C language mining games
#include<stdio.h>
intcmp(constvoid*a,constvoid*b){
return*(float*)a-*(float*)b>1e-6;
}
intmain(intargc,char*argv[])
{
intn;
while(scanf("%d",&n)!=EOF&&n){
inti;
floatx[n];
floaty[n];
for(i=0;i<n;i++)scanf("%f%f",x+i,y+i);
qsort(x,n,sizeof(float),cmp);
qsort(y,n,sizeof(float),cmp);
printf("%.2f%.2f ",x[(n-1)/2],y[(n-1)/2]);
}
}
“贪吃蛇”C代码,在dev C++试验通过(用4个方向键控制)
#include <stdio.h>
#include <stdlib.h>
#include <conio.h>
#include <time.h>
#include <Windows.h>
#define W 78 //游戏框的宽,x轴
#define H 26 //游戏框的高,y轴
int dir=3; //方向变量,初值3表示向“左”
int Flag=0; //吃了食物的标志(1是0否)
int score=0; //玩家得分
struct food{ int x; //食物的x坐标
int y; //食物的y坐标
}fod; //结构体fod有2个成员
struct snake{ int len; //蛇身长
int speed; //移动速度
int x[100]; //蛇身某节x坐标
int y[100]; //蛇身某节y坐标
}snk; //结构体snk有4个成员
void gtxy( int x,int y) //控制光标移动的函数
{ COORD coord;
coord.X=x;
coord.Y=y;
SetConsoleCursorPosition(GetStdHandle(STD_OUTPUT_HANDLE), coord);
}
void gtxy( int x,int y); //以下声明要用到的几个自编函数
void csh( ); //初始化界面
void keymove( ); //按键操作移动蛇
void putFod( ); //投放食物
int Over( ); //游戏结束(1是0否)
void Color(int a); //设定显示颜色的函数
int main( ) //主函数
{ csh( );
while(1)
{ Sleep(snk.speed);
keymove( );
putFod( );
if(Over( ))
{ system(“cls”);
gtxy(W/2+1,H/2); printf(“游戏结束T__T”);
gtxy(W/2+1,H/2+2); printf(“玩家总分:%d分”,score);
getch( );
break;
}
}
return 0;
}
void csh( ) //初始化界面
{ int i;
gtxy(0,0);
CONSOLE_CURSOR_INFO cursor_info={1,0}; //以下两行是隐藏光标的设置
SetConsoleCursorInfo(GetStdHandle(STD_OUTPUT_HANDLE),&cursor_info);
for(i=0;i<=W;i=i+2) //横坐标要为偶数,因为这个要打印的字符占2个位置
{Color(2); //设定打印颜色为绿色
gtxy(i,0); printf("■"); //打印上边框
gtxy(i,H); printf("■"); //打印下边框
}
for(i=1;i<H;i++)
{ gtxy(0,i); printf("■"); //打印左边框
gtxy(W,i); printf("■"); //打印右边框
}
while(1)
{ srand((unsigned)time(NULL)); //初始化随机数发生器srand( )
fod.x=rand()%(W-4)+2; //随机函数rand( )产生一个从0到比”(W-4)”小1的数再加2
fod.y=rand()%(H-2)+1; //随机函数rand( )产生一个从0到比”(H-2)”小1的数再加1
if (fod.x%2==0) break; //fod.x是食物的横坐标,要是2的倍数(为偶数)
}
Color(12); //设定打印颜色为淡红
gtxy(fod.x,fod.y); printf("●"); //到食物坐标处打印初试食物
snk.len=3; //蛇身长初值为3节
snk.speed=350; //刷新蛇的时间,即移动速度初值为350毫秒
snk.x[0]=W/2+1; //蛇头横坐标要为偶数(因为W/2=39)
snk.y[0]=H/2; //蛇头纵坐标
Color(9); //设定打印颜色为淡蓝
gtxy(snk.x[0], snk.y[0]); printf("■"); //打印蛇头
for(i=1;i<snk.len;i++)
{ snk.x[i]=snk.x[i-1]+2; snk.y[i]=snk.y[i-1];
gtxy(snk.x[i],snk.y[i]); printf("■"); //打印蛇身
}
Color(7, 0); //恢复默认的白字黑底
return;
}
void keymove( ) //按键操作移动蛇
{ int key;
if( kbhit( ) ) //如有按键输入才执行下面操作
{ key=getch( );
if (key==224) //值为224表示按下了方向键,下面要再次获取键值
{ key=getch( );
if(key==72&&dir!=2)dir=1; //72表示按下了向上方向键
if(key==80&&dir!=1)dir=2; //80为向下
if(key==75&&dir!=4)dir=3; //75为向左
if(key==77&&dir!=3)dir=4; //77为向右
}
if (key==32)
{ while(1) if((key=getch( ))==32) break; } //32为空格键,这儿用来暂停
}
if (Flag==0) //如没吃食物,才执行下面操作擦掉蛇尾
