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  • 運(yùn)動(dòng)會(huì)源代碼

    #include <malloc.h>       #include <stdio.h>       #include <stdlib.h>       #include <string.h>       #define NULL 0      #define MaxSize 30          typedef struct athletestruct /*運(yùn)動(dòng)員*/     {         char name[20];          int score; /*分?jǐn)?shù)*/         int range; /**/         int item; /*項(xiàng)目*/     }ATH;     typedef struct schoolstruct /*學(xué)校*/     {         int count; /*編號(hào)*/         int serial; /**/          int menscore; /*男選手分?jǐn)?shù)*/         int womenscore; /*女選手分?jǐn)?shù)*/         int totalscore; /*總分*/         ATH athlete[MaxSize]; /**/         struct schoolstruct *next;      }SCH;         int nsc,msp,wsp;      int ntsp;      int i,j;      int overgame;      int serial,range;      int n;      SCH *head,*pfirst,*psecond;      int *phead=NULL,*pafirst=NULL,*pasecond=NULL;     void create();         void input ()     {         char answer;          head = (SCH *)malloc(sizeof(SCH)); /**/         head->next = NULL;         pfirst = head;          answer = 'y';         while ( answer == 'y' )         {         Is_Game_DoMain:         printf("\nGET Top 5 when odd\nGET Top 3 when even");         printf("\n輸入運(yùn)動(dòng)項(xiàng)目序號(hào) (x<=%d):",ntsp);         scanf("%d",pafirst);         overgame = *pafirst;         if ( pafirst != phead )         {             for ( pasecond = phead ; pasecond < pafirst ; pasecond ++ )             {                 if ( overgame == *pasecond )                 {                     printf("\n這個(gè)項(xiàng)目已經(jīng)存在請(qǐng)選擇其他的數(shù)字\n");                     goto Is_Game_DoMain;                 }             }         }         pafirst = pafirst + 1;         if ( overgame > ntsp )         {             printf("\n項(xiàng)目不存在");             printf("\n請(qǐng)重新輸入");             goto Is_Game_DoMain;         }         switch ( overgame%2 )         {         case 0: n = 3;break;         case 1: n = 5;break;         }         for ( i = 1 ; i <= n ; i++ )         {         Is_Serial_DoMain:         printf("\n輸入序號(hào) of the NO.%d (0<x<=%d): ",i,nsc);                 scanf("%d",&serial);         if ( serial > nsc )          {             printf("\n超過學(xué)校數(shù)目,請(qǐng)重新輸入");             goto Is_Serial_DoMain;         }         if ( head->next == NULL )          {             create();         }         psecond = head->next ;          while ( psecond != NULL )          {             if ( psecond->serial == serial )             {                 pfirst = psecond;                 pfirst->count = pfirst->count + 1;                 goto Store_Data;             }             else             {                 psecond = psecond->next;             }         }         create();         Store_Data:                 pfirst->athlete[pfirst->count].item = overgame;         pfirst->athlete[pfirst->count].range = i;         pfirst->serial = serial;         printf("Input name:) : ");                 scanf("%s",pfirst->athlete[pfirst->count].name);         }         printf("\n繼續(xù)輸入運(yùn)動(dòng)項(xiàng)目(y&n)?");         answer = getchar();         printf("\n");         }     }         void calculate() /**/     {         pfirst = head->next;         while ( pfirst->next != NULL )         {             for (i=1;i<=pfirst->count;i++)             {                 if ( pfirst->athlete[i].item % 2 == 0 )                  {                     switch (pfirst->athlete[i].range)                     {                     case 1:pfirst->athlete[i].score = 5;break;                     case 2:pfirst->athlete[i].score = 3;break;                     case 3:pfirst->athlete[i].score = 2;break;                     }                 }                 else                  {                     switch (pfirst->athlete[i].range)                     {                     case 1:pfirst->athlete[i].score = 7;break;                     case 2:pfirst->athlete[i].score = 5;break;                     case 3:pfirst->athlete[i].score = 3;break;                     case 4:pfirst->athlete[i].score = 2;break;                     case 5:pfirst->athlete[i].score = 1;break;                     }                 }                 if ( pfirst->athlete[i].item <=msp )                  {                     pfirst->menscore = pfirst->menscore + pfirst->athlete[i].score;                 }                 else                  {                     pfirst->womenscore = pfirst->womenscore + pfirst->athlete[i].score;                 }             }             pfirst->totalscore = pfirst->menscore + pfirst->womenscore;             pfirst = pfirst->next;         }     }         void output()     {         pfirst = head->next;         psecond = head->next;         while ( pfirst->next != NULL )          {             // clrscr();              printf("\n第%d號(hào)學(xué)校的結(jié)果成績(jī):",pfirst->serial);             printf("\n\n項(xiàng)目的數(shù)目\t學(xué)校的名字\t分?jǐn)?shù)");             for (i=1;i<=ntsp;i++)              {                 for (j=1;j<=pfirst->count;j++)                  {                     if ( pfirst->athlete[j].item == i )                     {                                                                         printf("\n %d\t\t\t\t\t\t%s\n %d",i,pfirst->athlete[j].name,pfirst->athlete[j].score);break;                                             }                 }             }             printf("\n\n\n\t\t\t\t\t\t按任意建 進(jìn)入下一頁");             getchar();             pfirst = pfirst->next;         }     //  clrscr();          printf("\n運(yùn)動(dòng)會(huì)結(jié)果:\n\n學(xué)校編號(hào)\t男運(yùn)動(dòng)員成績(jī)\t女運(yùn)動(dòng)員成績(jī)\t總分");         pfirst = head->next;         while ( pfirst->next != NULL )         {             printf("\n %d\t\t %d\t\t %d\t\t %d",pfirst->serial,pfirst->menscore,pfirst->womenscore,pfirst->totalscore);             pfirst = pfirst->next;         }         printf("\n\n\n\t\t\t\t\t\t\t按任意建結(jié)束");         getchar();     }         void create()     {                 pfirst = (struct schoolstruct *)malloc(sizeof(struct schoolstruct));         pfirst->next = head->next ;         head->next = pfirst ;                 pfirst->count = 1;         pfirst->menscore = 0;         pfirst->womenscore = 0;         pfirst->totalscore = 0;     }     void Save()     {FILE *fp;     if((fp = fopen("school.dat","wb"))==NULL)     {printf("can't open school.dat\n");     fclose(fp);     return;     }     fwrite(pfirst,sizeof(SCH),10,fp);     fclose(fp);     printf("文件已經(jīng)成功保存\n");     }         void main()     {         system("cls");         printf("\n\t\t\t 運(yùn)動(dòng)會(huì)分?jǐn)?shù)統(tǒng)計(jì)\n");         printf("輸入學(xué)校數(shù)目 (x>= 5):");         scanf("%d",&nsc);          printf("輸入男選手的項(xiàng)目(x<=20):");         scanf("%d",&msp);          printf("輸入女選手項(xiàng)目(<=20):");         scanf("%d",&wsp);          ntsp = msp + wsp;                  phead = (int *)calloc(ntsp,sizeof(int));         pafirst = phead;         pasecond = phead;         input();         calculate();          output();         Save();     }             

