13#ifndef LLVM_LIB_CODEGEN_SELECTIONDAG_SELECTIONDAGBUILDER_H
14#define LLVM_LIB_CODEGEN_SELECTIONDAG_SELECTIONDAGBUILDER_H
107 class DanglingDebugInfo {
108 unsigned SDNodeOrder = 0;
114 DanglingDebugInfo() =
default;
117 : SDNodeOrder(SDNO), Variable(Var),
Expression(Expr),
123 unsigned getSDNodeOrder()
const {
return SDNodeOrder; }
131 const DanglingDebugInfo &
DDI;
134 OS <<
"DDI(var=" << *
P.DDI.getVariable();
136 OS <<
", val=" << *
P.V;
138 OS <<
", val=nullptr";
140 OS <<
", expr=" << *
P.DDI.getExpression()
141 <<
", order=" <<
P.DDI.getSDNodeOrder()
142 <<
", loc=" <<
P.DDI.getDebugLoc() <<
")";
151 DanglingDebugInfo::Print printDDI(
const Value *V,
152 const DanglingDebugInfo &DDI) {
153 return DanglingDebugInfo::Print(V, DDI);
157 typedef std::vector<DanglingDebugInfo> DanglingDebugInfoVector;
161 MapVector<const Value*, DanglingDebugInfoVector> DanglingDebugInfoMap;
165 bool AssignmentTrackingEnabled =
false;
200 unsigned SDNodeOrder;
239 SDB->addSuccessorWithProb(Src, Dst, Prob);
248 std::unique_ptr<SDAGSwitchLowering>
SL;
315 return SDLoc(CurInst, SDNodeOrder);
319 return CurInst ? CurInst->getDebugLoc() :
DebugLoc();
337 bool IsVariadic,
DebugLoc DL,
unsigned Order);
377 assert(!
N.getNode() &&
"Already set a value for this node!");
383 assert(!
N.getNode() &&
"Already set a value for this node!");
408 bool IsMustTailCall,
const BasicBlock *EHPadBB =
nullptr,
422 unsigned NumArgs,
SDValue Callee,
426 std::pair<SDValue, SDValue>
494 bool VarArgDisallowed,
495 bool ForceVoidReturnTy);
502 return DAG.getTargetLoweringInfo().getFrameIndexTy(
DAG.getDataLayout());
520 void addSuccessorWithProb(
543 void visitCallBrLandingPad(
const CallInst &
I);
546 void visitUnary(
const User &
I,
unsigned Opcode);
547 void visitFNeg(
const User &
I) { visitUnary(
I, ISD::FNEG); }
549 void visitBinary(
const User &
I,
unsigned Opcode);
550 void visitShift(
const User &
I,
unsigned Opcode);
551 void visitAdd(
const User &
I) { visitBinary(
I,
ISD::ADD); }
552 void visitFAdd(
const User &
I) { visitBinary(
I,
ISD::FADD); }
553 void visitSub(
const User &
I) { visitBinary(
I,
ISD::SUB); }
554 void visitFSub(
const User &
I) { visitBinary(
I,
ISD::FSUB); }
555 void visitMul(
const User &
I) { visitBinary(
I,
ISD::MUL); }
556 void visitFMul(
const User &
I) { visitBinary(
I,
ISD::FMUL); }
557 void visitURem(
const User &
I) { visitBinary(
I,
ISD::UREM); }
558 void visitSRem(
const User &
I) { visitBinary(
I,
ISD::SREM); }
559 void visitFRem(
const User &
I) { visitBinary(
I,
ISD::FREM); }
560 void visitUDiv(
const User &
I) { visitBinary(
I,
ISD::UDIV); }
561 void visitSDiv(
const User &
I);
562 void visitFDiv(
const User &
I) { visitBinary(
I,
ISD::FDIV); }
563 void visitAnd (
const User &
I) { visitBinary(
I,
ISD::AND); }
564 void visitOr (
const User &
I) { visitBinary(
I,
ISD::OR); }
565 void visitXor (
const User &
I) { visitBinary(
I,
ISD::XOR); }
566 void visitShl (
const User &
I) { visitShift(
I,
ISD::SHL); }
567 void visitLShr(
const User &
I) { visitShift(
I,
ISD::SRL); }
568 void visitAShr(
const User &
I) { visitShift(
I,
ISD::SRA); }
569 void visitICmp(
