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📄 demo9_1.cpp

📁 windows游戏编程大师源代码
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// DEMO9_1.CPP - DirectInput Keyboard Demo

// INCLUDES ///////////////////////////////////////////////

#define WIN32_LEAN_AND_MEAN  

#define INITGUID // if not done elsewhere

#include <windows.h>   // include important windows stuff
#include <windowsx.h> 
#include <mmsystem.h>
#include <objbase.h>
#include <iostream.h> // include important C/C++ stuff
#include <conio.h>
#include <stdlib.h>
#include <malloc.h>
#include <memory.h>
#include <string.h>
#include <stdarg.h>
#include <stdio.h> 
#include <math.h>
#include <io.h>
#include <fcntl.h>


#include <ddraw.h>     // directX includes
#include <dinput.h>
#include "T3DLIB1.H"

// DEFINES ////////////////////////////////////////////////

// defines for windows 
#define WINDOW_CLASS_NAME "WINCLASS1"

// default screen size
#define SCREEN_WIDTH    640  // size of screen
#define SCREEN_HEIGHT   480
#define SCREEN_BPP      8    // bits per pixel

#define BITMAP_ID            0x4D42 // universal id for a bitmap
#define MAX_COLORS_PALETTE   256

// skelaton directions
#define SKELATON_EAST         0
#define SKELATON_NEAST        1  
#define SKELATON_NORTH        2
#define SKELATON_NWEST        3
#define SKELATON_WEST         4
#define SKELATON_SWEST        5
#define SKELATON_SOUTH        6
#define SKELATON_SEAST        7

#define WALL_ANIMATION_COLOR  29


// TYPES ///////////////////////////////////////////////////


// PROTOTYPES /////////////////////////////////////////////

// game console
int Game_Init(void *parms=NULL, int num_parms = 0);
int Game_Shutdown(void *parms=NULL, int num_parms = 0);
int Game_Main(void *parms=NULL,  int num_parms = 0);

// GLOBALS ////////////////////////////////////////////////

// windows vars
HWND      main_window_handle = NULL; // globally track main window
int       window_closed      = 0;    // tracks if window is closed
HINSTANCE main_instance      = NULL; // globally track hinstance

char buffer[80];                // used to print text

// directinput globals
LPDIRECTINPUT        lpdi      = NULL;    // dinput object
LPDIRECTINPUTDEVICE  lpdikey   = NULL;    // dinput keyboard
LPDIRECTINPUTDEVICE  lpdimouse = NULL;    // dinput mouse
LPDIRECTINPUTDEVICE  lpdijoy   = NULL;    // dinput joystick 
LPDIRECTINPUTDEVICE2 lpdijoy2  = NULL;    // dinput joystick
GUID                 joystickGUID;        // guid for main joystick
char                 joyname[80];         // name of joystick

// these contain the target records for all di input packets
UCHAR        keyboard_state[256]; // contains keyboard state table
DIMOUSESTATE mouse_state;         // contains state of mouse
DIJOYSTATE   joy_state;           // contains state of joystick

// demo globals
BOB          skelaton;     // the player skelaton

// animation sequences for bob
int skelaton_anims[8][4] = { {0,1,0,2},
                             {0+4,1+4,0+4,2+4},
                             {0+8,1+8,0+8,2+8},
                             {0+12,1+12,0+12,2+12},
                             {0+16,1+16,0+16,2+16},
                             {0+20,1+20,0+20,2+20},
                             {0+24,1+24,0+24,2+24},
                             {0+28,1+28,0+28,2+28}, };

BOB          plasma;       // players weapon

BITMAP_IMAGE reactor;      // the background   


// PROTOTYPES //////////////////////////////////////////////

LRESULT CALLBACK WindowProc(HWND hwnd, 
						    UINT msg, 
                            WPARAM wparam, 
                            LPARAM lparam)
{
// this is the main message handler of the system
PAINTSTRUCT		ps;		// used in WM_PAINT
HDC				hdc;	// handle to a device context
char buffer[80];        // used to print strings

// what is the message 
switch(msg)
	{	
	case WM_CREATE: 
        {
		// do initialization stuff here
        // return success
		return(0);
		} break;
   
	case WM_PAINT: 
		{
		// simply validate the window 
   	    hdc = BeginPaint(hwnd,&ps);	 
        
        // end painting
        EndPaint(hwnd,&ps);

        // return success
		return(0);
   		} break;

	case WM_DESTROY: 
		{

		// kill the application, this sends a WM_QUIT message 
		PostQuitMessage(0);

        // return success
		return(0);
		} break;

	default:break;

    } // end switch

// process any messages that we didn't take care of 
return (DefWindowProc(hwnd, msg, wparam, lparam));

