Every C program starts in main. #include <stdio.h> pulls in a header 头文件 so you can use printf to print. A function 函数 is a named block you can call; \n starts a new line. main returns 0 to mean "success".
#include <stdio.h>
void greet(void) {
printf("Hello, world!\n");
}
int main(void) {
greet();
printf("I am learning C.\n");
return 0;
}
Every C program runs from main after including headers
Vocabulary
English
Chinese
Pinyin
header
头文件
tóu wén jiàn
function
函数
hán shù
1.2
Variables, types & arithmetic
C needs a type for every variable: int (integer 整数), double (floating-point 浮点数), char (one character). printf uses a format specifier 格式说明符 — %d, %f, %c — for each value. / between two ints is integer division; % is the remainder 余数.
#include <stdio.h>
int main(void) {
int n = 17;
double pi = 3.14;
char grade = 'A';
printf("%d %.2f %c\n", n, pi, grade); // 17 3.14 A
printf("%d %d\n", 7 / 2, 7 % 2); // 3 1
return 0;
}
The format string drives both printing and reading:
Specifier
Type
Example output
%d
int
17
%f
double (%.2f = 2 decimal places)
3.14
%c
char
A
%s
a string
Mei
%zu
a size (from sizeof / strlen)
3
%x
int, printed in base 16
ff
scanf("%d", &n) reads keyboard input with the same specifiers (note the &). Its sibling sscanf parses values out of a string, so it runs anywhere:
#include <stdio.h>
int main(void) {
char line[] = "Mei 88";
char name[20];
int score;
sscanf(line, "%19s %d", name, &score); // parse text -> values
printf("%s scored %d\n", name, score); // Mei scored 88
return 0;
}
Vocabulary
English
Chinese
Pinyin
integer
整数
zhěng shù
floating-point
浮点数
fú diǎn shù
format specifier
格式说明符
gé shì shuō míng fú
remainder
余数
yú shù
1.3
Comments & style
A comment 注释 is a note for humans; the compiler ignores it. Use // for one line and /* ... */ for a block. Good indentation 缩进 and clear names make code easy to read.
#include <stdio.h>
int main(void) {
// a single-line comment
/* a block
comment */
int total = 3 + 4; // clear names help
printf("%d\n", total); // 7
return 0;
}
Common mistakes
Every statement ends with ;, and main should return int (return 0;).
printf needs a format string: %d for int, %f for double, and \n for a new line.
A wrong format like %d for a double prints garbage — match the type.
An if runs a block when a condition 条件 is true. C has no real boolean 布尔值 type by default: 0 is false and any non-zero value is true. Chain choices with else if and else. Compare with ==, !=, <, >, <=, >=.
#include <stdio.h>
int main(void) {
int score = 72;
if (score >= 90) {
printf("A\n");
} else if (score >= 60) {
printf("Pass\n");
} else {
printf("Fail\n");
}
return 0;
}
if chooses the true branch; else the false branch
Vocabulary
English
Chinese
Pinyin
condition
条件
tiáo jiàn
boolean
布尔值
bù ěr zhí
2.2
switch
A switch picks one case by an integer value. Each case needs a break to jump out 跳出 — without it, C "falls through" into the next case. default runs when nothing matches.
#include <stdio.h>
int main(void) {
int day = 3;
switch (day) {
case 1: printf("Mon\n"); break;
case 2: printf("Tue\n"); break;
case 3: printf("Wed\n"); break;
default: printf("Other\n");
}
return 0;
}
Common mistakes
if (x = 5) assigns and is always true; use == to compare.
Each switch case needs a break;, or it falls through to the next.
0 is false and any non-zero value is true in a condition.
A loop 循环 repeats a block. A while loop runs as long as a condition is true. A for loop packs the start, the test, and the increment 自增 (i++) into one line — best when you know how many times to repeat.
