707 lines
23 KiB
C++
707 lines
23 KiB
C++
/*! \file pideque.h
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* \brief Dynamic array of any type
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*
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* This file declares PIDeque
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*/
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/*
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PIP - Platform Independent Primitives
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Dynamic array of any type
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Ivan Pelipenko peri4ko@yandex.ru, Andrey Bychkov work.a.b@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 PIDEQUE_H
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#define PIDEQUE_H
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#include "picontainers.h"
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template <typename T>
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class PIDeque {
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public:
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inline PIDeque(): pid_data(0), pid_size(0), pid_rsize(0), pid_start(0) {
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PIINTROSPECTION_CONTAINER_NEW(T, sizeof(T))
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}
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inline PIDeque(const PIDeque<T> & other): pid_data(0), pid_size(0), pid_rsize(0), pid_start(0) {
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PIINTROSPECTION_CONTAINER_NEW(T, sizeof(T))
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alloc(other.pid_size, true);
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newT(pid_data + pid_start, other.pid_data + other.pid_start, pid_size);
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}
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inline PIDeque(std::initializer_list<T> init_list): pid_data(0), pid_size(0), pid_rsize(0), pid_start(0) {
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PIINTROSPECTION_CONTAINER_NEW(T, sizeof(T))
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alloc(init_list.size(), true);
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newT(pid_data, init_list.begin(), init_list.size());
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}
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inline PIDeque(const T * data, size_t size): pid_data(0), pid_size(0), pid_rsize(0), pid_start(0) {
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PIINTROSPECTION_CONTAINER_NEW(T, sizeof(T))
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alloc(size, true);
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newT(pid_data + pid_start, data, pid_size);
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}
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inline PIDeque(size_t pid_size, const T & f = T()): pid_data(0), pid_size(0), pid_rsize(0), pid_start(0) {
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PIINTROSPECTION_CONTAINER_NEW(T, sizeof(T))
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resize(pid_size, f);
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}
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inline PIDeque(size_t piv_size, std::function<T(size_t)> f): pid_data(0), pid_size(0), pid_rsize(0), pid_start(0) {
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PIINTROSPECTION_CONTAINER_NEW(T, sizeof(T))
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resize(piv_size, f);
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}
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inline PIDeque(PIDeque<T> && other): pid_data(other.pid_data), pid_size(other.pid_size), pid_rsize(other.pid_rsize), pid_start(other.pid_start) {
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PIINTROSPECTION_CONTAINER_NEW(T, sizeof(T))
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other._reset();
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}
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inline virtual ~PIDeque() {
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PIINTROSPECTION_CONTAINER_DELETE(T)
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PIINTROSPECTION_CONTAINER_FREE(T, (pid_rsize))
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deleteT(pid_data + pid_start, pid_size);
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dealloc();
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_reset();
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}
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inline PIDeque<T> & operator =(const PIDeque<T> & other) {
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if (this == &other) return *this;
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deleteT(pid_data + pid_start, pid_size);
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alloc(other.pid_size, true);
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newT(pid_data + pid_start, other.pid_data + other.pid_start, pid_size);
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return *this;
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}
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inline PIDeque<T> & operator =(PIDeque<T> && other) {
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swap(other);
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return *this;
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}
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typedef T value_type;
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enum ReshapeOrder {
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byRow,
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byColumn
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};
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class iterator {
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friend class PIDeque<T>;
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private:
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inline iterator(PIDeque<T> * v, size_t p): parent(v), pos(p) {}
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PIDeque<T> * parent;
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size_t pos;
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public:
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inline iterator(): parent(0), pos(0) {}
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inline T & operator *() {return (*parent)[pos];}
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inline const T & operator *() const {return (*parent)[pos];}
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inline void operator ++() {++pos;}
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inline void operator ++(int) {++pos;}
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inline void operator --() {--pos;}
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inline void operator --(int) {--pos;}
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inline bool operator ==(const iterator & it) const {return (pos == it.pos);}
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inline bool operator !=(const iterator & it) const {return (pos != it.pos);}
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};
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class const_iterator {
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friend class PIDeque<T>;
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private:
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inline const_iterator(const PIDeque<T> * v, size_t p): parent(v), pos(p) {}
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const PIDeque<T> * parent;
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size_t pos;
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public:
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inline const_iterator(): parent(0), pos(0) {}
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inline const T & operator *() const {return (*parent)[pos];}
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inline void operator ++() {++pos;}
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inline void operator ++(int) {++pos;}
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inline void operator --() {--pos;}
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inline void operator --(int) {--pos;}
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inline bool operator ==(const const_iterator & it) const {return (pos == it.pos);}
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inline bool operator !=(const const_iterator & it) const {return (pos != it.pos);}
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};
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class reverse_iterator {
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friend class PIDeque<T>;
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private:
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inline reverse_iterator(PIDeque<T> * v, size_t p): parent(v), pos(p) {}
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PIDeque<T> * parent;
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size_t pos;
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public:
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inline reverse_iterator(): parent(0), pos(0) {}
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inline T & operator *() {return (*parent)[pos];}
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inline const T & operator *() const {return (*parent)[pos];}
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inline void operator ++() {--pos;}
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inline void operator ++(int) {--pos;}
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inline void operator --() {++pos;}
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inline void operator --(int) {++pos;}
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inline bool operator ==(const reverse_iterator & it) const {return (pos == it.pos);}
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inline bool operator !=(const reverse_iterator & it) const {return (pos != it.pos);}
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};
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class const_reverse_iterator {
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friend class PIDeque<T>;
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private:
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inline const_reverse_iterator(const PIDeque<T> * v, size_t p): parent(v), pos(p) {}
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const PIDeque<T> * parent;
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size_t pos;
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public:
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inline const_reverse_iterator(): parent(0), pos(0) {}
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inline const T & operator *() const {return (*parent)[pos];}
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inline void operator ++() {--pos;}
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inline void operator ++(int) {--pos;}
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inline void operator --() {++pos;}
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inline void operator --(int) {++pos;}
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inline bool operator ==(const const_reverse_iterator & it) const {return (pos == it.pos);}
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inline bool operator !=(const const_reverse_iterator & it) const {return (pos != it.pos);}
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};
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inline iterator begin() {return iterator(this, 0);}
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inline iterator end() {return iterator(this, pid_size);}
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inline const_iterator begin() const {return const_iterator(this, 0);}
