm::SwitchInst>(
Val)->addCase(cast<llvm::ConstantInt>(OnVal->
Val),
1138 cast<llvm::BasicBlock>(Dest->
Val));
1147 auto LLVMCaseIt =
LLVMSwitch->removeCase(LLVMIt);
1148 unsigned Num = LLVMCaseIt -
LLVMSwitch->case_begin();
1149 return CaseIt(
this, Num);
1153 return cast<BasicBlock>(
1162 cast<llvm::SwitchInst>(
Val)->setSuccessor(
1171 if (
auto *NewUnOpV = dyn_cast<llvm::UnaryOperator>(NewLLVMV)) {
1174 assert(isa<llvm::Constant>(NewLLVMV) &&
"Expected constant");
1182 if (
auto *UnI = dyn_cast<llvm::UnaryOperator>(NewV->Val))
1183 UnI->copyIRFlags(CopyFrom->
Val);
1190 case Instruction::Opcode::Add:
1192 case Instruction::Opcode::FAdd:
1194 case Instruction::Opcode::Sub:
1196 case Instruction::Opcode::FSub:
1198 case Instruction::Opcode::Mul:
1200 case Instruction::Opcode::FMul:
1202 case Instruction::Opcode::UDiv:
1204 case Instruction::Opcode::SDiv:
1206 case Instruction::Opcode::FDiv:
1208 case Instruction::Opcode::URem:
1210 case Instruction::Opcode::SRem:
1212 case Instruction::Opcode::FRem:
1214 case Instruction::Opcode::Shl:
1216 case Instruction::Opcode::LShr:
1218 case Instruction::Opcode::AShr:
1220 case Instruction::Opcode::And:
1222 case Instruction::Opcode::Or:
1224 case Instruction::Opcode::Xor:
1236 if (
auto *NewBinOp = dyn_cast<llvm::BinaryOperator>(NewV))
1238 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
1248 if (
auto *NewBO = dyn_cast<BinaryOperator>(NewV))
1249 cast<llvm::BinaryOperator>(NewBO->Val)->copyIRFlags(CopyFrom->
Val);
1258 cast<llvm::PossiblyDisjointInst>(
Val)->setIsDisjoint(
B);
1265 cast<llvm::AtomicRMWInst>(
Val)->setAlignment(
Align);
1272 cast<llvm::AtomicRMWInst>(
Val)->setVolatile(V);
1279 cast<llvm::AtomicRMWInst>(
Val)->setOrdering(Ordering);
1286 cast<llvm::AtomicRMWInst>(
Val)->setSyncScopeID(SSID);
1313 cast<llvm::AtomicCmpXchgInst>(
Val)->setSyncScopeID(SSID);
1336 SuccessOrdering, FailureOrdering, SSID);
1345 cast<llvm::AtomicCmpXchgInst>(
Val)->setAlignment(
Align);
1352 cast<llvm::AtomicCmpXchgInst>(
Val)->setVolatile(V);
1359 cast<llvm::AtomicCmpXchgInst>(
Val)->setWeak(IsWeak);
1367 cast<llvm::AtomicCmpXchgInst>(
Val)->setSuccessOrdering(Ordering);
1375 cast<llvm::AtomicCmpXchgInst>(
Val)->setFailureOrdering(Ordering);
1395 cast<llvm::AllocaInst>(
Val)->setAllocatedType(Ty->
LLVMTy);
1403 cast<llvm::AllocaInst>(
Val)->setAlignment(
Align);
1410 cast<llvm::AllocaInst>(
Val)->setUsedWithInAlloca(V);
1418 return cast<PointerType>(
Ctx.
getType(cast<llvm::AllocaInst>(
Val)->getType()));
1427 if (
auto *NewCI = dyn_cast<llvm::CastInst>(NewV))
1429 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
1434 return From->getSubclassID() == ClassID::Cast;
1449 cast<llvm::PossiblyNonNegInst>(
Val)->setNonNeg(
B);
1458 if (
auto *NewInsert = dyn_cast<llvm::InsertElementInst>(NewV))
1460 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
1468 if (
auto *NewExtract = dyn_cast<llvm::ExtractElementInst>(NewV))
1470 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
1480 if (
auto *NewShuffle = dyn_cast<llvm::ShuffleVectorInst>(NewV))
1482 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
1491 if (
auto *NewShuffle = dyn_cast<llvm::ShuffleVectorInst>(NewV))
1493 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
1499 cast<llvm::ShuffleVectorInst>(
Val)->setShuffleMask(Mask);
1503 return cast<VectorType>(
1504 Ctx.
getType(cast<llvm::ShuffleVectorInst>(
Val)->getType()));
1511 cast<llvm::ShuffleVectorInst>(
Val)->commute();
1535 if (
auto *NewExtractValueInst = dyn_cast<llvm::ExtractValueInst>(NewV))
1537 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
1551 if (
auto *NewInsertValueInst = dyn_cast<llvm::InsertValueInst>(NewV))
1553 assert(isa<llvm::Constant>(NewV) &&
"Expected constant");
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
BlockVerifier::State From
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
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
const SmallVectorImpl< MachineOperand > & Cond
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
size_t size() const
size - Get the array size.
