652 lines
20 KiB
C++
652 lines
20 KiB
C++
//! \file picrc.h
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//! \ingroup Math
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//! \~\brief
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//! \~english CRC checksum calculation
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//! \~russian Вычисление CRC контрольной суммы
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/*!
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PIP - Platform Independent Primitives
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CRC checksum calculator
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Ivan Pelipenko peri4ko@yandex.ru
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef PICRC_H
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#define PICRC_H
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#include "pistring.h"
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//! \addtogroup Math
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//! \{
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//! \class uint_cl
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//! \brief
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//! \~english Fixed-size unsigned integer class for CRC calculations
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//! \~russian Класс целого числа фиксированного размера для вычисления CRC
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//! \details
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//! \~english Provides arbitrary length unsigned integer support for CRC computation
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//! \~russian Обеспечивает поддержку целых чисел произвольной длины для вычисления CRC
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//! \}
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template<int L>
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class PIP_EXPORT uint_cl {
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public:
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//! \~english Default constructor, initializes to zero
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//! \~russian Конструктор по умолчанию, инициализирует нулём
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uint_cl() {
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for (int i = 0; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Copy constructor
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//! \~russian Конструктор копирования
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uint_cl(const uint_cl<L> & v) {
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for (int i = 0; i < L / 8; ++i)
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data_[i] = v.data_[i];
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}
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//! \~english Construct from unsigned char
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//! \~russian Конструктор из unsigned char
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uint_cl(uchar v) {
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for (int i = 0; i < L / 8; ++i)
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data_[i] = (i == 0 ? v : 0);
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}
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//! \~english Construct from char
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//! \~russian Конструктор из char
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uint_cl(char v) {
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for (int i = 0; i < L / 8; ++i)
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data_[i] = (i == 0 ? v : 0);
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}
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//! \~english Construct from unsigned short
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//! \~russian Конструктор из unsigned short
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uint_cl(ushort v) {
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int l = piMin<uint>(L / 8, sizeof(v));
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memcpy(data_, &v, l);
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for (int i = l; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Construct from short
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//! \~russian Конструктор из short
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uint_cl(short v) {
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int l = piMin<uint>(L / 8, sizeof(v));
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memcpy(data_, &v, l);
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for (int i = l; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Construct from unsigned int
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//! \~russian Конструктор из unsigned int
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uint_cl(uint v) {
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int l = piMin<uint>(L / 8, sizeof(v));
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memcpy(data_, &v, l);
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for (int i = l; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Construct from int
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//! \~russian Конструктор из int
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uint_cl(int v) {
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int l = piMin<uint>(L / 8, sizeof(v));
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memcpy(data_, &v, l);
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for (int i = l; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Construct from unsigned long
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//! \~russian Конструктор из unsigned long
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uint_cl(ulong v) {
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int l = piMin<uint>(L / 8, sizeof(v));
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memcpy(data_, &v, l);
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for (int i = l; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Construct from long
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//! \~russian Конструктор из long
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uint_cl(long v) {
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int l = piMin<uint>(L / 8, sizeof(v));
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memcpy(data_, &v, l);
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for (int i = l; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Construct from unsigned long long
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//! \~russian Конструктор из unsigned long long
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uint_cl(ullong v) {
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int l = piMin<uint>(L / 8, sizeof(v));
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memcpy(data_, &v, l);
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for (int i = l; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Construct from long long
