//******友情提示:如想速度快点,请改小_sleep(500)函数中参数*****
#include stdio.h
#include stdlib.h
#include conio.h
#include string.h
#include time.h
const int H = 8; //地图的高
const int L = 16; //地图的长
char GameMap[H][L]; //游戏地图
int key; //按键保存
int sum = 1, over = 0; //蛇的长度, 游戏结束(自吃或碰墙)
int dx[4] = {0, 0, -1, 1}; //左、右、上、下的方向
int dy[4] = {-1, 1, 0, 0};
struct Snake //蛇的每个节点的数据类型
{
int x, y; //左边位置
int now; //保存当前节点的方向, 0,1,2,3分别为左右上下
}Snake[H*L];
const char Shead = '@'; //蛇头
const char Sbody = '#'; //蛇身
const char Sfood = '*'; //食物
const char Snode = '.'; //'.'在地图上标示为空
void Initial(); //地图的初始化
void Create_Food(); //在地图上随机产生食物
void Show(); //刷新显示地图
void Button(); //取出按键,并判断方向
void Move(); //蛇的移动
void Check_Border(); //检查蛇头是否越界
void Check_Head(int x, int y); //检查蛇头移动后的位置情况
int main()
{
Initial();
Show();
return 0;
}
void Initial() //地图的初始化
{
int i, j;
int hx, hy;
system("title 贪吃蛇"); //控制台的标题
memset(GameMap, '.', sizeof(GameMap)); //初始化地图全部为空'.'
system("cls");
srand(time(0)); //随机种子
hx = rand()%H; //产生蛇头
hy = rand()%L;
GameMap[hx][hy] = Shead;
Snake[0].x = hx; Snake[0].y = hy;
Snake[0].now = -1;
Create_Food(); //随机产生食物
for(i = 0; i H; i++) //地图显示
{
for(j = 0; j L; j++)
printf("%c", GameMap[i][j]);
printf("\n");
}
printf("\n小小C语言贪吃蛇\n");
printf("按任意方向键开始游戏\n");
getch(); //先接受一个按键,使蛇开始往该方向走
Button(); //取出按键,并判断方向
}
void Create_Food() //在地图上随机产生食物
{
int fx, fy;
while(1)
{
fx = rand()%H;
fy = rand()%L;
if(GameMap[fx][fy] == '.') //不能出现在蛇所占有的位置
{
GameMap[fx][fy] = Sfood;
break;
}
}
}
void Show() //刷新显示地图
{
int i, j;
while(1)
{
_sleep(500); //延迟半秒(1000为1s),即每半秒刷新一次地图
Button(); //先判断按键在移动
Move();
if(over) //自吃或碰墙即游戏结束
{
printf("\n**游戏结束**\n");
printf(" _\n");
getchar();
break;
}
system("cls"); //清空地图再显示刷新吼的地图
for(i = 0; i H; i++)
{
for(j = 0; j L; j++)
printf("%c", GameMap[i][j]);
printf("\n");
}
printf("\n小小C语言贪吃蛇\n");
printf("按任意方向键开始游戏\n");
}
}
void Button() //取出按键,并判断方向
{
if(kbhit() != 0) //检查当前是否有键盘输入,若有则返回一个非0值,否则返回0
{
while(kbhit() != 0) //可能存在多个按键,要全部取完,以最后一个为主
key = getch(); //将按键从控制台中取出并保存到key中
switch(key)
{ //左
case 75: Snake[0].now = 0;
break;
//右
case 77: Snake[0].now = 1;
break;
//上
case 72: Snake[0].now = 2;
break;
//下
case 80: Snake[0].now = 3;
break;
}
}
}
void Move() //蛇的移动
{
int i, x, y;
int t = sum; //保存当前蛇的长度
//记录当前蛇头的位置,并设置为空,蛇头先移动
x = Snake[0].x; y = Snake[0].y; GameMap[x][y] = '.';