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inline const_iterator end() const {return const_iterator(this, pid_size);}
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inline reverse_iterator rbegin() {return reverse_iterator(this, pid_size - 1);}
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inline reverse_iterator rend() {return reverse_iterator(this, -1);}
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inline const_reverse_iterator rbegin() const {return const_reverse_iterator(this, pid_size - 1);}
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inline const_reverse_iterator rend() const {return const_reverse_iterator(this, -1);}
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inline size_t size() const {return pid_size;}
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inline ssize_t size_s() const {return pid_size;}
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inline size_t length() const {return pid_size;}
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inline size_t capacity() const {return pid_rsize;}
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inline size_t _start() const {return pid_start;}
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inline bool isEmpty() const {return (pid_size == 0);}
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inline T & operator [](size_t index) {return pid_data[pid_start + index];}
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inline const T & operator [](size_t index) const {return pid_data[pid_start + index];}
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inline const T & at(size_t index) const {return pid_data[pid_start + index];}
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inline T & back() {return pid_data[pid_start + pid_size - 1];}
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inline const T & back() const {return pid_data[pid_start + pid_size - 1];}
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inline T & front() {return pid_data[pid_start];}
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inline const T & front() const {return pid_data[pid_start];}
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inline bool operator ==(const PIDeque<T> & t) const {
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if (pid_size != t.pid_size) return false;
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for (size_t i = 0; i < pid_size; ++i)
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if (t[i] != (*this)[i])
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return false;
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return true;
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}
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inline bool operator !=(const PIDeque<T> & t) const {return !(*this == t);}
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inline bool operator >(const PIDeque<T> & t) const {
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if (pid_size != t.pid_size) return pid_size > t.pid_size;
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for (size_t i = 0; i < pid_size; ++i)
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if (t[i] != (*this)[i]) return t[i] > (*this)[i];
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return false;
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}
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inline bool contains(const T & v) const {
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for (size_t i = pid_start; i < pid_start + pid_size; ++i)
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if (v == pid_data[i])
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return true;
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return false;
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}
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inline int etries(const T & v) const {
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int ec = 0;
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for (size_t i = pid_start; i < pid_start + pid_size; ++i)
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if (v == pid_data[i]) ++ec;
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return ec;
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}
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inline ssize_t indexOf(const T & v) const {
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for (ssize_t i = pid_start; i < pid_start + (ssize_t)pid_size; ++i)
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if (v == pid_data[i])
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return i - pid_start;
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return -1;
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}
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inline ssize_t lastIndexOf(const T & v) const {
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for (ssize_t i = pid_start + (ssize_t)pid_size - 1; i >= pid_start; --i)
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if (v == pid_data[i])
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return i - pid_start;
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return -1;
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}
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inline T * data(size_t index = 0) {return &(pid_data[pid_start + index]);}
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inline const T * data(size_t index = 0) const {return &(pid_data[pid_start + index]);}
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template<typename T1 = T, typename std::enable_if<
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!std::is_trivially_copyable<T1>::value
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, int>::type = 0>
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inline PIDeque<T> & clear() {
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resize(0);
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return *this;