const ICmpInst &
I);
570 void visitFCmp(
const FCmpInst &
I);
572 void visitTrunc(
const User &
I);
573 void visitZExt(
const User &
I);
574 void visitSExt(
const User &
I);
575 void visitFPTrunc(
const User &
I);
576 void visitFPExt(
const User &
I);
577 void visitFPToUI(
const User &
I);
578 void visitFPToSI(
const User &
I);
579 void visitUIToFP(
const User &
I);
580 void visitSIToFP(
const User &
I);
581 void visitPtrToAddr(
const User &
I);
582 void visitPtrToInt(
const User &
I);
583 void visitIntToPtr(
const User &
I);
584 void visitBitCast(
const User &
I);
585 void visitAddrSpaceCast(
const User &
I);
587 void visitExtractElement(
const User &
I);
588 void visitInsertElement(
const User &
I);
589 void visitShuffleVector(
const User &
I);
591 void visitExtractValue(
const ExtractValueInst &
I);
592 void visitInsertValue(
const InsertValueInst &
I);
593 void visitLandingPad(
const LandingPadInst &LP);
595 void visitGetElementPtr(
const User &
I);
596 void visitSelect(
const User &
I);
598 void visitAlloca(
const AllocaInst &
I);
599 void visitLoad(
const LoadInst &
I);
600 void visitStore(
const StoreInst &
I);
601 void visitMaskedLoad(
const CallInst &
I,
bool IsExpanding =
false);
602 void visitMaskedStore(
const CallInst &
I,
bool IsCompressing =
false);
603 void visitMaskedGather(
const CallInst &
I);
604 void visitMaskedScatter(
const CallInst &
I);
605 void visitAtomicCmpXchg(
const AtomicCmpXchgInst &
I);
606 void visitAtomicRMW(
const AtomicRMWInst &
I);
607 void visitFence(
const FenceInst &
I);
608 void visitPHI(
const PHINode &
I);
609 void visitCall(
const CallInst &
I);
610 bool visitMemCmpBCmpCall(
const CallInst &
I);
611 bool visitMemPCpyCall(
const CallInst &
I);
612 bool visitMemChrCall(
const CallInst &
I);
613 bool visitStrCpyCall(
const CallInst &
I,
bool isStpcpy);
614 bool visitStrCmpCall(
const CallInst &
I);
615 bool visitStrLenCall(
const CallInst &
I);
616 bool visitStrNLenCall(
const CallInst &
I);
617 bool visitUnaryFloatCall(
const CallInst &
I,
unsigned Opcode);
618 bool visitBinaryFloatCall(
const CallInst &
I,
unsigned Opcode);
619 void visitAtomicLoad(
const LoadInst &
I);
620 void visitAtomicStore(
const StoreInst &
I);
621 void visitLoadFromSwiftError(
const LoadInst &
I);
622 void visitStoreToSwiftError(
const StoreInst &
I);
623 void visitFreeze(
const FreezeInst &
I);
625 void visitInlineAsm(
const CallBase &
Call,
626 const BasicBlock *EHPadBB =
nullptr);
629 DILocalVariable *Variable, DIExpression *Expr,
631 void visitIntrinsicCall(
const CallInst &
I,
unsigned Intrinsic);
632 void visitTargetIntrinsic(
const CallInst &
I,
unsigned Intrinsic);
633 void visitConstrainedFPIntrinsic(
const ConstrainedFPIntrinsic &FPI);
634 void visitConvergenceControl(
const CallInst &
I,
unsigned Intrinsic);
635 void visitVectorHistogram(
const CallInst &
I,
unsigned IntrinsicID);
636 void visitVectorExtractLastActive(
const CallInst &
I,
unsigned Intrinsic);
637 void visitVPLoad(
const VPIntrinsic &VPIntrin, EVT VT,
638 const SmallVectorImpl<SDValue> &OpValues);
639 void visitVPLoadFF(
const VPIntrinsic &VPIntrin, EVT VT, EVT EVLVT,
