//===- llvm/ADT/PackedVector.h - Packed values vector -----------*- C++ -*-===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// /// /// \file /// This file implements the PackedVector class. /// //===----------------------------------------------------------------------===// #ifndef LLVM_ADT_PACKEDVECTOR_H #define LLVM_ADT_PACKEDVECTOR_H #include "llvm/ADT/BitVector.h" #include #include namespace llvm { /// Store a vector of values using a specific number of bits for each /// value. Both signed and unsigned types can be used, e.g /// @code /// PackedVector vec; /// @endcode /// will create a vector accepting values -2, -1, 0, 1. Any other value will hit /// an assertion. template class PackedVector { static_assert(BitNum > 0, "BitNum must be > 0"); BitVectorTy Bits; // Keep track of the number of elements on our own. // We always maintain Bits.size() == NumElements * BitNum. // Used to avoid an integer division in size(). unsigned NumElements = 0; static T getValue(const BitVectorTy &Bits, unsigned Idx) { if constexpr (std::numeric_limits::is_signed) { T val = T(); for (unsigned i = 0; i != BitNum - 1; ++i) val = T(val | ((Bits[(Idx * BitNum) + i] ? 1UL : 0UL) << i)); if (Bits[(Idx * BitNum) + BitNum - 1]) val = ~val; return val; } else { T val = T(); for (unsigned i = 0; i != BitNum; ++i) val = T(val | ((Bits[(Idx * BitNum) + i] ? 1UL : 0UL) << i)); return val; } } static void setValue(BitVectorTy &Bits, unsigned Idx, T val) { if constexpr (std::numeric_limits::is_signed) { if (val < 0) { val = ~val; Bits.set((Idx * BitNum) + BitNum - 1); } else { Bits.reset((Idx * BitNum) + BitNum - 1); } assert((val >> (BitNum - 1)) == 0 && "value is too big"); for (unsigned i = 0; i != BitNum - 1; ++i) Bits[(Idx * BitNum) + i] = val & (T(1) << i); } else { assert((val >> BitNum) == 0 && "value is too big"); for (unsigned i = 0; i != BitNum; ++i) Bits[(Idx * BitNum) + i] = val & (T(1) << i); } } public: class reference { PackedVector &Vec; const unsigned Idx; public: reference() = delete; reference(PackedVector &vec, unsigned idx) : Vec(vec), Idx(idx) {} reference &operator=(T val) { Vec.setValue(Vec.Bits, Idx, val); return *this; } operator T() const { return Vec.getValue(Vec.Bits, Idx); } }; PackedVector() = default; explicit PackedVector(unsigned size) : Bits(size * BitNum), NumElements(size) {} bool empty() const { return NumElements == 0; } unsigned size() const { return NumElements; } void clear() { Bits.clear(); NumElements = 0; } void resize(unsigned N) { Bits.resize(N * BitNum); NumElements = N; } void reserve(unsigned N) { Bits.reserve(N * BitNum); } PackedVector &reset() { Bits.reset(); return *this; } void push_back(T val) { resize(size() + 1); (*this)[size() - 1] = val; } reference operator[](unsigned Idx) { return reference(*this, Idx); } T operator[](unsigned Idx) const { return getValue(Bits, Idx); } bool operator==(const PackedVector &RHS) const { return Bits == RHS.Bits; } bool operator!=(const PackedVector &RHS) const { return Bits != RHS.Bits; } PackedVector &operator|=(const PackedVector &RHS) { Bits |= RHS.Bits; return *this; } const BitVectorTy &raw_bits() const { return Bits; } BitVectorTy &raw_bits() { return Bits; } }; } // end namespace llvm #endif // LLVM_ADT_PACKEDVECTOR_H