#include <stdio.h>
int main(void) {
int i = 1;
while (i <= 3) {
printf("%d ", i);
i++;
}
printf("\n"); // 1 2 3
for (int j = 0; j < 5; j++) {
printf("%d ", j);
}
printf("\n"); // 0 1 2 3 4
return 0;
}
while checks a condition; for counts with a step
Vocabulary
English
Chinese
Pinyin
loop
循环
xún huán
increment
自增
zì zēng
3.2
Accumulation
A common pattern: start an accumulator 累加器 at 0, then add to it inside a loop. The same idea counts items or finds a running total.
#include <stdio.h>
int main(void) {
int total = 0;
for (int i = 1; i <= 5; i++) {
total += i; // 1 + 2 + 3 + 4 + 5
}
printf("%d\n", total); // 15
return 0;
}
Vocabulary
English
Chinese
Pinyin
accumulator
累加器
lěi jiā qì
3.3
Nested loops & patterns
A loop inside another loop is a nested 嵌套 loop. The inner loop finishes fully for each step of the outer loop — perfect for grids and patterns.
#include <stdio.h>
int main(void) {
for (int row = 0; row < 3; row++) {
for (int col = 0; col < 3; col++) {
printf("*");
}
printf("\n");
}
return 0;
}
Common mistakes
for (i = 0; i < n; i++) runs n times; a semicolon right after for (...) makes an empty loop.
A while whose condition never becomes false loops forever.
Declare the counter (int i) before or inside the for header.
A function takes parameters 参数 (inputs) and gives back a return value 返回值. The return type comes first (int, double, …); void means it returns nothing.
#include <stdio.h>
int square(int x) { // x is a parameter
return x * x; // hand back a value
}
int main(void) {
int r = square(5);
printf("%d\n", r); // 25
return 0;
}
Parameters in; return value out
Vocabulary
English
Chinese
Pinyin
parameter
参数
cān shù
return value
返回值
fǎn huí zhí
4.2
Prototypes & scope
C reads top to bottom, so a function must be known before it is called. A prototype 函数原型 — the header line plus ; — declares it early so you can keep main first. A variable's scope 作用域 is the block it lives in: it is local 局部 and disappears when the block ends.
#include <stdio.h>
int add(int a, int b); // prototype: declared before use
int main(void) {
printf("%d\n", add(3, 4)); // 7
return 0;
}
int add(int a, int b) { // definition comes later
int sum = a + b; // sum is local to add
return sum;
}
Common mistakes
A function used before it is defined needs a prototype above main.
Arguments are passed BY VALUE — changes inside a function do not affect the caller unless you pass a pointer.
A variable declared inside a function is local to it.
An array 数组 holds several values of one type. Index 索引 from 0. C does not store an array's length, so a common trick computes the element 元素 count: sizeof(a) / sizeof(a[0]).
#include <stdio.h>
int main(void) {
int scores[3] = {88, 71, 95};
printf("%d\n", scores[0]); // 88
scores[1] = 100;
printf("%d\n", scores[1]); // 100
int n = sizeof(scores) / sizeof(scores[0]);
printf("%d\n", n); // 3
return 0;
}
Array slots are indexed from 0
Vocabulary
English
Chinese
Pinyin
array
数组
shù zǔ
index
索引
suǒ yǐn
element
元素
yuán sù
5.2
Array algorithms
Traverse 遍历 an array with a for loop to find a max, a total, or a count. Always loop from 0 up to n - 1.
#include <stdio.h>
int main(void) {
int a[] = {3, 9, 2, 7};
int n = sizeof(a) / sizeof(a[0]);
int max = a[0], total = 0;
for (int i = 0; i < n; i++) {
if (a[i] > max) max = a[i];
total += a[i];
}
printf("%d %d\n", max, total); // 9 21
return 0;
}
Vocabulary
English
Chinese
Pinyin
traverse
遍历
biàn lì
5.3
2-D arrays
A 2-D array is a grid of rows 行 and columns 列: grid[row][col]. Use two nested loops to visit every cell.
