#include <stdio.h>
int main(void) {
printf("Hello World!\n");
return 0;
}
使用 gcc 编译 hello.c 文件
$ gcc -Wall -g hello.c -o hello
运行编译后的二进制文件 hello
$ ./hello
输出 => Hello World!
int myNum = 15;
int myNum2; // do not assign, then assign
myNum2 = 15;
int myNum3 = 15; // myNum3 is 15
myNum3 = 10; // myNum3 is now 10
float myFloat = 5.99; // floating point number
char myLetter = 'D'; // character
int x = 5;
int y = 6;
int sum = x + y; // add variables to sum
// declare multiple variables
int a = 5, b = 6, c = 50;
const int minutesPerHour = 60;
const float PI = 3.14;
Best Practices
const int BIRTHYEAR = 1980;
// this is a comment
printf("Hello World!\n"); // Can comment anywhere in file
/*Multi-line comment, print Hello World!
to the screen, it's awesome */
printf("I am learning C.\n");
int testInteger = 5;
printf("Number = %d\n", testInteger);
float f = 5.99; // floating point number
printf("Value = %f\n", f);
short a = 0b1010110; // binary number
int b = 02713; // octal number
long c = 0X1DAB83; // hexadecimal number
// output in octal form
printf("a=%ho, b=%o, c=%lo\n", a, b, c);
// output => a=126, b=2713, c=7325603
// Output in decimal form
printf("a=%hd, b=%d, c=%ld\n", a, b, c);
// output => a=86, b=1483, c=1944451
// output in hexadecimal form (letter lowercase)
printf("a=%hx, b=%x, c=%lx\n", a, b, c);
// output => a=56, b=5cb, c=1dab83
// Output in hexadecimal (capital letters)
printf("a=%hX, b=%X, c=%lX\n", a, b, c);
// output => a=56, b=5CB, c=1DAB83
int a1 = 20, a2 = 345, a3 = 700;
int b1 = 56720, b2 = 9999, b3 = 20098;
int c1 = 233, c2 = 205, c3 = 1;
int d1 = 34, d2 = 0, d3 = 23;
printf("%-9d %-9d %-9d\n", a1, a2, a3);
printf("%-9d %-9d %-9d\n", b1, b2, b3);
printf("%-9d %-9d %-9d\n", c1, c2, c3);
printf("%-9d %-9d %-9d\n", d1, d2, d3);
output result
20 345 700
56720 9999 20098
233 205 1
34 0 23
In %-9d, d means to output in 10 base, 9 means to occupy at least 9 characters width, and the width is not
enough to fill with spaces, - means left alignment
char greetings[] = "Hello World!";
printf("%s", greetings);
Access string
char greetings[] = "Hello World!";
printf("%c", greetings[0]);
Modify string
char greetings[] = "Hello World!";
greetings[0] = 'J';
printf("%s", greetings);
// prints "Jello World!"
Another way to create a string
char greetings[] = {'H','e','l','l','\0'};
printf("%s", greetings);
// print "Hell!"
Creating String using character pointer (String Literals)
char *greetings = "Hello";
printf("%s", greetings);
// print "Hello!"
NOTE: String literals might be stored in read-only section of memory. Modifying a string literal invokes undefined behavior. You can't modify it!
C does not have a String type, use char type and create an array of characters
int time = 20;
if (time < 18) {
printf("Goodbye!\n");
} else {
printf("Good evening!\n");
}
// Output -> "Good evening!"
int time = 22;
if (time < 10) {
printf("Good morning!\n");
} else if (time < 20) {
printf("Goodbye!\n");
} else {
printf("Good evening!\n");
}
// Output -> "Good evening!"
int age = 20;
(age > 19) ? printf("Adult\n") : printf("Teenager\n");
int day = 4;
switch (day) {
case 3: printf("Wednesday\n"); break;
case 4: printf("Thursday\n"); break;
default:
printf("Weekend!\n");
}
// output -> "Thursday" (day 4)
int i = 0;
while (i < 5) {
printf("%d\n", i);
i++;
}
NOTE: Don't forget to increment the variable used in the condition, otherwise the loop will never end and become an "infinite loop"!