An instruction that atomically checks whether a specified value is in a memory location,...
BinOp
This enumeration lists the possible modifications atomicrmw can make.
LLVM Basic Block Representation.
InstListType::iterator iterator
Instruction iterators...
Conditional or Unconditional Branch instruction.
CallBr instruction, tracking function calls that may not return control but instead transfer it to a ...
This class represents a function call, abstracting a target machine's calling convention.
static LLVM_ABI ConstantTokenNone * get(LLVMContext &Context)
Return the ConstantTokenNone.
This class represents an Operation in the Expression.
Convenience struct for specifying and reasoning about fast-math flags.
An instruction for ordering other memory operations.
CleanupPadInst * CreateCleanupPad(Value *ParentPad, ArrayRef< Value * > Args={}, const Twine &Name="")
CatchPadInst * CreateCatchPad(Value *ParentPad, ArrayRef< Value * > Args, const Twine &Name="")
Value * CreateInsertElement(Type *VecTy, Value *NewElt, Value *Idx, const Twine &Name="")
AtomicCmpXchgInst * CreateAtomicCmpXchg(Value *Ptr, Value *Cmp, Value *New, MaybeAlign Align, AtomicOrdering SuccessOrdering, AtomicOrdering FailureOrdering, SyncScope::ID SSID=SyncScope::System)
AllocaInst * CreateAlloca(Type *Ty, unsigned AddrSpace, Value *ArraySize=nullptr, const Twine &Name="")
Value * CreateInsertValue(Value *Agg, Value *Val, ArrayRef< unsigned > Idxs, const Twine &Name="")
Value * CreateExtractElement(Value *Vec, Value *Idx, const Twine &Name="")
Value * CreateExtractValue(Value *Agg, ArrayRef< unsigned > Idxs, const Twine &Name="")
LandingPadInst * CreateLandingPad(Type *Ty, unsigned NumClauses, const Twine &Name="")
InvokeInst * CreateInvoke(FunctionType *Ty, Value *Callee, BasicBlock *NormalDest, BasicBlock *UnwindDest, ArrayRef< Value * > Args, ArrayRef< OperandBundleDef > OpBundles, const Twine &Name="")
Create an invoke instruction.
CallBrInst * CreateCallBr(FunctionType *Ty, Value *Callee, BasicBlock *DefaultDest, ArrayRef< BasicBlock * > IndirectDests, ArrayRef< Value * > Args={}, const Twine &Name="")
Create a callbr instruction.
Value * CreateCast(Instruction::CastOps Op, Value *V, Type *DestTy, const Twine &Name="", MDNode *FPMathTag=nullptr, FMFSource FMFSource={})
CatchReturnInst * CreateCatchRet(CatchPadInst *CatchPad, BasicBlock *BB)
CleanupReturnInst * CreateCleanupRet(CleanupPadInst *CleanupPad, BasicBlock *UnwindBB=nullptr)
ReturnInst * CreateRet(Value *V)
Create a 'ret <val>' instruction.
Value * CreateGEP(Type *Ty, Value *Ptr, ArrayRef< Value * > IdxList, const Twine &Name="", GEPNoWrapFlags NW=GEPNoWrapFlags::none())
CatchSwitchInst * CreateCatchSwitch(Value *ParentPad, BasicBlock *UnwindBB, unsigned NumHandlers, const Twine &Name="")
Value * CreateUnOp(Instruction::UnaryOps Opc, Value *V, const Twine &Name="", MDNode *FPMathTag=nullptr)
Value * CreateCmp(CmpInst::Predicate Pred, Value *LHS, Value *RHS, const Twine &Name="", MDNode *FPMathTag=nullptr)
PHINode * CreatePHI(Type *Ty, unsigned NumReservedValues, const Twine &Name="")
SwitchInst * CreateSwitch(Value *V, BasicBlock *Dest, unsigned NumCases=10, MDNode *BranchWeights=nullptr, MDNode *Unpredictable=nullptr)
Create a switch instruction with the specified value, default dest, and with a hint for the number of...
Value * CreateShuffleVector(Value *V1, Value *V2, Value *Mask, const Twine &Name="")
ReturnInst * CreateRetVoid()
Create a 'ret void' instruction.