640 const SmallVectorImpl<SDValue> &OpValues);
641 void visitVPStore(
const VPIntrinsic &VPIntrin,
642 const SmallVectorImpl<SDValue> &OpValues);
643 void visitVPGather(
const VPIntrinsic &VPIntrin, EVT VT,
644 const SmallVectorImpl<SDValue> &OpValues);
645 void visitVPScatter(
const VPIntrinsic &VPIntrin,
646 const SmallVectorImpl<SDValue> &OpValues);
647 void visitVPStridedLoad(
const VPIntrinsic &VPIntrin, EVT VT,
648 const SmallVectorImpl<SDValue> &OpValues);
649 void visitVPStridedStore(
const VPIntrinsic &VPIntrin,
650 const SmallVectorImpl<SDValue> &OpValues);
651 void visitVPCmp(
const VPCmpIntrinsic &VPIntrin);
652 void visitVectorPredicationIntrinsic(
const VPIntrinsic &VPIntrin);
654 void visitVAStart(
const CallInst &
I);
655 void visitVAArg(
const VAArgInst &
I);
656 void visitVAEnd(
const CallInst &
I);
657 void visitVACopy(
const CallInst &
I);
658 void visitStackmap(
const CallInst &
I);
659 void visitPatchpoint(
const CallBase &CB,
const BasicBlock *EHPadBB =
nullptr);
662 void visitGCRelocate(
const GCRelocateInst &Relocate);
663 void visitGCResult(
const GCResultInst &
I);
665 void visitVectorReduce(
const CallInst &
I,
unsigned Intrinsic);
666 void visitVectorReverse(
const CallInst &
I);
667 void visitVectorSplice(
const CallInst &
I);
668 void visitVectorInterleave(
const CallInst &
I,
unsigned Factor);
669 void visitVectorDeinterleave(
const CallInst &
I,
unsigned Factor);
670 void visitStepVector(
const CallInst &
I);
672 void visitUserOp1(
const Instruction &
I) {
673 llvm_unreachable(
"UserOp1 should not exist at instruction selection time!");
675 void visitUserOp2(
const Instruction &
I) {
676 llvm_unreachable(
"UserOp2 should not exist at instruction selection time!");
679 void processIntegerCallValue(
const Instruction &
I,
682 void HandlePHINodesInSuccessorBlocks(
const BasicBlock *LLVMBB);
684 void emitInlineAsmError(
const CallBase &
Call,
const Twine &Message);
689 enum class FuncArgumentDbgValueKind {
697 bool EmitFuncArgumentDbgValue(
const Value *V, DILocalVariable *Variable,
698 DIExpression *Expr, DILocation *
DL,
699 FuncArgumentDbgValueKind Kind,
703 MachineBasicBlock *NextBlock(MachineBasicBlock *
MBB);
707 void updateDAGForMaybeTailCall(
SDValue MaybeTC);
710 SDDbgValue *getDbgValue(
SDValue N, DILocalVariable *Variable,
711 DIExpression *Expr,
const DebugLoc &dl,
712 unsigned DbgSDNodeOrder);
715 MCSymbol *&BeginLabel);
717 const BasicBlock *EHPadBB, MCSymbol *BeginLabel);
758 std::optional<CallingConv::ID> CC = std::nullopt);
761 std::optional<CallingConv::ID> CC);
769 Regs.append(
RHS.Regs.begin(),
RHS.Regs.end());
779 const Value *V =
nullptr)
const;
794 unsigned MatchingIdx,
const SDLoc &dl,
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
This file defines the DenseMap class.
const AbstractManglingParser< Derived, Alloc >::OperatorInfo AbstractManglingParser< Derived, Alloc >::Ops[]
static DebugLoc getDebugLoc(MachineBasicBlock::instr_iterator FirstMI, MachineBasicBlock::instr_iterator LastMI)
Return the first found DebugLoc that has a DILocation, given a range of instructions.