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//! \~russian Конструктор из long long
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uint_cl(llong v) {
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int l = piMin<uint>(L / 8, sizeof(v));
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memcpy(data_, &v, l);
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for (int i = l; i < L / 8; ++i)
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data_[i] = 0;
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}
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//! \~english Convert to bool
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//! \~russian Преобразование в bool
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operator bool() {
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for (int i = 0; i < L / 8; ++i)
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if (data_[i] > 0) return true;
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return false;
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}
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//! \~english Convert to char
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//! \~russian Преобразование в char
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operator char() { return (char)data_[0]; }
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//! \~english Convert to short
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//! \~russian Преобразование в short
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operator short() {
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short t(0);
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int l = piMin<uint>(L / 8, sizeof(t));
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memcpy(&t, data_, l);
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return t;
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}
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//! \~english Convert to int
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//! \~russian Преобразование в int
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operator int() {
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int t(0);
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int l = piMin<uint>(L / 8, sizeof(t));
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memcpy(&t, data_, l);
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return t;
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}
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//! \~english Convert to long
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//! \~russian Преобразование в long
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operator long() {
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long t(0);
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int l = piMin<uint>(L / 8, sizeof(t));
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memcpy(&t, data_, l);
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return t;
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}
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//! \~english Convert to long long
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//! \~russian Преобразование в long long
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operator llong() {
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llong t(0);
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int l = piMin<uint>(L / 8, sizeof(t));
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memcpy(&t, data_, l);
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return t;
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}
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//! \~english Convert to unsigned char
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//! \~russian Преобразование в unsigned char
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operator uchar() { return data_[0]; }
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//! \~english Convert to unsigned short
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//! \~russian Преобразование в unsigned short
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operator ushort() {
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ushort t(0);
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int l = piMin<uint>(L / 8, sizeof(t));
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memcpy(&t, data_, l);
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return t;
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}
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//! \~english Convert to unsigned int
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//! \~russian Преобразование в unsigned int
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operator uint() {
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uint t(0);
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int l = piMin<uint>(L / 8, sizeof(t));
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memcpy(&t, data_, l);
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return t;
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}
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//! \~english Convert to unsigned long
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//! \~russian Преобразование в unsigned long
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operator ulong() {
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ulong t(0);
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int l = piMin<uint>(L / 8, sizeof(t));
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memcpy(&t, data_, l);
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return t;
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}
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//! \~english Convert to unsigned long long
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//! \~russian Преобразование в unsigned long long
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operator ullong() {
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ullong t(0);
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int l = piMin<uint>(L / 8, sizeof(t));
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memcpy(&t, data_, l);
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return t;
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}
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//! \~english Addition operator
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//! \~russian Оператор сложения
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uint_cl<L> operator+(const uint_cl<L> & v) {
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uint_cl<L> t;
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uint cv;
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bool ov = false;
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for (int i = 0; i < L / 8; ++i) {
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cv = v.data_[i] + data_[i];
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if (ov) ++cv;