int i = 0;
do {
printf("%d\n", i);
i++;
} while (i < 5);
for (int i = 0; i < 5; i++) {
printf("%d\n", i);
}
for (int i = 0; i < 10; i++) {
if (i == 4) {
break;
}
printf("%d\n", i);
}
Break out of the loop when i is equal to 4
for (int i = 0; i < 10; i++) {
if (i == 4) {
continue;
}
printf("%d\n", i);
}
Example to skip the value of 4
int i = 0;
while (i < 10) {
if (i == 4) {
break;
}
printf("%d\n", i);
i++;
}
int i = 0;
while (i < 10) {
i++;
if (i == 4) {
continue;
}
printf("%d\n", i);
}
int myNumbers[] = {25, 50, 75, 100};
printf("%d", myNumbers[0]);
// output 25
Change array elements
int myNumbers[] = {25, 50, 75, 100};
myNumbers[0] = 33;
printf("%d", myNumbers[0]);
Loop through the array
int myNumbers[] = {25, 50, 75, 100};
int i;
for (i = 0; i < 4; i++) {
printf("%d\n", myNumbers[i]);
}
Set array size
// Declare an array of four integers:
int myNumbers[4];
// add element
myNumbers[0] = 25;
myNumbers[1] = 50;
myNumbers[2] = 75;
myNumbers[3] = 100;
enum week { Mon = 1, Tues, Wed, Thurs, Fri, Sat, Sun };
Define enum variable
enum week a, b, c;
enum week { Mon = 1, Tues, Wed, Thurs, Fri, Sat, Sun } a, b, c;
With an enumeration variable, you can assign the value in the list to it
enum week { Mon = 1, Tues, Wed, Thurs, Fri, Sat, Sun };
enum week a = Mon, b = Wed, c = Sat;
// or
enum week{ Mon = 1, Tues, Wed, Thurs, Fri, Sat, Sun } a = Mon, b = Wed, c = Sat;
enum week {Mon = 1, Tues, Wed, Thurs} day;
scanf("%d", &day);
switch(day) {
case Mon: puts("Monday"); break;
case Tues: puts("Tuesday"); break;
case Wed: puts("Wednesday"); break;
case Thurs: puts("Thursday"); break;
default: puts("Error!");
}
// Create an integer variable to store the number we got from the user
int myNum;
// Ask the user to enter a number
printf("Enter a number: ");
// Get and save the number entered by the user
scanf("%d", &myNum);
// Output the number entered by the user
printf("The number you entered: %d\n", myNum);
// create a string
char firstName[30];
// Ask the user to enter some text
printf("Enter your name: ");
// get and save the text
scanf("%s", &firstName);
// output text
printf("Hello %s.\n", firstName);
When a variable is created, it is assigned a memory address
int myAge = 43;
printf("%p", &myAge);
// Output: 0x7ffe5367e044
To access it, use the reference operator (&)
int myAge = 43; // an int variable
printf("%d\n", myAge); // output the value of myAge(43)
// Output the memory address of myAge (0x7ffe5367e044)
printf("%p\n", &myAge);
int myAge = 43; // an int variable
int*ptr = &myAge; // pointer variable named ptr, used to store the address of myAge
printf("%d\n", myAge); // print the value of myAge (43)
printf("%p\n", &myAge); // output the memory address of myAge (0x7ffe5367e044)
printf("%p\n", ptr); // use the pointer (0x7ffe5367e044) to output the memory address of myAge
int myAge = 43; // variable declaration
int*ptr = &myAge; // pointer declaration
// Reference: output myAge with a pointer
// memory address (0x7ffe5367e044)
printf("%p\n", ptr);
// dereference: output the value of myAge with a pointer (43)
printf("%d\n", *ptr);