{ gtxy(snk.x[snk.len-1],snk.y[snk.len-1]); printf(" "); }
int i;
for (i = snk.len - 1; i > 0; i--) //从蛇尾起每节存储前一节坐标值蛇头除外
{ snk.x[i]=snk.x[i-1]; snk.y[i]=snk.y[i-1]; }
switch (dir) //判断蛇头该往哪个方向移动,并获取最新坐标值
{ case 1: snk.y[0]--; break; //dir=1要向上移动
case 2: snk.y[0]++; break; //dir=2要向下移动
case 3: snk.x[0]-=2; break; //dir=3要向左移动
case 4: snk.x[0]+=2; break; //dir=4要向右移动
}
Color(9);
gtxy(snk.x[0], snk.y[0]); printf("■"); //打印蛇头
if (snk.x[0] == fod.x && snk.y[0] == fod.y) //如吃到食物则执行以下操作
{ printf("7"); snk.len++; score += 100; snk.speed -= 5; Flag = 1; } //7是响铃
else Flag = 0; //没吃到食物Flag的值为0
if(snk.speed<150) snk.speed= snk.speed+5; //作弊码,不让速度无限加快
}
void putFod( ) //投放食物
{ if (Flag == 1) //如吃到食物才执行以下操作,生成另一个食物
{ while (1)
{ int i,n= 1;
srand((unsigned)time(NULL)); //初始化随机数发生器srand( )
fod.x = rand( ) % (W - 4) + 2; //产生在游戏框范围内的一个x坐标值
fod.y = rand( ) % (H - 2) + 1; //产生在游戏框范围内的一个y坐标值
for (i = 0; i < snk.len; i++) //随机生成的食物不能在蛇的身体上
{ if (fod.x == snk.x[i] &&fod.y == snk.y[i]) { n= 0; break;} }
if (n && fod.x % 2 == 0) break; //n不为0且横坐标为偶数,则食物坐标取值成功
}
Color(12); //设定字符为红色
gtxy(fod.x, fod.y); printf("●"); //光标到取得的坐标处打印食物
}
return;
}
int Over( ) //判断游戏是否结束的函数
{ int i;
Color(7);
gtxy(2,H+1); printf(“暂停键:space.”); //以下打印一些其它信息
gtxy(2,H+2); printf(“游戏得分:%d”,score);
if (snk.x[0] == 0 || snk.x[0] == W) return 1; //蛇头触碰左右边界
if (snk.y[0] == 0 || snk.y[0] == H) return 1; //蛇头触碰上下边界
for (i = 1; i < snk.len; i++)
{ if (snk.x[0] == snk.x[i] && snk.y[0] == snk.y[i]) return 1; } //蛇头触碰自身
return 0; //没碰到边界及自身时就返回0
}
void Color(int a) //设定颜色的函数
{ SetConsoleTextAttribute(GetStdHandle( STD_OUTPUT_HANDLE ),a ); }
novices can easily write code by collecting the following self-made functions:
-
gtxy ( 6,3 ) / / the cursor is located in the sixth column and the third line of the window (ready to output, both lines and columns are counted from 0)
-
yinc ( 1,0 ) / / hide the cursor (the second parameter is set to 0 to hide, no cursor flickers, yinc stands for hide)
-
Kou ( 80,25 ) / / set the window buffer size to 80 columns and 25 lines
the following are library functions, which need not be written by yourself, You can use it as long as you include it
SetConsoleTitle(" Tetris & quot< strong>); // The & quot; Tetris & quot; Five words
-
srand ( (unsigned) time (null) ) // Initialize random number generator
-
n = rand() % 20// Generate one of random numbers 0-19. For example, rand()% 5 generates one of 0-4
setconsole tile() function in & lt; windows.h> The srand() function should be used together with the rand() function,
is used at the same time; stdlib.h> In. If rand ()% 10 + 1 proces a number from 1 to 10
Sleep(300); // Delay 300 ms (that is, the program continues to run after 300 ms pause)
