242 lines
6.1 KiB
C++
242 lines
6.1 KiB
C++
/*
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* Created by Brett on 26/12/22.
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* Licensed under GNU General Public License V3.0
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* See LICENSE file for license detail
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*/
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#ifndef BLT_QUEUE_H
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#define BLT_QUEUE_H
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#include <blt/std/memory_util.h>
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/**
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*
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*/
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namespace blt
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{
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/**
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* Standard array backed first in first out queue
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* @tparam T type stored in the queue
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*/
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template<typename T>
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class flat_stack
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{
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private:
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int m_size = 16;
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int m_insertIndex = 0;
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T* m_data = new T[m_size];
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/**
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* Expands the internal array to the new size, copying over the data and shifting its minimal position to index 0
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* and deletes the old array from memory.
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* @param newSize new size of the internal array
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*/
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void expand()
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{
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int new_size = blt::mem::next_byte_allocation(m_size);
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auto tempData = new T[new_size];
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for (int i = 0; i < m_insertIndex; i++)
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tempData[i] = m_data[i];
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delete[] m_data;
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m_data = tempData;
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m_size = new_size;
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}
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public:
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void push(const T& t)
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{
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if (m_insertIndex >= m_size)
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{
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expand();
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}
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m_data[m_insertIndex++] = t;
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}
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/**
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* Warning does not contain runtime error checking!
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* @return the element at the "front" of the queue.
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*/
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[[nodiscard]] const T& top() const
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{
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return m_data[m_insertIndex - 1];
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}
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void pop()
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{
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if (empty())
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return;
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m_insertIndex--;
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}
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[[nodiscard]] inline bool empty() const
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{
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return m_insertIndex <= 0;
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}
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[[nodiscard]] inline int size() const
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{
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return m_insertIndex;
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}
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~flat_stack()
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{
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delete[](m_data);
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}
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};
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/**
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* Standard array backed first in last out queue (stack)
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* @tparam T type stored in the queue
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*/
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template<typename T>
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class flat_queue
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{
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private:
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int m_size = 16;
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int m_headIndex = 0;
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int m_insertIndex = 0;
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T* m_data;
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/**
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* Expands the internal array to allow for more storage of elements
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*/
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void expand()
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{
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int new_size = blt::mem::next_byte_allocation(m_size);
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int removed_size = m_size - m_headIndex;
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auto tempData = new T[new_size];
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// only copy data from where we've removed onward
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for (int i = 0; i < removed_size; i++)
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tempData[i] = m_data[i + m_headIndex]; // but don't copy data we've pop'd
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delete[] m_data;
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m_headIndex = 0;
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m_insertIndex = removed_size - 1;
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m_data = tempData;
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m_size = new_size;
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}
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public:
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flat_queue(): m_data(new T[m_size])
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{
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}
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inline void push(const T& t)
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{
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if (m_insertIndex + 1 >= m_size)
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{
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expand();
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}
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m_data[m_insertIndex++] = t;
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}
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/**
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* Warning does not contain runtime error checking!
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* @return the element at the "front" of the queue.
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*/
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[[nodiscard]] const T& front() const
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{
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return m_data[m_headIndex];
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}
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[[nodiscard]] T& front()
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{
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return m_data[m_headIndex];
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}
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inline void pop()
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{
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if (empty())
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return;
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m_headIndex++;
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}
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[[nodiscard]] inline bool empty() const
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{
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return m_headIndex >= m_size;
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}
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[[nodiscard]] inline int size() const
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{
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return m_insertIndex - m_headIndex;
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}
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inline T* begin()
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{
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return m_data[m_headIndex];
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}
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inline T* end()
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{
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return m_data[m_insertIndex];
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}
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~flat_queue()
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{
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delete[](m_data);
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}
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};
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template<typename T>
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class linked_stack
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{
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private:
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struct node
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{
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T t;
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node* next;
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node(const T& t, node* node): t(t), next(node)
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{}
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node(T&& t, node* node): t(std::move(t)), next(node)
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{}
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};
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node* head = nullptr;
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public:
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inline void push(const T& t)
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{
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head = new node(t, head);
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}
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inline void push(T&& t)
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{
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head = new node(std::move(t), head);
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}
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inline T& top()
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{
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return head->t;
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}
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inline const T& top() const
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{
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return head->t;
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}
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inline void pop()
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{
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auto* h = head;
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head = head->next;
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delete h;
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}
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~linked_stack()
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{
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auto* h = head;
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while (h != nullptr)
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{
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auto* hc = h;
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h = h->next;
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delete hc;
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}
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}
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};
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}
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#endif //BLT_QUEUE_H
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