73 if (!Src.isKnownNeverPosZero() && !Src.isKnownNeverNegZero())
77 if (Src.isKnownNeverSubnormal())
137 !
Known.isKnownNeverSubnormal()) {
142 if (
Known.isKnownNeverNaN()) {
146 Known.signBitMustBeOne();
148 Known.signBitMustBeZero();
159 KnownLHS.
SignBit = std::nullopt;
161 KnownRHS.
SignBit = std::nullopt;
165 Known.signBitMustBeZero();
169 Known.signBitMustBeOne();
235 "Bitcast operand has incorrect bit width");
239 if (Bits.hasConflict())
243 if (Bits.isNonNegative())
244 Known.signBitMustBeZero();
245 else if (Bits.isNegative())
246 Known.signBitMustBeOne();
249 const unsigned MantissaBits = FltSemantics.
precision - 1;
252 const APInt MantissaMask =
255 const bool ExponentKnownAllZeros =
256 (Bits.Zero & ExponentMask) == ExponentMask;
257 const bool ExponentKnownAllOnes = (Bits.One & ExponentMask) == ExponentMask;
258 const bool ExponentKnownNotAllZeros = !(Bits.One & ExponentMask).
isZero();
259 const bool ExponentKnownNotAllOnes = !(Bits.Zero & ExponentMask).
isZero();
261 const bool MantissaKnownAllZeros =
262 (Bits.Zero & MantissaMask) == MantissaMask;
263 const bool MantissaKnownNotAllZeros = !(Bits.One & MantissaMask).
isZero();
266 if (ExponentKnownNotAllZeros)
270 if (ExponentKnownNotAllOnes)
274 if (ExponentKnownAllZeros || ExponentKnownAllOnes)
278 if (MantissaKnownNotAllZeros)
282 if (MantissaKnownAllZeros)
285 const bool QuietBitKnownSet = Bits.One[MantissaBits - 1];
286 const bool QuietBitKnownClear = Bits.Zero[MantissaBits - 1];
288 if (QuietBitKnownSet)
290 else if (QuietBitKnownClear)
306 Known.setAllConflict();
308 if (FPClasses &
fcInf)
316 Known.Zero.clearSignBit();
317 Known.One.clearSignBit();
322 Known.makeNegative();
324 Known.makeNonNegative();
400 return fadd(KnownLHS,
fneg(KnownRHS), Mode);
410 Known.propagateXorSign(KnownLHS, KnownRHS);
443 const int MantissaBits = Precision - 1;
445 int MinKnownExponent =
ilogb(CRHS);
446 bool CannotBeSubnormal = (MinKnownExponent >= MantissaBits);
449 if (CannotBeSubnormal)
454 if (MinKnownExponent < 0)
480 Known.propagateXorSign(KnownLHS, KnownRHS);
596 Known.propagateNonNaN(KnownSrc);
644 Known.propagateNonSNaN(KnownSrc);
673 return sin(KnownSrc);
696 Known.propagateNonNaN(KnownSrc);
708 Known.propagateNonNaN(KnownSrc);
723 Known.propagateNonNaN(KnownSrc);
734 Known.propagateNonSNaN(KnownSrc);
759 Known.propagateNonSNaN(KnownSrc);
776 Known.propagateNonNaN(KnownSrc);
794 Known.propagateNonNaN(KnownY, KnownX);
801 if (XCannotHavePositiveValue)
823 if (!
Known.isKnownNeverNaN())
824 Known.SignBit = std::nullopt;
837 Known.propagateNonNaN(KnownSrc,
true);
845 bool IsMultiUnitFPType) {
851 Known.propagateNonNaN(KnownSrc,
true);
855 if (IsTrunc || !IsMultiUnitFPType) {
894 Known.propagateNonNaN(KnownSrc);
899 const APInt &ConstantRangeExpMin,
900 const APInt &ConstantRangeExpMax,
903 Known.propagateNonNaN(KnownSrc,
true);
917 const int MantissaBits = Precision - 1;
918 if (ConstantRangeExpMin.
sge(MantissaBits))
921 if (ConstantRangeExpMin.
isZero() && ConstantRangeExpMax.
isZero()) {
923 Known.propagateCanonicalizingSrc(KnownSrc, Mode);
956 Known.propagateNonSNaN(KnownLHS, KnownRHS);
997 Known.propagateNonNaN(KnownSrc);
999 if (ExponentKnownBits.
isZero()) {
1027 const bool IsKnownNeverOddPositive = ExponentKnownBits.
isNegative();
1028 const bool IsKnownNeverOddNegative = ExponentKnownBits.
isNonNegative();
1067 bool MayAbsExpGT1 = MinExp.
slt(-1) || MaxExp.
sgt(1);
1068 bool MayFiniteOverflow = MayFinite && MayAbsExpGT1;
1071 bool MayBeNegOne = ExponentKnownBits.