Snake[0].x = Snake[0].x + dx[ Snake[0].now ];
Snake[0].y = Snake[0].y + dy[ Snake[0].now ];
Check_Border(); //蛇头是否越界
Check_Head(x, y); //蛇头移动后的位置情况,参数为: 蛇头的开始位置
if(sum == t) //未吃到食物即蛇身移动哦
for(i = 1; i sum; i++) //要从蛇尾节点向前移动哦,前一个节点作为参照
{
if(i == 1) //尾节点设置为空再移动
GameMap[ Snake[i].x ][ Snake[i].y ] = '.';
if(i == sum-1) //为蛇头后面的蛇身节点,特殊处理
{
Snake[i].x = x;
Snake[i].y = y;
Snake[i].now = Snake[0].now;
}
else //其他蛇身即走到前一个蛇身位置
{
Snake[i].x = Snake[i+1].x;
Snake[i].y = Snake[i+1].y;
Snake[i].now = Snake[i+1].now;
}
GameMap[ Snake[i].x ][ Snake[i].y ] = '#'; //移动后要置为'#'蛇身
}
}
void Check_Border() //检查蛇头是否越界
{
if(Snake[0].x 0 || Snake[0].x = H
|| Snake[0].y 0 || Snake[0].y = L)
over = 1;
}
void Check_Head(int x, int y) //检查蛇头移动后的位置情况
{
if(GameMap[ Snake[0].x ][ Snake[0].y ] == '.') //为空
GameMap[ Snake[0].x ][ Snake[0].y ] = '@';
else
if(GameMap[ Snake[0].x ][ Snake[0].y ] == '*') //为食物
{
GameMap[ Snake[0].x ][ Snake[0].y ] = '@';
Snake[sum].x = x; //新增加的蛇身为蛇头后面的那个
Snake[sum].y = y;
Snake[sum].now = Snake[0].now;
GameMap[ Snake[sum].x ][ Snake[sum].y ] = '#';
sum++;
Create_Food(); //食物吃完了马上再产生一个食物
}
else
over = 1;
}
#define N 200
#include graphics.h
#include stdlib.h
#include dos.h
#define LEFT 0x4b00
#define RIGHT 0x4d00
#define DOWN 0x5000
#define UP 0x4800
#define ESC 0x011b
int i,key;
int score=0;/*得分*/
int gamespeed=50000;/*游戏速度自己调整*/
struct Food
{
int x;/*食物的横坐标*/
int y;/*食物的纵坐标*/
int yes;/*判断是否要出现食物的变量*/
}food;/*食物的结构体*/
struct Snake
{
int x[N];
int y[N];
int node;/*蛇的节数*/
int direction;/*蛇移动方向*/
int life;/* 蛇的生命,0活着,1死亡*/
}snake;
void Init(void);/*图形驱动*/
void Close(void);/*图形结束*/
void DrawK(void);/*开始画面*/
void GameOver(void);/*结束游戏*/
void GamePlay(void);/*玩游戏具体过程*/
void PrScore(void);/*输出成绩*/
/*主函数*/
void main(void)
{
Init();/*图形驱动*/
DrawK();/*开始画面*/
GamePlay();/*玩游戏具体过程*/
Close();/*图形结束*/
}
/*图形驱动*/
void Init(void)
{
int gd=DETECT,gm;
initgraph(gd,gm,"c:\\tc");
cleardevice();
}
/*开始画面,左上角坐标为(50,40),右下角坐标为(610,460)的围墙*/
void DrawK(void)
{
/*setbkcolor(LIGHTGREEN);*/
setcolor(11);
setlinestyle(SOLID_LINE,0,THICK_WIDTH);/*设置线型*/
for(i=50;i=600;i+=10)/*画围墙*/
{
rectangle(i,40,i+10,49); /*上边*/
rectangle(i,451,i+10,460);/*下边*/
}
for(i=40;i=450;i+=10)
{
rectangle(50,i,59,i+10); /*左边*/
rectangle(601,i,610,i+10);/*右边*/
}
}
/*玩游戏具体过程*/
void GamePlay(void)
{
randomize();/*随机数发生器*/
food.yes=1;/*1表示需要出现新食物,0表示已经存在食物*/