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}
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template<typename T1 = T, typename std::enable_if<
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std::is_trivially_copyable<T1>::value
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, int>::type = 0>
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inline PIDeque<T> & clear() {
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PIINTROSPECTION_CONTAINER_UNUSED(T, pid_size)
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pid_size = 0;
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pid_start = (pid_rsize - pid_size) / 2;
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return *this;
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}
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inline PIDeque<T> & fill(const T & f = T()) {
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deleteT(pid_data + pid_start, pid_size);
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PIINTROSPECTION_CONTAINER_USED(T, pid_size)
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for (size_t i = pid_start; i < pid_start + pid_size; ++i)
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elementNew(pid_data + i, f);
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return *this;
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}
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inline PIDeque<T> & fill(std::function<T(size_t)> f) {
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deleteT(pid_data + pid_start, pid_size);
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PIINTROSPECTION_CONTAINER_USED(T, pid_size)
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for (size_t i = pid_start; i < pid_start + pid_size; ++i)
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elementNew(pid_data + i, f(i));
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return *this;
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}
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inline PIDeque<T> & assign(const T & f = T()) {return fill(f);}
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template<typename T1 = T, typename std::enable_if<
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!std::is_trivially_copyable<T1>::value
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, int>::type = 0>
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inline PIDeque<T> & assign(size_t new_size, const T & f) {
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resize(new_size);
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return fill(f);
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}
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template<typename T1 = T, typename std::enable_if<
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std::is_trivially_copyable<T1>::value
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, int>::type = 0>
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inline PIDeque<T> & assign(size_t new_size, const T & f) {
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_resizeRaw(new_size);
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return fill(f);
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}
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inline PIDeque<T> & resize(size_t new_size, const T & f = T()) {
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if (new_size < pid_size) {
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deleteT(&(pid_data[new_size + pid_start]), pid_size - new_size);
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pid_size = new_size;
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if (new_size == 0)
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pid_start = (pid_rsize - pid_size) / 2;
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}
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if (new_size > pid_size) {
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size_t os = pid_size;
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alloc(new_size, true);
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PIINTROSPECTION_CONTAINER_USED(T, (new_size-os))
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for (size_t i = os + pid_start; i < new_size + pid_start; ++i)
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elementNew(pid_data + i, f);
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}
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return *this;
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}
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inline PIDeque<T> & resize(size_t new_size, std::function<T(size_t)> f) {
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if (new_size < pid_size) {
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deleteT(&(pid_data[new_size + pid_start]), pid_size - new_size);
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pid_size = new_size;
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if (new_size == 0)
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pid_start = (pid_rsize - pid_size) / 2;
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}
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if (new_size > pid_size) {
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size_t os = pid_size;
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alloc(new_size, true);
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PIINTROSPECTION_CONTAINER_USED(T, (new_size-os))
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for (size_t i = os + pid_start; i < new_size + pid_start; ++i)
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elementNew(pid_data + i, f(i));
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}
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return *this;
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}
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template<typename T1 = T, typename std::enable_if<