-
system ( & quot; cls"< strong>); // Clear screen (clear all the contents in the window and set the cursor at (0,0)
these two functions are in & lt; windows.h> In. The first four self-made functions are written as follows:
< / OL >
color ( 4,0 ) / / set it to red with black background, such as color (10,0), 0) is light green with black background
void gtxy (int x, int y) / / functions controlling cursor position
{cool POS
pos.X = x;
pos.Y = y;
SetConsoleCursorPosition ( GetStdHandle (STD_ OUTPUT_ HANDLE), pos );
}
void color (short forecolor = 7, short backgroundColor = 0) / / function for setting color
{handle HL = < EM > getstdhandle (STD_ OUTPUT_ HANDLE );
SetConsoleTextAttribute ( hl, ForeColor + BackGroundColor * 0x10 );
When}
is declared, the prototype can write void color (short x, short y)
void yinc (int x, int y) / / hide cursor function
{console}_ CURSOR_ INFO gb={ x , y }; // GB stands for cursor
setconsole cursorinfo (< EM > getstdhandle (STD_ OUTPUT_ HANDLE), & gb );
}
void Kou (int w, int h) / / function for setting window size
{handle HL = < EM > getstdhandle (STD_ OUTPUT_ HANDLE ) ;
COORD size={ w , h };
SetConsoleScreenBufferSize( hl , size );
SMALL_ RECT rc={ 0, 0, w, h };
SetConsoleWindowInfo( hl, 1, & rc );
In the last function, the parameter W is width and H is height. The first of the five lines defines the handle variable HL and assigns it a value The second line defines the coordinate structure variable size, whose value determines the size of the buffer. The third line is to set the buffer size with the value ofsize. The fourth line defines the variable RC, whose value determines the position of the current window and the size of
(no more than the size of the buffer). The first two 0,0 start from the position of 0 column and 0 row in the upper left corner of the buffer, and the last two
parameters can be less than w and h. for example, RC = {0,0, W-10, H-5}; The last line uses the value of RC to set the window, and the parameter in the middle
should be & quot; 1 " Or write "true"
C语言数字记忆小游戏,望采纳
#include<stdio.h>
#include<ctype.h>
#include<stdlib.h>
#include<time.h>
#defineTURE1
#defineFALSE0
voidmain()
{
charanother_name='Y';
charanother_game='Y';
intcorrect='TRUE';
intcounter=0;
intsequence_length=0;
inti=0;
longintseed=0;
intnumber=0;
longintnow=0;
longtime_taken=0;
intclock_per_sec;
printf(" ---------------------------------记忆小游戏-------------------------------------------- ");
printf("请牢记屏幕上出现的没一个数字,并在规定时间内输入您记下的数字 ");
printf("回车开始游戏 ");
scanf("%c",&another_game);
do
{
correct='TRUE';
counter=0;
sequence_length=2;
time_taken=clock();
while(correct)
{
sequence_length+=(counter++%3==0);
seed=time(NULL);
now=clock();
srand((int)seed);