snake.life=0;/*活着*/
snake.direction=1;/*方向往右*/
snake.x[0]=100;snake.y[0]=100;/*蛇头*/
snake.x[1]=110;snake.y[1]=100;
snake.node=2;/*节数*/
PrScore();/*输出得分*/
while(1)/*可以重复玩游戏,压ESC键结束*/
{
while(!kbhit())/*在没有按键的情况下,蛇自己移动身体*/
{
if(food.yes==1)/*需要出现新食物*/
{
food.x=rand()%400+60;
food.y=rand()%350+60;
while(food.x%10!=0)/*食物随机出现后必须让食物能够在整格内,这样才可以让蛇吃到*/
food.x++;
while(food.y%10!=0)
food.y++;
food.yes=0;/*画面上有食物了*/
}
if(food.yes==0)/*画面上有食物了就要显示*/
{
setcolor(GREEN);
rectangle(food.x,food.y,food.x+10,food.y-10);
}
for(i=snake.node-1;i0;i--)/*蛇的每个环节往前移动,也就是贪吃蛇的关键算法*/
{
snake.x[i]=snake.x[i-1];
snake.y[i]=snake.y[i-1];
}
/*1,2,3,4表示右,左,上,下四个方向,通过这个判断来移动蛇头*/
switch(snake.direction)
{
case 1:snake.x[0]+=10;break;
case 2: snake.x[0]-=10;break;
case 3: snake.y[0]-=10;break;
case 4: snake.y[0]+=10;break;
}
for(i=3;isnake.node;i++)/*从蛇的第四节开始判断是否撞到自己了,因为蛇头为两节,第三节不可能拐过来*/
{
if(snake.x[i]==snake.x[0]snake.y[i]==snake.y[0])
{
GameOver();/*显示失败*/
snake.life=1;
break;
}
}
if(snake.x[0]55||snake.x[0]595||snake.y[0]55||
snake.y[0]455)/*蛇是否撞到墙壁*/
{
GameOver();/*本次游戏结束*/
snake.life=1; /*蛇死*/
}
if(snake.life==1)/*以上两种判断以后,如果蛇死就跳出内循环,重新开始*/
break;
if(snake.x[0]==food.xsnake.y[0]==food.y)/*吃到食物以后*/
{
setcolor(0);/*把画面上的食物东西去掉*/
rectangle(food.x,food.y,food.x+10,food.y-10);
snake.x[snake.node]=-20;snake.y[snake.node]=-20;
/*新的一节先放在看不见的位置,下次循环就取前一节的位置*/
snake.node++;/*蛇的身体长一节*/
food.yes=1;/*画面上需要出现新的食物*/
score+=10;
PrScore();/*输出新得分*/
}
setcolor(4);/*画出蛇*/
for(i=0;isnake.node;i++)
rectangle(snake.x[i],snake.y[i],snake.x[i]+10,
snake.y[i]-10);
delay(gamespeed);
setcolor(0);/*用黑色去除蛇的的最后一节*/
rectangle(snake.x[snake.node-1],snake.y[snake.node-1],
snake.x[snake.node-1]+10,snake.y[snake.node-1]-10);
} /*endwhile(!kbhit)*/
if(snake.life==1)/*如果蛇死就跳出循环*/
break;
key=bioskey(0);/*接收按键*/
if(key==ESC)/*按ESC键退出*/
break;
else
if(key==UPsnake.direction!=4)
/*判断是否往相反的方向移动*/
snake.direction=3;
else
if(key==RIGHTsnake.direction!=2)
snake.direction=1;
else
if(key==LEFTsnake.direction!=1)
snake.direction=2;
else
if(key==DOWNsnake.direction!=3)
snake.direction=4;
}/*endwhile(1)*/
}
/*游戏结束*/
void GameOver(void)
{
cleardevice();
PrScore();
setcolor(RED);
settextstyle(0,0,4);
outtextxy(200,200,"GAME OVER");
getch();
}
/*输出成绩*/
void PrScore(void)
{
char str[10];
setfillstyle(SOLID_FILL,YELLOW);
bar(50,15,220,35);
setcolor(6);
settextstyle(0,0,2);