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std::is_trivially_copyable<T1>::value
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, int>::type = 0>
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inline PIDeque<T> & _resizeRaw(size_t new_size) {
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if (new_size > pid_size) {
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PIINTROSPECTION_CONTAINER_USED(T, (new_size-pid_size));
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}
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if (new_size < pid_size) {
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PIINTROSPECTION_CONTAINER_UNUSED(T, (pid_size-new_size));
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}
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alloc(new_size, true);
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return *this;
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}
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inline PIDeque<T> & reserve(size_t new_size) {
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if (new_size <= pid_rsize) return *this;
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size_t os = pid_size;
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alloc(new_size, true);
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pid_size = os;
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return *this;
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}
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inline PIDeque<T> & insert(size_t index, const T & v = T()) {
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if (index == pid_size) return push_back(v);
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PIINTROSPECTION_CONTAINER_USED(T, 1)
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bool dir = pid_rsize <= 2 ? true : (index >= pid_rsize / 2 ? true : false);
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if (dir) {
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alloc(pid_size + 1, true);
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if (index < pid_size - 1) {
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size_t os = pid_size - index - 1;
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memmove((void*)(&(pid_data[index + pid_start + 1])), (const void*)(&(pid_data[index + pid_start])), os * sizeof(T));
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}
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} else {
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alloc(pid_size + 1, false, -1);
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if (index > 0)
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memmove((void*)(&(pid_data[pid_start])), (const void*)(&(pid_data[pid_start + 1])), index * sizeof(T));
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}
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elementNew(pid_data + pid_start + index, v);
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return *this;
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}
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inline PIDeque<T> & insert(size_t index, T && v) {
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if (index == pid_size) return push_back(v);
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PIINTROSPECTION_CONTAINER_USED(T, 1)
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bool dir = pid_rsize <= 2 ? true : (index >= pid_rsize / 2 ? true : false);
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if (dir) {
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alloc(pid_size + 1, true);
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if (index < pid_size - 1) {
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size_t os = pid_size - index - 1;
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memmove((void*)(&(pid_data[index + pid_start + 1])), (const void*)(&(pid_data[index + pid_start])), os * sizeof(T));
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}
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} else {
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alloc(pid_size + 1, false, -1);
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if (index > 0)
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memmove((void*)(&(pid_data[pid_start])), (const void*)(&(pid_data[pid_start + 1])), index * sizeof(T));
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}
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elementNew(pid_data + pid_start + index, std::move(v));
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return *this;
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}
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inline PIDeque<T> & insert(size_t index, const PIDeque<T> & other) {
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if (other.isEmpty()) return *this;
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assert(&other != this);
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bool dir = pid_rsize <= 2 ? true : (index >= pid_rsize / 2 ? true : false);
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if (dir) {
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ssize_t os = pid_size - index;
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alloc(pid_size + other.pid_size, true);
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if (os > 0)
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memmove((void*)(&(pid_data[index + pid_start + other.pid_size])), (const void*)(&(pid_data[index + pid_start])), os * sizeof(T));
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} else {
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alloc(pid_size + other.pid_size, false, -other.pid_size);
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if (index > 0)
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memmove((void*)(&(pid_data[pid_start])), (const void*)(&(pid_data[pid_start + other.pid_size])), index * sizeof(T));
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}