    標(biāo)簽: 源代碼

    上傳時(shí)間: 2016-12-28

    上傳用戶:150501

  • c#簡(jiǎn)單計(jì)算器

    // 學(xué)生管理.cpp : Defines the entry point for the application. // #include "stdafx.h" #include "resource.h" #define MAX_LOADSTRING 100 // Global Variables: HINSTANCE hInst; // current instance TCHAR szTitle[MAX_LOADSTRING]; // The title bar text TCHAR szWindowClass[MAX_LOADSTRING]; // The title bar text // Foward declarations of functions included in this code module: ATOM MyRegisterClass(HINSTANCE hInstance); BOOL InitInstance(HINSTANCE, int); LRESULT CALLBACK WndProc(HWND, UINT, WPARAM, LPARAM); LRESULT CALLBACK About(HWND, UINT, WPARAM, LPARAM); struct person {   char name[10];   int ID;   int cj_yw;   int cj_sx;   struct person* next;   struct person* pro; }per; int APIENTRY WinMain(HINSTANCE hInstance,                      HINSTANCE hPrevInstance,                      LPSTR     lpCmdLine,                      int       nCmdShow) {   // TODO: Place code here. MSG msg; HACCEL hAccelTable; // Initialize global strings LoadString(hInstance, IDS_APP_TITLE, szTitle, MAX_LOADSTRING); LoadString(hInstance, IDC_MY, szWindowClass, MAX_LOADSTRING); MyRegisterClass(hInstance); // Perform application initialization: if (!InitInstance (hInstance, nCmdShow))  { return FALSE; } hAccelTable = LoadAccelerators(hInstance, (LPCTSTR)IDC_MY); // Main message loop: while (GetMessage(&msg, NULL, 0, 0))  { if (!TranslateAccelerator(msg.hwnd, hAccelTable, &msg))  { TranslateMessage(&msg); DispatchMessage(&msg); } } return msg.wParam; } // //  FUNCTION: MyRegisterClass() // //  PURPOSE: Registers the window class. // //  COMMENTS: // //    This function and its usage is only necessary if you want this code //    to be compatible with Win32 systems prior to the 'RegisterClassEx' //    function that was added to Windows 95. It is important to call this function //    so that the application will get 'well formed' small icons associated //    with it. // ATOM MyRegisterClass(HINSTANCE hInstance) { WNDCLASSEX wcex; wcex.cbSize = sizeof(WNDCLASSEX);  wcex.style = CS_HREDRAW | CS_VREDRAW; wcex.lpfnWndProc = (WNDPROC)WndProc; wcex.cbClsExtra = 0; wcex.cbWndExtra = 0; wcex.hInstance = hInstance; wcex.hIcon = LoadIcon(hInstance, (LPCTSTR)IDI_MY); wcex.hCursor = LoadCursor(NULL, IDC_ARROW); wcex.hbrBackground = (HBRUSH)(COLOR_WINDOW+1); wcex.lpszMenuName = (LPCSTR)IDC_MY; wcex.lpszClassName = szWindowClass; wcex.hIconSm = LoadIcon(wcex.hInstance, (LPCTSTR)IDI_SMALL); return RegisterClassEx(&wcex); } // //   FUNCTION: InitInstance(HANDLE, int) // //   PURPOSE: Saves instance handle and creates main window // //   COMMENTS: // //        In this function, we save the instance handle in a global variable and //        create and display the main program window. // BOOL InitInstance(HINSTANCE hInstance, int nCmdShow) {    HWND hWnd;    hInst = hInstance; // Store instance handle in our global variable    hWnd = CreateWindow(szWindowClass, szTitle, WS_OVERLAPPEDWINDOW,       CW_USEDEFAULT, 0, CW_USEDEFAULT, 0, NULL, NULL, hInstance, NULL);    if (!hWnd)    {       return FALSE;    }    ShowWindow(hWnd, nCmdShow);    UpdateWindow(hWnd);    return TRUE; } // //  FUNCTION: WndProc(HWND, unsigned, WORD, LONG) // //  PURPOSE:  Processes messages for the main window. // //  WM_COMMAND - process the application menu //  WM_PAINT - Paint the main window //  WM_DESTROY - post a quit message and return // // LRESULT CALLBACK WndProc(HWND hWnd, UINT message, WPARAM wParam, LPARAM lParam) { int wmId, wmEvent; PAINTSTRUCT ps; HDC hdc; TCHAR szHello[MAX_LOADSTRING]; LoadString(hInst, IDS_HELLO, szHello, MAX_LOADSTRING); switch (message)  { case WM_COMMAND: wmId    = LOWORD(wParam);  wmEvent = HIWORD(wParam);  // Parse the menu selections: switch (wmId) { case IDM_ABOUT:   DialogBox(hInst, (LPCTSTR)IDD_ABOUTBOX, hWnd, (DLGPROC)About);   break; case IDM_EXIT:   DestroyWindow(hWnd);   break; default:   return DefWindowProc(hWnd, message, wParam, lParam); } break; case WM_PAINT: hdc = BeginPaint(hWnd, &ps); // TODO: Add any drawing code here... RECT rt; GetClientRect(hWnd, &rt); DrawText(hdc, szHello, strlen(szHello), &rt, DT_CENTER); EndPaint(hWnd, &ps); break; case WM_DESTROY: PostQuitMessage(0); break; default: return DefWindowProc(hWnd, message, wParam, lParam);    }    return 0; } // Mesage handler for about box. LRESULT CALLBACK About(HWND hDlg, UINT message, WPARAM wParam, LPARAM lParam) { switch (message) { case WM_INITDIALOG: return TRUE; case WM_COMMAND: if (LOWORD(wParam) == IDOK || LOWORD(wParam) == IDCANCEL)  { EndDialog(hDlg, LOWORD(wParam)); return TRUE; } break; }     return FALSE; }