Zero.
isZero();
1074 if (!MayInfSrc && !MayDivByZero && !MayFiniteOverflow && !MaySubnormInv)
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
This file declares a class to represent arbitrary precision floating point values and provide a varie...
static GCRegistry::Add< ShadowStackGC > C("shadow-stack", "Very portable GC for uncooperative code generators")
static KnownFPClass fadd_impl(const KnownFPClass &KnownLHS, const KnownFPClass &KnownRHS, DenormalMode Mode)
static bool inputDenormalIsIEEE(DenormalMode Mode)
Return true if it's possible to assume IEEE treatment of input denormals in F for Val.
static bool inputDenormalIsIEEEOrPosZero(DenormalMode Mode)
static bool isZero(Value *V, const DataLayout &DL, DominatorTree *DT, AssumptionCache *AC)
static cl::opt< RegAllocEvictionAdvisorAnalysisLegacy::AdvisorMode > Mode("regalloc-enable-advisor", cl::Hidden, cl::init(RegAllocEvictionAdvisorAnalysisLegacy::AdvisorMode::Default), cl::desc("Enable regalloc advisor mode"), cl::values(clEnumValN(RegAllocEvictionAdvisorAnalysisLegacy::AdvisorMode::Default, "default", "Default"), clEnumValN(RegAllocEvictionAdvisorAnalysisLegacy::AdvisorMode::Release, "release", "precompiled"), clEnumValN(RegAllocEvictionAdvisorAnalysisLegacy::AdvisorMode::Development, "development", "for training")))
static LLVM_ABI unsigned int semanticsPrecision(const fltSemantics &)
static LLVM_ABI bool isRepresentableAsNormalIn(const fltSemantics &Src, const fltSemantics &Dst)
static LLVM_ABI bool isIEEELikeFP(const fltSemantics &)
cmpResult compareAbsoluteValue(const APFloat &RHS) const
const fltSemantics & getSemantics() const
static APFloat getOne(const fltSemantics &Sem, bool Negative=false)
Factory for Positive and Negative One.
static APFloat getInf(const fltSemantics &Sem, bool Negative=false)
Factory for Positive and Negative Infinity.
Class for arbitrary precision integers.
bool sgt(const APInt &RHS) const
Signed greater than comparison.
static APInt getBitsSet(unsigned numBits, unsigned loBit, unsigned hiBit)
Get a value with a block of bits set.
bool isZero() const
Determine if this value is zero, i.e. all bits are clear.
bool isNegative() const
Determine sign of this APInt.
bool isNonPositive() const
Determine if this APInt Value is non-positive (<= 0).
bool isStrictlyPositive() const
Determine if this APInt Value is positive.
bool isNonNegative() const
Determine if this APInt Value is non-negative (>= 0)
static APInt getLowBitsSet(unsigned numBits, unsigned loBitsSet)
Constructs an APInt value that has the bottom loBitsSet bits set.
bool slt(const APInt &RHS) const
Signed less than comparison.
static APInt getZero(unsigned numBits)
Get the '0' value for the specified bit-width.
bool sge(const APInt &RHS) const
Signed greater or equal comparison.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
This is an optimization pass for GlobalISel generic memory operations.
@ Known
Known to have no common set bits.
LLVM_ABI FPClassTest orderedStrictlyGreater(FPClassTest Mask, bool OrderedZeroSign=false)
Returns all FPClasses which are greater than all values in Mask That is, return all classes for which...
int ilogb(const APFloat &Arg)
Returns the exponent of the internal representation of the APFloat.
LLVM_ABI FPClassTest orderedStrictlyLess(FPClassTest Mask, bool OrderedZeroSign=false)
Returns all FPClasses which are less than all values in Mask That is, return all classes for which th...
FPClassTest
Floating-point class tests, supported by 'is_fpclass' intrinsic.
@ Mul
Product of integers.
Represent subnormal handling kind for floating point instruction inputs and outputs.
DenormalModeKind Input
Denormal treatment kind for floating point instruction inputs in the default floating-point environme...
constexpr bool outputsAreZero() const
Return true if output denormals should be flushed to 0.
