14#ifndef LLVM_ADT_SMALLBITVECTOR_H 
   15#define LLVM_ADT_SMALLBITVECTOR_H 
   43    NumBaseBits = 
sizeof(uintptr_t) * CHAR_BIT,
 
   47    SmallNumRawBits = NumBaseBits - 1,
 
   52    SmallNumSizeBits = (NumBaseBits == 32 ? 5 :
 
   53                        NumBaseBits == 64 ? 6 :
 
   57    SmallNumDataBits = SmallNumRawBits - SmallNumSizeBits
 
   60  static_assert(NumBaseBits == 64 || NumBaseBits == 32,
 
   61                "Unsupported word size");
 
   83        TheVector.set(BitPos);
 
   85        TheVector.reset(BitPos);
 
 
   90      return const_cast<const SmallBitVector &
>(TheVector).
operator[](BitPos);
 
 
 
  100  void switchToSmall(uintptr_t NewSmallBits, size_type NewSize) {
 
  102    setSmallSize(NewSize);
 
  103    setSmallBits(NewSmallBits);
 
  106  void switchToLarge(BitVector *BV) {
 
  107    X = 
reinterpret_cast<uintptr_t
>(BV);
 
  113  uintptr_t getSmallRawBits()
 const {
 
  118  void setSmallRawBits(uintptr_t NewRawBits) {
 
  120    X = (NewRawBits << 1) | uintptr_t(1);
 
  125    return getSmallRawBits() >> SmallNumDataBits;
 
  129    setSmallRawBits(getSmallBits() | (
Size << SmallNumDataBits));
 
  133  uintptr_t getSmallBits()
 const {
 
  134    return getSmallRawBits() & ~(~uintptr_t(0) << getSmallSize());
 
  137  void setSmallBits(uintptr_t NewBits) {
 
  138    setSmallRawBits((NewBits & ~(~uintptr_t(0) << getSmallSize())) |
 
  139                    (getSmallSize() << SmallNumDataBits));
 
  149    if (s <= SmallNumDataBits)
 
  150      switchToSmall(t ? ~uintptr_t(0) : 0, s);
 
 
  187  bool isSmall()
 const { 
return X & uintptr_t(1); }
 
  191    return isSmall() ? getSmallSize() == 0 : getPointer()->empty();
 
 
  196    return isSmall() ? getSmallSize() : getPointer()->size();
 
 
  202      uintptr_t Bits = getSmallBits();
 
  205    return getPointer()->count();
 
 
  211      return getSmallBits() != 0;
 
  212    return getPointer()->any();
 
 
  218      return getSmallBits() == (uintptr_t(1) << getSmallSize()) - 1;
 
  219    return getPointer()->all();
 
 
  225      return getSmallBits() == 0;
 
  226    return getPointer()->none();
 
 
  232      uintptr_t Bits = getSmallBits();
 
  237    return getPointer()->find_first();
 
 
  242      uintptr_t Bits = getSmallBits();
 
  247    return getPointer()->find_last();
 
 
  253      if (
count() == getSmallSize())
 
  256      uintptr_t Bits = getSmallBits();
 
  259    return getPointer()->find_first_unset();
 
 
  264      if (
count() == getSmallSize())
 
  267      uintptr_t Bits = getSmallBits();
 
  269      Bits |= ~uintptr_t(0) << getSmallSize();
 
  272    return getPointer()->find_last_unset();
 
 
  279      uintptr_t Bits = getSmallBits();
 
  281      Bits &= ~uintptr_t(0) << (Prev + 1);
 
  282      if (Bits == 0 || Prev + 1 >= getSmallSize())
 
  286    return getPointer()->find_next(Prev);
 
 
  293      uintptr_t Bits = getSmallBits();
 
  295      Bits |= (uintptr_t(1) << (Prev + 1)) - 1;
 
  297      Bits |= ~uintptr_t(0) << getSmallSize();
 
  299      if (Bits == ~uintptr_t(0) || Prev + 1 >= getSmallSize())
 
  303    return getPointer()->find_next_unset(Prev);
 
 
  314      uintptr_t Bits = getSmallBits();
 
  321    return getPointer()->find_prev(PriorTo);
 