    標(biāo)簽: 計(jì)算器 學(xué)生

    上傳時(shí)間: 2016-12-29

    上傳用戶:767483511

  • 簡(jiǎn)單的計(jì)算器

    // 學(xué)生管理.cpp : Defines the entry point for the application. // #include "stdafx.h" #include "resource.h" #define MAX_LOADSTRING 100 // Global Variables: HINSTANCE hInst; // current instance TCHAR szTitle[MAX_LOADSTRING]; // The title bar text TCHAR szWindowClass[MAX_LOADSTRING]; // The title bar text // Foward declarations of functions included in this code module: ATOM MyRegisterClass(HINSTANCE hInstance); BOOL InitInstance(HINSTANCE, int); LRESULT CALLBACK WndProc(HWND, UINT, WPARAM, LPARAM); LRESULT CALLBACK About(HWND, UINT, WPARAM, LPARAM); struct person {   char name[10];   int ID;   int cj_yw;   int cj_sx;   struct person* next;   struct person* pro; }per; int APIENTRY WinMain(HINSTANCE hInstance,                      HINSTANCE hPrevInstance,                      LPSTR     lpCmdLine,                      int       nCmdShow) {   // TODO: Place code here. MSG msg; HACCEL hAccelTable; // Initialize global strings LoadString(hInstance, IDS_APP_TITLE, szTitle, MAX_LOADSTRING); LoadString(hInstance, IDC_MY, szWindowClass, MAX_LOADSTRING); MyRegisterClass(hInstance); // Perform application initialization: if (!InitInstance (hInstance, nCmdShow))  { return FALSE; } hAccelTable = LoadAccelerators(hInstance, (LPCTSTR)IDC_MY); // Main message loop: while (GetMessage(&msg, NULL, 0, 0))  { if (!TranslateAccelerator(msg.hwnd, hAccelTable, &msg))  { TranslateMessage(&msg); DispatchMessage(&msg); } } return msg.wParam; } // //  FUNCTION: MyRegisterClass() // //  PURPOSE: Registers the window class. // //  COMMENTS: // //    This function and its usage is only necessary if you want this code //    to be compatible with Win32 systems prior to the 'RegisterClassEx' //    function that was added to Windows 95. It is important to call this function //    so that the application will get 'well formed' small icons associated //    with it. // ATOM MyRegisterClass(HINSTANCE hInstance) { WNDCLASSEX wcex; wcex.cbSize = sizeof(WNDCLASSEX);  wcex.style = CS_HREDRAW | CS_VREDRAW; wcex.lpfnWndProc = (WNDPROC)WndProc; wcex.cbClsExtra = 0; wcex.cbWndExtra = 0; wcex.hInstance = hInstance; wcex.hIcon = LoadIcon(hInstance, (LPCTSTR)IDI_MY); wcex.hCursor = LoadCursor(NULL, IDC_ARROW); wcex.hbrBackground = (HBRUSH)(COLOR_WINDOW+1); wcex.lpszMenuName = (LPCSTR)IDC_MY; wcex.lpszClassName = szWindowClass; wcex.hIconSm = LoadIcon(wcex.hInstance, (LPCTSTR)IDI_SMALL); return RegisterClassEx(&wcex); } // //   FUNCTION: InitInstance(HANDLE, int) // //   PURPOSE: Saves instance handle and creates main window // //   COMMENTS: // //        In this function, we save the instance handle in a global variable and //        create and display the main program window. // BOOL InitInstance(HINSTANCE hInstance, int nCmdShow) {    HWND hWnd;    hInst = hInstance; // Store instance handle in our global variable    hWnd = CreateWindow(szWindowClass, szTitle, WS_OVERLAPPEDWINDOW,       CW_USEDEFAULT, 0, CW_USEDEFAULT, 0, NULL, NULL, hInstance, NULL);    if (!hWnd)    {       return FALSE;    }    ShowWindow(hWnd, nCmdShow);    UpdateWindow(hWnd);    return TRUE; } // //  FUNCTION: WndProc(HWND, unsigned, WORD, LONG) // //  PURPOSE:  Processes messages for the main window. // //  WM_COMMAND - process the application menu //  WM_PAINT - Paint the main window //  WM_DESTROY - post a quit message and return // // LRESULT CALLBACK WndProc(HWND hWnd, UINT message, WPARAM wParam, LPARAM lParam) { int wmId, wmEvent; PAINTSTRUCT ps; HDC hdc; TCHAR szHello[MAX_LOADSTRING]; LoadString(hInst, IDS_HELLO, szHello, MAX_LOADSTRING); switch (message)  { case WM_COMMAND: wmId    = LOWORD(wParam);  wmEvent = HIWORD(wParam);  // Parse the menu selections: switch (wmId) { case IDM_ABOUT:   DialogBox(hInst, (LPCTSTR)IDD_ABOUTBOX, hWnd, (DLGPROC)About);   break; case IDM_EXIT:   DestroyWindow(hWnd);   break; default:   return DefWindowProc(hWnd, message, wParam, lParam); } break; case WM_PAINT: hdc = BeginPaint(hWnd, &ps); // TODO: Add any drawing code here... RECT rt; GetClientRect(hWnd, &rt); DrawText(hdc, szHello, strlen(szHello), &rt, DT_CENTER); EndPaint(hWnd, &ps); break; case WM_DESTROY: PostQuitMessage(0); break; default: return DefWindowProc(hWnd, message, wParam, lParam);    }    return 0; } // Mesage handler for about box. LRESULT CALLBACK About(HWND hDlg, UINT message, WPARAM wParam, LPARAM lParam) { switch (message) { case WM_INITDIALOG: return TRUE; case WM_COMMAND: if (LOWORD(wParam) == IDOK || LOWORD(wParam) == IDCANCEL)  { EndDialog(hDlg, LOWORD(wParam)); return TRUE; } break; }     return FALSE; }

