160 lines
4.6 KiB
C
160 lines
4.6 KiB
C
/**
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* File: array_deque.c
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* Created Time: 2023-03-13
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* Author: Gonglja (glj0@outlook.com)
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*/
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#include "../utils/common.h"
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/* Double-ended queue class based on circular array */
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typedef struct {
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int *nums; // Array for storing queue elements
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int front; // Front pointer, pointing to the front element
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int queSize; // Tail pointer, pointing to queue end + 1
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int queCapacity; // Queue capacity
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} ArrayDeque;
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/* Constructor */
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ArrayDeque *newArrayDeque(int capacity) {
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ArrayDeque *deque = (ArrayDeque *)malloc(sizeof(ArrayDeque));
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// Initialize an array
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deque->queCapacity = capacity;
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deque->nums = (int *)malloc(sizeof(int) * deque->queCapacity);
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deque->front = deque->queSize = 0;
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return deque;
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}
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/* Destructor */
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void delArrayDeque(ArrayDeque *deque) {
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free(deque->nums);
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free(deque);
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}
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/* Get the capacity of the double-ended queue */
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int capacity(ArrayDeque *deque) {
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return deque->queCapacity;
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}
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/* Get the length of the double-ended queue */
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int size(ArrayDeque *deque) {
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return deque->queSize;
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}
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/* Determine if the double-ended queue is empty */
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bool empty(ArrayDeque *deque) {
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return deque->queSize == 0;
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}
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/* Calculate circular array index */
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int dequeIndex(ArrayDeque *deque, int i) {
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// Implement circular array by modulo operation
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// When i passes the end of the array, return to the beginning
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// When i exceeds the head of the array, return to the tail
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return ((i + capacity(deque)) % capacity(deque));
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}
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/* Front enqueue */
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void pushFirst(ArrayDeque *deque, int num) {
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if (deque->queSize == capacity(deque)) {
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printf("Double-ended queue is full\r\n");
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return;
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}
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// Move the front pointer one position to the left
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// Use modulo operation to make front pass the head of the array back to the tail
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deque->front = dequeIndex(deque, deque->front - 1);
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// Add num to the front of the queue
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deque->nums[deque->front] = num;
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deque->queSize++;
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}
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/* Rear enqueue */
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void pushLast(ArrayDeque *deque, int num) {
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if (deque->queSize == capacity(deque)) {
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printf("Double-ended queue is full\r\n");
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return;
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}
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// Calculate rear pointer, pointing to rear index + 1
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int rear = dequeIndex(deque, deque->front + deque->queSize);
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// Add num to the rear
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deque->nums[rear] = num;
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deque->queSize++;
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}
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/* Access front element */
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int peekFirst(ArrayDeque *deque) {
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// Access exception: Double-ended queue is empty
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assert(empty(deque) == 0);
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return deque->nums[deque->front];
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}
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/* Access rear element */
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int peekLast(ArrayDeque *deque) {
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// Access exception: Double-ended queue is empty
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assert(empty(deque) == 0);
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int last = dequeIndex(deque, deque->front + deque->queSize - 1);
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return deque->nums[last];
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}
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/* Front dequeue */
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int popFirst(ArrayDeque *deque) {
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int num = peekFirst(deque);
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// Move front pointer one position backward
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deque->front = dequeIndex(deque, deque->front + 1);
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deque->queSize--;
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return num;
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}
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/* Rear dequeue */
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int popLast(ArrayDeque *deque) {
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int num = peekLast(deque);
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deque->queSize--;
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return num;
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}
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/* Driver Code */
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int main() {
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/* Initialize queue */
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int capacity = 10;
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ArrayDeque *deque = newArrayDeque(capacity);
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pushLast(deque, 3);
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pushLast(deque, 2);
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pushLast(deque, 5);
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printf("Double-ended queue deque =");
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printArray(deque->nums, deque->queSize);
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/* Access element */
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int peekFirstNum = peekFirst(deque);
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printf("Front element peekFirst = %d\r\n", peekFirstNum);
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int peekLastNum = peekLast(deque);
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printf("Back element peekLast = %d\r\n", peekLastNum);
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/* Element enqueue */
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pushLast(deque, 4);
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printf("Element 4 enqueued at the tail, deque =");
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printArray(deque->nums, deque->queSize);
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pushFirst(deque, 1);
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printf("Element 1 enqueued at the head, deque =");
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printArray(deque->nums, deque->queSize);
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/* Element dequeue */
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int popLastNum = popLast(deque);
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printf("Back dequeue element = %d, deque after back dequeue= ", popLastNum);
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printArray(deque->nums, deque->queSize);
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int popFirstNum = popFirst(deque);
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printf("Front dequeue element = %d, deque after front dequeue= ", popFirstNum);
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printArray(deque->nums, deque->queSize);
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/* Get the length of the queue */
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int dequeSize = size(deque);
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printf("Double-ended queue length size = %d\r\n", dequeSize);
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/* Determine if the queue is empty */
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bool isEmpty = empty(deque);
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printf("Is the queue empty = %s\r\n", isEmpty ? "true" : "false");
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// Free memory
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delArrayDeque(deque);
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return 0;
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}
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