sprintf(str,"score:%d",score);
outtextxy(55,20,str);
}
/*图形结束*/
void Close(void)
{
getch();
closegraph();
}
/* 贪吃蛇程序 by champking */
#define N 200
#include graphics.h
#include stdlib.h
#include dos.h
#define LEFT 0x4b00
#define RIGHT 0x4d00
#define DOWN 0x5000
#define UP 0x4800
#define ESC 0x011b
int i,key;
int score = 0;/*得分*/
int gamespeed = 100000;/*游戏速度自己调整*/
struct Food
{
int x;/*食物的横坐标*/
int y;/*食物的纵坐标*/
int yes;/*判断是否要出现食物的变量*/
}food;/*食物的结构体*/
struct Snake
{
int x[N];
int y[N];
int node;/*蛇的节数*/
int direction;/*蛇移动方向*/
int life;/* 蛇的生命,0活着,1死亡*/
}snake;
void Init(void);/*图形驱动*/
void Close(void);/*图形结束*/
void DrawK(void);/*开始画面*/
void GameOver(void);/*结束游戏*/
void GamePlay(void);/*玩游戏具体过程*/
void PrScore(void);/*输出成绩*/
/*主函数*/
void main(void)
{
Init();/*图形驱动*/
DrawK();/*开始画面*/
GamePlay();/*玩游戏具体过程*/
Close();/*图形结束*/
}
/*图形驱动*/
void Init(void)
{
int gd = DETECT, gm;
initgraph(gd, gm, "c:\\tc");
cleardevice();
}
/*开始画面,左上角坐标为(50,40),右下角坐标为(610,460)的围墙*/
void DrawK(void)
{
/*setbkcolor(LIGHTGREEN);*/
setcolor(11);
setlinestyle(SOLID_LINE, 0, THICK_WIDTH);/*设置线型*/
for(i = 50; i = 600; i += 10)/*画围墙*/
{
rectangle(i, 40, i + 10, 49); /*上边*/
rectangle(i, 451, i + 10, 460);/*下边*/
}
for(i = 40; i = 450; i += 10)
{
rectangle(50, i, 59, i + 10); /*左边*/
rectangle(601, i, 610, i + 10);/*右边*/
}
}
/*玩游戏具体过程*/
void GamePlay(void)
{
randomize();/*随机数发生器*/
food.yes = 1;/*1表示需要出现新食物,0表示已经存在食物*/
snake.life = 0;/*活着*/
snake.direction = 1;/*方向往右*/
snake.x[0] = 100; snake.y[0] = 100;/*蛇头*/
snake.x[1] = 110; snake.y[1] = 100;
snake.node = 2;/*节数*/
PrScore();/*输出得分*/
while(1)/*可以重复玩游戏,压ESC键结束*/
{
while(!kbhit())/*在没有按键的情况下,蛇自己移动身体*/
{
if(food.yes == 1)/*需要出现新食物*/
{
food.x = rand() % 400 + 60;
food.y = rand() % 350 + 60;
while(food.x % 10 != 0)/*食物随机出现后必须让食物能够在整格内,这样才可以让蛇吃到*/
food.x++;
while(food.y % 10 != 0)
food.y++;
food.yes = 0;/*画面上有食物了*/
}
if(food.yes == 0)/*画面上有食物了就要显示*/
{
setcolor(GREEN);
rectangle(food.x, food.y, food.x + 10, food.y - 10);
}
for(i = snake.node - 1; i 0; i--)/*蛇的每个环节往前移动,也就是贪吃蛇的关键算法*/
{
snake.x[i] = snake.x[i-1];
snake.y[i] = snake.y[i-1];
}
/*1,2,3,4表示右,左,上,下四个方向,通过这个判断来移动蛇头*/
switch(snake.direction)
{
case 1: snake.x[0] += 10; break;
case 2: snake.x[0] -= 10; break;
case 3: snake.y[0] -= 10; break;
case 4: snake.y[0] += 10; break;
}
for(i = 3; i snake.node; i++)/*从蛇的第四节开始判断是否撞到自己了,因为蛇头为两节,第三节不可能拐过来*/