int myNum = 100 + 50;
int sum1 = 100 + 50; // 150 (100 + 50)
int sum2 = sum1 + 250; // 400 (150 + 250)
int sum3 = sum2 + sum2; // 800 (400 + 400)
| Operator | Name | Example |
|---|---|---|
+ |
Add | x + y |
- |
Subtract | x - y |
* |
Multiply | x * y |
/ |
Divide | x / y |
% |
Modulo | x % y |
++ |
Increment | ++x |
-- |
Decrement | --x |
| Example | As |
|---|---|
x = 5 |
x = 5 |
x += 3 |
x = x + 3 |
x -= 3 |
x = x - 3 |
x *= 3 |
x = x * 3 |
x /= 3 |
x = x / 3 |
x %= 3 |
x = x % 3 |
x &= 3 |
x = x & 3 |
x |= 3 |
x = x | 3 |
x ^= 3 |
x = x ^ 3 |
x >>= 3 |
x = x >> 3 |
x <<= 3 |
x = x << 3 |
int x = 5;
int y = 3;
printf("%d", x > y);
// returns 1 (true) because 5 is greater than 3
| Symbol | Name | Example |
|---|---|---|
== |
equals | x == y |
!= |
not equal to | x != y |
> |
greater than | x > y |
< |
less than | x < y |
>= |
greater than or equal to | x >= y |
<= |
less than or equal to | x <= y |
Comparison operators are used to compare two values
| Symbol | Name | Description | Example |
|---|---|---|---|
&& |
and logical |
returns true if both statements are true | x < 5 && x < 10 |
|| |
or logical |
returns true if one of the statements is true | x < 5 || x < 4 |
! |
not logical |
Invert result, return false if true | !(x < 5 && x < 10) |
| 运算符 | 名称 | 示例 |
|---|---|---|
+ |
加法 | x + y |
- |
减法 | x - y |
* |
乘法 | x * y |
/ |
除法 | x / y |
% |
取模 | x % y |
++ |
递增 | ++x |
-- |
递减 | --x |
| 示例 | 等同于 |
|---|---|
x = 5 |
x = 5 |
x += 3 |
x = x + 3 |
x -= 3 |
x = x - 3 |
x *= 3 |
x = x * 3 |
x /= 3 |
x = x / 3 |
x %= 3 |
x = x % 3 |
x &= 3 |
x = x & 3 |
x |= 3 |
x = x | 3 |
x ^= 3 |
x = x ^ 3 |
x >>= 3 |
x = x >> 3 |
x <<= 3 |
x = x << 3 |
int x = 5;
int y = 3;
printf("%d", x > y);
// returns 1 (true) because 5 is greater than 3
| 符号 | 名称 | 示例 |
|---|---|---|
== |
等于 | x == y |
!= |
不等于 | x != y |
> |
大于 | x > y |
< |
小于 | x < y |
>= |
大于或等于 | x >= y |
<= |
小于或等于 | x <= y |
比较运算符用于比较两个值
| 符号 | 名称 | 描述 | 示例 |
|---|---|---|---|
&& |
逻辑与 | 如果两个语句都为真则返回真 | x < 5 && x < 10 |
|| |
逻辑或 | 如果其中一个语句为真则返回真 | x < 5 || x < 4 |
! |
逻辑非 | 反转结果,如果为真则返回假 | !(x < 5 && x < 10) |
unsigned int a = 60; /*60 = 0011 1100 */
unsigned int b = 13; /*13 = 0000 1101 */
int c = 0;
c = a & b; /*12 = 0000 1100 */
printf("Line 1 -the value of c is %d\n", c);
c = a | b; /*61 = 0011 1101 */
printf("Line 2 -the value of c is %d\n", c);
c = a ^ b; /*49 = 0011 0001 */
printf("Line 3 -the value of c is %d\n", c);
c = ~a; /*-61 = 1100 0011 */
printf("Line 4 -The value of c is %d\n", c);
c = a << 2; /*240 = 1111 0000 */
printf("Line 5 -the value of c is %d\n", c);
c = a >> 2; /*15 = 0000 1111 */
printf("Line 6 -The value of c is %d\n", c);
| 运算符 | 描述 | 实例 |
|---|---|---|
& |
按位与运算,按二进制位进行"与"运算 | (A & B) 将得到 12 即 0000 1100 |
| |
按位或运算,按二进制位进行"或"运算 | (A | B) 将得到 61 即 0011 1101 |
^ |
异或运算,按二进制位进行"异或"运算 | (A ^ B) 将得到 49 即 0011 0001 |
~ |
取反运算,按二进制位进行"取反"运算 | (~A) 将得到 -61 即 1100 0011 |
<< |
二进制左移运算符 | A << 2 将得到 240 即 1111 0000 |
>> |
二进制右移运算符 | A >> 2 将得到 15 即 0000 1111 |
| 数据类型 | 大小 | 范围 | 描述 |
|---|---|---|---|
char |
1 字节 | −128 ~ 127 |
单个字符/字母数字/ASCII |
signed char |