for(i=0;i<=sequence_length;i++)
printf("%d",rand()%10);
for(;clock()-now<clock_per_sec;);
printf(" ");
for(i=0;i<=sequence_length;i++)
printf("");
if(counter==1)
printf(" 输入您记住的数字,以空格隔开 ");
else
printf(" ");
srand((int)seed);
for(i=0;i<=sequence_length;i++)
{
scanf("%d",&number);
if(number!=rand()%10)
{
correct=FALSE;
break;
}
}
printf("%s ",correct?"正确":"错误");
}
time_taken=(clock()-time_taken)/clock_per_sec;
printf(" 您的成绩是:%d",--counter*100/time_taken);
fflush(stdin);
printf(" 是否继续游戏(Y/N)? ");
scanf("%c",&another_game);
}
while(another_game=='y'||another_game=='Y');
}
/*贪吃蛇*/
#include<stdio.h>
#include<time.h>
#include<conio.h>
#include<stdlib.h>
int head=3 ,tail=0;
int main()
{
int i,j,k=0;
int zuobiao[2][80];
long start;
int direction=77;
int gamespeed;
int timeover;
int change(char qipan[20][80],int zuobiao[2][80],char direction);
zuobiao[0][tail]=1;zuobiao[1][tail]=1;zuobiao[0][1]=1;zuobiao[1][1]=2;zuobiao[0][2]=1;zuobiao[1][2]=3;zuobiao[0][head]=1;zuobiao[1][head]=4;
/*处理棋盘*/
char qipan[20][80];//定义棋盘
for(i=0;i<20;i++)
for(j=0;j<80;j++)
qipan[i][j]=' ';//初始化棋盘
for(i=0;i<80;i++)
qipan[0][i]='_';
for(i=0;i<20;i++)
qipan[i][0]='|';
for(i=0;i<20;i++)
qipan[i][79]='|';
for(i=0;i<80;i++)
qipan[19][i]='_';
qipan[1][1]=qipan[1][2]=qipan[1][3]='*';//初始化蛇的位置
qipan[1][4]='#';
printf("This is a game of a SNAKE.\nGOOD LUCK TO YOU !\n");
printf("Input your game speed,please.(e.g.300)\n");
scanf("%d",&gamespeed);
while(direction!='q')
{
system("cls");
for(i=0;i<20;i++)//打印出棋盘
for(j=0;j<80;j++)
printf("%c",qipan[i][j]);
timeover=1;
start=clock();
while(!kbhit()&&(timeover=clock()-start<=gamespeed));
if(timeover)
{
getch();
direction=getch();
}
else
direction=direction;
if(!(direction==72||direction==80||direction==75||direction==77))
{
return 0;
system("cls");
printf("GAME OVER!\n");
}
if(!change(qipan,zuobiao,direction))
{
direction='q';
system("cls");
printf("GAME OVER!\n");
}
}
return 0;
}
int change(char qipan[20][80],int zuobiao[2][80],char direction)
{
int x,y;
if(direction==72)
x=zuobiao[0][head]-1;y=zuobiao[1][head];
if(direction==80)
x=zuobiao[0][head]+1;y=zuobiao[1][head];
if(direction==75)
x=zuobiao[0][head];y=zuobiao[0][head]-1;
if(direction==77)
x=zuobiao[0][head];y=zuobiao[1][head]+1;
if(x==0||x==18||y==78||y==0)
return 0;
if(qipan[x][y]!=' ')
return 0;
qipan[zuobiao[0][tail]][zuobiao[1][tail]]=' ';
tail=(tail+1)%80;
qipan[zuobiao[0][head]][zuobiao[1][head]]='*';
head=(head+1)%80;
zuobiao[0][head]=x;
zuobiao[1][head]=y;
qipan[zuobiao[0][head]][zuobiao[1][head]]='#';
return 1;
}
#include
#include
#include
#include
#include
#define Enter 7181
#define ESC 283
#define UP 18432
#define DOWN 20480
#define LEFT 19200
#define RIGHT 19712
#ifdef __cplusplus
#define __CPPARGS ...