{
if(snake.x[i] == snake.x[0] snake.y[i] == snake.y[0])
{
GameOver();/*显示失败*/
snake.life = 1;
break;
}
}
if(snake.x[0]55||snake.x[0]595||snake.y[0]55||
snake.y[0]455)/*蛇是否撞到墙壁*/
{
GameOver();/*本次游戏结束*/
snake.life=1; /*蛇死*/
}
if(snake.life == 1)/*以上两种判断以后,如果蛇死就跳出内循环,重新开始*/
break;
if(snake.x[0] == food.x snake.y[0] == food.y)/*吃到食物以后*/
{
setcolor(0);/*把画面上的食物东西去掉*/
rectangle(food.x, food.y, food.x + 10, food.y - 10);
snake.x[snake.node] =- 20; snake.y[snake.node] =- 20;
/*新的一节先放在看不见的位置,下次循环就取前一节的位置*/
snake.node++;/*蛇的身体长一节*/
food.yes = 1;/*画面上需要出现新的食物*/
score += 10;
PrScore();/*输出新得分*/
}
setcolor(4);/*画出蛇*/
for(i = 0; i snake.node; i++)
rectangle(snake.x[i], snake.y[i], snake.x[i] + 10,
snake.y[i] - 10);
delay(gamespeed);
setcolor(0);/*用黑色去除蛇的的最后一节*/
rectangle(snake.x[snake.node-1], snake.y[snake.node-1],
snake.x[snake.node-1] + 10, snake.y[snake.node - 1] - 10);
} /*endwhile(!kbhit)*/
if(snake.life == 1)/*如果蛇死就跳出循环*/
break;
key = bioskey(0);/*接收按键*/
if(key == ESC)/*按ESC键退出*/
break;
else
if(key == UPsnake.direction!=4)
/*判断是否往相反的方向移动*/
snake.direction=3;
else
if(key == RIGHT snake.direction != 2)
snake.direction=1;
else
if(key == LEFT snake.direction != 1)
snake.direction = 2;
else
if(key == DOWN snake.direction != 3)
snake.direction = 4;
}/*endwhile(1)*/
}
/*游戏结束*/
void GameOver(void)
{
cleardevice();
PrScore();
setcolor(RED);
settextstyle(0, 0, 4);
outtextxy(200, 200, "GAME OVER");
getch();
}
/*输出成绩*/
void PrScore(void)
{
char str[10];
setfillstyle(SOLID_FILL, YELLOW);
bar(50, 15, 220, 35);
setcolor(6);
settextstyle(0,0,2);
sprintf(str, "score:%d", score);
outtextxy(55, 20, str);
}
/*图形结束*/
void Close(void)
{
getch();
closegraph();
}
慢慢看吧 然后修改程序。
#define N 200
#include graphics.h
#include stdlib.h
#include dos.h
#define LEFT 0x4b00
#define RIGHT 0x4d00
#define DOWN 0x5000
#define UP 0x4800
#define ESC 0x011b
int i,key;
int score=0;/*得分*/
int gamespeed=50000;/*游戏速度自己调整*/
struct Food
{
int x;/*食物的横坐标*/
int y;/*食物的纵坐标*/
int yes;/*判断是否要出现食物的变量*/
}food;/*食物的结构体*/
struct Snake
{
int x[N];
int y[N];
int node;/*蛇的节数*/
int direction;/*蛇移动方向*/
int life;/* 蛇的生命,0活着,1死亡*/
}snake;
void Init(void);/*图形驱动*/
void Close(void);/*图形结束*/
void DrawK(void);/*开始画面*/
void GameOver(void);/*结束游戏*/
void GamePlay(void);/*玩游戏具体过程*/
void PrScore(void);/*输出成绩*/
/*主函数*/
void main(void)
{
Init();/*图形驱动*/
