TargetCallingConv.h [plain text]
#ifndef LLVM_TARGET_TARGETCALLINGCONV_H
#define LLVM_TARGET_TARGETCALLINGCONV_H
namespace llvm {
namespace ISD {
struct ArgFlagsTy {
private:
static const uint64_t NoFlagSet = 0ULL;
static const uint64_t ZExt = 1ULL<<0; static const uint64_t ZExtOffs = 0;
static const uint64_t SExt = 1ULL<<1; static const uint64_t SExtOffs = 1;
static const uint64_t InReg = 1ULL<<2; static const uint64_t InRegOffs = 2;
static const uint64_t SRet = 1ULL<<3; static const uint64_t SRetOffs = 3;
static const uint64_t ByVal = 1ULL<<4; static const uint64_t ByValOffs = 4;
static const uint64_t Nest = 1ULL<<5; static const uint64_t NestOffs = 5;
static const uint64_t ByValAlign = 0xFULL << 6; static const uint64_t ByValAlignOffs = 6;
static const uint64_t Split = 1ULL << 10;
static const uint64_t SplitOffs = 10;
static const uint64_t OrigAlign = 0x1FULL<<27;
static const uint64_t OrigAlignOffs = 27;
static const uint64_t ByValSize = 0xffffffffULL << 32; static const uint64_t ByValSizeOffs = 32;
static const uint64_t One = 1ULL;
uint64_t Flags;
public:
ArgFlagsTy() : Flags(0) { }
bool isZExt() const { return Flags & ZExt; }
void setZExt() { Flags |= One << ZExtOffs; }
bool isSExt() const { return Flags & SExt; }
void setSExt() { Flags |= One << SExtOffs; }
bool isInReg() const { return Flags & InReg; }
void setInReg() { Flags |= One << InRegOffs; }
bool isSRet() const { return Flags & SRet; }
void setSRet() { Flags |= One << SRetOffs; }
bool isByVal() const { return Flags & ByVal; }
void setByVal() { Flags |= One << ByValOffs; }
bool isNest() const { return Flags & Nest; }
void setNest() { Flags |= One << NestOffs; }
unsigned getByValAlign() const {
return (unsigned)
((One << ((Flags & ByValAlign) >> ByValAlignOffs)) / 2);
}
void setByValAlign(unsigned A) {
Flags = (Flags & ~ByValAlign) |
(uint64_t(Log2_32(A) + 1) << ByValAlignOffs);
}
bool isSplit() const { return Flags & Split; }
void setSplit() { Flags |= One << SplitOffs; }
unsigned getOrigAlign() const {
return (unsigned)
((One << ((Flags & OrigAlign) >> OrigAlignOffs)) / 2);
}
void setOrigAlign(unsigned A) {
Flags = (Flags & ~OrigAlign) |
(uint64_t(Log2_32(A) + 1) << OrigAlignOffs);
}
unsigned getByValSize() const {
return (unsigned)((Flags & ByValSize) >> ByValSizeOffs);
}
void setByValSize(unsigned S) {
Flags = (Flags & ~ByValSize) | (uint64_t(S) << ByValSizeOffs);
}
std::string getArgFlagsString();
uint64_t getRawBits() const { return Flags; }
};
struct InputArg {
ArgFlagsTy Flags;
MVT VT;
bool Used;
InputArg() : VT(MVT::Other), Used(false) {}
InputArg(ArgFlagsTy flags, EVT vt, bool used)
: Flags(flags), Used(used) {
VT = vt.getSimpleVT();
}
};
struct OutputArg {
ArgFlagsTy Flags;
MVT VT;
bool IsFixed;
OutputArg() : IsFixed(false) {}
OutputArg(ArgFlagsTy flags, EVT vt, bool isfixed)
: Flags(flags), IsFixed(isfixed) {
VT = vt.getSimpleVT();
}
};
}
}
#endif