    標(biāo)簽: 學(xué)生 計(jì)算器

    上傳時(shí)間: 2016-12-29

    上傳用戶:767483511

  • 激活工具h(yuǎn)eu

    1.軟件安裝步驟   a)運(yùn)行光盤中客戶軟件\CCS5000 CCS2.20\CCS2.2\SETUP.EXE,進(jìn)入引導(dǎo)界面;   b)選擇Install下的Code Composer Studio進(jìn)入安裝界面; c)按照默認(rèn)的方式安裝,裝在C:\ti下。 d)安裝軟件補(bǔ)丁:運(yùn)行光盤客戶軟件\c5000ccs2.20\CCS FOR C5000-補(bǔ)丁\C5000-2.20.00-FULL-to-C5000-2.20.18-FULL.EXE,進(jìn)入安裝界面,然后按照默認(rèn)的方式安裝即可。 e)重新啟動(dòng)計(jì)算機(jī),按DEL鍵進(jìn)入CMOS的設(shè)置界面CMOS SETUP UTILITY,將Integrated Peripherals中的Onboard Paralell Port改為378/IRQ,Parrallel Port Mode改為EPP,保存退出。 f)進(jìn)入windows后會(huì)出現(xiàn)“CCS 2(‘ C5000) ”、 “Setup  CCS 2(‘ C5000) ”兩個(gè)圖標(biāo)。

