14#ifndef LLVM_CODEGEN_CALLINGCONVLOWER_H
15#define LLVM_CODEGEN_CALLINGCONVLOWER_H
31class TargetRegisterInfo;
63 std::variant<Register, int64_t, unsigned> Data;
69 unsigned isCustom : 1;
81 : ValNo(ValNo), isCustom(IsCustom), HTP(HTP), ValVT(ValVT), LocVT(LocVT) {
86 MVT LocVT,
LocInfo HTP,
bool IsCustom =
false) {
87 CCValAssign Ret(HTP, ValNo, ValVT, LocVT, IsCustom);
94 return getReg(ValNo, ValVT,
Reg, LocVT, HTP,
true);
98 MVT LocVT,
LocInfo HTP,
bool IsCustom =
false) {
99 CCValAssign Ret(HTP, ValNo, ValVT, LocVT, IsCustom);
110 LocInfo HTP,
unsigned ExtraInfo = 0) {
112 Ret.Data = ExtraInfo;
123 bool isRegLoc()
const {
return std::holds_alternative<Register>(Data); }
124 bool isMemLoc()
const {
return std::holds_alternative<int64_t>(Data); }
125 bool isPendingLoc()
const {
return std::holds_alternative<unsigned>(Data); }
175 bool AnalyzingMustTailForwardedRegs =
false;
181 bool NegativeOffsets;
184 Align MaxStackArgAlign;
217 ByValInfo(
unsigned B,
unsigned E) : Begin(
B),
End(
E) {}
229 unsigned InRegsParamsProcessed;
234 bool NegativeOffsets =
false);
252 return alignTo(StackSize, MaxStackArgAlign);
258 return UsedRegs[
Reg.id() / 32] & (1 << (
Reg.id() & 31));
319 for (
unsigned i = 0; i < Regs.
size(); ++i)
327 MarkUnallocated(
Reg);
345 MarkAllocated(ShadowReg);
354 if (FirstUnalloc == Regs.
size())
367 unsigned RegsRequired) {
368 if (RegsRequired > Regs.
size())
371 for (
unsigned StartIdx = 0; StartIdx <= Regs.
size() - RegsRequired;
373 bool BlockAvailable =
true;
375 for (
unsigned BlockIdx = 0; BlockIdx < RegsRequired; ++BlockIdx) {
377 BlockAvailable =
false;
381 if (BlockAvailable) {
383 for (
unsigned BlockIdx = 0; BlockIdx < RegsRequired; ++BlockIdx) {
384 MarkAllocated(Regs[StartIdx + BlockIdx]);
386 return Regs.
slice(StartIdx, RegsRequired);
396 if (FirstUnalloc == Regs.
size())
400 MCRegister Reg = Regs[FirstUnalloc], ShadowReg = ShadowRegs[FirstUnalloc];
402 MarkAllocated(ShadowReg);
410 if (NegativeOffsets) {
417 MaxStackArgAlign = std::max(Alignment, MaxStackArgAlign);
450 unsigned& BeginReg,
unsigned& EndReg)
const {
451 assert(InRegsParamRecordIndex < ByValRegs.
size() &&
452 "Wrong ByVal parameter index");
454 const ByValInfo&
info = ByValRegs[InRegsParamRecordIndex];
455 BeginReg =
info.Begin;
461 ByValRegs.
push_back(ByValInfo(RegBegin, RegEnd));
468 unsigned e = ByValRegs.
size();
469 if (InRegsParamsProcessed < e)
470 ++InRegsParamsProcessed;
471 return InRegsParamsProcessed < e;
476 InRegsParamsProcessed = 0;
482 InRegsParamsProcessed = 0;
492 return PendingArgFlags;
522 unsigned NumFirstPassLocs = Locs.
size();
528 for (
auto Arg : Args) {
529 Arg.Flags.setSecArgPass();
538 TmpArgLocs.
swap(Locs);
539 auto B = TmpArgLocs.
begin(),
E = TmpArgLocs.
end();
540 std::merge(
B,
B + NumFirstPassLocs,
B + NumFirstPassLocs,
E,
541 std::back_inserter(Locs),
543 return A.getValNo() <
B.getValNo();
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
static GCRegistry::Add< CoreCLRGC > E("coreclr", "CoreCLR-compatible GC")
This file defines the SmallVector class.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
size_t size() const
size - Get the array size.