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newT(pid_data + pid_start + index, other.pid_data + other.pid_start, other.pid_size);
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return *this;
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}
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inline PIDeque<T> & remove(size_t index, size_t count = 1) {
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if (count == 0) return *this;
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if (index + count >= pid_size) {
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resize(index);
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return *this;
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}
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size_t os = pid_size - index - count;
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deleteT(&(pid_data[index + pid_start]), count);
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if (os <= index) {
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if (os > 0) memmove((void*)(&(pid_data[index + pid_start])), (const void*)(&(pid_data[index + pid_start + count])), os * sizeof(T));
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} else {
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if (index > 0) memmove((void*)(&(pid_data[pid_start + count])), (const void*)(&(pid_data[pid_start])), index * sizeof(T));
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pid_start += count;
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}
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pid_size -= count;
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return *this;
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}
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inline void swap(PIDeque<T> & other) {
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piSwap<T*>(pid_data, other.pid_data);
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piSwap<size_t>(pid_size, other.pid_size);
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piSwap<size_t>(pid_rsize, other.pid_rsize);
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piSwap<ssize_t>(pid_start, other.pid_start);
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}
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typedef int (*CompareFunc)(const T * , const T * );
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static int compare_func(const T * t0, const T * t1) {return (*t0) < (*t1) ? -1 : ((*t0) == (*t1) ? 0 : 1);}
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inline PIDeque<T> & sort(CompareFunc compare = compare_func) {
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piqsort(pid_data + pid_start, pid_size, sizeof(T), (int(*)(const void * , const void * ))compare);
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return *this;
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}
|
|
|
|
inline PIDeque<T> & enlarge(llong pid_size) {
|
|
llong ns = size_s() + pid_size;
|
|
if (ns <= 0) clear();
|
|
else resize(size_t(ns));
|
|
return *this;
|
|
}
|
|
|
|
inline PIDeque<T> & removeOne(const T & v) {
|
|
for (size_t i = 0; i < pid_size; ++i)
|
|
if (pid_data[i + pid_start] == v) {
|
|
remove(i);
|
|
return *this;
|
|
}
|
|
return *this;
|
|
}
|
|
inline PIDeque<T> & removeAll(const T & v) {
|
|
for (ssize_t i = 0; i < ssize_t(pid_size); ++i)
|
|
if (pid_data[i + pid_start] == v) {
|
|
remove(i);
|
|
--i;
|
|
}
|
|
return *this;
|
|
}
|
|
|
|
inline PIDeque<T> & push_back(const T & v) {
|
|
alloc(pid_size + 1, true);
|
|
PIINTROSPECTION_CONTAINER_USED(T, 1);
|
|
elementNew(pid_data + pid_start + pid_size - 1, v);
|
|
return *this;
|
|
}
|
|
inline PIDeque<T> & push_back(T && v) {
|
|
alloc(pid_size + 1, true);
|
|
PIINTROSPECTION_CONTAINER_USED(T, 1);
|
|
elementNew(pid_data + pid_start + pid_size - 1, std::move(v));
|
|
return *this;
|
|
}
|
|
inline PIDeque<T> & append(const T & v) {return push_back(v);}
|
|
inline PIDeque<T> & append(T && v) {return push_back(std::move(v));}
|
|
inline PIDeque<T> & append(const PIDeque<T> & t) {
|
|
assert(&t != this);
|
|
size_t ps = pid_size;
|
|
alloc(pid_size + t.pid_size, true);
|
|
newT(pid_data + ps + pid_start, t.pid_data + t.pid_start, t.pid_size);
|
|
return *this;
|
|
}
|
|
inline PIDeque<T> & operator <<(const T & v) {return push_back(v);}
|
|
inline PIDeque<T> & operator <<(T && v) {return push_back(std::move(v));}
|
|
inline PIDeque<T> & operator <<(const PIDeque<T> & t) {return append(t);}
|
|
|
|
inline PIDeque<T> & push_front(const T & v) {insert(0, v); return *this;}
|
|
inline PIDeque<T> & push_front(T && v) {insert(0, std::move(v)); return *this;}
|
|
inline PIDeque<T> & prepend(const T & v) {return push_front(v);}
|
|
inline PIDeque<T> & prepend(T && v) {return push_front(std::move(v));}
|
|
|
|
inline PIDeque<T> & pop_back() {if (pid_size == 0) return *this; resize(pid_size - 1); return *this;}
|
|
inline PIDeque<T> & pop_front() {if (pid_size == 0) return *this; remove(0); return *this;}
|
|
|
|
inline T take_back() {T t(back()); pop_back(); return t;}
|
|
inline T take_front() {T t(front()); pop_front(); return t;}
|
|
|
|
template <typename ST>
|
|
PIDeque<ST> toType() const {
|
|
PIDeque<ST> ret(pid_size);
|
|
for (uint i = 0; i < pid_size; ++i)
|
|
ret[i] = ST(pid_data[i + pid_start]);
|
|
return ret;
|
|
}
|
|
|
|
const PIDeque<T> & forEach(std::function<void(const T &)> f) const {
|
|
for (uint i = 0; i < pid_size; ++i)
|
|
f(pid_data[i + pid_start]);
|
|
return *this;
|
|
}
|
|
PIDeque<T> copyForEach(std::function<T(const T &)> f) const {
|
|
PIDeque<T> ret; ret.reserve(pid_size);
|
|
for (uint i = 0; i < pid_size; ++i)
|
|
ret << f(pid_data[i + pid_start]);
|
|
return ret;
|
|
}
|
|
PIDeque<T> & forEachInplace(std::function<T(const T &)> f) {
|
|
for (uint i = 0; i < pid_size; ++i)
|
|
pid_data[i + pid_start] = f(pid_data[i + pid_start]);
|
|
return *this;
|
|
}
|
|
template <typename ST>
|
|
PIDeque<ST> toType(std::function<ST(const T &)> f) const {
|
|
PIDeque<ST> ret; ret.reserve(pid_size);