#include <stdio.h>
int main(void) {
int grid[2][3] = {{1, 2, 3}, {4, 5, 6}};
printf("%d\n", grid[1][2]); // 6
for (int r = 0; r < 2; r++) {
for (int c = 0; c < 3; c++) {
printf("%d ", grid[r][c]);
}
}
printf("\n"); // 1 2 3 4 5 6
return 0;
}
Common mistakes
C does NOT check array bounds: writing a[n] in a size-n array is undefined behaviour.
Valid indexes run from 0 to n - 1.
The array name is a pointer to its first element; sizeof only gives the size in the array's own scope.
A pointer 指针 stores the address 地址 of a variable. &x gives the address of x; *p dereferences 解引用 the pointer — it reads or writes the value stored there. Passing a pointer lets a function change the caller's variable (pass-by-pointer).
A pointer stores an address; dereferencing it follows the arrow to the value
#include <stdio.h>
void addOne(int *p) { // p holds an address
*p = *p + 1; // change the value at that address
}
int main(void) {
int x = 10;
int *ptr = &x; // & takes the address of x
printf("%d\n", *ptr); // * reads the value: 10
addOne(&x);
printf("%d\n", x); // 11 — changed through the pointer
return 0;
}
The classic use is a swap function. Passing values only copies them — the swap is lost. Passing pointers lets the function reach the caller's variables:
#include <stdio.h>
void swap_values(int a, int b) { // copies: the caller sees nothing
int t = a; a = b; b = t;
}
void swap_pointers(int *a, int *b) { // addresses: the swap is real
int t = *a; *a = *b; *b = t;
}
int main(void) {
int x = 1, y = 2;
swap_values(x, y);
printf("%d %d\n", x, y); // 1 2 (unchanged!)
swap_pointers(&x, &y);
printf("%d %d\n", x, y); // 2 1 (swapped)
return 0;
}
An array name acts as a pointer to its first element, and pointer arithmetic 指针运算 steps by whole elements:
#include <stdio.h>
int main(void) {
int a[] = {10, 20, 30};
int *p = a; // same as &a[0]
printf("%d\n", *p); // 10
printf("%d\n", *(p + 2)); // 30 — same as a[2]
return 0;
}
NULL is the pointer that points at nothing — check for it before you dereference.
Common mistakes
&x is the address of x; *p is the value stored at p.
Never use *p on an uninitialised or NULL pointer — it crashes or corrupts memory.
To change a caller's variable, pass its address and write through the pointer.
A C string 字符串 is an array of char. Every string ends with a hidden null terminator 空终止符'\0', which marks where it stops. strlen (from <string.h>) counts characters up to that '\0'. Print a whole string with %s and one character 字符 with %c.
#include <stdio.h>
#include <string.h>
int main(void) {
char name[] = "Mei"; // 'M', 'e', 'i', '\0'
printf("%s\n", name); // Mei
printf("%zu\n", strlen(name)); // 3 (stops at '\0')
printf("%c\n", name[0]); // M
return 0;
}
A C string is a char array ending in a hidden null terminator
You can traverse a string by looping until you reach '\0'.
#include <stdio.h>
int main(void) {
char word[] = "banana";
int count = 0;
for (int i = 0; word[i] != '\0'; i++) {
if (word[i] == 'a') count++;
}
printf("%d\n", count); // 3
return 0;
}
Vocabulary
English
Chinese
Pinyin
string
字符串
zì fú chuàn
null terminator
空终止符
kōng zhōng zhǐ fú
character
字符
zì fú
7.2
The string.h library
#include <string.h> gives you the everyday string tools:
Function
Does
strlen(s)
the length, not counting the terminator
strcpy(dst, src)
copy — dst must be big enough
strcat(dst, src)
append src onto the end of dst
strcmp(a, b)
compare: 0 when equal, else negative / positive
#include <stdio.h>
#include <string.h>
int main(void) {
char full[40];
strcpy(full, "Mei"); // full is now "Mei"
strcat(full, " Chen"); // append -> "Mei Chen"
printf("%s (%zu)\n", full, strlen(full)); // Mei Chen (8)
printf("%d\n", strcmp("apple", "apple") == 0); // 1 (equal)
return 0;
}
strcmp returns 0 for equal, so the test is strcmp(a, b) == 0 — never a == b.