ArrayRef< T > slice(size_t N, size_t M) const
slice(n, m) - Chop off the first N elements of the array, and keep M elements in the array.
CCState - This class holds information needed while lowering arguments and return values.
void getInRegsParamInfo(unsigned InRegsParamRecordIndex, unsigned &BeginReg, unsigned &EndReg) const
LLVM_ABI void HandleByVal(unsigned ValNo, MVT ValVT, MVT LocVT, CCValAssign::LocInfo LocInfo, int MinSize, Align MinAlign, ISD::ArgFlagsTy ArgFlags)
Allocate space on the stack large enough to pass an argument by value.
MachineFunction & getMachineFunction() const
unsigned getFirstUnallocated(ArrayRef< MCPhysReg > Regs) const
getFirstUnallocated - Return the index of the first unallocated register in the set,...
void AnalyzeArguments(const SmallVectorImpl< ISD::InputArg > &Ins, CCAssignFn Fn)
The function will invoke AnalyzeFormalArguments.
LLVM_ABI void analyzeMustTailForwardedRegisters(SmallVectorImpl< ForwardedRegister > &Forwards, ArrayRef< MVT > RegParmTypes, CCAssignFn Fn)
Compute the set of registers that need to be preserved and forwarded to any musttail calls.
int64_t AllocateStack(unsigned Size, Align Alignment, ArrayRef< MCPhysReg > ShadowRegs)
Version of AllocateStack with list of extra registers to be shadowed.
void AnalyzeArgumentsSecondPass(const SmallVectorImpl< T > &Args, CCAssignFn Fn)
The function runs an additional analysis pass over function arguments.
static LLVM_ABI bool resultsCompatible(CallingConv::ID CalleeCC, CallingConv::ID CallerCC, MachineFunction &MF, LLVMContext &C, const SmallVectorImpl< ISD::InputArg > &Ins, CCAssignFn CalleeFn, CCAssignFn CallerFn)
Returns true if the results of the two calling conventions are compatible.
MCRegister AllocateReg(ArrayRef< MCPhysReg > Regs)
AllocateReg - Attempt to allocate one of the specified registers.
LLVM_ABI void AnalyzeCallResult(const SmallVectorImpl< ISD::InputArg > &Ins, CCAssignFn Fn)
AnalyzeCallResult - Analyze the return values of a call, incorporating info about the passed values i...
LLVM_ABI void getRemainingRegParmsForType(SmallVectorImpl< MCRegister > &Regs, MVT VT, CCAssignFn Fn)
Compute the remaining unused register parameters that would be used for the given value type.
LLVM_ABI bool IsShadowAllocatedReg(MCRegister Reg) const
A shadow allocated register is a register that was allocated but wasn't added to the location list (L...
void AnalyzeArguments(const SmallVectorImpl< ISD::OutputArg > &Outs, CCAssignFn Fn)
The function will invoke AnalyzeCallOperands.
CallingConv::ID getCallingConv() const
SmallVectorImpl< ISD::ArgFlagsTy > & getPendingArgFlags()
MCRegister AllocateReg(MCPhysReg Reg)
AllocateReg - Attempt to allocate one register.
LLVM_ABI bool CheckReturn(const SmallVectorImpl< ISD::OutputArg > &Outs, CCAssignFn Fn)
CheckReturn - Analyze the return values of a function, returning true if the return can be performed ...
LLVM_ABI void AnalyzeReturn(const SmallVectorImpl< ISD::OutputArg > &Outs, CCAssignFn Fn)
AnalyzeReturn - Analyze the returned values of a return, incorporating info about the result values i...
LLVMContext & getContext() const
ArrayRef< MCPhysReg > AllocateRegBlock(ArrayRef< MCPhysReg > Regs, unsigned RegsRequired)
Attempt to allocate a block of RegsRequired consecutive registers.
int64_t AllocateStack(unsigned Size, Align Alignment)
AllocateStack - Allocate a chunk of stack space with the specified size and alignment.
void rewindByValRegsInfo()
LLVM_ABI void AnalyzeCallOperands(const SmallVectorImpl< ISD::OutputArg > &Outs, CCAssignFn Fn)
AnalyzeCallOperands - Analyze the outgoing arguments to a call, incorporating info about the passed v...
unsigned getInRegsParamsProcessed() const
LLVM_ABI void ensureMaxAlignment(Align Alignment)
void DeallocateReg(MCPhysReg Reg)
uint64_t getStackSize() const
Returns the size of the currently allocated portion of the stack.