CallInst * CreateCall(FunctionType *FTy, Value *Callee, ArrayRef< Value * > Args={}, const Twine &Name="", MDNode *FPMathTag=nullptr)
AtomicRMWInst * CreateAtomicRMW(AtomicRMWInst::BinOp Op, Value *Ptr, Value *Val, MaybeAlign Align, AtomicOrdering Ordering, SyncScope::ID SSID=SyncScope::System)
Value * CreateBinOp(Instruction::BinaryOps Opc, Value *LHS, Value *RHS, const Twine &Name="", MDNode *FPMathTag=nullptr)
ResumeInst * CreateResume(Value *Exn)
This provides a uniform API for creating instructions and inserting them into a basic block: either a...
The landingpad instruction holds all of the information necessary to generate correct exception handl...
Return a value (possibly void), from a function.
static LLVM_ABI Constant * convertShuffleMaskForBitcode(ArrayRef< int > Mask, Type *ResultTy)
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.
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
static LLVM_ABI IntegerType * getInt1Ty(LLVMContext &C)
This function has undefined behavior.
A Use represents the edge between a Value definition and its users.
LLVM Value Representation.
static LLVM_ABI VectorType * get(Type *ElementType, ElementCount EC)
This static method is the primary way to construct an VectorType.
An efficient, type-erasing, non-owning reference to a callable.
self_iterator getIterator()
NodeTy * getNextNode()
Get the next node, or nullptr for the list tail.
This class implements an extremely fast bulk output stream that can only output to a stream.
bool isUsedWithInAlloca() const
Return true if this alloca is used as an inalloca argument to a call.
LLVM_ABI Type * getAllocatedType() const
Return the type that is being allocated by the instruction.
LLVM_ABI void setAllocatedType(Type *Ty)
for use only in special circumstances that need to generically transform a whole instruction (eg: IR ...
LLVM_ABI Value * getArraySize()
Get the number of elements allocated.
LLVM_ABI PointerType * getType() const
Overload to return most specific pointer type.
LLVM_ABI void setUsedWithInAlloca(bool V)
Specify whether this alloca is used to represent the arguments to a call.
LLVM_ABI void setAlignment(Align Align)
static LLVM_ABI AllocaInst * create(Type *Ty, unsigned AddrSpace, InsertPosition Pos, Context &Ctx, Value *ArraySize=nullptr, const Twine &Name="")
LLVM_ABI Value * getPointerOperand()
LLVM_ABI void setSuccessOrdering(AtomicOrdering Ordering)
LLVM_ABI void setWeak(bool IsWeak)
LLVM_ABI void setVolatile(bool V)
Specify whether this is a volatile cmpxchg.
LLVM_ABI void setFailureOrdering(AtomicOrdering Ordering)
AtomicOrdering getFailureOrdering() const
LLVM_ABI void setAlignment(Align Align)
LLVM_ABI Value * getCompareOperand()
static LLVM_ABI AtomicCmpXchgInst * create(Value *Ptr, Value *Cmp, Value *New, MaybeAlign Align, AtomicOrdering SuccessOrdering, AtomicOrdering FailureOrdering, InsertPosition Pos, Context &Ctx, SyncScope::ID SSID=SyncScope::System, const Twine &Name="")
bool isVolatile() const
Return true if this is a cmpxchg from a volatile memory location.
LLVM_ABI void setSyncScopeID(SyncScope::ID SSID)
AtomicOrdering getSuccessOrdering() const
SyncScope::ID getSyncScopeID() const
LLVM_ABI Value * getNewValOperand()
Align getAlign() const
Return the alignment of the memory that is being allocated by the instruction.
bool isWeak() const
Return true if this cmpxchg may spuriously fail.
LLVM_ABI Value * getValOperand()
static LLVM_ABI AtomicRMWInst * create(BinOp Op, Value *Ptr, Value *Val, MaybeAlign Align, AtomicOrdering Ordering, InsertPosition Pos, Context &Ctx, SyncScope::ID SSID=SyncScope::System, const Twine &Name="")
LLVM_ABI void setSyncScopeID(SyncScope::ID SSID)
LLVM_ABI void setOrdering(AtomicOrdering Ordering)
SyncScope::ID getSyncScopeID() const
LLVM_ABI void setVolatile(bool V)
AtomicOrdering getOrdering() const
LLVM_ABI Value * getPointerOperand()
LLVM_ABI void setAlignment(Align Align)
Iterator for Instructions in a `BasicBlock.
Contains a list of sandboxir::Instruction's.