The destination array must have room for the result plus the terminator.
Common mistakes
A C string needs one extra byte for the \0 terminator: a 5-letter word needs char[6].
Copy and compare strings with strcpy / strcmp, not = / ==.
Forgetting the \0 makes printf("%s", ...) run past the end of the text.
A struct 结构体 groups related values into one type. Each value is a member 成员. typedef gives the struct a short name so you can write Dog instead of struct Dog. Use . on a struct value, but -> on a pointer to a struct.
#include <stdio.h>
typedef struct {
char name[20];
int age;
} Dog;
int main(void) {
Dog d = {"Rex", 3};
printf("%s is %d\n", d.name, d.age); // Rex is 3 (. on a value)
Dog *p = &d;
p->age = 4; // -> on a pointer
printf("%s is %d\n", d.name, d.age); // Rex is 4
return 0;
}
Common mistakes
Use . on a struct value and -> on a struct pointer.
typedef lets you drop the word struct when declaring; without it you write struct Point p;.
Assigning one struct to another copies all its fields.
malloc allocates 分配 memory on the heap 堆 at run time and returns a pointer to it. realloc resizes that block; free gives it back. Every malloc needs a matching free, or you get a memory leak 内存泄漏. These live in <stdlib.h>.
Locals live on the stack; malloc memory lives on the heap until you free it
#include <stdio.h>
#include <stdlib.h>
int main(void) {
int n = 3;
int *a = malloc(n * sizeof(int)); // room for 3 ints
for (int i = 0; i < n; i++) a[i] = i * 10;
a = realloc(a, 4 * sizeof(int)); // grow to 4 ints
a[3] = 30;
for (int i = 0; i < 4; i++) printf("%d ", a[i]);
printf("\n"); // 0 10 20 30
free(a); // hand the memory back
return 0;
}
calloc(n, size) allocates an array like malloc AND fills it with zeros.
Common mistakes
Every malloc needs a matching free; forgetting to free leaks memory.
Using memory after free (a "use-after-free") is a serious bug.
Check that malloc did not return NULL before you use the memory.
A linked list 链表 is a chain of nodes 节点. Each node holds a value and a pointer to the next node; the last one points to NULL. Unlike an array it grows one node at a time with malloc. Always free every node when done.
A linked list: each node holds a value and a pointer to the next, ending at NULL
#include <stdio.h>
#include <stdlib.h>
typedef struct Node {
int value;
struct Node *next;
} Node;
int main(void) {
Node *head = NULL;
for (int v = 10; v <= 30; v += 10) { // prepend 10, 20, 30
Node *n = malloc(sizeof(Node));
n->value = v;
n->next = head;
head = n;
}
for (Node *p = head; p != NULL; p = p->next) {
printf("%d ", p->value); // 30 20 10
}
printf("\n");
while (head != NULL) { // free the whole list
Node *t = head;
head = head->next;
free(t);
}
return 0;
}
Vocabulary
English
Chinese
Pinyin
linked list
链表
liàn biǎo
node
节点
jié diǎn
10.2
Stacks & queues
A stack 栈 is LIFO 后进先出 (last in, first out): push and pop at the same end. A queue 队列 is FIFO 先进先出 (first in, first out): add at the back, remove from the front. Both are easy to build on an array with index variables.
#include <stdio.h>
int main(void) {
int stack[10];
int top = 0; // next free slot
stack[top++] = 1; // push
stack[top++] = 2;
stack[top++] = 3;
while (top > 0) {
printf("%d ", stack[--top]); // pop: 3 2 1
}
printf("\n");
return 0;
}
#include <stdio.h>
int main(void) {
int queue[10];
int front = 0, back = 0;
queue[back++] = 1; // enqueue
queue[back++] = 2;
queue[back++] = 3;
while (front < back) {
printf("%d ", queue[front++]); // dequeue: 1 2 3
}
printf("\n");
return 0;
}
Common mistakes
In a linked list, never lose the head pointer, or the whole list is unreachable.