#else
#define __CPPARGS
#endif
void interrupt (*oldhandler)(__CPPARGS);
void interrupt newhandler(__CPPARGS);
void SetTimer(void interrupt (*IntProc)(__CPPARGS));
void KillTimer(void);
void Initgra(void);
void TheFirstBlock(void);
void DrawMap(void);
void Initsnake(void);
void Initfood(void);
void Snake_Headmv(void);
void Flag(int,int,int,int);
void GameOver(void);
void Snake_Bodymv(void);
void Snake_Bodyadd(void);
void PrntScore(void);
void Timer(void);
void Win(void);
void TheSecondBlock(void);
void Food(void);
void Dsnkorfd(int,int,int);
void Delay(int);
struct Snake
{int x;int y;int color;}Snk[12];
struct Food
{int x;int y;int color;}Fd;
int flag1=1,flag2=0,flag3=0,flag4=0,flag5=0,flag6=0,
checkx,checky,num,key=0,Times,Score,Hscore,Snkspeed,TimerCounter,TureorFalse;
char Sco[2],Time[6];
void main()
{ Initgra();
SetTimer(newhandler);
TheFirstBlock();
while(1)
{DrawMap();
Snake_Headmv();
GameOver();
Snake_Bodymv();
Snake_Bodyadd();
PrntScore();
Timer();
Win();
if(key==ESC)
break;
if(key==Enter)
{cleardevice();
TheFirstBlock();
}
TheSecondBlock();
Food();
Delay(Snkspeed);
}
closegraph();
KillTimer();
}
void interrupt newhandler(__CPPARGS)
{
TimerCounter++;
oldhandler();
}
void SetTimer(void interrupt (*IntProc)(__CPPARGS))
{
oldhandler=getvect(0x1c);
disable();
setvect(0x1c,IntProc);
enable();
}
void KillTimer()
{
disable();
setvect(0x1c,oldhandler);
enable();
}
void Initgra()
{int gd=DETECT,gm;
initgraph(&gd,&gm,"d:\\tc");
}
void TheFirstBlock()
{setcolor(11);
settextstyle(0,0,4);
outtextxy(100,220,"The First Block");
loop:key=bioskey(0);
if(key==Enter)
{cleardevice();
Initsnake();
Initfood();
Score=0;
Hscore=1;
Snkspeed=10;
num=2;
Times=0;
key=0;
TureorFalse=1;
TimerCounter=0;
Time[0]='0';Time[1]='0';Time[2]=':';Time[3]='1';Time[4]='0';Time[5]='\0';
}
else if(key==ESC) cleardevice();
else goto loop;
}
void DrawMap()
{line(10,10,470,10);
line(470,10,470,470);
line(470,470,10,470);
line(10,470,10,10);
line(480,20,620,20);
line(620,20,620,460);
line(620,460,480,460);
line(480,460,480,20);
}
void Initsnake()
{randomize();
num=2;
Snk[0].x=random(440);
Snk[0].x=Snk[0].x-Snk[0].x%20+50;
Snk[0].y=random(440);
Snk[0].y=Snk[0].y-Snk[0].y%20+50;
Snk[0].color=4;
Snk[1].x=Snk[0].x;
Snk[1].y=Snk[0].y+20;
Snk[1].color=4;
}
void Initfood()
{randomize();
Fd.x=random(440);
Fd.x=Fd.x-Fd.x%20+30;
Fd.y=random(440);