LLVM_ABI Function * getParent() const
static LLVM_ABI Value * create(Instruction::Opcode Op, Value *LHS, Value *RHS, InsertPosition Pos, Context &Ctx, const Twine &Name="")
static LLVM_ABI Value * createWithCopiedFlags(Instruction::Opcode Op, Value *LHS, Value *RHS, Value *CopyFrom, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI BasicBlock * getSuccessor(unsigned SuccIdx) const
LLVM_ABI Value * getCondition() const
LLVM_ABI void setSuccessor(unsigned Idx, BasicBlock *NewSucc)
unsigned getNumSuccessors() const
static LLVM_ABI BranchInst * create(BasicBlock *IfTrue, InsertPosition Pos, Context &Ctx)
static LLVM_ABI bool classof(const Value *From)
For isa/dyn_cast.
bool isConditional() const
LLVM_ABI Function * getCalledFunction() const
LLVM_ABI Use getCalledOperandUse() const
LLVM_ABI FunctionType * getFunctionType() const
LLVM_ABI void setCalledFunction(Function *F)
LLVM_ABI Function * getCaller()
LLVM_ABI Value * getCalledOperand() const
void setCalledOperand(Value *V)
LLVM_ABI Value * getIndirectDestLabelUse(unsigned Idx) const
static LLVM_ABI CallBrInst * create(FunctionType *FTy, Value *Func, BasicBlock *DefaultDest, ArrayRef< BasicBlock * > IndirectDests, ArrayRef< Value * > Args, InsertPosition Pos, Context &Ctx, const Twine &NameStr="")
LLVM_ABI Value * getIndirectDestLabel(unsigned Idx) const
LLVM_ABI BasicBlock * getSuccessor(unsigned Idx) const
LLVM_ABI void setIndirectDest(unsigned Idx, BasicBlock *BB)
LLVM_ABI BasicBlock * getDefaultDest() const
LLVM_ABI BasicBlock * getIndirectDest(unsigned Idx) const
LLVM_ABI SmallVector< BasicBlock *, 16 > getIndirectDests() const
LLVM_ABI void setDefaultDest(BasicBlock *BB)
static LLVM_ABI CallInst * create(FunctionType *FTy, Value *Func, ArrayRef< Value * > Args, InsertPosition Pos, Context &Ctx, const Twine &NameStr="")
LLVM_ABI Type * getSrcTy() const
static LLVM_ABI Value * create(Type *DestTy, Opcode Op, Value *Operand, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI Type * getDestTy() const
static LLVM_ABI bool classof(const Value *From)
For isa/dyn_cast.
static LLVM_ABI CatchPadInst * create(Value *ParentPad, ArrayRef< Value * > Args, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI CatchSwitchInst * getCatchSwitch() const
LLVM_ABI CatchPadInst * getCatchPad() const
LLVM_ABI BasicBlock * getSuccessor() const
LLVM_ABI void setSuccessor(BasicBlock *NewSucc)
LLVM_ABI void setCatchPad(CatchPadInst *CatchPad)
LLVM_ABI Value * getCatchSwitchParentPad() const
static LLVM_ABI CatchReturnInst * create(CatchPadInst *CatchPad, BasicBlock *BB, InsertPosition Pos, Context &Ctx)
LLVM_ABI void addHandler(BasicBlock *Dest)
LLVM_ABI void setParentPad(Value *ParentPad)
LLVM_ABI void setUnwindDest(BasicBlock *UnwindDest)
static LLVM_ABI CatchSwitchInst * create(Value *ParentPad, BasicBlock *UnwindBB, unsigned NumHandlers, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI BasicBlock * getUnwindDest() const
LLVM_ABI Value * getParentPad() const
static LLVM_ABI CleanupPadInst * create(Value *ParentPad, ArrayRef< Value * > Args, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI CleanupPadInst * getCleanupPad() const
LLVM_ABI void setUnwindDest(BasicBlock *NewDest)
static LLVM_ABI CleanupReturnInst * create(CleanupPadInst *CleanupPad, BasicBlock *UnwindBB, InsertPosition Pos, Context &Ctx)
LLVM_ABI BasicBlock * getUnwindDest() const
LLVM_ABI void setCleanupPad(CleanupPadInst *CleanupPad)
void dumpOS(raw_ostream &OS) const override
LLVM_DUMP_METHOD void dump() const
static LLVM_ABI Value * createWithCopiedFlags(Predicate Pred, Value *S1, Value *S2, const Instruction *FlagsSource, InsertPosition Pos, Context &Ctx, const Twine &Name="")
static LLVM_ABI Type * makeCmpResultType(Type *OpndType)
Create a result type for fcmp/icmp.
static LLVM_ABI Value * create(Predicate Pred, Value *S1, Value *S2, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI void setPredicate(Predicate P)
LLVM_ABI void swapOperands()
static LLVM_ABI ConstantTokenNone * get(Context &Ctx)
Return the ConstantTokenNone.