This file implements a map that provides insertion order iteration.
uint64_t IntrinsicInst * II
const SmallVectorImpl< MachineOperand > MachineBasicBlock * TBB
const SmallVectorImpl< MachineOperand > & Cond
This file defines the SmallVector class.
This file describes how to lower LLVM code to machine code.
an instruction to allocate memory on the stack
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
A cache of @llvm.assume calls within a function.
An instruction that atomically checks whether a specified value is in a memory location,...
an instruction that atomically reads a memory location, combines it with another value,...
This class holds the attributes for a particular argument, parameter, function, or return value.
LLVM Basic Block Representation.
This class is a wrapper over an AAResults, and it is intended to be used only when there are no IR ch...
Conditional or Unconditional Branch instruction.
static BranchProbability getUnknown()
Base class for all callable instructions (InvokeInst and CallInst) Holds everything related to callin...
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.
This is an important base class in LLVM.
This is the common base class for constrained floating point intrinsics.
A parsed version of the target data layout string in and methods for querying it.
Class representing an expression and its matching format.
An instruction for ordering other memory operations.
FunctionLoweringInfo - This contains information that is global to a function that is used when lower...
Garbage collection metadata for a single function.
Represents calls to the gc.relocate intrinsic.
Represents calls to the gc.result intrinsic.
Represents a gc.statepoint intrinsic call.
Indirect Branch Instruction.
This is an important class for using LLVM in a threaded context.
The landingpad instruction holds all of the information necessary to generate correct exception handl...
An instruction for reading from memory.
Wrapper class representing virtual and physical registers.
Resume the propagation of an exception.
Return a value (possibly void), from a function.
Holds the information from a dbg_value node through SDISel.
Wrapper class for IR location info (IR ordering and DebugLoc) to be passed into SDNode creation funct...
Unlike LLVM values, Selection DAG nodes may return multiple values as the result of a computation.
SDAGSwitchLowering(SelectionDAGBuilder *sdb, FunctionLoweringInfo &funcinfo)
void addSuccessorWithProb(MachineBasicBlock *Src, MachineBasicBlock *Dst, BranchProbability Prob=BranchProbability::getUnknown()) override
SDValue getValue(const Value *V)
getValue - Return an SDValue for the given Value.
DenseMap< const Constant *, Register > ConstantsOut
void addDanglingDebugInfo(SmallVectorImpl< Value * > &Values, DILocalVariable *Var, DIExpression *Expr, bool IsVariadic, DebugLoc DL, unsigned Order)
Register a dbg_value which relies on a Value which we have not yet seen.
void visitDbgInfo(const Instruction &I)
void clearDanglingDebugInfo()
Clear the dangling debug information map.
StackProtectorDescriptor SPDescriptor
A StackProtectorDescriptor structure used to communicate stack protector information in between Selec...
void LowerCallTo(const CallBase &CB, SDValue Callee, bool IsTailCall, bool IsMustTailCall, const BasicBlock *EHPadBB=nullptr, const TargetLowering::PtrAuthInfo *PAI=nullptr)
void clear()
Clear out the current SelectionDAG and the associated state and prepare this SelectionDAGBuilder obje...
MVT getFrameIndexTy()
Returns the type of FrameIndex and TargetFrameIndex nodes.
void visitBitTestHeader(SwitchCG::BitTestBlock &B, MachineBasicBlock *SwitchBB)
visitBitTestHeader - This function emits necessary code to produce value suitable for "bit tests"
void LowerStatepoint(const GCStatepointInst &I, const BasicBlock *EHPadBB=nullptr)
std::unique_ptr< SDAGSwitchLowering > SL
SDValue lowerRangeToAssertZExt(SelectionDAG &DAG, const Instruction &I, SDValue Op)
bool HasTailCall
This is set to true if a call in the current block has been translated as a tail call.
bool ShouldEmitAsBranches(const std::vector< SwitchCG::CaseBlock > &Cases)
If the set of cases should be emitted as a series of branches, return true.
void EmitBranchForMergedCondition(const Value *Cond, MachineBasicBlock *TBB, MachineBasicBlock *FBB, MachineBasicBlock *CurBB, MachineBasicBlock *SwitchBB, BranchProbability TProb, BranchProbability FProb, bool InvertCond)
EmitBranchForMergedCondition - Helper method for FindMergedConditions.
void LowerDeoptimizeCall(const CallInst *CI)
void LowerCallSiteWithDeoptBundle(const CallBase *Call, SDValue Callee, const BasicBlock *EHPadBB)
SwiftErrorValueTracking & SwiftError
Information about the swifterror values used throughout the function.