Fd.y=Fd.y-Fd.y%20+30;
Fd.color=random(14)+1;
}
void Snake_Headmv()
{if(bioskey(1))
{key=bioskey(0);
switch(key)
{case UP:Flag(1,0,0,0);break;
case DOWN:Flag(0,1,0,0);break;
case LEFT:Flag(0,0,1,0);break;
case RIGHT:Flag(0,0,0,1);break;
default:break;
}
}
if(flag1)
{checkx=Snk[0].x;
checky=Snk[0].y;
Dsnkorfd(Snk[0].x,Snk[0].y,0);
Snk[0].y-=20;
Dsnkorfd(Snk[0].x,Snk[0].y,Snk[0].color);
}
if(flag2)
{checkx=Snk[0].x;
checky=Snk[0].y;
Dsnkorfd(Snk[0].x,Snk[0].y,0);
Snk[0].y+=20;
Dsnkorfd(Snk[0].x,Snk[0].y,Snk[0].color);
}
if(flag3)
{checkx=Snk[0].x;
checky=Snk[0].y;
Dsnkorfd(Snk[0].x,Snk[0].y,0);
Snk[0].x-=20;
Dsnkorfd(Snk[0].x,Snk[0].y,Snk[0].color);
}
if(flag4)
{checkx=Snk[0].x;
checky=Snk[0].y;
Dsnkorfd(Snk[0].x,Snk[0].y,0);
Snk[0].x+=20;
Dsnkorfd(Snk[0].x,Snk[0].y,Snk[0].color);
}
}
void Flag(int a,int b,int c,int d)
{flag1=a;flag2=b;flag3=c;flag4=d;}
void GameOver()
{int i;
if(Snk[0].x460||Snk[0].y460)
{cleardevice();
setcolor(11);
settextstyle(0,0,4);
outtextxy(160,220,"Game Over");
loop1:key=bioskey(0);
if(key==Enter)
{cleardevice();
TheFirstBlock();
}
else
if(key==ESC)
cleardevice();
else
goto loop1;
}
for(i=3;i<num;i++)
{if(Snk[0].x==Snk[i].x&&Snk[0].y==Snk[i].y)
{cleardevice();
setcolor(11);
settextstyle(0,0,4);
outtextxy(160,220,"Game Over");
loop2:key=bioskey(0);
if(key==Enter)
{cleardevice();
TheFirstBlock();
}
else
if(key==ESC)
cleardevice();
else goto loop2;
}
}
}
void Snake_Bodymv()
{int i,s,t;
for(i=1;i<num;i++)
{Dsnkorfd(checkx,checky,Snk[i].color);
Dsnkorfd(Snk[i].x,Snk[i].y,0);
s=Snk[i].x;
t=Snk[i].y;
Snk[i].x=checkx;
Snk[i].y=checky;
checkx=s;
checky=t;
}
}
void Food()
{if(flag5)
{randomize();
Fd.x=random(440);
Fd.x=Fd.x-Fd.x%20+30;
Fd.y=random(440);
Fd.y=Fd.y-Fd.y%20+30;
Fd.color=random(14)+1;
flag5=0;
}
Dsnkorfd(Fd.x,Fd.y,Fd.color);
}
void Snake_Bodyadd()
{if(Snk[0].x==Fd.x&&Snk[0].y==Fd.y)
{if(Snk[num-1].x>Snk[num-2].x)
{num++;
Snk[num-1].x=Snk[num-2].x+20;
Snk[num-1].y=Snk[num-2].y;
Snk[num-1].color=Fd.color;
}
else
if(Snk[num-1].x<Snk[num-2].x)
{num++;
Snk[num-1].x=Snk[num-2].x-20;
Snk[num-1].y=Snk[num-2].y;
Snk[num-1].color=Fd.color;
}
else
if(Snk[num-1].y>Snk[num-2].y)
{num++;
Snk[num-1].x=Snk[num-2].x;
Snk[num-1].y=Snk[num-2].y+20;
Snk[num-1].color=Fd.color;
}
else
if(Snk[num-1].y<Snk[num-2].y)
{num++;
Snk[num-1].x=Snk[num-2].x;
Snk[num-1].y=Snk[num-2].y-20;