MCRegister AllocateReg(ArrayRef< MCPhysReg > Regs, const MCPhysReg *ShadowRegs)
Version of AllocateReg with list of registers to be shadowed.
SmallVectorImpl< CCValAssign > & getPendingLocs()
uint64_t getAlignedCallFrameSize() const
getAlignedCallFrameSize - Return the size of the call frame needed to be able to store all arguments ...
bool isAllocated(MCRegister Reg) const
isAllocated - Return true if the specified register (or an alias) is allocated.
void addInRegsParamInfo(unsigned RegBegin, unsigned RegEnd)
MCRegister AllocateReg(MCPhysReg Reg, MCPhysReg ShadowReg)
Version of AllocateReg with extra register to be shadowed.
LLVM_ABI void AnalyzeFormalArguments(const SmallVectorImpl< ISD::InputArg > &Ins, CCAssignFn Fn)
AnalyzeFormalArguments - Analyze an array of argument values, incorporating info about the formals in...
void addLoc(const CCValAssign &V)
unsigned getInRegsParamsCount() const
void clearByValRegsInfo()
CCValAssign - Represent assignment of one arg/retval to a location.
void convertToReg(MCRegister Reg)
static CCValAssign getPending(unsigned ValNo, MVT ValVT, MVT LocVT, LocInfo HTP, unsigned ExtraInfo=0)
Register getLocReg() const
bool isPendingLoc() const
LocInfo getLocInfo() const
static CCValAssign getReg(unsigned ValNo, MVT ValVT, MCRegister Reg, MVT LocVT, LocInfo HTP, bool IsCustom=false)
static CCValAssign getCustomReg(unsigned ValNo, MVT ValVT, MCRegister Reg, MVT LocVT, LocInfo HTP)
bool isUpperBitsInLoc() const
static CCValAssign getMem(unsigned ValNo, MVT ValVT, int64_t Offset, MVT LocVT, LocInfo HTP, bool IsCustom=false)
unsigned getExtraInfo() const
int64_t getLocMemOffset() const
unsigned getValNo() const
static CCValAssign getCustomMem(unsigned ValNo, MVT ValVT, int64_t Offset, MVT LocVT, LocInfo HTP)
void convertToMem(int64_t Offset)
This is an important class for using LLVM in a threaded context.
Wrapper class representing physical registers. Should be passed by value.
Wrapper class representing virtual and physical registers.
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
void swap(SmallVectorImpl &RHS)
void push_back(const T &Elt)
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
TargetRegisterInfo base class - We assume that the target defines a static array of TargetRegisterDes...
The instances of the Type class are immutable: once they are created, they are never changed.
@ C
The default llvm calling convention, compatible with C.
This is an optimization pass for GlobalISel generic memory operations.
bool CCAssignFn(unsigned ValNo, MVT ValVT, MVT LocVT, CCValAssign::LocInfo LocInfo, ISD::ArgFlagsTy ArgFlags, Type *OrigTy, CCState &State)
CCAssignFn - This function assigns a location for Val, updating State to reflect the change.
bool CCCustomFn(unsigned &ValNo, MVT &ValVT, MVT &LocVT, CCValAssign::LocInfo &LocInfo, ISD::ArgFlagsTy &ArgFlags, CCState &State)
CCCustomFn - This function assigns a location for Val, possibly updating all args to reflect changes ...
constexpr T MinAlign(U A, V B)
A and B are either alignments or offsets.
uint64_t alignTo(uint64_t Size, Align A)
Returns a multiple of A needed to store Size bytes.
This struct is a compact representation of a valid (non-zero power of two) alignment.
Describes a register that needs to be forwarded from the prologue to a musttail call.
ForwardedRegister(Register VReg, MCPhysReg PReg, MVT VT)