DrawK();/*开始画面*/
GamePlay();/*玩游戏具体过程*/
Close();/*图形结束*/
}
/*图形驱动*/
void Init(void)
{
int gd=DETECT,gm;
initgraph(gd,gm,"c:\\tc");
cleardevice();
}
/*开始画面,左上角坐标为(50,40),右下角坐标为(610,460)的围墙*/
void DrawK(void)
{
/*setbkcolor(LIGHTGREEN);*/
setcolor(11);
setlinestyle(SOLID_LINE,0,THICK_WIDTH);/*设置线型*/
for(i=50;i=600;i+=10)/*画围墙*/
{
rectangle(i,40,i+10,49); /*上边*/
rectangle(i,451,i+10,460);/*下边*/
}
for(i=40;i=450;i+=10)
{
rectangle(50,i,59,i+10); /*左边*/
rectangle(601,i,610,i+10);/*右边*/
}
}
/*玩游戏具体过程*/
void GamePlay(void)
{
randomize();/*随机数发生器*/
food.yes=1;/*1表示需要出现新食物,0表示已经存在食物*/
snake.life=0;/*活着*/
snake.direction=1;/*方向往右*/
snake.x[0]=100;snake.y[0]=100;/*蛇头*/
snake.x[1]=110;snake.y[1]=100;
snake.node=2;/*节数*/
PrScore();/*输出得分*/
while(1)/*可以重复玩游戏,压ESC键结束*/
{
while(!kbhit())/*在没有按键的情况下,蛇自己移动身体*/
{
if(food.yes==1)/*需要出现新食物*/
{
food.x=rand()()%400+60;
food.y=rand()()%350+60;
while(food.x%10!=0)/*食物随机出现后必须让食物能够在整格内,这样才可以让蛇吃到*/
food.x++;
while(food.y%10!=0)
food.y++;
food.yes=0;/*画面上有食物了*/
}
if(food.yes==0)/*画面上有食物了就要显示*/
{
setcolor(GREEN);
rectangle(food.x,food.y,food.x+10,food.y-10);
}
for(i=snake.node-1;i0;i--)/*蛇的每个环节往前移动,也就是贪吃蛇的关键算法*/
{
snake.x[i]=snake.x[i-1];
snake.y[i]=snake.y[i-1];
}
/*1,2,3,4表示右,左,上,下四个方向,通过这个判断来移动蛇头*/
switch(snake.direction)
{
case 1:snake.x[0]+=10;break;
case 2: snake.x[0]-=10;break;
case 3: snake.y[0]-=10;break;
case 4: snake.y[0]+=10;break;
}
for(i=3;isnake.node;i++)/*从蛇的第四节开始判断是否撞到自己了,因为蛇头为两节,第三节不可能拐过来*/
{
if(snake.x[i]==snake.x[0]snake.y[i]==snake.y[0])
{
GameOver();/*显示失败*/
snake.life=1;
break;
}
}
if(snake.x[0]55||snake.x[0]595||snake.y[0]55||
snake.y[0]455)/*蛇是否撞到墙壁*/
{
GameOver();/*本次游戏结束*/
snake.life=1; /*蛇死*/
}
if(snake.life==1)/*以上两种判断以后,如果蛇死就跳出内循环,重新开始*/
break;
if(snake.x[0]==food.xsnake.y[0]==food.y)/*吃到食物以后*/
{
setcolor(0);/*把画面上的食物东西去掉*/
rectangle(food.x,food.y,food.x+10,food.y-10);
snake.x[snake.node]=-20;snake.y[snake.node]=-20;
/*新的一节先放在看不见的位置,下次循环就取前一节的位置*/
snake.node++;/*蛇的身体长一节*/
food.yes=1;/*画面上需要出现新的食物*/
score+=10;
PrScore();/*输出新得分*/
}
setcolor(4);/*画出蛇*/
for(i=0;isnake.node;i++)
rectangle(snake.x[i],snake.y[i],snake.x[i]+10,
snake.y[i]-10);
delay(gamespeed);
setcolor(0);/*用黑色去除蛇的的最后一节*/
rectangle(snake.x[snake.node-1],snake.y[snake.node-1],
snake.x[snake.node-1]+10,snake.y[snake.node-1]-10);
} /*endwhile(!kbhit)*/
if(snake.life==1)/*如果蛇死就跳出循环*/