Snk[num-1].color=Fd.color;
}
flag5=1;
Score++;
}
}
void PrntScore()
{if(Hscore!=Score)
{setcolor(11);
settextstyle(0,0,3);
outtextxy(490,100,"SCORE");
setcolor(2);
setfillstyle(1,0);
rectangle(520,140,580,180);
floodfill(530,145,2);
Sco[0]=(char)(Score+48);
Sco[1]='\0';
Hscore=Score;
setcolor(4);
settextstyle(0,0,3);
outtextxy(540,150,Sco);
}
}
void Timer()
{if(TimerCounter>18)
{Time[4]=(char)(Time[4]-1);
if(Time[4]<'0')
{Time[4]='9';
Time[3]=(char)(Time[3]-1);
}
if(Time[3]<'0')
{Time[3]='5';
Time[1]=(char)(Time[1]-1);
}
if(TureorFalse)
{setcolor(11);
settextstyle(0,0,3);
outtextxy(490,240,"TIMER");
setcolor(2);
setfillstyle(1,0);
rectangle(490,280,610,320);
floodfill(530,300,2);
setcolor(11);
settextstyle(0,0,3);
outtextxy(495,290,Time);
TureorFalse=0;
}
if(Time[1]=='0'&&Time[3]=='0'&&Time[4]=='0')
{setcolor(11);
settextstyle(0,0,4);
outtextxy(160,220,"Game Over");
loop:key=bioskey(0);
if(key==Enter)
{cleardevice();
TheFirstBlock();
}
else if(key==ESC) cleardevice();
else goto loop;
}
TimerCounter=0;
TureorFalse=1;
}
}
void Win()
{if(Score==3)
Times++;
if(Times==2)
{cleardevice();
setcolor(11);
settextstyle(0,0,4);
outtextxy(160,220,"You Win");
loop:key=bioskey(0);
if(key==Enter)
{cleardevice();
TheFirstBlock();
key=0;
}
else if(key==ESC) cleardevice();
else goto loop;
}
}
void TheSecondBlock()
{if(Score==3)
{cleardevice();
setcolor(11);
settextstyle(0,0,4);
outtextxy(100,220,"The Second Block");
loop:key=bioskey(0);
if(key==Enter)
{cleardevice();
Initsnake();
Initfood();
Score=0;
Hscore=1;
Snkspeed=8;
num=2;
key=0;
}
else if(key==ESC) cleardevice();
else goto loop;
}
}
void Dsnkorfd(int x,int y,int color)
{setcolor(color);
setfillstyle(1,color);
circle(x,y,10);
floodfill(x,y,color);
}
void Delay(int times)
{int i;
for(i=1;i<=times;i++)
delay(15000);
}
可以学写“贪吃蛇”代码:
#include <stdio.h>
#include <stdlib.h>
#include <conio.h>
#include <time.h>
#include <Windows.h>
#define W 78 //游戏框的宽,x轴
#define H 26 //游戏框的高,y轴
int dir=3; //方向变量,初值3表示向“左”
int Flag=0; //吃了食物的标志(1是0否)
int score=0; //玩家得分
struct food{ int x; //食物的x坐标
int y; //食物的y坐标
}fod; //结构体fod有2个成员
struct snake{ int len; //蛇身长度
int speed; //速度
int x[100];
int y[100];
}snk; //结构体snk有4个成员
void gtxy( int x,int y) //控制光标移动的函数
{ COORD coord;
coord.X=x;
coord.Y=y;
SetConsoleCursorPosition(GetStdHandle(STD_OUTPUT_HANDLE), coord);
}