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ov = cv > 255;
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t.data_[i] = ov ? cv - 256 : cv;
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}
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return t;
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}
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//! \~english Bitwise AND operator
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//! \~russian Побитовый оператор И
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uint_cl<L> operator&(const uint_cl<L> & v) const {
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uint_cl<L> t;
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for (int i = 0; i < L / 8; ++i)
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t.data_[i] = v.data_[i] & data_[i];
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return t;
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}
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uint_cl<L> operator&(const uchar & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const ushort & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const uint & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const ulong & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const ullong & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const char & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const short & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const int & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const long & v) const { return *this & uint_cl<L>(v); }
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uint_cl<L> operator&(const llong & v) const { return *this & uint_cl<L>(v); }
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//! \~english Bitwise OR operator
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//! \~russian Побитовый оператор ИЛИ
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uint_cl<L> operator|(const uint_cl<L> & v) const {
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uint_cl<L> t;
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for (int i = 0; i < L / 8; ++i)
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t.data_[i] = v.data_[i] | data_[i];
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return t;
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}
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uint_cl<L> operator|(const uchar & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const ushort & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const uint & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const ulong & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const ullong & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const char & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const short & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const int & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const long & v) const { return *this | uint_cl<L>(v); }
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uint_cl<L> operator|(const llong & v) const { return *this | uint_cl<L>(v); }
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//! \~english Bitwise XOR operator
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//! \~russian Побитовый оператор исключающее ИЛИ
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uint_cl<L> operator^(const uint_cl<L> & v) const {
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uint_cl<L> t;
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for (int i = 0; i < L / 8; ++i)
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t.data_[i] = v.data_[i] ^ data_[i];
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return t;
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}
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uint_cl<L> operator^(const uchar & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const ushort & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const uint & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const ulong & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const ullong & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const char & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const short & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const int & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const long & v) const { return *this ^ uint_cl<L>(v); }
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uint_cl<L> operator^(const llong & v) const { return *this ^ uint_cl<L>(v); }
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//! \~english Less than operator
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//! \~russian Оператор меньше
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bool operator<(const uint_cl<L> & v) const {
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for (int i = 0; i < L / 8; ++i) {
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if (v.data_[i] > data_[i]) return true;
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if (v.data_[i] < data_[i]) return false;
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}
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return false;
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}
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//! \~english Less than or equal operator
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//! \~russian Оператор меньше или равно
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bool operator<=(const uint_cl<L> & v) const {
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for (int i = 0; i < L / 8; ++i) {
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if (v.data_[i] > data_[i]) return true;
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if (v.data_[i] < data_[i]) return false;
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}
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return true;
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}
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//! \~english Greater than operator
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//! \~russian Оператор больше
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bool operator>(const uint_cl<L> & v) const {
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for (int i = 0; i < L / 8; ++i) {
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if (v.data_[i] < data_[i]) return true;
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if (v.data_[i] > data_[i]) return false;
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}
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return false;
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}
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//! \~english Greater than or equal operator
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//! \~russian Оператор больше или равно
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bool operator>=(const uint_cl<L> & v) const {
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for (int i = 0; i < L / 8; ++i) {
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if (v.data_[i] < data_[i]) return true;
