实验五

task1.1
#include <stdio.h>
#define N 5
void input(int x[], int n);
void output(int x[], int n);
void find_min_max(int x[], int n, int *pmin, int *pmax);
int main() {
int a[N];
int min, max;
printf("录入%d个数据:\n", N);
input(a, N);
printf("数据是: \n");
output(a, N);
printf("数据处理...\n");
find_min_max(a, N, &min, &max);
printf("输出结果:\n");
printf("min = %d, max = %d\n", min, max);
return 0;
}
void input(int x[], int n) {
int i;
for(i = 0; i < n; ++i)
scanf("%d", &x[i]);
}
void output(int x[], int n) {
int i;
for(i = 0; i < n; ++i)
printf("%d ", x[i]);
printf("\n");
}
void find_min_max(int x[], int n, int *pmin, int *pmax) {
int i;
*pmin = *pmax = x[0];
for(i = 0; i < n; ++i)
if(x[i] < *pmin)
*pmin = x[i];
else if(x[i] > *pmax)
*pmax = x[i];
}

731623d1dbd290f9a978bf3fe97e605c

q1:查找数组最大值和最小值,借用指针带入结果

q2:pmin接受主函数传入的&min,指向main里的min;pmax接受&max,指向main里max

 

task1.2

#include <stdio.h>
#define N 5
void input(int x[], int n);
void output(int x[], int n);
int *find_max(int x[], int n);
int main() {
int a[N];
int *pmax;
printf("录入%d个数据:\n", N);
input(a, N);
printf("数据是: \n");
output(a, N);
printf("数据处理...\n");
pmax = find_max(a, N);
printf("输出结果:\n");
printf("max = %d\n", *pmax);
return 0;
}
void input(int x[], int n) {
int i;
for(i = 0; i < n; ++i)
scanf("%d", &x[i]);
}
void output(int x[], int n) {
int i;
for(i = 0; i < n; ++i)
printf("%d ", x[i]);
printf("\n");
}
int *find_max(int x[], int n) {
int max_index = 0;
int i;
for(i = 0; i < n; ++i)
if(x[i] > x[max_index])
max_index = i;
return &x[max_index];
}

image

 q1:功能:找出数组中最大值所在的元素;返回数组中最大值元素地址

q2:可以。改写后的代码逻辑等价,先用ptr指向首元素,通过不断循环更新最大值

 

task2.1

#include <stdio.h>
#include <string.h>
#define N 80
int main() {
char s1[N] = "Learning makes me happy";
char s2[N] = "Learning makes me sleepy";
char tmp[N];
printf("sizeof(s1) vs. strlen(s1): \n");
printf("sizeof(s1) = %d\n", sizeof(s1));
printf("strlen(s1) = %d\n", strlen(s1));
printf("\nbefore swap: \n");
printf("s1: %s\n", s1);
printf("s2: %s\n", s2);
printf("\nswapping...\n");
strcpy(tmp, s1);
strcpy(s1, s2);
strcpy(s2, tmp);
printf("\nafter swap: \n");
printf("s1: %s\n", s1);
printf("s2: %s\n", s2);
return 0;
}

image

 q1:s1大小为80,sizeof(s1)统计数组总内存占用,strlen(s1)统计字符串有效长度

q2:不能。C 语言中数组名是常量地址,无法通过 s1 = "..." 赋值,需用 strcpy 等函数操作

q3:是。通过 strcpy 逐个复制字符,s1 和 s2 的存储内容完成交换

 

task2.2

#include <stdio.h>
#include <string.h>
#define N 80
int main() {
char *s1 = "Learning makes me happy";
char *s2 = "Learning makes me sleepy";
char *tmp;
printf("sizeof(s1) vs. strlen(s1): \n");
printf("sizeof(s1) = %d\n", sizeof(s1));
printf("strlen(s1) = %d\n", strlen(s1));
printf("\nbefore swap: \n");
printf("s1: %s\n", s1);
printf("s2: %s\n", s2);
printf("\nswapping...\n");
tmp = s1;
s1 = s2;
s2 = tmp;
printf("\nafter swap: \n");
printf("s1: %s\n", s1);
printf("s2: %s\n", s2);
return 0;
}

image

q1:  s1 存储字符串常量的首地址。 sizeof(s1) 统计指针本身的大小。strlen(s1) 统计指针指向字符串的有效长度。

q2:能。指针变量可以重新赋值,指向新的字符串常量地址;区别:数组在栈区开辟内存,字符串复制到数组空间,内容可修改;字符串存放在只读常量区,指针仅存地址,原字符串内容不能修改。数组名是地址常量,不能整体赋值;指针是变量,可反复修改指向。

q3:交换地址值,只交换内容,内存没有交换。

 