|
|
for (uint i = 0; i < pid_size; ++i)
|
|
ret << f(pid_data[i + pid_start]);
|
|
return ret;
|
|
}
|
|
|
|
inline PIDeque<PIDeque<T>> reshape(size_t rows, size_t cols, int order = byRow) const {
|
|
PIDeque<PIDeque<T>> ret;
|
|
if (isEmpty()) return ret;
|
|
assert(rows*cols == pid_size);
|
|
ret.resize(rows);
|
|
if (order == byRow) {
|
|
for (size_t r = 0; r < rows; r++)
|
|
ret[r] = PIDeque<T>(&(pid_data[r*cols]), cols);
|
|
}
|
|
if (order == byColumn) {
|
|
for (size_t r = 0; r < rows; r++) {
|
|
ret[r].resize(cols);
|
|
for (size_t c = 0; c < cols; c++)
|
|
ret[r][c] = pid_data[c*rows + r];
|
|
}
|
|
}
|
|
return ret;
|
|
}
|
|
|
|
template<typename C, typename std::enable_if<
|
|
std::is_same<T, PIDeque<C>>::value
|
|
, int>::type = 0>
|
|
inline PIDeque<C> reshape(int order = byRow) const {
|
|
PIDeque<C> ret;
|
|
if (isEmpty()) return ret;
|
|
size_t rows = size();
|
|
size_t cols = at(0).size();
|
|
ret.reserve(rows * cols);
|
|
if (order == byRow) {
|
|
for (size_t r = 0; r < rows; r++)
|
|
ret.append(at(r));
|
|
}
|
|
if (order == byColumn) {
|
|
for (size_t c = 0; c < cols; c++)
|
|
for (size_t r = 0; r < rows; r++)
|
|
ret << at(r)[c];
|
|
}
|
|
ret.resize(rows * cols);
|
|
return ret;
|
|
}
|
|
|
|
private:
|
|
inline void _reset() {pid_size = pid_rsize = pid_start = 0; pid_data = 0;}
|
|
inline size_t asize(ssize_t s) {
|
|
if (s <= 0) return 0;
|
|
if (pid_rsize + pid_rsize >= size_t(s) && pid_rsize < size_t(s))
|
|
return pid_rsize + pid_rsize;
|
|
ssize_t t = 0, s_ = s - 1;
|
|
while (s_ >> t)
|
|
++t;
|
|
return (1 << t);
|
|
}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
!std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void newT(T * dst, const T * src, size_t s) {
|
|
PIINTROSPECTION_CONTAINER_USED(T, s)
|
|
for (size_t i = 0; i < s; ++i)
|
|
elementNew(dst + i, src[i]);
|
|
}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void newT(T * dst, const T * src, size_t s) {
|
|
PIINTROSPECTION_CONTAINER_USED(T, s)
|
|
memcpy((void*)(dst), (const void*)(src), s * sizeof(T));
|
|
}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
!std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void deleteT(T * d, size_t sz) {
|
|
PIINTROSPECTION_CONTAINER_UNUSED(T, sz)
|
|
if ((uchar*)d != 0) {
|
|
for (size_t i = 0; i < sz; ++i)
|
|
elementDelete(d[i]);
|
|
}
|
|
}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void deleteT(T * d, size_t sz) {
|
|
PIINTROSPECTION_CONTAINER_UNUSED(T, sz)
|
|
}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
!std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void elementNew(T * to, const T & from) {new(to)T(from);}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
!std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void elementNew(T * to, T && from) {new(to)T(std::move(from));}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void elementNew(T1 * to, const T & from) {(*to) = from;}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void elementNew(T * to, T && from) {(*to) = std::move(from);}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
!std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void elementDelete(T & from) {from.~T();}
|
|
template<typename T1 = T, typename std::enable_if<
|
|
std::is_trivially_copyable<T1>::value
|
|
, int>::type = 0>
|
|
inline void elementDelete(T & from) {}
|
|
inline void dealloc() {
|
|
if ((uchar*)pid_data != 0) free((uchar*)pid_data);
|
|
pid_data = 0;
|
|
}
|
|
inline void checkMove(bool direction) {
|
|
if (pid_size >= 4) {
|
|
if (pid_size < pid_rsize / 6) {
|
|
if (pid_start < ssize_t(pid_size + pid_size) || pid_start > (ssize_t(pid_rsize) - ssize_t(pid_size) - ssize_t(pid_size))) {
|
|
ssize_t ns = (pid_rsize - pid_size) / 2;
|
|
if (pid_start != ns) {
|
|
memmove((void*)(pid_data + ns), (const void*)(pid_data + pid_start), pid_size * sizeof(T));
|
|
pid_start = ns;
|
|
}
|
|
}
|
|
}
|
|
} else {
|
|
ssize_t ns = (pid_rsize - pid_size) / 2;
|
|
if (pid_start != ns) {
|
|
memmove((void*)(pid_data + ns), (const void*)(pid_data + pid_start), pid_size * sizeof(T));
|
|
pid_start = ns;
|
|
}
|
|
}
|
|
}
|
|
inline void alloc(size_t new_size, bool direction, ssize_t start_offset = 0) { // direction == true -> alloc forward
|
|
if (direction) {
|
|
if (pid_start + new_size <= pid_rsize) {
|
|
pid_size = new_size;
|
|
checkMove(direction);
|
|
return;
|
|
}
|
|
pid_size = new_size;
|
|
size_t as = asize(pid_start + new_size);
|
|
if (as != pid_rsize) {
|
|
PIINTROSPECTION_CONTAINER_ALLOC(T, (as-pid_rsize))
|
|
T * p_d = (T*)(realloc((void*)(pid_data), as*sizeof(T)));
|
|
assert(p_d);
|
|
pid_data = p_d;
|
|
pid_rsize = as;
|
|
}
|
|
} else {
|
|
size_t as;
|
|
if (pid_start + start_offset < 0)
|
|
as = asize(pid_rsize - start_offset);
|
|
else as = pid_rsize;
|
|
|
|
if (as > pid_rsize) {
|
|
T * td = (T*)(malloc(as * sizeof(T)));
|
|
ssize_t ns = pid_start + as - pid_rsize;
|
|
PIINTROSPECTION_CONTAINER_ALLOC(T, (as-pid_rsize))
|
|
if (pid_rsize > 0 && pid_data != 0) {
|
|
memcpy((void*)(td + ns), (const void*)(pid_data + pid_start), pid_size * sizeof(T));
|
|
dealloc();
|
|
}
|
|
pid_data = td;
|
|
pid_rsize = as;
|
|
pid_start = ns;
|
|
}
|
|
pid_start += start_offset;
|
|
pid_size = new_size;
|
|
checkMove(direction);
|
|
}
|
|
}
|
|
|
|
T * pid_data;
|
|
size_t pid_size, pid_rsize;
|
|
ssize_t pid_start;
|
|
};
|
|
|
|
|
|
#ifdef PIP_STD_IOSTREAM
|
|
template<typename T>
|
|
inline std::ostream & operator <<(std::ostream & s, const PIDeque<T> & v) {s << "{"; for (size_t i = 0; i < v.size(); ++i) {s << v[i]; if (i < v.size() - 1) s << ", ";} s << "}"; return s;}
|
|
#endif
|
|
|
|
template<typename T>
|
|
inline PICout operator <<(PICout s, const PIDeque<T> & v) {
|
|
s.space();
|
|
s.setControl(0, true);
|
|
s << "{";
|
|
for (size_t i = 0; i < v.size(); ++i) {
|
|
s << v[i];
|
|
if (i < v.size() - 1)
|
|
s << ", ";
|
|
}
|
|
s << "}";
|
|
s.restoreControl();
|
|
return s;
|
|
}
|
|
|
|
template<typename T> inline void piSwap(PIDeque<T> & f, PIDeque<T> & s) {f.swap(s);}
|
|
|
|
|
|
#endif // PIDEQUE_H
|