 
  334      getPointer()->resize(
N, t);
 
  335    } 
else if (SmallNumDataBits >= 
N) {
 
  336      uintptr_t NewBits = t ? ~uintptr_t(0) << getSmallSize() : 0;
 
  338      setSmallBits(NewBits | getSmallBits());
 
  341      uintptr_t OldBits = getSmallBits();
 
  343        (*BV)[
I] = (OldBits >> 
I) & 1;
 
 
  350      if (
N > SmallNumDataBits) {
 
  351        uintptr_t OldBits = getSmallRawBits();
 
  355          if ((OldBits >> 
I) & 1)
 
  361      getPointer()->reserve(
N);
 
 
  368      setSmallBits(~uintptr_t(0));
 
 
  376      assert(Idx <= 
static_cast<unsigned>(
 
  377                        std::numeric_limits<uintptr_t>::digits) &&
 
  378             "undefined behavior");
 
  379      setSmallBits(getSmallBits() | (uintptr_t(1) << Idx));
 
  382      getPointer()->
set(Idx);
 
 
  388    assert(
I <= 
E && 
"Attempted to set backwards range!");
 
  389    assert(
E <= 
size() && 
"Attempted to set out-of-bounds range!");
 
  390    if (
I == 
E) 
return *
this;
 
  392      uintptr_t EMask = ((uintptr_t)1) << 
E;
 
  393      uintptr_t IMask = ((uintptr_t)1) << 
I;
 
  394      uintptr_t Mask = EMask - IMask;
 
  395      setSmallBits(getSmallBits() | Mask);
 
  397      getPointer()->set(
I, 
E);
 
 
  406      getPointer()->reset();
 
 
  412      setSmallBits(getSmallBits() & ~(uintptr_t(1) << Idx));
 
  414      getPointer()->reset(Idx);
 
 
  420    assert(
I <= 
E && 
"Attempted to reset backwards range!");
 
  421    assert(
E <= 
size() && 
"Attempted to reset out-of-bounds range!");
 
  422    if (
I == 
E) 
return *
this;
 
  424      uintptr_t EMask = ((uintptr_t)1) << 
E;
 
  425      uintptr_t IMask = ((uintptr_t)1) << 
I;
 
  426      uintptr_t Mask = EMask - IMask;
 
  427      setSmallBits(getSmallBits() & ~Mask);
 
  429      getPointer()->reset(
I, 
E);
 
 
  436      setSmallBits(~getSmallBits());
 
  438      getPointer()->flip();
 
 
  444      setSmallBits(getSmallBits() ^ (uintptr_t(1) << Idx));
 
  446      getPointer()->flip(Idx);
 
 
  457    assert(Idx < 
size() && 
"Out-of-bounds Bit access.");
 
 
  462    assert(Idx < 
size() && 
"Out-of-bounds Bit access.");
 
  464      return ((getSmallBits() >> Idx) & 1) != 0;
 
  465    return getPointer()->operator[](Idx);
 
 
  470    assert(!
empty() && 
"Getting last element of empty vector.");
 
  471    return (*
this)[
size() - 1];
 
 
  474  bool test(
unsigned Idx)
 const {
 
 
  485    assert(!
empty() && 
"Empty vector has no element to pop.");
 
 
  492      return (getSmallBits() & 
RHS.getSmallBits()) != 0;
 
  494      return getPointer()->anyCommon(*
RHS.getPointer());
 
  496    for (
unsigned i = 0, e = std::min(
size(), 
RHS.size()); i != e; ++i)
 
 
  507      return getSmallBits() == 
RHS.getSmallBits();
 
  509      return *getPointer() == *
RHS.getPointer();
 
  512        if ((*
this)[
I] != 
RHS[
I])
 
 
  520    return !(*
this == 
RHS);
 
 
  528      setSmallBits(getSmallBits() & 
RHS.getSmallBits());
 
  530      getPointer()->operator&=(*
RHS.getPointer());
 
  533      for (
I = 0, 
E = std::min(
size(), 
RHS.size()); 
I != 
E; ++
I)
 
 
  544      setSmallBits(getSmallBits() & ~
RHS.getSmallBits());
 
  546      getPointer()->reset(*
RHS.getPointer());
 