task3

#include <stdio.h>
int main() {
int x[2][4] = {{1, 9, 8, 4}, {2, 0, 4, 9}};
int i, j;
int *ptr1;
int(*ptr2)[4];
printf("输出1: 使用数组名、下标直接访问二维数组元素\n");
for (i = 0; i < 2; ++i) {
for (j = 0; j < 4; ++j)
printf("%d ", x[i][j]);
printf("\n");
}
printf("\n输出2: 使用指针变量ptr1(指向元素)访问\n");
for (ptr1 = &x[0][0], i = 0; ptr1 < &x[0][0] + 8; ++ptr1, ++i) {
printf("%d ", *ptr1);
if ((i + 1) % 4 == 0)
printf("\n");
}
printf("\n输出3: 使用指针变量ptr2(指向一维数组)访问\n");
for (ptr2 = x; ptr2 < x + 2; ++ptr2) {
for (j = 0; j < 4; ++j)
printf("%d ", *(*ptr2 + j));
printf("\n");
}
return 0;
}

image

 q1:前者ptr是指向含有四个int元素的一维数组的数组指针,后者是存放四个int*类型指针的指针数组

 

task4

#include <stdio.h>
#define N 80
void replace(char *str, char old_char, char new_char);
int main() {
char text[N] = "Programming is difficult or not, it is a question.";
printf("原始文本: \n");
printf("%s\n", text);
replace(text, 'i', '*');
printf("处理后文本: \n");
printf("%s\n", text);
return 0;
}
void replace(char *str, char old_char, char new_char) {
int i;
while(*str) {
if(*str == old_char)
*str = new_char;
str++;
}
}

image

 q1:将字符串中是所有等于old_char的在字符,全部替换为new_char

q2:可以,二者语义一样,‘\0'的编码就是0

 

task5

#include <stdio.h>
#define N 80
char *str_trunc(char *str, char x);
int main() {
char str[N];
char ch;
while(printf("输入字符串: "), gets(str) != NULL) {
printf("输入一个字符: ");
ch = getchar();
printf("截断处理...\n");
str_trunc(str, ch);
printf("截断处理后的字符串: %s\n\n", str);
getchar();
}

return 0;
}
char *str_trunc(char*str,char x)
{
char *p=str;
while(*p!="\0"&&*p!=x)
{
p++;
}
*p='\0';
return str;
}

image

q1:删除后,输入字符按下的回车 \n 残留在输入缓冲区,下一轮 gets(str) 直接读取换行空串,程序不会等待用户输入新字符串,循环异常提前结束。

        getchar()作用:读取并丢弃输入 ch 后遗留在缓冲区的换行符 \n ,避免换行符被 gets 误接收,保证多组循环正常输入。

 

task6

#include <stdio.h>
#include <string.h>
#define N 5
int check_id(char *str);
int main()
{
char *pid[N] = {"31010120000721656X",
"3301061996X0203301",
"53010220051126571",
"510104199211197977",
"53010220051126133Y"};
int i;
for (i = 0; i < N; ++i)
if (check_id(pid[i]))
printf("%s\tTrue\n", pid[i]);
else
printf("%s\tFalse\n", pid[i]);
return 0;
}
int check_id(char *str) {
int len=strlen(str);
if(len!=18)
return 0;
for(int i=0;i<17;i++)
{
if(*(str+i)<'0'||*(str+i)>'9')
return 0;
}
char last=*(str+17);
if((last>='0'&&last<='9')||last=='X')
return 1;
else
return 0;
}

image

 task7

#include <stdio.h>
#define N 80
void encoder(char *str, int n);
void decoder(char *str, int n);
int main() {
char words[N];
int n;
printf("输入英文文本: ");
gets(words);
printf("输入n: ");
scanf("%d", &n);
printf("编码后的英文文本: ");
encoder(words, n);
printf("%s\n", words);
printf("对编码后的英文文本解码: ");
decoder(words, n);
printf("%s\n", words);
return 0;
}
void encoder(char *str, int n) {
while(*str!='\0')
{
if(*str>='a'&&*str<='z')
{
*str=(*str-'a'+n)%26+'a';
}
else if(*str>='A'&&*str<='Z')
{
*str=(*str-'A'+n)%26+'A';
}
str++;
}
}
void decoder(char *str, int n) {
while(*str!='\0')
{
if(*str>='a'&&*str<='z')
{
*str=(*str-'a'-n+26)%26+'a';
}
else if(*str>='A'&&*str<='Z')
{
*str=(*str-'A'-n+26)%26+'A';
}
str++;
}
}

image

task8
#include <stdio.h>
#include <string.h>
int main(int argc, char *argv[]) {
int i;
{
int a,b;
char*swap;
for(a=1;a<argc-1;a++){
for(b=1;b<argc-a;b++){
if(strcmp(argv[b],argv[b+1])>0){
swap=argv[b];
argv[b]=argv[b+1];
argv[b+1]=swap;
}
}
}
}
for(i = 1; i < argc; ++i)
printf("hello, %s\n", argv[i]);

return 0;
}

61bda9ee17ac3c848d4d3dfb6cee4dfb

 

 
posted @ 2026-06-02 16:48  刘君瑞  阅读(9)  评论(0)    收藏  举报