break;
key=bioskey(0);/*接收按键*/
if(key==ESC)/*按ESC键退出*/
break;
else
if(key==UPsnake.direction!=4)
/*判断是否往相反的方向移动*/
snake.direction=3;
else
if(key==RIGHTsnake.direction!=2)
snake.direction=1;
else
if(key==LEFTsnake.direction!=1)
snake.direction=2;
else
if(key==DOWNsnake.direction!=3)
snake.direction=4;
}/*endwhile(1)*/
}
/*游戏结束*/
void GameOver(void)
{
cleardevice();
PrScore();
setcolor(RED);
settextstyle(0,0,4);
outtextxy(200,200,"GAME OVER");
getch()();
}
/*输出成绩*/
void PrScore(void)
{
char str[10];
setfillstyle(SOLID_FILL,YELLOW);
bar(50,15,220,35);
setcolor(6);
settextstyle(0,0,2);
sprintf(str,"score:%d",score);
outtextxy(55,20,str);
}
/*图形结束*/
void Close(void)
{
getch()();
closegraph();
}
#include windows.h
#include stdlib.h
#include time.h
#include stdio.h
#include string.h
#include conio.h
#define N 21
int apple[3],num;
char score[3];
char tail[3];
void gotoxy(int x, int y) //输出坐标
{
COORD pos;
pos.X = x;
pos.Y = y;
SetConsoleCursorPosition(GetStdHandle(STD_OUTPUT_HANDLE), pos);
}
void color(int b) //颜色函数
{
HANDLE hConsole = GetStdHandle((STD_OUTPUT_HANDLE)) ;
SetConsoleTextAttribute(hConsole,b) ;
}
int Block(char head[2]) //判断出界
{
if ((head[0] 1) || (head[0] N) || (head[1] 1) || (head[1] N))
return 1;
return 0;
}
int Eat(char snake[2]) //吃了苹果
{
if ((snake[0] == apple[0]) (snake[1] == apple[1]))
{
apple[0] = apple[1] = apple[2] = 0;
gotoxy(N+44,10);
color(13);
printf("%d",score[0]*10);
color(11);
return 1;
}
return 0;
}
void Draw(char **snake, int len) //蛇移动
{
if (apple[2])
{
gotoxy(apple[1] * 2, apple[0]);
color(12);
printf("●");
color(11);
}
gotoxy(tail[1] * 2, tail[0]);
if (tail[2])
{
color(num);
printf("★");
color(num);
}
else
printf("■");
gotoxy(snake[0][1] * 2, snake[0][0]);
color(num);
printf("★");
color(num);
putchar('\n');
}
char** Move(char **snake, char dirx, int *len) //控制方向
{
int i, full = Eat(snake[0]);
memcpy(tail, snake[(*len)-1], 2);
for (i = (*len) - 1; i 0; --i)
memcpy(snake[i], snake[i-1], 2);
switch (dirx)
{
case 'w': case 'W': --snake[0][0]; break;
case 's': case 'S': ++snake[0][0]; break;
case 'a': case 'A': --snake[0][1]; break;
case 'd': case 'D': ++snake[0][1]; break;
default: ;
}
if (full)
{
snake = (char **)realloc(snake, sizeof(char *) * ((*len) + 1));
snake[(*len)] = (char *)malloc(sizeof(char) * 2);
memcpy(snake[(*len)], tail, 2);
++(*len);
++score[0];