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if (v.data_[i] > data_[i]) return false;
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}
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return true;
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}
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//! \~english Equality operator
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//! \~russian Оператор равенства
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bool operator==(const uint_cl<L> & v) const {
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for (int i = 0; i < L / 8; ++i)
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if (v.data_[i] != data_[i]) return false;
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return true;
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}
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//! \~english Inequality operator
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//! \~russian Оператор неравенства
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bool operator!=(const uint_cl<L> & v) const {
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for (int i = 0; i < L / 8; ++i)
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if (v.data_[i] != data_[i]) return true;
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return false;
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}
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bool operator<=(const uint_cl<8> & v1) { return (*(uchar *)data()) <= (*(uchar *)v1.data()); }
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//! \~english Right shift operator
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//! \~russian Оператор побитового сдвига вправо
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uint_cl<L> operator>>(const int & c) const {
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uint_cl<L> t;
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int l = L - c;
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bool bit;
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if (l <= 0) return t;
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for (int i = 0; i < l; ++i) {
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bit = 1 & (data_[(i + c) / 8] >> ((i + c) % 8));
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if (bit)
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t.data_[i / 8] |= (1 << (i % 8));
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else
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t.data_[i / 8] &= ~(1 << (i % 8));
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}
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return t;
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}
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uint_cl<L> operator>>(const uint & c) const { return (*this << (int)c); }
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//! \~english Left shift operator
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//! \~russian Оператор побитового сдвига влево
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uint_cl<L> operator<<(const int & c) const {
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uint_cl<L> t;
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int l = L - c;
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bool bit;
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if (l <= 0) return t;
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for (int i = c; i < L; ++i) {
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bit = 1 & (data_[(i - c) / 8] >> ((i - c) % 8));
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if (bit)
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t.data_[i / 8] |= (1 << (i % 8));
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else
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t.data_[i / 8] &= ~(1 << (i % 8));
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}
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return t;
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}
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uint_cl<L> operator<<(const uint & c) const { return (*this >> (int)c); }
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//! \~english In-place bitwise inversion
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//! \~russian Побитовая инверсия на месте
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uint_cl<L> & inverse() const {
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for (int i = 0; i < L / 8; ++i)
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data_[i] = ~data_[i];
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return *this;
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}
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//! \~english Returns bitwise inverted copy
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//! \~russian Возвращает копию с побитовой инверсией
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uint_cl<L> inversed() const {
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uint_cl<L> t(*this);
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for (int i = 0; i < L / 8; ++i)
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t.data_[i] = ~t.data_[i];
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return t;
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}
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//! \~english Returns bit-reversed copy
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//! \~russian Возвращает копию с переставленными битами
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uint_cl<L> reversed() const {
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uint_cl<L> t;
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bool bit;
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for (int i = 0; i < L; ++i) {
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bit = 1 & (data_[(L - i - 1) / 8] >> ((L - i - 1) % 8));
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if (bit)
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t.data_[i / 8] |= (1 << (i % 8));
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else
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t.data_[i / 8] &= ~(1 << (i % 8));
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}
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return t;
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}
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//! \~english Get const pointer to data
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//! \~russian Получить константный указатель на данные
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const uchar * data() const { return data_; }
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//! \~english Get pointer to data
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//! \~russian Получить указатель на данные
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uchar * data() { return data_; }
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//! \~english Get data length in bytes
