1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335
|
/****************************************************************************
**
** Copyright (C) 2017 The Qt Company Ltd.
** Contact: https://www.qt.io/licensing/
**
** This file is part of the QtCore module of the Qt Toolkit.
**
** $QT_BEGIN_LICENSE:LGPL$
** Commercial License Usage
** Licensees holding valid commercial Qt licenses may use this file in
** accordance with the commercial license agreement provided with the
** Software or, alternatively, in accordance with the terms contained in
** a written agreement between you and The Qt Company. For licensing terms
** and conditions see https://www.qt.io/terms-conditions. For further
** information use the contact form at https://www.qt.io/contact-us.
**
** GNU Lesser General Public License Usage
** Alternatively, this file may be used under the terms of the GNU Lesser
** General Public License version 3 as published by the Free Software
** Foundation and appearing in the file LICENSE.LGPL3 included in the
** packaging of this file. Please review the following information to
** ensure the GNU Lesser General Public License version 3 requirements
** will be met: https://www.gnu.org/licenses/lgpl-3.0.html.
**
** GNU General Public License Usage
** Alternatively, this file may be used under the terms of the GNU
** General Public License version 2.0 or (at your option) the GNU General
** Public license version 3 or any later version approved by the KDE Free
** Qt Foundation. The licenses are as published by the Free Software
** Foundation and appearing in the file LICENSE.GPL2 and LICENSE.GPL3
** included in the packaging of this file. Please review the following
** information to ensure the GNU General Public License requirements will
** be met: https://www.gnu.org/licenses/gpl-2.0.html and
** https://www.gnu.org/licenses/gpl-3.0.html.
**
** $QT_END_LICENSE$
**
****************************************************************************/
#ifndef QENDIAN_P_H
#define QENDIAN_P_H
//
// W A R N I N G
// -------------
//
// This file is not part of the Qt API. It exists purely as an
// implementation detail. This header file may change from version to
// version without notice, or even be removed.
//
// We mean it.
//
#include <QtCore/qendian.h>
#include <type_traits>
QT_BEGIN_NAMESPACE
// Note if using multiple of these bitfields in a union; the underlying storage type must
// match. Since we always use an unsigned storage type, unsigned and signed versions may
// be used together, but different bit-widths may not.
template<class S, int pos, int width>
class QSpecialIntegerBitfield
{
protected:
typedef typename S::StorageType T;
typedef typename std::make_unsigned<T>::type UT;
static Q_DECL_CONSTEXPR UT mask()
{
return ((UT(1) << width) - 1) << pos;
}
public:
// FIXME: val is public until qtdeclarative is fixed to not access it directly.
UT val;
QSpecialIntegerBitfield &operator =(T t)
{
UT i = S::fromSpecial(val);
i &= ~mask();
i |= (UT(t) << pos) & mask();
val = S::toSpecial(i);
return *this;
}
operator T() const
{
if (std::is_signed<T>::value) {
UT i = S::fromSpecial(val);
i <<= (sizeof(T) * 8) - width - pos;
T t = T(i);
t >>= (sizeof(T) * 8) - width;
return t;
}
return (S::fromSpecial(val) & mask()) >> pos;
}
bool operator !() const { return !(val & S::toSpecial(mask())); }
bool operator ==(QSpecialIntegerBitfield<S, pos, width> i) const
{ return ((val ^ i.val) & S::toSpecial(mask())) == 0; }
bool operator !=(QSpecialIntegerBitfield<S, pos, width> i) const
{ return ((val ^ i.val) & S::toSpecial(mask())) != 0; }