Free every node when you are done, walking the list before you unlink.
Check for an empty list (a NULL head) before you pop.
Linear search 线性查找 checks each element in turn — it works on any array. Binary search 二分查找 is far faster but needs a sorted 已排序 array: it checks the middle and discards half each step. Both return the index, or -1 if missing.
#include <stdio.h>
int linear(int a[], int n, int target) {
for (int i = 0; i < n; i++)
if (a[i] == target) return i;
return -1;
}
int binary(int a[], int n, int target) {
int lo = 0, hi = n - 1;
while (lo <= hi) {
int mid = (lo + hi) / 2;
if (a[mid] == target) return mid;
else if (a[mid] < target) lo = mid + 1;
else hi = mid - 1;
}
return -1;
}
int main(void) {
int a[] = {2, 5, 8, 12, 16, 23};
int n = sizeof(a) / sizeof(a[0]);
printf("%d %d %d\n", linear(a, n, 12), binary(a, n, 12), binary(a, n, 9));
return 0; // 3 3 -1
}
Linear scans all; binary halves a sorted range
Vocabulary
English
Chinese
Pinyin
linear search
线性查找
xiàn xìng chá zhǎo
binary search
二分查找
èr fēn chá zhǎo
sorted
已排序
yǐ pái xù
11.2
Sorting
Bubble sort 冒泡排序 repeatedly compares neighbours and swaps 交换 any pair that is out of order. After each pass the largest value "bubbles" to the end.
#include <stdio.h>
int main(void) {
int a[] = {5, 2, 9, 1, 7};
int n = sizeof(a) / sizeof(a[0]);
for (int i = 0; i < n - 1; i++) {
for (int j = 0; j < n - 1 - i; j++) {
if (a[j] > a[j + 1]) {
int t = a[j]; a[j] = a[j + 1]; a[j + 1] = t;
}
}
}
for (int i = 0; i < n; i++) printf("%d ", a[i]);
printf("\n"); // 1 2 5 7 9
return 0;
}
Vocabulary
English
Chinese
Pinyin
bubble sort
冒泡排序
mào pào pái xù
swap
交换
jiāo huàn
11.3
Recursion
Recursion 递归 is a function that calls itself. It needs a base case 基准情形 to stop, and a recursive call that steps toward it. Without a base case it never ends.
#include <stdio.h>
int factorial(int n) {
if (n <= 1) return 1; // base case
return n * factorial(n - 1); // recursive call
}
int main(void) {
printf("%d\n", factorial(5)); // 120
return 0;
}
Common mistakes
Binary search needs a sorted array; recursion needs a base case.
Each recursive call must move closer to the base case, or the stack overflows.
Bubble and insertion sort are O(n²) — fine to learn, slow at scale.
fopen returns a file pointer 文件指针; the mode 模式 string says what to do — "w" write, "r" read, "a" append. Write with fprintf, read with fscanf, and always fclose when done.
#include <stdio.h>
int main(void) {
FILE *out = fopen("scores.txt", "w"); // open for writing
fprintf(out, "Alice 80\nBob 95\n");
fclose(out);
FILE *in = fopen("scores.txt", "r"); // open for reading
char name[20];
int score;
while (fscanf(in, "%s %d", name, &score) == 2) {
printf("%s -> %d\n", name, score);
}
fclose(in);
return 0;
}
fopen → read/write → fclose
Vocabulary
English
Chinese
Pinyin
file pointer
文件指针
wén jiàn zhǐ zhēn
mode
模式
mó shì
12.2
Error handling with return codes
C has no exceptions. Instead a function signals failure with a return code 返回码 — by convention 0 means success and non-zero means an error. The caller checks the code before trusting the result. (fopen follows the same idea: it returns NULL when it fails.)