LLVM_ABI GetElementPtrInst * createGetElementPtrInst(llvm::GetElementPtrInst *I)
LLVM_ABI CallBrInst * createCallBrInst(llvm::CallBrInst *I)
LLVM_ABI sandboxir::Value * getValue(llvm::Value *V) const
LLVM_ABI ReturnInst * createReturnInst(llvm::ReturnInst *I)
LLVM_ABI void runEraseInstrCallbacks(Instruction *I)
LLVM_ABI VAArgInst * createVAArgInst(llvm::VAArgInst *SI)
LLVM_ABI CleanupReturnInst * createCleanupReturnInst(llvm::CleanupReturnInst *I)
LLVM_ABI AllocaInst * createAllocaInst(llvm::AllocaInst *I)
Type * getType(llvm::Type *LLVMTy)
LLVM_ABI AtomicRMWInst * createAtomicRMWInst(llvm::AtomicRMWInst *I)
LLVM_ABI InsertValueInst * createInsertValueInst(llvm::InsertValueInst *IVI)
LLVM_ABI FCmpInst * createFCmpInst(llvm::FCmpInst *I)
LLVM_ABI ExtractElementInst * createExtractElementInst(llvm::ExtractElementInst *EEI)
LLVM_ABI Constant * getOrCreateConstant(llvm::Constant *LLVMC)
Get or create a sandboxir::Constant from an existing LLVM IR LLVMC.
LLVM_ABI BranchInst * createBranchInst(llvm::BranchInst *I)
LLVM_ABI ShuffleVectorInst * createShuffleVectorInst(llvm::ShuffleVectorInst *SVI)
LLVM_ABI BinaryOperator * createBinaryOperator(llvm::BinaryOperator *I)
LLVM_ABI LoadInst * createLoadInst(llvm::LoadInst *LI)
LLVM_ABI FreezeInst * createFreezeInst(llvm::FreezeInst *SI)
LLVM_ABI PHINode * createPHINode(llvm::PHINode *I)
LLVM_ABI CatchPadInst * createCatchPadInst(llvm::CatchPadInst *I)
LLVM_ABI ICmpInst * createICmpInst(llvm::ICmpInst *I)
LLVM_ABI std::unique_ptr< Value > detach(Value *V)
Remove SBV from all SandboxIR maps and stop owning it.
LLVM_ABI ExtractValueInst * createExtractValueInst(llvm::ExtractValueInst *IVI)
LLVM_ABI CastInst * createCastInst(llvm::CastInst *I)
LLVM_ABI StoreInst * createStoreInst(llvm::StoreInst *SI)
LLVM_ABI CatchReturnInst * createCatchReturnInst(llvm::CatchReturnInst *I)
LLVM_ABI CatchSwitchInst * createCatchSwitchInst(llvm::CatchSwitchInst *I)
LLVM_ABI CleanupPadInst * createCleanupPadInst(llvm::CleanupPadInst *I)
LLVM_ABI FenceInst * createFenceInst(llvm::FenceInst *SI)
LLVM_ABI CallInst * createCallInst(llvm::CallInst *I)
LLVM_ABI SwitchInst * createSwitchInst(llvm::SwitchInst *I)
LLVM_ABI void runMoveInstrCallbacks(Instruction *I, const BBIterator &Where)
LLVM_ABI UnaryOperator * createUnaryOperator(llvm::UnaryOperator *I)
LLVM_ABI InvokeInst * createInvokeInst(llvm::InvokeInst *I)
LLVM_ABI LandingPadInst * createLandingPadInst(llvm::LandingPadInst *I)
LLVM_ABI InsertElementInst * createInsertElementInst(llvm::InsertElementInst *IEI)
LLVM_ABI SelectInst * createSelectInst(llvm::SelectInst *SI)
LLVM_ABI ResumeInst * createResumeInst(llvm::ResumeInst *I)
LLVM_ABI UnreachableInst * createUnreachableInst(llvm::UnreachableInst *UI)
LLVM_ABI AtomicCmpXchgInst * createAtomicCmpXchgInst(llvm::AtomicCmpXchgInst *I)
Value * getVectorOperand()
static LLVM_ABI Value * create(Value *Vec, Value *Idx, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI VectorType * getVectorOperandType() const
static LLVM_ABI Value * create(Value *Agg, ArrayRef< unsigned > Idxs, InsertPosition Pos, Context &Ctx, const Twine &Name="")
static LLVM_ABI Type * getIndexedType(Type *Agg, ArrayRef< unsigned > Idxs)
Returns the type of the element that would be extracted with an extractvalue instruction with the spe...
LLVM_ABI void swapOperands()
static LLVM_ABI FenceInst * create(AtomicOrdering Ordering, InsertPosition Pos, Context &Ctx, SyncScope::ID SSID=SyncScope::System)
LLVM_ABI void setOrdering(AtomicOrdering Ordering)
Sets the ordering constraint of this fence instruction.