QSpecialIntegerBitfield &operator +=(T i)
{ return (*this = (T(*this) + i)); }
QSpecialIntegerBitfield &operator -=(T i)
{ return (*this = (T(*this) - i)); }
QSpecialIntegerBitfield &operator *=(T i)
{ return (*this = (T(*this) * i)); }
QSpecialIntegerBitfield &operator /=(T i)
{ return (*this = (T(*this) / i)); }
QSpecialIntegerBitfield &operator %=(T i)
{ return (*this = (T(*this) % i)); }
QSpecialIntegerBitfield &operator |=(T i)
{ return (*this = (T(*this) | i)); }
QSpecialIntegerBitfield &operator &=(T i)
{ return (*this = (T(*this) & i)); }
QSpecialIntegerBitfield &operator ^=(T i)
{ return (*this = (T(*this) ^ i)); }
QSpecialIntegerBitfield &operator >>=(T i)
{ return (*this = (T(*this) >> i)); }
QSpecialIntegerBitfield &operator <<=(T i)
{ return (*this = (T(*this) << i)); }
};
template<typename T, int pos, int width>
using QLEIntegerBitfield = QSpecialIntegerBitfield<QLittleEndianStorageType<T>, pos, width>;
template<typename T, int pos, int width>
using QBEIntegerBitfield = QSpecialIntegerBitfield<QBigEndianStorageType<T>, pos, width>;
template<int pos, int width>
using qint32_le_bitfield = QLEIntegerBitfield<int, pos, width>;
template<int pos, int width>
using quint32_le_bitfield = QLEIntegerBitfield<uint, pos, width>;
template<int pos, int width>
using qint32_be_bitfield = QBEIntegerBitfield<int, pos, width>;
template<int pos, int width>
using quint32_be_bitfield = QBEIntegerBitfield<uint, pos, width>;
enum class QSpecialIntegerBitfieldInitializer {};
constexpr QSpecialIntegerBitfieldInitializer QSpecialIntegerBitfieldZero{};
template<class S>
class QSpecialIntegerStorage
{
public:
using UnsignedStorageType = typename std::make_unsigned<typename S::StorageType>::type;
constexpr QSpecialIntegerStorage() = default;
constexpr QSpecialIntegerStorage(QSpecialIntegerBitfieldInitializer) : val(0) {}
constexpr QSpecialIntegerStorage(UnsignedStorageType initial) : val(initial) {}
UnsignedStorageType val;
};
template<class S, int pos, int width, class T = typename S::StorageType>
class QSpecialIntegerAccessor;
template<class S, int pos, int width, class T = typename S::StorageType>
class QSpecialIntegerConstAccessor
{
Q_DISABLE_COPY(QSpecialIntegerConstAccessor)
public:
using Storage = const QSpecialIntegerStorage<S>;
using Type = T;
using UnsignedType = typename std::make_unsigned<T>::type;
QSpecialIntegerConstAccessor(QSpecialIntegerConstAccessor &&) noexcept = default;
QSpecialIntegerConstAccessor &operator=(QSpecialIntegerConstAccessor &&) noexcept = default;
operator Type() const noexcept
{
if (std::is_signed<Type>::value) {
UnsignedType i = S::fromSpecial(storage->val);
i <<= (sizeof(Type) * 8) - width - pos;
Type t = Type(i);
t >>= (sizeof(Type) * 8) - width;
return t;
}
return (S::fromSpecial(storage->val) & mask()) >> pos;
}
bool operator!() const noexcept { return !(storage->val & S::toSpecial(mask())); }
static constexpr UnsignedType mask() noexcept
{
return ((UnsignedType(1) << width) - 1) << pos;
}
private:
template<class Storage, typename... Accessors>
friend class QSpecialIntegerBitfieldUnion;
friend class QSpecialIntegerAccessor<S, pos, width, T>;
explicit QSpecialIntegerConstAccessor(Storage *storage) : storage(storage) {}
friend bool operator==(const QSpecialIntegerConstAccessor<S, pos, width, T> &i,
const QSpecialIntegerConstAccessor<S, pos, width, T> &j) noexcept
{
return ((i.storage->val ^ j.storage->val) & S::toSpecial(mask())) == 0;
}
friend bool operator!=(const QSpecialIntegerConstAccessor<S, pos, width, T> &i,
const QSpecialIntegerConstAccessor<S, pos, width, T> &j) noexcept
{
return ((i.storage->val ^ j.storage->val) & S::toSpecial(mask())) != 0;