1 字节 | −128 ~ 127 |
|
unsigned char |
1 字节 | 0 ~ 255 |
|
int |
2 到 4 字节 |
−32,768 ~ 32,767 |
存储整数 |
signed int |
2 字节 | −32,768 ~ 32,767 |
|
unsigned int |
2 字节 | 0 ~ 65,535 |
|
short int |
2 字节 | −32,768 ~ 32,767 |
|
signed short int |
2 字节 | −32,768 ~ 32,767 |
|
unsigned short int |
2 字节 | 0 ~ 65,535 |
|
long int |
4 字节 | -2,147,483,648 ~ 2,147,483,647 |
|
signed long int |
4 字节 | -2,147,483,648 ~ 2,147,483,647 |
|
unsigned long int |
4 字节 | 0 ~ 4,294,967,295 |
|
float |
4 字节 | 3.4E-38 ~ 3.4E+38 |
|
double |
8 字节 | 1.7E-308 ~ 1.7E+308 |
|
long double |
10 字节 | 3.4E-4932 ~ 1.1E+4932 |
// create variables
int myNum = 5; // integer
float myFloatNum = 5.99; // floating point number
char myLetter = 'D'; // string
// High precision floating point data or numbers
double myDouble = 3.2325467;
// print output variables
printf("%d\n", myNum);
printf("%f\n", myFloatNum);
printf("%c\n", myLetter);
printf("%lf\n", myDouble);
| 数据类型 | 描述 |
|---|---|
char |
字符类型 |
short |
短整型 |
int |
整数类型 |
long |
长整型 |
float |
单精度浮点类型 |
double |
双精度浮点类型 |
void |
无类型 |
| 格式说明符 | 数据类型 |
|---|---|
%d 或 %i |
int 整数 |
%f |
float 单精度十进制类型 |
%lf |
double 高精度浮点数据或数字 |
%c |
char 字符 |
%s |
用于 strings 字符串 |
| 格式 | Short | Int | Long |
|---|---|---|---|
| 八进制 | %ho |
%o |
%lo |
| 十进制 | %hd |
%d |
%ld |
| 十六进制 | %hx / %hX |
%x / %X |
%lx / %lX |
int myNum = 5;
float myFloatNum = 5.99; // floating point number
char myLetter = 'D'; // string
// print output variables
printf("%d\n", myNum);
printf("%f\n", myFloatNum);
printf("%c\n", myLetter);
| 指令 | 描述 |
|---|---|
#define |
定义宏 |
#include |
包含一个源代码文件 |
#undef |
取消定义宏 |
#ifdef |
如果宏已定义则返回真 |
#ifndef |
如果宏未定义则返回真 |
#if |
如果给定条件为真则编译下面代码 |
#else |
#if 的替代方案 |
#elif |
如果 #if 条件为假,当前条件为真 |
#endif |
结束一个 #if...#else 条件编译块 |
#error |
当遇到标准错误时打印错误消息 |
#pragma |
使用标准化方法向编译器发出特殊命令 |
// replace all MAX_ARRAY_LENGTH with 20
#define MAX_ARRAY_LENGTH 20
// Get stdio.h from the system library
#include <stdio.h>
// Get myheader.h in the local directory
#include "myheader.h"
#undef FILE_SIZE
#define FILE_SIZE 42 // undefine and define to 42
| 宏 | 描述 |
|---|---|
__DATE__ |
当前日期,一个以 "MMM DD YYYY" 格式的字符常量 |
__TIME__ |
当前时间,一个以 "HH:MM:SS" 格式的字符常量 |
__FILE__ |
这会包含当前文件名,一个字符串常量 |
__LINE__ |
这会包含当前行号,一个十进制常量 |
__STDC__ |
当编译器以 ANSI 标准编译时,则定义为 1 |
ANSI C 定义了许多宏,你可以使用这些宏,但不能直接修改这些预定义宏
预定义宏示例
#include <stdio.h>
int main(void) {
printf("File: %s\n", __FILE__);
printf("Date: %s\n", __DATE__);
printf("Time: %s\n", __TIME__);
printf("Line: %d\n", __LINE__);
printf("ANSI: %d\n", __STDC__);
}
一个宏通常写在一个单行上
#define message_for(a, b) \
printf(#a " and " #b ": We love you!\n")
如果宏太长,无法写在一行,则使用宏延续运算符 \
#include <stdio.h>
#define message_for(a, b) \
printf(#a " and " #b ": We love you!\n")
int main(void) {
message_for(Carole, Debra);
return 0;
}
当上面的代码被编译和执行时,它会产生下列结果:
Carole and Debra: We love you!
当需要把一个宏的参数转换为字符串常量时,则使用字符串常量化运算符 #
#include <stdio.h>
#define tokenpaster(n) printf ("Token " #n " = %d\n", token##n)
int main(void) {
int token34 = 40;
tokenpaster(34);
return 0;
}
#include <stdio.h>
#if !defined (MESSAGE)
#define MESSAGE "You wish!"