  548      for (
unsigned i = 0, e = std::min(
size(), 
RHS.size()); i != e; ++i)
 
 
  558      return (getSmallBits() & ~
RHS.getSmallBits()) != 0;
 
  560      return getPointer()->test(*
RHS.getPointer());
 
  563    for (i = 0, e = std::min(
size(), 
RHS.size()); i != e; ++i)
 
  567    for (e = 
size(); i != e; ++i)
 
 
  577      setSmallBits(getSmallBits() | 
RHS.getSmallBits());
 
  579      getPointer()->operator|=(*
RHS.getPointer());
 
 
  590      setSmallBits(getSmallBits() ^ 
RHS.getSmallBits());
 
  592      getPointer()->operator^=(*
RHS.getPointer());
 
 
  602      setSmallBits(getSmallBits() << 
N);
 
  604      getPointer()->operator<<=(
N);
 
 
  610      setSmallBits(getSmallBits() >> 
N);
 
  612      getPointer()->operator>>=(
N);
 
 
  625        *getPointer() = *
RHS.getPointer();
 
 
  650      applyMask<true, false>(Mask, MaskWords);
 
  652      getPointer()->setBitsInMask(Mask, MaskWords);
 
 
  659      applyMask<false, false>(Mask, MaskWords);
 
  661      getPointer()->clearBitsInMask(Mask, MaskWords);
 
 
  668      applyMask<true, true>(Mask, MaskWords);
 
  670      getPointer()->setBitsNotInMask(Mask, MaskWords);
 
 
  677      applyMask<false, true>(Mask, MaskWords);
 
  679      getPointer()->clearBitsNotInMask(Mask, MaskWords);
 
 
  690      return getPointer()->getData();
 
  691    Store = getSmallBits();
 
 
  696  template <
bool AddBits, 
bool InvertMask>
 
  697  void applyMask(
const uint32_t *Mask, 
unsigned MaskWords) {
 
  698    assert(MaskWords <= 
sizeof(uintptr_t) && 
"Mask is larger than base!");
 
  699    uintptr_t M = Mask[0];
 
  700    if (NumBaseBits == 64)
 
  705      setSmallBits(getSmallBits() | M);
 
  707      setSmallBits(getSmallBits() & ~M);
 
 
  742        std::pair<SmallBitVector::size_type, ArrayRef<uintptr_t>>>::
 
  743        getHashValue(std::make_pair(V.size(), V.getData(Store)));
 
 
  746    if (
LHS.isInvalid() || 
RHS.isInvalid())
 
  747      return LHS.isInvalid() == 
RHS.isInvalid();
 
 
 