void gtxy( int x,int y); //以下声明要用到的几个自编函数
void csh( ); //初始化界面
void keymove( ); //按键操作移动蛇
void putFod( ); //投放食物
int Over( ); //游戏结束(1是0否)
void setColor(unsigned short p, unsigned short q); //设定显示颜色
int main( ) //主函数
{ csh( );
while(1)
{ Sleep(snk.speed);
keymove( );
putFod( );
if(Over( )) {system(“cls”);
gtxy(W/2+1,H/2); printf(“游戏结束T__T”);
gtxy(W/2+1,H/2+2); printf(“玩家总分:%d分”,score);
getch( ); break;
}
}
return 0;
}
void csh( ) //初始化界面
{ int i; gtxy(0,0);
CONSOLE_CURSOR_INFO cursor_info={1,0}; //以下两行是隐藏光标的设置
SetConsoleCursorInfo(GetStdHandle(STD_OUTPUT_HANDLE),&cursor_info);
for(i=0;i<=W;i=i+2) //横坐标要为偶数,因为这个要打印的字符占2个位置
{ setColor(2, 0); //设定打印颜色为绿字黑底
gtxy(i,0); printf("■"); //打印上边框
gtxy(i,H); printf("■"); //打印下边框
}
for(i=1;i<H;i++)
{ gtxy(0,i); printf("■"); //打印左边框
gtxy(W,i); printf("■"); //打印右边框
}
while(1)
{ srand((unsigned)time(NULL)); //启动随机数发生器srand( )
fod.x=rand()%(W-4)+2; //随机函数rand( )产生一个从0到比”(W-4)”小1的数再加2
fod.y=rand()%(H-2)+1; //随机函数rand( )产生一个从0到比”(H-2)”小1的数再加1
if (fod.x%2==0) break; //fod.x是食物的横坐标,要是2的倍数(为偶数)
}
setColor(12, 0); //设定打印颜色为淡红字黑底
gtxy(fod.x,fod.y); printf("●"); //到食物坐标处打印初试食物
snk.len=3; //蛇身长
snk.speed=350; //刷新蛇的时间,即是移动速度
snk.x[0]=W/2+1; //蛇头横坐标要为偶数(因为W/2=39)
snk.y[0]=H/2; //蛇头纵坐标
setColor(9, 0); //设定打印颜色为淡蓝字黑底
gtxy(snk.x[0], snk.y[0]); printf("■"); //打印蛇头
for(i=1;i<snk.len;i++)
{ snk.x[i]=snk.x[i-1]+2; snk.y[i]=snk.y[i-1];
gtxy(snk.x[i],snk.y[i]); printf("■"); //打印蛇身
}
setColor(7, 0); //恢复默认的白字黑底
return;
}
void keymove( ) //按键操作移动蛇
{ int key;
if( kbhit( ) ) //如有按键输入才执行下面操作
{ key=getch( );
if (key==224) //值为224表示按下了方向键,下面要再次获取键值
{ key=getch( );
if(key==72&&dir!=2)dir=1; //72表示按下了向上方向键
if(key==80&&dir!=1)dir=2; //80为向下
if(key==75&&dir!=4)dir=3; //75为向左
if(key==77&&dir!=3)dir=4; //77为向右
}
if (key==32)
{ while(1) if((key=getch( ))==32) break; } //32为空格键,这儿用来暂停
}
if (Flag==0) //如没吃食物,才执行下面操作擦掉蛇尾
{gtxy(snk.x[snk.len-1],snk.y[snk.len-1]); printf(" "); }
int i;
for (i = snk.len - 1; i > 0; i--) //从蛇尾起每节存储前一节坐标值蛇头除外
{ snk.x[i]=snk.x[i-1]; snk.y[i]=snk.y[i-1]; }
switch (dir) //判断蛇头该往哪个方向移动,并获取最新坐标值
{ case 1: snk.y[0]--; break; //dir=1要向上移动
case 2: snk.y[0]++; break; //dir=2要向下移动
case 3: snk.x[0]-=2; break; //dir=3要向左移动
case 4: snk.x[0]+=2; break; //dir=4要向右移动
}
setColor(9, 0);
gtxy(snk.x[0], snk.y[0]); printf("■"); //打印蛇头
if (snk.x[0] == fod.x && snk.y[0] == fod.y) //如吃到食物则执行以下操作
{ printf("