@ PreserveSign
The sign of a flushed-to-zero number is preserved in the sign of 0.
@ PositiveZero
Denormals are flushed to positive zero.
@ Dynamic
Denormals have unknown treatment.
@ IEEE
IEEE-754 denormal numbers preserved.
static constexpr DenormalMode getPositiveZero()
constexpr bool inputsAreZero() const
Return true if input denormals must be implicitly treated as 0.
static constexpr DenormalMode getPreserveSign()
DenormalModeKind Output
Denormal flushing mode for floating point instruction results in the default floating point environme...
static constexpr DenormalMode getIEEE()
static KnownBits makeConstant(const APInt &C)
Create known bits from a known constant.
bool isNonNegative() const
Returns true if this value is known to be non-negative.
bool isZero() const
Returns true if value is all zero.
APInt getSignedMaxValue() const
Return the maximal signed value possible given these KnownBits.
bool isEven() const
Return if the value is known even (the low bit is 0).
bool isNegative() const
Returns true if this value is known to be negative.
APInt getSignedMinValue() const
Return the minimal signed value possible given these KnownBits.
bool isKnownNeverInfOrNaN() const
Return true if it's known this can never be an infinity or nan.
FPClassTest KnownFPClasses
Floating-point classes the value could be one of.
bool isKnownNeverInfinity() const
Return true if it's known this can never be an infinity.
KnownFPClass(FPClassTest Known=fcAllFlags, std::optional< bool > Sign={})
bool cannotBeOrderedGreaterThanZero() const
Return true if we can prove that the analyzed floating-point value is either NaN or never greater tha...
static LLVM_ABI KnownFPClass sin(const KnownFPClass &Src)
Report known values for sin.
static LLVM_ABI KnownFPClass frem(const KnownFPClass &LHS, const KnownFPClass &RHS, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for frem.
static LLVM_ABI KnownFPClass fdiv_self(const KnownFPClass &Src, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for fdiv x, x.
static constexpr FPClassTest OrderedGreaterThanZeroMask
static constexpr FPClassTest OrderedLessThanZeroMask
static LLVM_ABI KnownFPClass fmul(const KnownFPClass &LHS, const KnownFPClass &RHS, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for fmul.
static LLVM_ABI KnownFPClass fadd_self(const KnownFPClass &Src, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for fadd x, x.
bool isKnownNeverZero() const
Return true if it's known this can never be a zero.
static KnownFPClass square(const KnownFPClass &Src, DenormalMode Mode=DenormalMode::getDynamic())
static LLVM_ABI KnownFPClass fsub(const KnownFPClass &LHS, const KnownFPClass &RHS, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for fsub.
bool isKnownNeverSubnormal() const
Return true if it's known this can never be a subnormal.
bool isKnownAlways(FPClassTest Mask) const
static LLVM_ABI KnownFPClass canonicalize(const KnownFPClass &Src, DenormalMode DenormMode=DenormalMode::getDynamic())
Apply the canonicalize intrinsic to this value.
LLVM_ABI bool isKnownNeverLogicalZero(DenormalMode Mode) const
Return true if it's known this can never be interpreted as a zero.
static LLVM_ABI KnownFPClass log(const KnownFPClass &Src, DenormalMode Mode=DenormalMode::getDynamic())
Propagate known class for log/log2/log10.
static LLVM_ABI KnownFPClass atan2(const KnownFPClass &LHS, const KnownFPClass &RHS, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for atan2.
static LLVM_ABI KnownFPClass atan(const KnownFPClass &Src)
Report known values for atan.
LLVM_ABI void propagateDenormal(const KnownFPClass &Src, DenormalMode Mode)
Propagate knowledge from a source value that could be a denormal or zero.
static LLVM_ABI KnownFPClass fdiv(const KnownFPClass &LHS, const KnownFPClass &RHS, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for fdiv.
static LLVM_ABI KnownFPClass roundToIntegral(const KnownFPClass &Src, bool IsTrunc, bool IsMultiUnitFPType)
Propagate known class for rounding intrinsics (trunc, floor, ceil, rint, nearbyint,...
static LLVM_ABI KnownFPClass cos(const KnownFPClass &Src)
Report known values for cos.
void propagateNonNaN(const KnownFPClass &Src, bool PreserveSign=false)
static LLVM_ABI KnownFPClass cosh(const KnownFPClass &Src)
Report known values for cosh.