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
This file implements the BitVector class.
static GCRegistry::Add< CoreCLRGC > E("coreclr", "CoreCLR-compatible GC")
Value * getPointer(Value *Ptr)
static TableGen::Emitter::OptClass< SkeletonEmitter > X("gen-skeleton-class", "Generate example skeleton class")
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
reference(SmallBitVector &b, unsigned Idx)
reference & operator=(bool t)
reference & operator=(reference t)
reference(const reference &)=default
This is a 'bitvector' (really, a variable-sized bit array), optimized for the case when the array is ...
reference operator[](unsigned Idx)
int find_last_unset() const
bool operator[](unsigned Idx) const
int find_first() const
Returns the index of the first set bit, -1 if none of the bits are set.
void clearBitsInMask(const uint32_t *Mask, unsigned MaskWords=~0u)
Clear any bits in this vector that are set in Mask.
bool test(const SmallBitVector &RHS) const
Check if (This - RHS) is zero. This is the same as reset(RHS) and any().
SmallBitVector & reset(unsigned I, unsigned E)
Efficiently reset a range of bits in [I, E)
void swap(SmallBitVector &RHS)
int find_prev(unsigned PriorTo) const
find_prev - Returns the index of the first set bit that precedes the the bit at PriorTo.
SmallBitVector & set(unsigned I, unsigned E)
Efficiently set a range of bits in [I, E)
SmallBitVector(SmallBitVector &&RHS)
const_set_bits_iterator set_iterator
bool test(unsigned Idx) const
SmallBitVector()=default
Creates an empty bitvector.
SmallBitVector & operator&=(const SmallBitVector &RHS)
void setBitsInMask(const uint32_t *Mask, unsigned MaskWords=~0u)
Add '1' bits from Mask to this vector.
bool back() const
Return the last element in the vector.
const SmallBitVector & operator=(SmallBitVector &&RHS)
SmallBitVector(unsigned s, bool t=false)
Creates a bitvector of specified number of bits.
iterator_range< const_set_bits_iterator > set_bits() const
SmallBitVector(const SmallBitVector &RHS)
SmallBitVector copy ctor.
void clear()
Clear all bits.
SmallBitVector & operator<<=(unsigned N)
int find_next(unsigned Prev) const
Returns the index of the next set bit following the "Prev" bit.
SmallBitVector & reset(const SmallBitVector &RHS)
Reset bits that are set in RHS. Same as *this &= ~RHS.
SmallBitVector & reset(unsigned Idx)
const SmallBitVector & operator=(const SmallBitVector &RHS)
const_set_bits_iterator_impl< SmallBitVector > const_set_bits_iterator
bool all() const
Returns true if all bits are set.
bool operator==(const SmallBitVector &RHS) const
ArrayRef< uintptr_t > getData(uintptr_t &Store) const
SmallBitVector & operator>>=(unsigned N)
int find_first_unset() const
Returns the index of the first unset bit, -1 if all of the bits are set.
size_type size() const
Returns the number of bits in this bitvector.
void resize(unsigned N, bool t=false)
Grow or shrink the bitvector.
bool any() const
Returns true if any bit is set.
void setBitsNotInMask(const uint32_t *Mask, unsigned MaskWords=~0u)
Add a bit to this vector for every '0' bit in Mask.
bool empty() const
Tests whether there are no bits in this bitvector.
const_set_bits_iterator set_bits_end() const
SmallBitVector & flip(unsigned Idx)
void clearBitsNotInMask(const uint32_t *Mask, unsigned MaskWords=~0u)
Clear a bit in this vector for every '0' bit in Mask.
SmallBitVector & operator|=(const SmallBitVector &RHS)
size_type count() const
Returns the number of bits which are set.
bool anyCommon(const SmallBitVector &RHS) const
Test if any common bits are set.
int find_next_unset(unsigned Prev) const
Returns the index of the next unset bit following the "Prev" bit.
const_set_bits_iterator set_bits_begin() const
void pop_back()
Pop one bit from the end of the vector.
SmallBitVector & set(unsigned Idx)
SmallBitVector operator~() const
bool none() const
Returns true if none of the bits are set.
SmallBitVector & operator^=(const SmallBitVector &RHS)
bool operator!=(const SmallBitVector &RHS) const
ForwardIterator for the bits that are set.
A range adaptor for a pair of iterators.
This provides a very simple, boring adaptor for a begin and end iterator into a range type.
This is an optimization pass for GlobalISel generic memory operations.
APInt operator&(APInt a, const APInt &b)
int countr_one(T Value)
Count the number of ones from the least significant bit to the first zero bit.
iterator_range< T > make_range(T x, T y)
Convenience function for iterating over sub-ranges.
constexpr int popcount(T Value) noexcept
Count the number of set bits in a value.
int countr_zero(T Val)
Count number of 0's from the least significant bit to the most stopping at the first 1.
int countl_zero(T Val)
Count number of 0's from the most significant bit to the least stopping at the first 1.
APInt operator^(APInt a, const APInt &b)
int countl_one(T Value)
Count the number of ones from the most significant bit to the first zero bit.
APInt operator|(APInt a, const APInt &b)
constexpr T maskTrailingOnes(unsigned N)
Create a bitmask with the N right-most bits set to 1, and all other bits set to 0.
Implement std::hash so that hash_code can be used in STL containers.
void swap(llvm::BitVector &LHS, llvm::BitVector &RHS)
Implement std::swap in terms of BitVector swap.
static SmallBitVector getTombstoneKey()
static SmallBitVector getEmptyKey()
static unsigned getHashValue(const SmallBitVector &V)
static bool isEqual(const SmallBitVector &LHS, const SmallBitVector &RHS)
An information struct used to provide DenseMap with the various necessary components for a given valu...