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			214 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			214 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/**
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 * File: hash_map_chaining.c
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 * Created Time: 2023-10-13
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 * Author: SenMing (1206575349@qq.com), krahets (krahets@163.com)
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 */
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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// 假设 val 最大长度为 100
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#define MAX_SIZE 100
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/* 键值对 */
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typedef struct {
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    int key;
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    char val[MAX_SIZE];
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} Pair;
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/* 链表节点 */
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typedef struct Node {
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    Pair *pair;
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    struct Node *next;
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} Node;
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/* 链式地址哈希表 */
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typedef struct {
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    int size;         // 键值对数量
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    int capacity;     // 哈希表容量
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    double loadThres; // 触发扩容的负载因子阈值
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    int extendRatio;  // 扩容倍数
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    Node **buckets;   // 桶数组
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} HashMapChaining;
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/* 构造函数 */
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HashMapChaining *newHashMapChaining() {
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    HashMapChaining *hashMap = (HashMapChaining *)malloc(sizeof(HashMapChaining));
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    hashMap->size = 0;
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    hashMap->capacity = 4;
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    hashMap->loadThres = 2.0 / 3.0;
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    hashMap->extendRatio = 2;
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    hashMap->buckets = (Node **)malloc(hashMap->capacity * sizeof(Node *));
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    for (int i = 0; i < hashMap->capacity; i++) {
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        hashMap->buckets[i] = NULL;
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    }
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    return hashMap;
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}
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/* 析构函数 */
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void delHashMapChaining(HashMapChaining *hashMap) {
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    for (int i = 0; i < hashMap->capacity; i++) {
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        Node *cur = hashMap->buckets[i];
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        while (cur) {
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            Node *tmp = cur;
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            cur = cur->next;
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            free(tmp->pair);
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            free(tmp);
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        }
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    }
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    free(hashMap->buckets);
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    free(hashMap);
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}
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/* 哈希函数 */
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int hashFunc(HashMapChaining *hashMap, int key) {
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    return key % hashMap->capacity;
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}
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/* 负载因子 */
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double loadFactor(HashMapChaining *hashMap) {
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    return (double)hashMap->size / (double)hashMap->capacity;
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}
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/* 查询操作 */
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char *get(HashMapChaining *hashMap, int key) {
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    int index = hashFunc(hashMap, key);
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    // 遍历桶,若找到 key ,则返回对应 val
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    Node *cur = hashMap->buckets[index];
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    while (cur) {
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        if (cur->pair->key == key) {
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            return cur->pair->val;
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        }
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        cur = cur->next;
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    }
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    return ""; // 若未找到 key ,则返回空字符串
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}
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/* 添加操作 */
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void put(HashMapChaining *hashMap, int key, const char *val);
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/* 扩容哈希表 */
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void extend(HashMapChaining *hashMap) {
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    // 暂存原哈希表
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    int oldCapacity = hashMap->capacity;
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    Node **oldBuckets = hashMap->buckets;
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    // 初始化扩容后的新哈希表
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    hashMap->capacity *= hashMap->extendRatio;
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    hashMap->buckets = (Node **)malloc(hashMap->capacity * sizeof(Node *));
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    for (int i = 0; i < hashMap->capacity; i++) {
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        hashMap->buckets[i] = NULL;
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    }
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    hashMap->size = 0;
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    // 将键值对从原哈希表搬运至新哈希表
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    for (int i = 0; i < oldCapacity; i++) {
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        Node *cur = oldBuckets[i];
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        while (cur) {
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            put(hashMap, cur->pair->key, cur->pair->val);
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            Node *temp = cur;
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            cur = cur->next;
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            // 释放内存
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            free(temp->pair);
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            free(temp);
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        }
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    }
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    free(oldBuckets);
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}
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/* 添加操作 */
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void put(HashMapChaining *hashMap, int key, const char *val) {
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    // 当负载因子超过阈值时,执行扩容
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    if (loadFactor(hashMap) > hashMap->loadThres) {
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        extend(hashMap);
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    }
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    int index = hashFunc(hashMap, key);
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    // 遍历桶,若遇到指定 key ,则更新对应 val 并返回
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    Node *cur = hashMap->buckets[index];
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    while (cur) {
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        if (cur->pair->key == key) {
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            strcpy(cur->pair->val, val); // 若遇到指定 key ,则更新对应 val 并返回
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            return;
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        }
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        cur = cur->next;
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    }
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    // 若无该 key ,则将键值对添加至链表头部
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    Pair *newPair = (Pair *)malloc(sizeof(Pair));
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    newPair->key = key;
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    strcpy(newPair->val, val);
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    Node *newNode = (Node *)malloc(sizeof(Node));
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    newNode->pair = newPair;
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    newNode->next = hashMap->buckets[index];
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    hashMap->buckets[index] = newNode;
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    hashMap->size++;
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}
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/* 删除操作 */
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void removeItem(HashMapChaining *hashMap, int key) {
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    int index = hashFunc(hashMap, key);
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    Node *cur = hashMap->buckets[index];
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    Node *pre = NULL;
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    while (cur) {
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        if (cur->pair->key == key) {
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            // 从中删除键值对
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            if (pre) {
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                pre->next = cur->next;
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            } else {
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                hashMap->buckets[index] = cur->next;
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            }
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            // 释放内存
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            free(cur->pair);
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            free(cur);
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            hashMap->size--;
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            return;
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        }
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        pre = cur;
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        cur = cur->next;
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    }
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}
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/* 打印哈希表 */
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void print(HashMapChaining *hashMap) {
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    for (int i = 0; i < hashMap->capacity; i++) {
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        Node *cur = hashMap->buckets[i];
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        printf("[");
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        while (cur) {
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            printf("%d -> %s, ", cur->pair->key, cur->pair->val);
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            cur = cur->next;
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        }
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        printf("]\n");
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    }
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}
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/* Driver Code */
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int main() {
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    /* 初始化哈希表 */
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    HashMapChaining *hashMap = newHashMapChaining();
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    /* 添加操作 */
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    // 在哈希表中添加键值对 (key, value)
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    put(hashMap, 12836, "小哈");
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    put(hashMap, 15937, "小啰");
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    put(hashMap, 16750, "小算");
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    put(hashMap, 13276, "小法");
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    put(hashMap, 10583, "小鸭");
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    printf("\n添加完成后,哈希表为\nKey -> Value\n");
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    print(hashMap);
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    /* 查询操作 */
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    // 向哈希表中输入键 key ,得到值 value
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    char *name = get(hashMap, 13276);
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    printf("\n输入学号 13276 ,查询到姓名 %s\n", name);
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    /* 删除操作 */
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    // 在哈希表中删除键值对 (key, value)
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    removeItem(hashMap, 12836);
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    printf("\n删除学号 12836 后,哈希表为\nKey -> Value\n");
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    print(hashMap);
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    /* 释放哈希表空间 */
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    delHashMapChaining(hashMap);
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    return 0;
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}
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