SyncScope::ID getSyncScopeID() const
Returns the synchronization scope ID of this fence instruction.
LLVM_ABI void setSyncScopeID(SyncScope::ID SSID)
Sets the synchronization scope ID of this fence instruction.
static LLVM_ABI FreezeInst * create(Value *V, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI Value * getArgOperand(unsigned Idx) const
Return the Idx-th funcletpad argument.
LLVM_ABI Value * getParentPad() const
Return the outer EH-pad this funclet is nested within.
LLVM_ABI void setParentPad(Value *ParentPad)
LLVM_ABI void setArgOperand(unsigned Idx, Value *V)
Set the Idx-th funcletpad argument.
Similar to GenericSetter but the setters/getters have an index as their first argument.
This class can be used for tracking most instruction setters.
LLVM_ABI Type * getResultElementType() const
LLVM_ABI Type * getPointerOperandType() const
LLVM_ABI Type * getSourceElementType() const
LLVM_ABI Value * getPointerOperand() const
static LLVM_ABI Value * create(Type *Ty, Value *Ptr, ArrayRef< Value * > IdxList, InsertPosition Pos, Context &Ctx, const Twine &NameStr="")
LLVM_ABI void swapOperands()
static LLVM_ABI Value * create(Value *Vec, Value *NewElt, Value *Idx, InsertPosition Pos, Context &Ctx, const Twine &Name="")
static LLVM_ABI Value * create(Value *Agg, Value *Val, ArrayRef< unsigned > Idxs, InsertPosition Pos, Context &Ctx, const Twine &Name="")
A sandboxir::User with operands, opcode and linked with previous/next instructions in an instruction ...
bool hasNoUnsignedWrap() const
Determine whether the no signed wrap flag is set.
static IRBuilder & setInsertPos(InsertPosition Pos)
Helper function for create().
LLVM_ABI void setFastMathFlags(FastMathFlags FMF)
Convenience function for setting multiple fast-math flags on this instruction, which must be an opera...
bool hasAllowReassoc() const
Determine whether the allow-reassociation flag is set.
LLVM_ABI void setHasAllowReassoc(bool B)
Set or clear the reassociation flag on this instruction, which must be an operator which supports thi...
bool hasNoSignedZeros() const
Determine whether the no-signed-zeros flag is set.
const char * getOpcodeName() const
LLVM_ABI void setHasNoSignedWrap(bool B=true)
Set or clear the nsw flag on this instruction, which must be an operator which supports this flag.
LLVM_ABI void insertAfter(Instruction *AfterI)
Insert this detached instruction after AfterI.
LLVM_ABI void moveBefore(BasicBlock &BB, const BBIterator &WhereIt)
Move this instruction to WhereIt.
bool hasAllowContract() const
Determine whether the allow-contract flag is set.
LLVM_ABI void setIsExact(bool B=true)
Set or clear the exact flag on this instruction, which must be an operator which supports this flag.
bool hasApproxFunc() const
Determine whether the approximate-math-functions flag is set.
bool hasNoSignedWrap() const
Determine whether the no signed wrap flag is set.
LLVM_ABI void setHasNoUnsignedWrap(bool B=true)
Set or clear the nuw flag on this instruction, which must be an operator which supports this flag.
void dumpOS(raw_ostream &OS) const override
LLVM_ABI BBIterator getIterator() const
\Returns a BasicBlock::iterator for this Instruction.
LLVM_ABI void setFast(bool B)
Set or clear all fast-math-flags on this instruction, which must be an operator which supports this f...
LLVM_ABI void setHasApproxFunc(bool B)
Set or clear the approximate-math-functions flag on this instruction, which must be an operator which...
LLVM_ABI void setHasNoNaNs(bool B)
Set or clear the no-nans flag on this instruction, which must be an operator which supports this flag...
LLVM_ABI void copyFastMathFlags(FastMathFlags FMF)
Convenience function for transferring all fast-math flag values to this instruction,...
LLVM_ABI void setHasNoSignedZeros(bool B)
Set or clear the no-signed-zeros flag on this instruction, which must be an operator which supports t...
LLVM_ABI void insertInto(BasicBlock *BB, const BBIterator &WhereIt)
Insert this detached instruction into BB at WhereIt.
LLVM_ABI llvm::Instruction * getTopmostLLVMInstruction() const
A SandboxIR Instruction may map to multiple LLVM IR Instruction.
LLVM_ABI void setHasAllowContract(bool B)
Set or clear the allow-contract flag on this instruction, which must be an operator which supports th...
virtual SmallVector< llvm::Instruction *, 1 > getLLVMInstrs() const =0
\Returns the LLVM IR Instructions that this SandboxIR maps to in program order.