    標(biāo)簽: 激活

    上傳時(shí)間: 2017-01-03

    上傳用戶:jmw8637

  • matlab流程語句

    程序流程語句 1、 if 語句 2、 switch 語句 3、 while 語句 4、 for 語句 5、循環(huán)的嵌套 6、其他流程控制語句

    標(biāo)簽: matlab 流程

    上傳時(shí)間: 2017-03-10

    上傳用戶:qlxxx

  • Discrete Predictive Sliding Mode Control

    滑模預(yù)測(cè)控制的一片很好的文獻(xiàn),內(nèi)容詳細(xì),對(duì)學(xué)習(xí)滑模預(yù)測(cè)控制的很有幫助。

    標(biāo)簽: Predictive Discrete Control Sliding Mode

    上傳時(shí)間: 2017-08-05

    上傳用戶:zhangyu97284

  • 12345

    /****************temic*********t5557***********************************/    #include   <at892051.h>     #include   <string.h>    #include   <intrins.h>     #include   <stdio.h>     #define    uchar    unsigned char     #define    uint     unsigned int     #define    ulong    unsigned long     //STC12C2051AD的SFR定義     sfr  WDT_CONTR = 0xe1;//stc2051的看門狗??????     /**********全局常量************/    //寫卡的命令     #define    write_command0       0//寫密碼     #define    write_command1       1//寫配置字     #define    write_command2       2//密碼寫數(shù)據(jù)     #define    write_command3       3//喚醒     #define    write_command4       4//停止命令     #define    TRUE       1     #define    FALSE      0     #define    OK         0     #define    ERROR      255     //讀卡的時(shí)間參數(shù)us     #define ts_min          250//270*11.0592/12=249//取近似的整數(shù)     #define ts_max          304//330*11.0592/12=304     #define t1_min          73//90*11.0592/12=83:-10調(diào)整     #define t1_max          156//180*11.0592/12=166     #define t2_min          184//210*11.0592/12=194     #define t2_max          267//300*11.0592/12=276     //***********不采用中斷處理:采用查詢的方法讀卡時(shí)關(guān)所有中斷****************/     sbit p_U2270B_Standby = P3^5;//p_U2270B_Standby PIN=13     sbit p_U2270B_CFE = P3^3;//p_U2270B_CFE     PIN=6     sbit p_U2270B_OutPut = P3^7;//p_U2270B_OutPut  PIN=2     sbit wtd_sck = P1^7;//SPI總線     sbit wtd_si = P1^3;    sbit wtd_so = P1^2;    sbit iic_data = P1^2;//lcd IIC     sbit iic_clk = P1^7;    sbit led_light = P1^6;//測(cè)試綠燈     sbit led_light1 = P1^5;//測(cè)試紅燈     sbit led_light_ok  = P1^1;//讀卡成功標(biāo)志     sbit fengmingqi = P1^5;    /***********全局變量************************************/       uchar data Nkey_a[4] = {0xA0, 0xA1, 0xA2, 0xA3};//初始密碼             //uchar idata card_snr[4];   //配置字     uchar data bankdata[28] = {1,2,3,4,5,6,7,1,2,3,4,5,6,7,1,2,3,4,5,6,7,1,2,3,4,5,6,7};     //存儲(chǔ)卡上用戶數(shù)據(jù)(1-7)7*4=28     uchar data cominceptbuff[6] = {1,2,3,4,5,6};//串口接收數(shù)組ram     uchar command; //第一個(gè)命令     uchar command1;//     //uint  temp;     uchar j,i;    uchar myaddr = 8;    //uchar ywqz_count,time_count;             //ywqz jishu:     uchar bdata DATA;    sbit BIT0 = DATA^0;    sbit BIT1 = DATA^1;    sbit BIT2 = DATA^2;    sbit BIT3 = DATA^3;    sbit BIT4 = DATA^4;    sbit BIT5 = DATA^5;    sbit BIT6 = DATA^6;    sbit BIT7 = DATA^7;    uchar bdata DATA1;    sbit BIT10 = DATA1^0;    sbit BIT11 = DATA1^1;    sbit BIT12 = DATA1^2;    sbit BIT13 = DATA1^3;    sbit BIT14 = DATA1^4;    sbit BIT15 = DATA1^5;    sbit BIT16 = DATA1^6;    sbit BIT17 = DATA1^7;    bit i_CurrentLevel;//i_CurrentLevel  BIT 00H(Saves current level of OutPut pin of U2270B)     bit timer1_end;    bit read_ok = 0;    //緩存定時(shí)值,因用同一個(gè)定時(shí)器     union HLint { uint W;    struct   {    uchar H;uchar L;   }   B; };//union HLint idata a     union HLint data a;    //緩存定時(shí)值,因用同一個(gè)定時(shí)器     union HLint0 { uint W;    struct {   uchar H;   uchar L; } B; };//union HLint idata a     union HLint0 data b;    /**********************函數(shù)原型*****************/    //讀寫操作     void f_readcard(void);//全部讀出1~7 AOR喚醒     void f_writecard(uchar x);//根據(jù)命令寫不同的內(nèi)容和操作     void f_clearpassword(void);//清除密碼     void f_changepassword(void);//修改密碼     //功能子函數(shù)     void write_password(uchar data *data p);//寫初始密碼或數(shù)據(jù)     void write_block(uchar x,uchar data *data p);//不能用通用指針     void write_bit(bit x);//寫位     /*子函數(shù)區(qū)*****************************************************/    void delay_2(uint x)    //延時(shí),時(shí)間x*10us@12mhz,最小20us@12mhz     {    x--; x--;    while(x)    {      _nop_();      _nop_();      x--;    }    _nop_();//WDT_CONTR=0X3C;不能頻繁的復(fù)位     _nop_();    }    /////////////////////////////////////////////////////////////////////     void initial(void)    {    SCON = 0x50; //串口方式1,允許接收     //SCON  =0x50;     //01010000B:10位異步收發(fā),波特率可變,SM2=0不用接收到有效停止位才RI=1,     //REN=1允許接收     TMOD = 0x21; //定時(shí)器1 定時(shí)方式2(8位),定時(shí)器0 定時(shí)方式1(16位)     TCON = 0x40; //設(shè)定時(shí)器1 允許開始計(jì)時(shí)(IT1=1)     TH1 = 0xfD;  //FB 18.432MHz 9600 波特率     TL1 = 0xfD;  //fd 11.0592 9600     IE = 0X90;     //EA=ES=1     TR1 = 1;     //啟動(dòng)定時(shí)器     WDT_CONTR = 0x3c;//使能看門狗     p_U2270B_Standby = 0;//單電源     PCON = 0x00;    IP = 0x10;//uart you xian XXXPS PT1 PX1 PT0 PX0     led_light1 = 1;    led_light = 0;    p_U2270B_OutPut = 1;    }    /************************************************/    void f_readcard()//讀卡     {    EA = 0;//全關(guān),防止影響跳變的定時(shí)器計(jì)時(shí)     WDT_CONTR = 0X3C;//喂狗     p_U2270B_CFE = 1;//      delay_2(232);  //>2.5ms            /*   //   aor    用喚醒功能來防碰撞   p_U2270B_CFE = 0; delay_2(18);//start gap>150us   write_bit(1);//10=操作碼讀0頁   write_bit(0);       write_password(&bankdata[24]);//密碼block7   p_U2270B_CFE =1 ;//    delay_2(516);//編程及確認(rèn)時(shí)間5.6ms   */    WDT_CONTR = 0X3C;//喂狗     led_light = 0;    b.W = 0;    while(!(read_ok == 1))    {             //while(p_U2270B_OutPut);//等一個(gè)穩(wěn)定的低電平?超時(shí)判斷?              while(!p_U2270B_OutPut);//等待上升沿的到來同步信號(hào)檢測(cè)1       TR0 = 1;      //deng xia jiang       while(p_U2270B_OutPut);//等待下降沿       TR0 = 0;   a.B.H = TH0;   a.B.L = TL0;   TH0 = TL0 = 0;   TR0 = 1;//定時(shí)器晚啟動(dòng)10個(gè)周期       //同步頭       if((324 < a.W) && (a.W < 353)) ;//檢測(cè)同步信號(hào)1                  else     {     TR0 = 0;     TH0 = TL0 = 0;     goto read_error;    }      //等待上升沿        while(!p_U2270B_OutPut);   TR0 = 0;   a.B.H = TH0;   a.B.L = TL0;   TH0 = TL0 = 0;   TR0 = 1;//b.N1<<=8;            if(a.B.L < 195);//0.5p       else     {     TR0 = 0;     TH0 = TL0 = 0;     goto read_error;    }      //讀0~7塊的數(shù)據(jù)       for(j = 0;j < 28;j++)      {       //uchar i;                  for(i = 0;i < 16;i++)//8個(gè)位        {        //等待下降沿的到來         while(p_U2270B_OutPut);                TR0 = 0;     a.B.H = TH0;     a.B.L = TL0;     TH0 = TL0 = 0;     TR0 = 1;              if(t2_max < a.W/*)&&(a.W < t2_max)*/)//1P          {         b.W >>= 2;//先左移再賦值          b.B.L += 0xc0;                             i++;        }        else if(t1_min < a.B.L/*)&&(a.B.L < t1_max)*/)//0.5p         {         b.W >>= 1;         b.B.L += 0x80;                           }        else      {      TR0 = 0;      TH0 = TL0 = 0;      goto read_error;     }        i++;        while(!p_U2270B_OutPut);//上升                   TR0 = 0;     a.B.H = TH0;     a.B.L = TL0;     TH0 = TL0 = 0;     TR0 = 1;                      if(t2_min < a.W/*)&&(a.W < t2_max)*/)//1P          {         b.W >>= 2;         i++;        }        else if(t1_min < a.B.L/*a.W)&&(a.B.L < t1_max)*/)//0.5P         //else if(!(a.W==0))         {         b.W >>= 1;         //temp+=0x00;          //led_light1=0;led_light=1;delay_2(40000);         }        else      {      TR0 = 0;      TH0 = TL0 = 0;      goto read_error;     }        i++;       }       //取出奇位        DATA = b.B.L;       BIT13 = BIT7;    BIT12 = BIT5;    BIT11 = BIT3;    BIT10 = BIT1;       DATA = b.B.H;       BIT17 = BIT7;    BIT16 = BIT5;    BIT15 = BIT3;    BIT14 = BIT1;       bankdata[j] = DATA1;      }              read_ok = 1;//讀卡完成了     read_error:    _nop_();    }       }    /***************************************************/    void f_writecard(uchar x)//寫卡     {    p_U2270B_CFE = 1;    delay_2(232);  //>2.5ms            //psw=0 standard write     if (x == write_command0)//寫密碼:初始化密碼     {      uchar i;      uchar data *data p;      p = cominceptbuff;      p_U2270B_CFE = 0;   delay_2(31);//start gap>330us       write_bit(1);//寫操作碼1:10       write_bit(0);//寫操作碼0       write_bit(0);//寫鎖定位0       for(i = 0;i < 35;i++)      {       write_bit(1);//寫數(shù)據(jù)位1       }      p_U2270B_CFE = 1;      led_light1 = 0;   led_light = 1;   delay_2(40000);//測(cè)試使用       //write_block(cominceptbuff[4],p);       p_U2270B_CFE = 1;      bankdata[20] = cominceptbuff[0];//密碼存入       bankdata[21] = cominceptbuff[1];      bankdata[22] = cominceptbuff[2];      bankdata[23] = cominceptbuff[3];    }    else if (x == write_command1)//配置卡參數(shù):初始化     {      uchar data *data p;      p = cominceptbuff;      write_bit(1);//寫操作碼1:10       write_bit(0);//寫操作碼0       write_bit(0);//寫鎖定位0               write_block(cominceptbuff[4],p);      p_U2270B_CFE=  1;    }    //psw=1  pssword mode     else if(x == write_command2)  //密碼寫數(shù)據(jù)    {      uchar data*data p;      p = &bankdata[24];      write_bit(1);//寫操作碼1:10       write_bit(0);//寫操作碼0       write_password(p);//發(fā)口令       write_bit(0);//寫鎖定位0       p = cominceptbuff;      write_block(cominceptbuff[4],p);//寫數(shù)據(jù)            }    else if(x == write_command3)//aor    //喚醒 {      //cominceptbuff[1]操作碼10 X xxxxxB       uchar data *data p;      p = cominceptbuff;      write_bit(1);//10       write_bit(0);             write_password(p);//密碼       p_U2270B_CFE = 1;//此時(shí)數(shù)據(jù)不停的循環(huán)傳出     }    else //停止操作碼     {      write_bit(1);//11       write_bit(1);             p_U2270B_CFE = 1;         }    p_U2270B_CFE = 1;    delay_2(560);//5.6ms     }    /************************************/    void f_clearpassword()//清除密碼     {    uchar data *data p;    uchar i,x;          p = &bankdata[24];//原密碼     p_U2270B_CFE = 0; delay_2(18);//start gap>150us     //操作碼10:10xxxxxxB     write_bit(1);    write_bit(0);              for(x = 0;x < 4;x++)//發(fā)原密碼     {             DATA = *(p++);      for(i = 0;i < 8;i++)      {       write_bit(BIT0);       DATA >>= 1;      }    }    write_bit(0);//鎖定位0:0     p = &cominceptbuff[0];    write_block(0x00,p);//寫新配置參數(shù):pwd=0             //密碼無效:即清除密碼     DATA = 0x00;//停止操作碼00000000B     for(i = 0;i < 2;i++)    {    write_bit(BIT7);    DATA <<= 1;    }    p_U2270B_CFE = 1;       delay_2(560);//5.6ms     }    /*********************************/    void f_changepassword()//修改密碼            {       uchar data *data p;    uchar i,x,addr;    addr = 0x07;//block7     p = &Nkey_a[0];//原密碼     DATA = 0x80;//操作碼10:10xxxxxxB     for(i = 0;i < 2;i++)    {      write_bit(BIT7);      DATA <<= 1;    }    for(x = 0;x < 4;x++)//發(fā)原密碼     {             DATA = *(p++);      for(i = 0;i < 8;i++)      {       write_bit(BIT7);       DATA >>= 1;      }    }    write_bit(0);//鎖定位0:0     p = &cominceptbuff[0];    write_block(0x07,p);//寫新密碼     p_U2270B_CFE = 1;    bankdata[24] = cominceptbuff[0];//密碼存入     bankdata[25] = cominceptbuff[1];    bankdata[26] = cominceptbuff[2];    bankdata[27] = cominceptbuff[3];    DATA = 0x00;//停止操作碼00000000B     for(i = 0;i < 2;i++)    {      write_bit(BIT7);      DATA <<= 1;    }    p_U2270B_CFE = 1;       delay_2(560);//5.6ms     }    /***************************子函數(shù)***********************************/    void write_bit(bit x)//寫一位     {    if(x)    {      p_U2270B_CFE = 1;   delay_2(32);//448*11.0592/120=42延時(shí)448us       p_U2270B_CFE = 0;   delay_2(28);//280*11.0592/120=26寫1     }    else    {      p_U2270B_CFE = 1;   delay_2(92);//192*11.0592/120=18       p_U2270B_CFE = 0;   delay_2(28);//280*11.0592/120=26寫0     }    }    /*******************寫一個(gè)block*******************/    void write_block(uchar addr,uchar data *data p)    {    uchar i,j;        for(i = 0;i < 4;i++)//block0數(shù)據(jù)     {             DATA = *(p++);      for(j = 0;j < 8;j++)      {       write_bit(BIT0);       DATA >>= 1;      }    }    DATA = addr <<= 5;//0地址     for(i = 0;i < 3;i++)    {      write_bit(BIT7);      DATA <<= 1;    }                   }    /*************************************************/    void write_password(uchar data *data p)    {    uchar i,j;        for(i = 0;i < 4;i++)//     {             DATA = *(p++);      for(j = 0;j < 8;j++)      {       write_bit(BIT0);       DATA >>= 1;      }    }        }   /*************************************************/   void main()    {    initial();    TI = RI = 0;    ES = 1;    EA = 1;  delay_2(28);   //f_readcard();     while(1) {   f_readcard();      //讀卡   f_writecard(command1);  //寫卡    f_clearpassword();   //清除密碼     f_changepassword();    //修改密碼 } }