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//! \~russian Получить длину данных в байтах
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uint length() const { return L / 8; }
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private:
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uchar data_[L / 8];
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};
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//! \~english Reverse byte order
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//! \~russian Реверс порядка байтов
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//! \details
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//! \~english Reverses the bit order within a byte
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//! \~russian Инвертирует порядок битов в байте
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inline uchar reverseByte(uchar b) {
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uchar ret = 0;
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bool bit;
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for (int i = 0; i < 8; ++i) {
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bit = 1 & (b >> (7 - i));
|
||
if (bit) ret |= (1 << i);
|
||
}
|
||
return ret;
|
||
}
|
||
|
||
//! \addtogroup Math
|
||
//! \{
|
||
//! \class PICRC
|
||
//! \brief
|
||
//! \~english CRC calculator class
|
||
//! \~russian Класс калькулятора CRC
|
||
//! \details
|
||
//! \~english Calculates CRC checksum using configurable polynomial and parameters
|
||
//! \~russian Вычисляет контрольную сумму CRC с использованием настраиваемого полинома и параметров
|
||
//! \sa CRC_32, CRC_16, CRC_8
|
||
//! \}
|
||
|
||
template<uint L, typename N = uint_cl<L>>
|
||
class PIP_EXPORT PICRC {
|
||
public:
|
||
//! \~english Default constructor
|
||
//! \~russian Конструктор по умолчанию
|
||
//! \note
|
||
//! \~english Polynomial value defaults to zero
|
||
//! \~russian Значение полинома по умолчанию ноль
|
||
PICRC(const N & poly = N()) {
|
||
poly_ = poly;
|
||
reverse_poly = true;
|
||
init_ = inversed(N(0));
|
||
out_ = inversed(N(0));
|
||
reverse_before_xor = reverse_data = false;
|
||
initTable();
|
||
}
|
||
|
||
//! \~english Constructor with full parameters
|
||
//! \~russian Конструктор с полными параметрами
|
||
//! \param poly polynomial value
|
||
//! \param reverse_poly_ whether to reverse polynomial bits
|
||
//! \param initial initial CRC value
|
||
//! \param out_xor XOR value for output
|
||
PICRC(const N & poly, bool reverse_poly_, const N & initial, const N & out_xor) {
|
||
poly_ = poly;
|
||
reverse_poly = reverse_poly_;
|
||
init_ = initial;
|
||
out_ = out_xor;
|
||
reverse_before_xor = reverse_data = false;
|
||
initTable();
|
||
}
|
||
|
||
//! \~english Set initial CRC value
|
||
//! \~russian Установить начальное значение CRC
|
||
void setInitial(const N & v) { init_ = v; }
|
||
|
||
//! \~english Set output XOR value
|
||
//! \~russian Установить значение XOR для вывода
|
||
void setOutXor(const N & v) { out_ = v; }
|
||
|
||
//! \~english Set polynomial bit reversal
|
||
//! \~russian Установить реверс битов полинома
|
||
void setReversePolynome(bool yes) {
|
||
reverse_poly = yes;
|
||
initTable();
|
||
}
|
||
|
||
//! \~english Set output bit reversal before XOR
|
||
//! \~russian Установить реверс битов вывода перед XOR
|
||
void setReverseOutBeforeXOR(bool yes) { reverse_before_xor = yes; }
|
||
|
||
//! \~english Set data byte reversal
|
||
//! \~russian Установить реверс байтов данных
|
||
void setReverseDataBytes(bool yes) { reverse_data = yes; }
|
||
|
||
//! \~english Initialize lookup table
|
||
//! \~russian Инициализировать таблицу поиска
|
||
void initTable() {
|
||
N tmp, pol = reverse_poly ? reversed(poly_) : poly_;
|
||
for (int i = 0; i < 256; ++i) {
|
||
tmp = uchar(i);
|
||
for (int j = 0; j < 8; ++j)
|
||
tmp = ((tmp & 1) ? ((tmp >> 1) ^ pol) : (tmp >> 1));
|
||
table[i] = tmp;
|
||
}
|
||
}
|
||
|
||
//! \~english Calculate CRC from raw data
|
||
//! \~russian Вычислить CRC из сырых данных
|
||
N calculate(const void * data, int size) {
|
||
N crc = init_;
|
||
uchar *data_ = (uchar *)data, cb;
|
||
uchar nTemp;
|
||
for (int i = 0; i < size; ++i) {
|
||
cb = data_[i];
|
||
if (reverse_data) cb = reverseByte(cb);
|
||
nTemp = cb ^ uchar(crc);
|
||
crc = crc >> 8;
|
||
crc = crc ^ table[nTemp];
|
||
}
|
||
if (reverse_before_xor) crc = reversed(crc);
|
||
return crc ^ out_;
|
||
}
|
||
|
||
//! \~english Calculate CRC from PIByteArray
|
||
//! \~russian Вычислить CRC из PIByteArray
|
||
N calculate(const PIByteArray & d) { return calculate(d.data(), d.size()); }
|
||
|
||
//! \~english Calculate CRC from null-terminated string
|
||
//! \~russian Вычислить CRC из нуль-терминированной строки
|
||
N calculate(const char * str) {
|
||
PIByteArray s(PIString(str).toByteArray());
|
||
return calculate(s.data(), s.size_s());
|
||
}
|
||
|
||
private:
|
||
inline N reversed(const N & v) { return v.reversed(); }
|
||
inline N inversed(const N & v) { return v.inversed(); }
|
||
|
||
N table[256];
|
||
N poly_, init_, out_;
|
||
bool reverse_poly, reverse_before_xor, reverse_data;
|
||
};
|
||
|
||
template<>
|
||
inline uchar PICRC<8, uchar>::reversed(const uchar & v) {
|
||
return reverseByte(v);
|
||
}
|
||
template<>
|
||
inline ushort PICRC<16, ushort>::reversed(const ushort & v) {
|
||
return uint_cl<16>(v).reversed();
|
||
}
|
||
template<>
|
||
inline uint PICRC<32, uint>::reversed(const uint & v) {
|
||
return uint_cl<32>(v).reversed();
|
||
}
|
||
template<>
|
||
inline uchar PICRC<8, uchar>::inversed(const uchar & v) {
|
||
return ~v;
|
||
}
|
||
template<>
|
||
inline ushort PICRC<16, ushort>::inversed(const ushort & v) {
|
||
return ~v;
|
||
}
|
||
template<>
|
||
inline uint PICRC<32, uint>::inversed(const uint & v) {
|
||
return ~v;
|
||
}
|
||
|
||
//! \~english Standard CRC-32 (Ethernet, ZIP, etc.)
|
||
//! \~russian Стандартный CRC-32 (Ethernet, ZIP и т.д.)
|
||
typedef PICRC<32, uint> CRC_32;
|
||
|
||
//! \~english Standard CRC-24
|
||
//! \~russian Стандартный CRC-24
|
||
typedef PICRC<24> CRC_24;
|
||
|
||
//! \~english Standard CRC-16
|
||
//! \~russian Стандартный CRC-16
|
||
typedef PICRC<16, ushort> CRC_16;
|
||
|
||
//! \~english Standard CRC-8
|
||
//! \~russian Стандартный CRC-8
|
||
typedef PICRC<8, uchar> CRC_8;
|
||
|
||
//! \~english Create standard CRC-32 calculator
|
||
//! \~russian Создать стандартный калькулятор CRC-32
|
||
inline CRC_32 standardCRC_32() {
|
||
return CRC_32(0x04C11DB7, true, 0xFFFFFFFF, 0xFFFFFFFF);
|
||
}
|
||
|
||
//! \~english Create standard CRC-16 calculator
|
||
//! \~russian Создать стандартный калькулятор CRC-16
|
||
inline CRC_16 standardCRC_16() {
|
||
return CRC_16(0x8005, true, 0x0, 0x0);
|
||
}
|
||
|
||
//! \~english Create standard CRC-16 Modbus calculator
|
||
//! \~russian Создать стандартный калькулятор CRC-16 Modbus
|
||
inline CRC_16 standardCRC_16_Modbus() {
|
||
return CRC_16(0x8005, 0xFFFF, 0xFFFF, false);
|
||
}
|
||
|
||
//! \~english Create standard CRC-8 calculator
|
||
//! \~russian Создать стандартный калькулятор CRC-8
|
||
inline CRC_8 standardCRC_8() {
|
||
return CRC_8(0xD5, true, 0x0, 0x0);
|
||
}
|
||
|
||
//! \}
|
||
|
||
#endif // CRC_H
|