LLVM_ABI Type * getAccessType() const
FastMathFlags getFastMathFlags() const
Convenience function for getting all the fast-math flags, which must be an operator which supports th...
LLVM_ABI Instruction * getNextNode() const
\Returns the next sandboxir::Instruction in the block, or nullptr if at the end of the block.
LLVM_ABI void removeFromParent()
Detach this from its parent BasicBlock without deleting it.
LLVM_ABI Instruction * getPrevNode() const
\Returns the previous sandboxir::Instruction in the block, or nullptr if at the beginning of the bloc...
bool hasAllowReciprocal() const
Determine whether the allow-reciprocal flag is set.
LLVM_ABI void insertBefore(Instruction *BeforeI)
Insert this detached instruction before BeforeI.
LLVM_ABI void eraseFromParent()
Detach this Value from its parent and delete it.
LLVM_ABI void setHasAllowReciprocal(bool B)
Set or clear the allow-reciprocal flag on this instruction, which must be an operator which supports ...
LLVM_ABI void setHasNoInfs(bool B)
Set or clear the no-infs flag on this instruction, which must be an operator which supports this flag...
LLVM_ABI BasicBlock * getParent() const
\Returns the BasicBlock containing this Instruction, or null if it is detached.
static LLVM_ABI bool classof(const sandboxir::Value *From)
For isa/dyn_cast.
LLVM_ABI BasicBlock * getUnwindDest() const
static LLVM_ABI InvokeInst * create(FunctionType *FTy, Value *Func, BasicBlock *IfNormal, BasicBlock *IfException, ArrayRef< Value * > Args, InsertPosition Pos, Context &Ctx, const Twine &NameStr="")
LLVM_ABI void setNormalDest(BasicBlock *BB)
LLVM_ABI void setUnwindDest(BasicBlock *BB)
LLVM_ABI BasicBlock * getSuccessor(unsigned SuccIdx) const
LLVM_ABI BasicBlock * getNormalDest() const
LLVM_ABI LandingPadInst * getLandingPadInst() const
bool isCleanup() const
Return 'true' if this landingpad instruction is a cleanup.
LLVM_ABI void setCleanup(bool V)
Indicate that this landingpad instruction is a cleanup.
LLVM_ABI Constant * getClause(unsigned Idx) const
Get the value of the clause at index Idx.
static LLVM_ABI LandingPadInst * create(Type *RetTy, unsigned NumReservedClauses, InsertPosition Pos, Context &Ctx, const Twine &Name="")
static LLVM_ABI LoadInst * create(Type *Ty, Value *Ptr, MaybeAlign Align, InsertPosition Pos, bool IsVolatile, Context &Ctx, const Twine &Name="")
LLVM_ABI void setVolatile(bool V)
Specify whether this is a volatile load or not.
LLVM_ABI Value * getPointerOperand() const
static LLVM_ABI bool classof(const Value *From)
For isa/dyn_cast.
LLVM_ABI Value * hasConstantValue() const
LLVM_ABI int getBasicBlockIndex(const BasicBlock *BB) const
unsigned getNumIncomingValues() const
LLVM_ABI Value * getIncomingValue(unsigned Idx) const
LLVM_ABI void setIncomingBlock(unsigned Idx, BasicBlock *BB)
LLVM_ABI void removeIncomingValueIf(function_ref< bool(unsigned)> Predicate)
static LLVM_ABI bool classof(const Value *From)
For isa/dyn_cast.
static LLVM_ABI PHINode * create(Type *Ty, unsigned NumReservedValues, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI Value * removeIncomingValue(unsigned Idx)
LLVM_ABI void setIncomingValue(unsigned Idx, Value *V)
LLVM_ABI BasicBlock * getIncomingBlock(unsigned Idx) const
LLVM_ABI void replaceIncomingBlockWith(const BasicBlock *Old, BasicBlock *New)
LLVM_ABI Value * getIncomingValueForBlock(const BasicBlock *BB) const
LLVM_ABI void addIncoming(Value *V, BasicBlock *BB)
LLVM_ABI void setIsDisjoint(bool B)
LLVM_ABI void setNonNeg(bool B)
static LLVM_ABI ResumeInst * create(Value *Exn, InsertPosition Pos, Context &Ctx)
LLVM_ABI Value * getValue() const
static LLVM_ABI ReturnInst * create(Value *RetVal, InsertPosition Pos, Context &Ctx)
LLVM_ABI Value * getReturnValue() const
\Returns null if there is no return value.
static LLVM_ABI bool classof(const Value *From)
For isa/dyn_cast.
LLVM_ABI void swapValues()
static LLVM_ABI Value * create(Value *Cond, Value *True, Value *False, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI VectorType * getType() const
Overload to return most specific vector type.
LLVM_ABI Constant * getShuffleMaskForBitcode() const
Return the mask for this instruction, for use in bitcode.