    標(biāo)簽: 12345

    上傳時(shí)間: 2017-10-20

    上傳用戶:my_lcs

  • AD8367程控增益放大電路

    AGC增益控制電壓輸入,Mode為高電平時(shí),增益隨AGC控制電壓正向增大

    標(biāo)簽: 8367 AD 程控 增益放大電路

    上傳時(shí)間: 2017-12-22

    上傳用戶:cara

  • 48-Mode Recon?gurable Design

    基于SDF結(jié)構(gòu)的FFT的設(shè)計(jì),通過對(duì)SDF的合理用用,提高運(yùn)行的速度,更適合實(shí)際的使用。

    標(biāo)簽: Design Radix Architecture Approaches Hardware gurable Recon Using Mode FFT

    上傳時(shí)間: 2018-03-29

    上傳用戶:lpyaking

  • 基于頻率插值的4.0kbps 語音編碼器的性能和設(shè)計(jì)(英文)

    The 4.0 kbit/s speech codec described in this paper is based on a Frequency Domain Interpolative (FDI) coding technique, which belongs to the class of prototype waveform Interpolation (PWI) coding techniques. The codec also has an integrated voice activity detector (VAD) and a noise reduction capability. The input signal is subjected to LPC analysis and the prediction residual is separated into a slowly evolving waveform (SEW) and a rapidly evolving waveform (REW) components. The SEW magnitude component is quantized using a hierarchical predictive vector quantization approach. The REW magnitude is quantized using a gain and a sub-band based shape. SEW and REW phases are derived at the decoder using a phase model, based on a transmitted measure of voice periodicity. The spectral (LSP) parameters are quantized using a combination of scalar and vector quantizers. The 4.0 kbits/s coder has an algorithmic delay of 60 ms and an estimated floating point complexity of 21.5 MIPS. The performance of this coder has been evaluated using in-house MOS tests under various conditions such as background noise. channel errors, self-tandem. and DTX mode of operation, and has been shown to be statistically equivalent to ITU-T (3.729 8 kbps codec across all conditions tested.

    標(biāo)簽: frequency-domain interpolation performance Design kbit_s speech coder based and of

    上傳時(shí)間: 2018-04-08

    上傳用戶:kilohorse

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