}
Storage *storage;
};
template<class S, int pos, int width, class T>
class QSpecialIntegerAccessor
{
Q_DISABLE_COPY(QSpecialIntegerAccessor)
public:
using Const = QSpecialIntegerConstAccessor<S, pos, width, T>;
using Storage = QSpecialIntegerStorage<S>;
using Type = T;
using UnsignedType = typename std::make_unsigned<T>::type;
QSpecialIntegerAccessor(QSpecialIntegerAccessor &&) noexcept = default;
QSpecialIntegerAccessor &operator=(QSpecialIntegerAccessor &&) noexcept = default;
QSpecialIntegerAccessor &operator=(Type t)
{
UnsignedType i = S::fromSpecial(storage->val);
i &= ~Const::mask();
i |= (UnsignedType(t) << pos) & Const::mask();
storage->val = S::toSpecial(i);
return *this;
}
operator Const() { return Const(storage); }
private:
template<class Storage, typename... Accessors>
friend class QSpecialIntegerBitfieldUnion;
explicit QSpecialIntegerAccessor(Storage *storage) : storage(storage) {}
Storage *storage;
};
template<class S, typename... Accessors>
class QSpecialIntegerBitfieldUnion
{
public:
constexpr QSpecialIntegerBitfieldUnion() = default;
constexpr QSpecialIntegerBitfieldUnion(QSpecialIntegerBitfieldInitializer initial)
: storage(initial)
{}
constexpr QSpecialIntegerBitfieldUnion(
typename QSpecialIntegerStorage<S>::UnsignedStorageType initial)
: storage(initial)
{}
template<typename A>
void set(typename A::Type value)
{
member<A>() = value;
}
template<typename A>
typename A::Type get() const
{
return member<A>();
}
typename QSpecialIntegerStorage<S>::UnsignedStorageType data() const
{
return storage.val;
}
private:
template<class A, class...> struct Contains : std::false_type { };
template<class A, class B> struct Contains<A, B> : std::is_same<A, B> { };
template<class A, class B1, class... Bn>
struct Contains<A, B1, Bn...>
: std::conditional<Contains<A, B1>::value, std::true_type, Contains<A, Bn...>>::type {};
template<typename A>
using IsAccessor = Contains<A, Accessors...>;
template<typename A>
A member()
{
Q_STATIC_ASSERT(IsAccessor<A>::value);
return A(&storage);
}
template<typename A>
typename A::Const member() const
{
Q_STATIC_ASSERT(IsAccessor<A>::value);
return typename A::Const(&storage);
}
QSpecialIntegerStorage<S> storage;
};
template<typename T, typename... Accessors>
using QLEIntegerBitfieldUnion
= QSpecialIntegerBitfieldUnion<QLittleEndianStorageType<T>, Accessors...>;
template<typename T, typename... Accessors>
using QBEIntegerBitfieldUnion
= QSpecialIntegerBitfieldUnion<QBigEndianStorageType<T>, Accessors...>;
template<typename... Accessors>
using qint32_le_bitfield_union = QLEIntegerBitfieldUnion<int, Accessors...>;
template<typename... Accessors>
using quint32_le_bitfield_union = QLEIntegerBitfieldUnion<uint, Accessors...>;
template<typename... Accessors>
using qint32_be_bitfield_union = QBEIntegerBitfieldUnion<int, Accessors...>;
template<typename... Accessors>
using quint32_be_bitfield_union = QBEIntegerBitfieldUnion<uint, Accessors...>;
template<int pos, int width, typename T = int>
using qint32_le_bitfield_member
= QSpecialIntegerAccessor<QLittleEndianStorageType<int>, pos, width, T>;
template<int pos, int width, typename T = uint>
using quint32_le_bitfield_member
= QSpecialIntegerAccessor<QLittleEndianStorageType<uint>, pos, width, T>;
template<int pos, int width, typename T = int>
using qint32_be_bitfield_member
= QSpecialIntegerAccessor<QBigEndianStorageType<int>, pos, width, T>;
template<int pos, int width, typename T = uint>
using quint32_be_bitfield_member
= QSpecialIntegerAccessor<QBigEndianStorageType<uint>, pos, width, T>;
QT_END_NAMESPACE
#endif // QENDIAN_P_H
|