if(score[3] 16)
++score[3];
tail[2] = 1;
}
else
tail[2] = 0;
return snake;
}
void init(char plate[N+2][N+2], char ***snake_x, int *len) //初始化
{
int i, j;
char **snake = NULL;
*len = 3;
score[0] = score[3] =3;
snake = (char **)realloc(snake, sizeof(char *) * (*len));
for (i = 0; i *len; ++i)
snake[i] = (char *)malloc(sizeof(char) * 2);
for (i = 0; i 3; ++i)
{
snake[i][0] = N/2 + 1;
snake[i][1] = N/2 + 1 + i;
}
for (i = 1; i = N; ++i)
for (j = 1; j = N; ++j)
plate[i][j] = 1;
apple[0] = rand()%N + 1; apple[1] = rand()%N + 1;
apple[2] = 1;
for (i = 0; i N + 2; ++i)
{
gotoxy(0, i);
for (j = 0; j N + 2; ++j)
{
switch (plate[i][j])
{
case 0:
color(12);printf("□");color(11); continue;
case 1: printf("■"); continue;
default: ;
}
}
putchar('\n');
}
for (i = 0; i (*len); ++i)
{
gotoxy(snake[i][1] * 2, snake[i][0]);
printf("★");
}
putchar('\n');
*snake_x = snake;
}
void Manual()
{
gotoxy(N+30,2);
color(10);
printf("按 W S A D 移动方向");
gotoxy(N+30,4);
printf("按 space 键暂停");
gotoxy(N+30,8);
color(11);
printf("历史最高分为: ");
color(12);
gotoxy(N+44,8);
printf("%d",score[1]*10);
color(11);
gotoxy(N+30,12);
printf("你现在得分为: 0");
}
int File_in() //取记录的分数
{
FILE *fp;
if((fp = fopen("C:\\tcs.txt","a+")) == NULL)
{
gotoxy(N+18, N+2);
printf("文件不能打开\n");
exit(0);
}
if((score[1] = fgetc(fp)) != EOF);
else
score[1] = 0;
return 0;
}
int File_out() //存数据
{
FILE *fp;
if(score[1] score[0])
{gotoxy(10,10);
color(12);
puts("闯关失败 加油耶");
gotoxy(0,N+2);
return 0;
}
if((fp = fopen("C:\\tcs.txt","w+")) == NULL)
{
printf("文件不能打开\n");
exit(0);
}
if(fputc(--score[0],fp)==EOF)
printf("输出失败\n");
gotoxy(10,10);
color(12);
puts("恭喜您打破记录");
gotoxy(0,N+2);
return 0;
}
void Free(char **snake, int len) //释放空间
{
int i;
for (i = 0; i len; ++i)
free(snake[i]);
free(snake);
}
int main(void)
{
int len;
char ch = 'g';
char a[N+2][N+2] = {{0}};
char **snake;
srand((unsigned)time(NULL));
color(11);
File_in();
init(a, snake, len);
Manual();
while (ch != 0x1B) // 按 ESC 结束
{
Draw(snake, len);
if (!apple[2]) {
apple[0] = rand()%N + 1;
apple[1] = rand()%N + 1;
apple[2] = 1;
num++;
if(num8)
num=0;
}
Sleep(200-score[3]*10);
setbuf(stdin, NULL);
if (kbhit())
{
gotoxy(0, N+2);
ch = getche();
}
snake = Move(snake, ch, len);
if (Block(snake[0])==1)
{
gotoxy(N+2, N+2);
puts("你输了");
File_out();
Free(snake, len);
getche();
exit(0);
}
}
Free(snake, len);
exit(0);
}