#endif
int main(void) {
printf("Here is the message: %s\n", MESSAGE);
return 0;
}
int square(int x) {
return x * x;
}
宏重写上面的代码,如下:
#define square(x) ( (x) * (x) )
在宏名称和左圆括号之间不允许有空格
#include <stdio.h>
#define MAX(x,y) ( (x) > (y) ? (x) : (y) )
int main(void) {
printf("Max between 20 and 10 is %d\n", MAX(10, 20));
return 0;
}
int main(void) {
printf("Hello World!\n");
return 0;
}
函数由两部分组成
void myFunction() { // declaration declaration
// function body (code to be executed) (definition)
}
Declaration 声明函数名称、返回类型和参数 (如果有)Definition 函数体 (要执行的代码)// function declaration
void myFunction();
// main method
int main() {
myFunction(); // --> call the function
return 0;
}
void myFunction() {// Function definition
printf("Good evening!\n"); // 输出:晚上好!
}
// create function
void myFunction() {
printf("Good evening!\n"); // 输出:晚上好!
}
int main() {
myFunction(); // call the function
myFunction(); // can be called multiple times
return 0;
}
// 输出结果 -> "Good evening!"
// 输出结果 -> "Good evening!"
void myFunction(char name[]) {
printf("Hello %s\n", name);
}
int main() {
myFunction("Liam");
myFunction("Jenny");
return 0;
}
// Hello Liam
// Hello Jenny
void myFunction(char name[], int age) {
printf("Hi %s, you are %d years old.\n",name,age);
}
int main() {
myFunction("Liam", 3);
myFunction("Jenny", 14);
return 0;
}
// Hi Liam you are 3 years old.
// Hi Jenny you are 14 years old.
int myFunction(int x) {
return 5 + x;
}
int main() {
printf("Result: %d\n", myFunction(3));
return 0;
}
// output 8 (5 + 3)
两个参数
int myFunction(int x, int y) {
return x + y;
}
int main() {
printf("Result: %d\n", myFunction(5, 3));
// store the result in a variable
int result = myFunction(5, 3);
printf("Result = %d\n", result);
return 0;
}
// result: 8 (5 + 3)
// result = 8 (5 + 3)
int sum(int k);
int main() {
int result = sum(10);
printf("%d\n", result);
return 0;
}
int sum(int k) {
if (k > 0) {
return k + sum(k -1);
} else {
return 0;
}
}
#include <math.h>
void main(void) {
printf("%f\n", sqrt(16)); // square root
printf("%f\n", ceil(1.4)); // round up (round)
printf("%f\n", floor(1.4)); // round down (round)
printf("%f\n", pow(4, 3)); // x(4) to the power of y(3)
}
abs(x) 绝对值acos(x) 反余弦值asin(x) 反正弦atan(x) 反正切cbrt(x) 立方根cos(x) 余弦exp(x) Ex 的值sin(x) x 的正弦tan(x) 角的正切struct MyStructure { // structure declaration
int myNum; // member (int variable)
char myLetter; // member (char variable)
}; // end the structure with a semicolon
创建一个名为 s1 的结构体变量
struct myStructure {
int myNum;
char myLetter;
};
int main() {
struct myStructure s1;
return 0;
}
struct myStructure {
int myNum;
char myLetter;
char myString[30]; // String
};
int main() {
struct myStructure s1;
strcpy(s1. myString, "Some text");
// print value
printf("My string: %s\n", s1.myString);
return 0;
}
使用 strcpy 函数为字符串赋值
// create a structure called myStructure
struct myStructure {
int myNum;
char myLetter;
};
int main() {
// Create a structure variable called myStructure called s1
struct myStructure s1;
// Assign values to the members of s1
s1.myNum = 13;
s1.myLetter = 'B';
// Create a structure variable of myStructure called s2
// and assign it a value
struct myStructure s2 = {13, 'B'};
// print value
printf("My number: %d\n", s1.myNum);
printf("My letter: %c\n", s1.myLetter);