SDValue getNonRegisterValue(const Value *V)
getNonRegisterValue - Return an SDValue for the given Value, but don't look in FuncInfo....
DenseMap< MachineBasicBlock *, SmallVector< unsigned, 4 > > LPadToCallSiteMap
Map a landing pad to the call site indexes.
void LowerCallSiteWithDeoptBundleImpl(const CallBase *Call, SDValue Callee, const BasicBlock *EHPadBB, bool VarArgDisallowed, bool ForceVoidReturnTy)
void handleDebugDeclare(Value *Address, DILocalVariable *Variable, DIExpression *Expression, DebugLoc DL)
void setUnusedArgValue(const Value *V, SDValue NewN)
bool shouldKeepJumpConditionsTogether(const FunctionLoweringInfo &FuncInfo, const BranchInst &I, Instruction::BinaryOps Opc, const Value *Lhs, const Value *Rhs, TargetLoweringBase::CondMergingParams Params) const
StatepointLoweringState StatepointLowering
State used while lowering a statepoint sequence (gc_statepoint, gc_relocate, and gc_result).
void visitBitTestCase(SwitchCG::BitTestBlock &BB, MachineBasicBlock *NextMBB, BranchProbability BranchProbToNext, Register Reg, SwitchCG::BitTestCase &B, MachineBasicBlock *SwitchBB)
visitBitTestCase - this function produces one "bit test"
bool canTailCall(const CallBase &CB) const
SelectionDAGBuilder(SelectionDAG &dag, FunctionLoweringInfo &funcinfo, SwiftErrorValueTracking &swifterror, CodeGenOptLevel ol)
void populateCallLoweringInfo(TargetLowering::CallLoweringInfo &CLI, const CallBase *Call, unsigned ArgIdx, unsigned NumArgs, SDValue Callee, Type *ReturnTy, AttributeSet RetAttrs, bool IsPatchPoint)
Populate a CallLowerinInfo (into CLI) based on the properties of the call being lowered.
void CopyValueToVirtualRegister(const Value *V, Register Reg, ISD::NodeType ExtendType=ISD::ANY_EXTEND)
void salvageUnresolvedDbgValue(const Value *V, DanglingDebugInfo &DDI)
For the given dangling debuginfo record, perform last-ditch efforts to resolve the debuginfo to somet...
SmallVector< SDValue, 8 > PendingLoads
Loads are not emitted to the program immediately.
GCFunctionInfo * GFI
Garbage collection metadata for the function.
SDValue getRoot()
Similar to getMemoryRoot, but also flushes PendingConstrainedFP(Strict) items.
void ExportFromCurrentBlock(const Value *V)
ExportFromCurrentBlock - If this condition isn't known to be exported from the current basic block,...
void init(GCFunctionInfo *gfi, BatchAAResults *BatchAA, AssumptionCache *AC, const TargetLibraryInfo *li)
DebugLoc getCurDebugLoc() const
void resolveOrClearDbgInfo()
Evict any dangling debug information, attempting to salvage it first.
std::pair< SDValue, SDValue > lowerInvokable(TargetLowering::CallLoweringInfo &CLI, const BasicBlock *EHPadBB=nullptr)
SDValue getMemoryRoot()
Return the current virtual root of the Selection DAG, flushing any PendingLoad items.
void resolveDanglingDebugInfo(const Value *V, SDValue Val)
If we saw an earlier dbg_value referring to V, generate the debug data structures now that we've seen...
SDLoc getCurSDLoc() const
void visit(const Instruction &I)
void dropDanglingDebugInfo(const DILocalVariable *Variable, const DIExpression *Expr)
If we have dangling debug info that describes Variable, or an overlapping part of variable considerin...
