mirror of
https://github.com/fraillt/bitsery.git
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239 lines
6.7 KiB
C++
239 lines
6.7 KiB
C++
//MIT License
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//
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//Copyright (c) 2017 Mindaugas Vinkelis
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//
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//Permission is hereby granted, free of charge, to any person obtaining a copy
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//of this software and associated documentation files (the "Software"), to deal
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//in the Software without restriction, including without limitation the rights
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//to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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//copies of the Software, and to permit persons to whom the Software is
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//furnished to do so, subject to the following conditions:
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//
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//The above copyright notice and this permission notice shall be included in all
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//copies or substantial portions of the Software.
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//
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//THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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//IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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//FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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//AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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//LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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//OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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//SOFTWARE.
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#ifndef BITSERY_COMMON_H
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#define BITSERY_COMMON_H
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#include <stdint.h>
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namespace bitsery {
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template<typename T>
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constexpr size_t BITS_SIZE = sizeof(T) << 3;
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template<typename T>
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struct BIGGER_TYPE {
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};
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template<>
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struct BIGGER_TYPE<uint8_t> {
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typedef uint16_t type;
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};
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template<>
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struct BIGGER_TYPE<uint16_t> {
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typedef uint32_t type;
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};
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template<>
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struct BIGGER_TYPE<uint32_t> {
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typedef uint64_t type;
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};
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template<>
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struct BIGGER_TYPE<int8_t> {
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typedef int16_t type;
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};
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template<>
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struct BIGGER_TYPE<int16_t> {
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typedef int32_t type;
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};
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template<>
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struct BIGGER_TYPE<int32_t> {
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typedef int64_t type;
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};
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template<>
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struct BIGGER_TYPE<char> {
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typedef int16_t type;
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};
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template<typename T>
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constexpr size_t ARITHMETIC_OR_ENUM_SIZE = std::is_arithmetic<T>::value || std::is_enum<T>::value ? sizeof(T) : 0;
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template<typename T, typename Enable = void>
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struct SAME_SIZE_UNSIGNED_TYPE {
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typedef std::make_unsigned_t<T> type;
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};
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template<typename T>
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struct SAME_SIZE_UNSIGNED_TYPE<T, typename std::enable_if<std::is_enum<T>::value>::type> {
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typedef std::make_unsigned_t<std::underlying_type_t<T>> type;
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};
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template<typename T>
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struct SAME_SIZE_UNSIGNED_TYPE<T, typename std::enable_if<std::is_floating_point<T>::value>::type> {
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typedef std::conditional_t<std::is_same<T, float>::value, uint32_t, uint64_t> type;
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};
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template<typename T>
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using SAME_SIZE_UNSIGNED = typename SAME_SIZE_UNSIGNED_TYPE<T>::type;
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template<size_t SIZE>
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struct ProcessAnyType {
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template<typename S, typename T>
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static void serialize(S &s, T &&v) {
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s.template value<SIZE>(std::forward<T>(v));
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}
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};
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template<>
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struct ProcessAnyType<0> {
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template<typename S, typename T>
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static void serialize(S &s, T &&v) {
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s.object(std::forward<T>(v));
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}
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};
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#define SERIALIZE(ObjectType) \
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template <typename S, typename T, typename std::enable_if<std::is_same<T, ObjectType>::value || std::is_same<T, const ObjectType>::value>::type* = nullptr> \
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S& serialize(S& s, T& o)
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/*
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* range functions
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*/
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template<typename T>
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constexpr size_t calcRequiredBits(T min, T max) {
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size_t res{};
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for (auto diff = max - min; diff > 0; diff >>= 1)
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++res;
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return res;
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}
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template<typename T, typename Enable = void>
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struct RangeSpec {
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constexpr RangeSpec(T minValue, T maxValue)
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: min{minValue},
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max{maxValue},
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bitsRequired{calcRequiredBits(min, max)} {
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}
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const T min;
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const T max;
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const size_t bitsRequired;
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};
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template<typename T>
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struct RangeSpec<T, typename std::enable_if<std::is_enum<T>::value>::type> {
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constexpr RangeSpec(T minValue, T maxValue) :
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min{minValue},
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max{maxValue},
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bitsRequired{calcRequiredBits(
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static_cast<std::underlying_type_t<T>>(min),
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static_cast<std::underlying_type_t<T>>(max))} {
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}
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const T min;
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const T max;
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const size_t bitsRequired;
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};
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//this class is used to make default RangeSpec float specialization always prefer constructor with precision
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struct BitsConstraint {
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explicit constexpr BitsConstraint(size_t bits) : value{bits} {}
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const size_t value;
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};
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template<typename T>
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struct RangeSpec<T, typename std::enable_if<std::is_floating_point<T>::value>::type> {
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constexpr RangeSpec(T minValue, T maxValue, BitsConstraint bits) :
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min{minValue},
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max{maxValue},
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bitsRequired{bits.value} {
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}
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constexpr RangeSpec(T minValue, T maxValue, T precision) :
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min{minValue},
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max{maxValue},
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bitsRequired{calcRequiredBits<SAME_SIZE_UNSIGNED<T>>({}, ((max - min) / precision))} {
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}
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const T min;
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const T max;
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const size_t bitsRequired;
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};
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template<typename T, typename std::enable_if<std::is_arithmetic<T>::value>::type * = nullptr>
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bool isRangeValid(const T &v, const RangeSpec<T> &r) {
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return !(r.min > v || v > r.max);
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}
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template<typename T, typename std::enable_if<std::is_enum<T>::value>::type * = nullptr>
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bool isRangeValid(const T &v, const RangeSpec<T> &r) {
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using VT = std::underlying_type_t<T>;
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return !(static_cast<VT>(r.min) > static_cast<VT>(v)
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|| static_cast<VT>(v) > static_cast<VT>(r.max));
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}
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/*
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* delta functions
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*/
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class ObjectMemoryPosition {
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public:
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template<typename T>
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ObjectMemoryPosition(const T &oldObj, const T &newObj)
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:ObjectMemoryPosition{reinterpret_cast<const char *>(&oldObj), reinterpret_cast<const char *>(&newObj),
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sizeof(T)} {
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}
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template<typename T>
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bool isFieldsEquals(const T &newObjField) {
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return *getOldObjectField(newObjField) == newObjField;
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}
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template<typename T>
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const T *getOldObjectField(const T &field) {
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auto offset = reinterpret_cast<const char *>(&field) - newObj;
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return reinterpret_cast<const T *>(oldObj + offset);
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}
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private:
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ObjectMemoryPosition(const char *objOld, const char *objNew, size_t)
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: oldObj{objOld},
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newObj{objNew} {
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}
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const char *oldObj;
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const char *newObj;
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};
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}
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#endif //BITSERY_COMMON_H
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