return 0;
}
创建不同的结构变量
struct myStructure s1;
struct myStructure s2;
// Assign values to different structure variables
s1.myNum = 13;
s1.myLetter = 'B';
s2.myNum = 20;
s2.myLetter = 'C';
struct myStructure s1 = {
13, 'B', "Some text"
};
struct myStructure s2;
s2 = s1;
在示例中,s1 的值被复制到 s2
// Create a struct variable and assign it a value
struct myStructure s1 = {
13, 'B'
};
// modify the value
s1.myNum = 30;
s1.myLetter = 'C';
// print value
printf("%d %c",
s1.myNum,
s1.myLetter);
| 函数 | 描述 |
|---|---|
fopen() |
打开新文件或现有文件 |
fprintf() |
向文件写入数据 |
fscanf() |
从文件读取数据 |
fputc() |
向文件写入一个字符 |
fgetc() |
从文件读取一个字符 |
fclose() |
关闭文件 |
fseek() |
将文件指针设置为给定位置 |
fputw() |
向文件写入一个整数 |
fgetw() |
从文件读取一个整数 |
ftell() |
返回当前位置 |
rewind() |
将文件指针设置到文件的开头 |
C 库中有许多函数用于打开/读取/写入/搜索和关闭文件
| 模式 | 描述 |
|---|---|
r |
以读取模式打开文本文件,允许读取文件 |
w |
以写入模式打开文本文件,允许写入文件 |
a |
以追加模式打开文本文件如果文件不存在,将创建一个新文件 |
r+ |
以读写模式打开文本文件,允许读取和写入文件 |
w+ |
以读写模式打开文本文件,允许读取和写入文件 |
a+ |
以读写模式打开文本文件,允许读取和写入文件 |
rb |
以读取模式打开二进制文件 |
wb |
以写入模式打开二进制文件 |
ab |
以追加模式打开二进制文件 |
rb+ |
以读写模式打开二进制文件 |
wb+ |
以读写模式打开二进制文件 |
ab+ |
以读写模式打开二进制文件 |
#include <stdio.h>
void main() {
FILE *fp;
char ch;
fp = fopen("file_handle.c", "r");
while (1) {
ch = fgetc(fp);
if (ch == EOF)
break;
printf("%c", ch);
}
fclose(fp);
}
在对文件执行所有操作后,必须使用 fclose() 关闭文件
#include <stdio.h>
void main() {
FILE *fp;
fp = fopen("file.txt", "w"); // open the file
// write data to file
fprintf(fp, "Hello file for fprintf..\n");
fclose(fp); // close the file
}
#include <stdio.h>
void main() {
FILE *fp;
char buff[255]; // Create a char array to store file data
fp = fopen("file.txt", "r");
while(fscanf(fp, "%s", buff) != EOF) {
printf("%s ", buff);
}
fclose(fp);
}
#include <stdio.h>
void main() {
FILE *fp;
fp = fopen("file1.txt", "w"); // open the file
fputc('a',fp); // write a single character to the file
fclose(fp); // close the file
}
#include <stdio.h>
#include <conio.h>
void main() {
FILE *fp;
char c;
clrscr();
fp = fopen("myfile.txt", "r");
while( (c = fgetc(fp) ) != EOF) {
printf("%c", c);
}
fclose(fp);
getch();
}
#include<stdio.h>
#include<conio.h>
void main() {
FILE *fp;
clrscr();
fp = fopen("myfile2.txt","w");
fputs("hello c programming",fp);
fclose(fp);
getch();
}
#include<stdio.h>
#include<conio.h>
void main() {
FILE *fp;
char text[300];
clrscr();
fp = fopen("myfile2.txt", "r");
printf("%s", fgets(text, 200, fp));
fclose(fp);
getch();
}
#include <stdio.h>
void main(void) {
FILE *fp;
fp = fopen("myfile.txt","w+");
fputs("This is Book", fp);
// Set file pointer to the given position
fseek(fp, 7, SEEK_SET);
fputs("Kenny Wong", fp);
fclose(fp);
}
将文件指针设置为给定位置
#include <stdio.h>
#include <conio.h>
void main() {
FILE *fp;
char c;
clrscr();
fp = fopen("file.txt", "r");
while( (c = fgetc(fp) ) != EOF) {
printf("%c", c);
}
rewind(fp); // move the file pointer to the beginning of the file
while( (c = fgetc(fp) ) != EOF) {
printf("%c", c);
}
fclose(fp);
getch();
}
// output
// Hello World! Hello World!
#include <stdio.h>
#include <conio.h>
void main () {
FILE *fp;
int length;
clrscr();
fp = fopen("file.txt", "r");
fseek(fp, 0, SEEK_END);
length = ftell(fp); // return current position
fclose(fp);
printf("File size: %d bytes", length);
getch();
}
// output
// file size: 18 bytes