实验5
#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]; }

问题1:在数组里找到最大值和最小值,通过指针返回
问题2:pmin指向min,pmax指向max
实验1(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]; }

问题1:找到数组中的最大值,返回最大值的地址
问题2:可以实现,逻辑等价
实验2(1)
#define _CRT_SECURE_NO_WARNINGS #include <stdio.h> #include <stdlib.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); system("pause"); return 0; }

- s1 大小 80 字节;sizeof 统计数组整体占用字节;strlen 统计有效字符个数 (不含 '\0')。
- 不能;数组名是常量地址,不能被直接赋值。
- 是,完成两个数组内部字符内容互换。
实验2(2)
#define _CRT_SECURE_NO_WARNINGS #include <stdio.h> #include <stdlib.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); system("pause"); return 0; }

- s1 存放字符串首地址;sizeof (s1) 是指针所占字节;strlen 统计字符串有效字符。
- 可以写法;char [] 开辟数组空间存字符串;char * 仅保存常量串首地址,字符串在常量区。
- 交换指针变量存的地址;内存中字符串常量内容不变。
实验3
#define _CRT_SECURE_NO_WARNINGS #include <stdio.h> #include <stdlib.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"); } system("pause"); return 0; }

task3 答案
int(*ptr2)[4]:ptr 是指向含 4 个 int 的一维数组指针;
int *ptr[4]:ptr 是指针数组,内含 4 个 int * 类型指针。
实验4
#define _CRT_SECURE_NO_WARNINGS #include <stdio.h> #include <stdlib.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); system("pause"); return 0; } void replace(char *str, char old_char, char new_char) { while(*str) { if(*str == old_char) *str = new_char; str++; } }

- replace:遍历字符串,把所有 old_char 替换成 new_char。
- 可以,
*str等价*str!='\0',字符串末尾 '\0' 值为 0。
实验5
#define _CRT_SECURE_NO_WARNINGS #include <stdio.h> #include <stdlib.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(); } system("pause"); return 0; } char *str_trunc(char *str, char x) { char *p = str; while(*p != '\0') { if(*p == x) { *p = '\0'; break; } p++; } return str; }

去掉 getchar ():回车残留被下一次 getchar 接收,提前读取换行导致程序异常截断;
作用:吸收输入字符后的回车换行符,消除缓冲区遗留回车。
实验6
#define _CRT_SECURE_NO_WARNINGS #include <stdio.h> #include <stdlib.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]); system("pause"); 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; } if(str[17]>='0'&&str[17]<='9'||str[17]=='X') return 1; return 0; }

实验7
#define _CRT_SECURE_NO_WARNINGS #include <stdio.h> #include <stdlib.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); system("pause"); return 0; } void encoder(char *str, int n) { while(*str) { 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) { 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++; } }

实验8
#include <stdio.h> #include<string.h> int main(int argc, char *argv[]) { int i,j; char *tmp; for(i=1;i < argc - 1;i++){ for(j=i+1;j < argc;j++){ if(strcmp(argv[i],argv[j])>0){ tmp=argv[i]; argv[i] = argv[j]; argv[j] = tmp; } } } for(i = 1; i < argc; ++i) printf("hello, %s\n", argv[i]); return 0; }


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