LLVM_ABI void commute()
Swap the operands and adjust the mask to preserve the semantics of the instruction.
static LLVM_ABI Value * create(Value *V1, Value *V2, Value *Mask, InsertPosition Pos, Context &Ctx, const Twine &Name="")
static LLVM_ABI Constant * convertShuffleMaskForBitcode(ArrayRef< int > Mask, Type *ResultTy)
LLVM_ABI void setShuffleMask(ArrayRef< int > Mask)
LLVM_ABI void setVolatile(bool V)
Specify whether this is a volatile store or not.
static LLVM_ABI bool classof(const Value *From)
For isa/dyn_cast.
static LLVM_ABI StoreInst * create(Value *V, Value *Ptr, MaybeAlign Align, InsertPosition Pos, bool IsVolatile, Context &Ctx)
LLVM_ABI Value * getPointerOperand() const
LLVM_ABI Value * getValueOperand() const
static LLVM_ABI SwitchInst * create(Value *V, BasicBlock *Dest, unsigned NumCases, InsertPosition Pos, Context &Ctx, const Twine &Name="")
LLVM_ABI void addCase(ConstantInt *OnVal, BasicBlock *Dest)
LLVM_ABI BasicBlock * getSuccessor(unsigned Idx) const
CaseIt case_begin()
Returns a read/write iterator that points to the first case in the SwitchInst.
LLVM_ABI void setDefaultDest(BasicBlock *DefaultCase)
llvm::SwitchInst::CaseIteratorImpl< CaseHandle > CaseIt
LLVM_ABI BasicBlock * getDefaultDest() const
LLVM_ABI Value * getCondition() const
LLVM_ABI void setSuccessor(unsigned Idx, BasicBlock *NewSucc)
LLVM_ABI void setCondition(Value *V)
LLVM_ABI ConstantInt * findCaseDest(BasicBlock *BB)
LLVM_ABI CaseIt removeCase(CaseIt It)
This method removes the specified case and its successor from the switch instruction.
The tracker collects all the change objects and implements the main API for saving / reverting / acce...
void track(std::unique_ptr< IRChangeBase > &&Change)
Record Change and take ownership.
bool emplaceIfTracking(ArgsT... Args)
A convenience wrapper for track() that constructs and tracks the Change object if tracking is enabled...
Just like llvm::Type these are immutable, unique, never get freed and can only be created via static ...
static LLVM_ABI Type * getInt1Ty(Context &Ctx)
Context & getContext() const
static LLVM_ABI Value * createWithCopiedFlags(Instruction::Opcode Op, Value *OpV, Value *CopyFrom, InsertPosition Pos, Context &Ctx, const Twine &Name="")
static LLVM_ABI Value * create(Instruction::Opcode Op, Value *OpV, InsertPosition Pos, Context &Ctx, const Twine &Name="")
static LLVM_ABI UnreachableInst * create(InsertPosition Pos, Context &Ctx)
static LLVM_ABI bool classof(const Value *From)
Tracks swapping a Use with another Use.
Represents a Def-use/Use-def edge in SandboxIR.
virtual void setOperand(unsigned OperandIdx, Value *Operand)
virtual unsigned getNumOperands() const
Use getOperandUse(unsigned OpIdx) const
\Returns the operand edge for OpIdx.
LLVM_ABI Value * getPointerOperand()
static LLVM_ABI VAArgInst * create(Value *List, Type *Ty, InsertPosition Pos, Context &Ctx, const Twine &Name="")
A SandboxIR Value has users. This is the base class.
llvm::Value * Val
The LLVM Value that corresponds to this SandboxIR Value.
void dumpCommonSuffix(raw_ostream &OS) const
Context & Ctx
All values point to the context.
LLVM_ABI Type * getType() const
iterator_range< user_iterator > users()
void dumpCommonPrefix(raw_ostream &OS) const
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
@ C
The default llvm calling convention, compatible with C.
static llvm::Instruction::CastOps getLLVMCastOp(Instruction::Opcode Opc)
static llvm::Instruction::UnaryOps getLLVMUnaryOp(Instruction::Opcode Opc)
\Returns the LLVM opcode that corresponds to Opc.
static llvm::Instruction::BinaryOps getLLVMBinaryOp(Instruction::Opcode Opc)
\Returns the LLVM opcode that corresponds to Opc.
auto reverse(ContainerTy &&C)
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
bool is_sorted(R &&Range, Compare C)
Wrapper function around std::is_sorted to check if elements in a range R are sorted with respect to a...
AtomicOrdering
Atomic ordering for LLVM's memory model.
This struct is a compact representation of a valid (non-zero power of two) alignment.
This struct is a compact representation of a valid (power of two) or undefined (0) alignment.