static LLVM_ABI KnownFPClass minMaxLike(const KnownFPClass &LHS, const KnownFPClass &RHS, MinMaxKind Kind, DenormalMode DenormMode=DenormalMode::getDynamic())
bool isKnownNeverNegInfinity() const
Return true if it's known this can never be -infinity.
bool isKnownNeverNegSubnormal() const
Return true if it's known this can never be a negative subnormal.
bool isKnownNeverPosZero() const
Return true if it's known this can never be a literal positive zero.
static LLVM_ABI KnownFPClass exp(const KnownFPClass &Src)
Report known values for exp, exp2 and exp10.
static LLVM_ABI KnownFPClass frexp_mant(const KnownFPClass &Src, DenormalMode Mode=DenormalMode::getDynamic())
Propagate known class for mantissa component of frexp.
std::optional< bool > SignBit
std::nullopt if the sign bit is unknown, true if the sign bit is definitely set or false if the sign ...
static LLVM_ABI KnownFPClass asin(const KnownFPClass &Src)
Report known values for asin.
bool isKnownNeverNaN() const
Return true if it's known this can never be a nan.
bool isKnownNever(FPClassTest Mask) const
Return true if it's known this can never be one of the mask entries.
static LLVM_ABI KnownFPClass fpext(const KnownFPClass &KnownSrc, const fltSemantics &DstTy, const fltSemantics &SrcTy)
Propagate known class for fpext.
bool isKnownNeverNegZero() const
Return true if it's known this can never be a negative zero.
static LLVM_ABI KnownFPClass fma(const KnownFPClass &LHS, const KnownFPClass &RHS, const KnownFPClass &Addend, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for fma.
static LLVM_ABI KnownFPClass tan(const KnownFPClass &Src)
Report known values for tan.
LLVM_ABI KnownBits toKnownBits(const fltSemantics &FltSemantics) const
Report known bits for a float with provided semantics.
static LLVM_ABI KnownFPClass fptrunc(const KnownFPClass &KnownSrc)
Propagate known class for fptrunc.
bool cannotBeOrderedLessThanZero() const
Return true if we can prove that the analyzed floating-point value is either NaN or never less than -...
LLVM_ABI void propagateCanonicalizingSrc(const KnownFPClass &Src, DenormalMode Mode)
Report known classes if Src is evaluated through a potentially canonicalizing operation.
static LLVM_ABI KnownFPClass sqrt(const KnownFPClass &Src, DenormalMode Mode=DenormalMode::getDynamic())
Propagate known class for sqrt.
LLVM_ABI bool isKnownNeverLogicalPosZero(DenormalMode Mode) const
Return true if it's known this can never be interpreted as a positive zero.
bool isKnownNeverPosInfinity() const
Return true if it's known this can never be +infinity.
static LLVM_ABI KnownFPClass fadd(const KnownFPClass &LHS, const KnownFPClass &RHS, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for fadd.
LLVM_ABI bool isKnownNeverLogicalNegZero(DenormalMode Mode) const
Return true if it's known this can never be interpreted as a negative zero.
static LLVM_ABI KnownFPClass bitcast(const fltSemantics &FltSemantics, const KnownBits &Bits)
Report known values for a bitcast into a float with provided semantics.
static LLVM_ABI KnownFPClass fma_square(const KnownFPClass &Squared, const KnownFPClass &Addend, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for fma squared, squared, addend.
static LLVM_ABI KnownFPClass acos(const KnownFPClass &Src)
Report known values for acos.
static LLVM_ABI KnownFPClass frem_self(const KnownFPClass &Src, DenormalMode Mode=DenormalMode::getDynamic())
Report known values for frem x, x.
static LLVM_ABI KnownFPClass powi(const KnownFPClass &Src, const KnownBits &N)
Propagate known class for powi.
static LLVM_ABI KnownFPClass pow(const KnownFPClass &LHS, const KnownFPClass &RHS)
Propagate known class for pow.
static LLVM_ABI KnownFPClass ldexp(const KnownFPClass &Src, const APInt &ConstantRangeMin, const APInt &ConstantRangeMax, const fltSemantics &Flt, DenormalMode Mode=DenormalMode::getDynamic())
Propagate known class for ldexp, assuming the exponent is known to be within [ConstantRangeMin,...
static LLVM_ABI KnownFPClass sinh(const KnownFPClass &Src)
Report known values for sinh.
bool isKnownNeverPosSubnormal() const
Return true if it's known this can never be a positive subnormal.
static LLVM_ABI KnownFPClass tanh(const KnownFPClass &Src)
Report known values for tanh.