SDValue getCopyFromRegs(const Value *V, Type *Ty)
If there was virtual register allocated for the value V emit CopyFromReg of the specified type Ty.
void CopyToExportRegsIfNeeded(const Value *V)
CopyToExportRegsIfNeeded - If the given value has virtual registers created for it,...
void handleKillDebugValue(DILocalVariable *Var, DIExpression *Expr, DebugLoc DbgLoc, unsigned Order)
Create a record for a kill location debug intrinsic.
void visitJumpTable(SwitchCG::JumpTable &JT)
visitJumpTable - Emit JumpTable node in the current MBB
void visitJumpTableHeader(SwitchCG::JumpTable &JT, SwitchCG::JumpTableHeader &JTH, MachineBasicBlock *SwitchBB)
visitJumpTableHeader - This function emits necessary code to produce index in the JumpTable from swit...
void LowerCallSiteWithPtrAuthBundle(const CallBase &CB, const BasicBlock *EHPadBB)
static const unsigned LowestSDNodeOrder
Lowest valid SDNodeOrder.
void LowerDeoptimizingReturn()
FunctionLoweringInfo & FuncInfo
Information about the function as a whole.
void setValue(const Value *V, SDValue NewN)
void FindMergedConditions(const Value *Cond, MachineBasicBlock *TBB, MachineBasicBlock *FBB, MachineBasicBlock *CurBB, MachineBasicBlock *SwitchBB, Instruction::BinaryOps Opc, BranchProbability TProb, BranchProbability FProb, bool InvertCond)
const TargetLibraryInfo * LibInfo
bool isExportableFromCurrentBlock(const Value *V, const BasicBlock *FromBB)
void visitSPDescriptorParent(StackProtectorDescriptor &SPD, MachineBasicBlock *ParentBB)
Codegen a new tail for a stack protector check ParentMBB which has had its tail spliced into a stack ...
bool handleDebugValue(ArrayRef< const Value * > Values, DILocalVariable *Var, DIExpression *Expr, DebugLoc DbgLoc, unsigned Order, bool IsVariadic)
For a given list of Values, attempt to create and record a SDDbgValue in the SelectionDAG.
SDValue getControlRoot()
Similar to getRoot, but instead of flushing all the PendingLoad items, flush all the PendingExports (...
void UpdateSplitBlock(MachineBasicBlock *First, MachineBasicBlock *Last)
When an MBB was split during scheduling, update the references that need to refer to the last resulti...
SDValue getValueImpl(const Value *V)
getValueImpl - Helper function for getValue and getNonRegisterValue.
void visitSwitchCase(SwitchCG::CaseBlock &CB, MachineBasicBlock *SwitchBB)
visitSwitchCase - Emits the necessary code to represent a single node in the binary search tree resul...
SDValue LowerAsSTATEPOINT(StatepointLoweringInfo &SI)
Lower SLI into a STATEPOINT instruction.
void visitSPDescriptorFailure(StackProtectorDescriptor &SPD)
Codegen the failure basic block for a stack protector check.
This is used to represent a portion of an LLVM function in a low-level Data Dependence DAG representa...
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
Encapsulates all of the information needed to generate a stack protector check, and signals to isel w...
This class tracks both per-statepoint and per-selectiondag information.
An instruction for storing to memory.
SwitchLowering(FunctionLoweringInfo &funcinfo)
Provides information about what library functions are available for the current target.
This class defines information used to lower LLVM code to legal SelectionDAG operators that the targe...
Primary interface to the complete machine description for the target machine.
The instances of the Type class are immutable: once they are created, they are never changed.
This function has undefined behavior.
A Use represents the edge between a Value definition and its users.
This class represents the va_arg llvm instruction, which returns an argument of the specified type gi...
LLVM Value Representation.
This class implements an extremely fast bulk output stream that can only output to a stream.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
NodeType
ISD::NodeType enum - This enum defines the target-independent operators for a SelectionDAG.
@ ADD
Simple integer binary arithmetic operators.