#include <stdio.h>
// returns 0 on success, -1 if the divisor is 0
int safe_divide(int a, int b, int *result) {
if (b == 0) return -1; // error code
*result = a / b;
return 0; // success
}
int main(void) {
int r;
if (safe_divide(10, 2, &r) == 0)
printf("10 / 2 = %d\n", r); // 10 / 2 = 5
if (safe_divide(10, 0, &r) != 0)
printf("cannot divide by zero\n"); // error reported
return 0;
}
Common mistakes
Check that fopen did not return NULL before reading or writing.
Always fclose a file when you are done.
Return a non-zero code from main to signal an error to the caller.
A bit 位 is a single 0 or 1; numbers are stored in binary 二进制. Bitwise 按位 operators work on the bits directly: & AND, | OR, ^ XOR, << shift left (×2 each step), >> shift right (÷2).
#include <stdio.h>
int main(void) {
int a = 12; // 1100
int b = 10; // 1010
printf("%d\n", a & b); // 8 AND -> 1000
printf("%d\n", a | b); // 14 OR -> 1110
printf("%d\n", a ^ b); // 6 XOR -> 0110
printf("%d\n", a << 1); // 24 left shift
printf("%d\n", a >> 1); // 6 right shift
return 0;
}
Hexadecimal 十六进制 (base 16) writes binary compactly: one hex digit is exactly four bits. Write hex literals with 0x; print with %x:
#include <stdio.h>
int main(void) {
printf("%d\n", 0xFF); // 255 (0x marks a hex literal)
printf("%x\n", 255); // ff
printf("%x\n", 12); // c
return 0;
}
Bitwise operators work on the bits of integers
Vocabulary
English
Chinese
Pinyin
bit
位
wèi
binary
二进制
èr jìn zhì
bitwise
按位
àn wèi
hexadecimal
十六进制
shí liù jìn zhì
13.2
Run-length encoding
Run-length encoding (RLE) is a simple compression 压缩 method: replace each run 游程 of repeated characters with a count and the character. It is lossless 无损 — the original is fully recoverable.
#include <stdio.h>
#include <string.h>
int main(void) {
char *s = "aaabbc";
int n = strlen(s);
for (int i = 0; i < n; ) {
char c = s[i];
int run = 0;
while (i < n && s[i] == c) { run++; i++; }
printf("%d%c", run, c); // 3a2b1c
}
printf("\n");
return 0;
}
Common mistakes
& is bitwise AND and && is logical AND — do not confuse them.
A left shift << 1 doubles a value; a right shift >> 1 halves it.
Bit n has value 1 << n (C has no ** power operator); check a bit with (x >> n) & 1.
The preprocessor 预处理器 runs before compiling. #define makes a macro 宏 — plain text replaced everywhere. const makes a constant 常量 that cannot change. static inside a function keeps a variable's value between calls. An enum (enumeration 枚举) names a set of integers starting at 0.
#include <stdio.h>
#define MAX 100 // macro: text replaced before compiling
enum Color { RED, GREEN, BLUE }; // named integers 0, 1, 2
int next_id(void) {
static int count = 0; // keeps its value between calls
count++;
return count;
}
int main(void) {
const double PI = 3.14; // cannot be changed
printf("%d %.2f\n", MAX, PI); // 100 3.14
printf("%d %d %d\n", RED, GREEN, BLUE); // 0 1 2
int a = next_id();
int b = next_id();
printf("%d %d\n", a, b); // 1 2
return 0;
}
Bigger programs split across files: declarations go in a header 头文件 file (mine.h), included with #include "mine.h" — quotes mean your own file, < > means the standard library. An include guard (#ifndef MINE_H / #define MINE_H / #endif) stops a header being included twice.
Common mistakes
#define does plain text replacement with no type checking; wrap macro bodies and arguments in parentheses.
A const value cannot be changed after it is set.
A static local variable keeps its value between calls to the function.