@ ANY_EXTEND
ANY_EXTEND - Used for integer types. The high bits are undefined.
@ FADD
Simple binary floating point operators.
@ SHL
Shift and rotation operations.
@ AND
Bitwise operators - logical and, logical or, logical xor.
std::vector< CaseCluster > CaseClusterVector
SmallVector< SwitchWorkListItem, 4 > SwitchWorkList
This is an optimization pass for GlobalISel generic memory operations.
CodeGenOptLevel
Code generation optimization level.
@ First
Helpers to iterate all locations in the MemoryEffectsBase class.
DWARFExpression::Operation Op
ArrayRef(const T &OneElt) -> ArrayRef< T >
Implement std::hash so that hash_code can be used in STL containers.
SmallVector< std::pair< Register, TypeSize >, 4 > getRegsAndSizes() const
Return a list of registers and their sizes.
SmallVector< unsigned, 4 > RegCount
This list holds the number of registers for each value.
bool isABIMangled() const
SmallVector< EVT, 4 > ValueVTs
The value types of the values, which may not be legal, and may need be promoted or synthesized from o...
void append(const RegsForValue &RHS)
Add the specified values to this one.
SmallVector< Register, 4 > Regs
This list holds the registers assigned to the values.
void AddInlineAsmOperands(InlineAsm::Kind Code, bool HasMatching, unsigned MatchingIdx, const SDLoc &dl, SelectionDAG &DAG, std::vector< SDValue > &Ops) const
Add this value to the specified inlineasm node operand list.
SDValue getCopyFromRegs(SelectionDAG &DAG, FunctionLoweringInfo &FuncInfo, const SDLoc &dl, SDValue &Chain, SDValue *Glue, const Value *V=nullptr) const
Emit a series of CopyFromReg nodes that copies from this value and returns the result as a ValueVTs v...
SmallVector< MVT, 4 > RegVTs
The value types of the registers.
void getCopyToRegs(SDValue Val, SelectionDAG &DAG, const SDLoc &dl, SDValue &Chain, SDValue *Glue, const Value *V=nullptr, ISD::NodeType PreferredExtendType=ISD::ANY_EXTEND) const
Emit a series of CopyToReg nodes that copies the specified value into the registers specified by this...
std::optional< CallingConv::ID > CallConv
Records if this value needs to be treated in an ABI dependant manner, different to normal type legali...
bool occupiesMultipleRegs() const
Check if the total RegCount is greater than one.
Helper for printing DanglingDebugInfo.
Print(const Value *V, const DanglingDebugInfo &DDI)
const DanglingDebugInfo & DDI
friend raw_ostream & operator<<(raw_ostream &OS, const DanglingDebugInfo::Print &P)
unsigned NumPatchBytes
The number of patchable bytes the call needs to get lowered into.
ArrayRef< const Use > GCTransitionArgs
The list of gc transition arguments present in the gc.statepoint being lowered.
ArrayRef< const Use > GCLives
The full list of gc-live arguments to the gc.statepoint being lowered.
uint64_t StatepointFlags
Flags associated with the meta arguments being lowered.
const BasicBlock * EHPadBB
The exception handling unwind destination, in case this represents an invoke of gc....
ArrayRef< const Use > DeoptState
The deoptimization state associated with this gc.statepoint call, if any.
TargetLowering::CallLoweringInfo CLI
Information regarding the underlying call instruction.
SmallVector< const Value *, 16 > Ptrs
SmallVector< const GCRelocateInst *, 16 > GCRelocates
The set of gc.relocate calls associated with this gc.statepoint.
StatepointLoweringInfo(SelectionDAG &DAG)
uint64_t ID
The ID that the resulting STATEPOINT instruction has to report.
const Instruction * StatepointInstr
The gc.statepoint instruction.
SmallVector< const Value *, 16 > Bases
Bases[i] is the base pointer for Ptrs[i].
This structure is used to communicate between SelectionDAGBuilder and SDISel for the code generation ...
This structure contains all information that is necessary for lowering calls.
This structure contains the information necessary for lowering pointer-authenticating indirect calls.