} // end WinProc

// WINMAIN ////////////////////////////////////////////////

int WINAPI WinMain(	HINSTANCE hinstance,
					HINSTANCE hprevinstance,
					LPSTR lpcmdline,
					int ncmdshow)
{

WNDCLASSEX winclass; // this will hold the class we create
HWND	   hwnd;	 // generic window handle
MSG		   msg;		 // generic message
HDC        hdc;      // graphics device context

// first fill in the window class stucture
winclass.cbSize         = sizeof(WNDCLASSEX);
winclass.style			= CS_DBLCLKS | CS_OWNDC | 
                          CS_HREDRAW | CS_VREDRAW;
winclass.lpfnWndProc	= WindowProc;
winclass.cbClsExtra		= 0;
winclass.cbWndExtra		= 0;
winclass.hInstance		= hinstance;
winclass.hIcon			= LoadIcon(NULL, IDI_APPLICATION);
winclass.hCursor		= LoadCursor(NULL, IDC_ARROW); 
winclass.hbrBackground	= (HBRUSH)GetStockObject(BLACK_BRUSH);
winclass.lpszMenuName	= NULL;
winclass.lpszClassName	= WINDOW_CLASS_NAME;
winclass.hIconSm        = LoadIcon(NULL, IDI_APPLICATION);

// save hinstance in global
main_instance = hinstance;

// register the window class
if (!RegisterClassEx(&winclass))
	return(0);

// create the window
if (!(hwnd = CreateWindowEx(NULL,                  // extended style
                            WINDOW_CLASS_NAME,     // class
						    "DirectInput Keyboard Demo", // title
						    WS_POPUP | WS_VISIBLE,
					 	    0,0,	  // initial x,y
						    SCREEN_WIDTH,SCREEN_HEIGHT,  // initial width, height
						    NULL,	  // handle to parent 
						    NULL,	  // handle to menu
						    hinstance,// instance of this application
						    NULL)))	// extra creation parms
return(0);

// save main window handle
main_window_handle = hwnd;

// initialize game here
Game_Init();

// enter main event loop
while(TRUE)
	{
    // test if there is a message in queue, if so get it
	if (PeekMessage(&msg,NULL,0,0,PM_REMOVE))
	   { 
	   // test if this is a quit
       if (msg.message == WM_QUIT)
           break;
	
	   // translate any accelerator keys
	   TranslateMessage(&msg);

	   // send the message to the window proc
	   DispatchMessage(&msg);
	   } // end if
    
       // main game processing goes here
       Game_Main();
       
	} // end while

// closedown game here
Game_Shutdown();

// return to Windows like this
return(msg.wParam);

} // end WinMain

// GAME PROGRAMMING CONSOLE FUNCTIONS ////////////////

int Game_Init(void *parms,  int num_parms)
{
// this function is where you do all the initialization 
// for your game

int index;         // looping var
char filename[80]; // used to build up files names

// initialize directdraw
DDraw_Init(SCREEN_WIDTH, SCREEN_HEIGHT, SCREEN_BPP);

// first create the direct input object
if (DirectInputCreate(main_instance,DIRECTINPUT_VERSION,&lpdi,NULL)!=DI_OK)
   return(0);

// create a keyboard device  //////////////////////////////////
if (lpdi->CreateDevice(GUID_SysKeyboard, &lpdikey, NULL)!=DI_OK)
   return(0);

// set cooperation level
if (lpdikey->SetCooperativeLevel(main_window_handle, 
                 DISCL_NONEXCLUSIVE | DISCL_BACKGROUND)!=DI_OK)
    return(0);

// set data format
if (lpdikey->SetDataFormat(&c_dfDIKeyboard)!=DI_OK)
   return(0);

// acquire the keyboard
if (lpdikey->Acquire()!=DI_OK)
   return(0);

///////////////////////////////////////////////////////////

// load the background
Load_Bitmap_File(&bitmap8bit, "REACTOR.BMP");

// set the palette to background image palette
Set_Palette(bitmap8bit.palette);

// create and load the reactor bitmap image
Create_Bitmap(&reactor, 0,0, 640, 480);
Load_Image_Bitmap(&reactor,&bitmap8bit,0,0,BITMAP_EXTRACT_MODE_ABS);
Unload_Bitmap_File(&bitmap8bit);

// now let's load in all the frames for the skelaton!!!

// create skelaton bob
if (!Create_BOB(&skelaton,0,0,56,72,32,
           BOB_ATTR_VISIBLE | BOB_ATTR_MULTI_ANIM,DDSCAPS_SYSTEMMEMORY))
   return(0);

// load the frames in 8 directions, 4 frames each
// each set of frames has a walk and a fire, frame sets
// are loaded in counter clockwise order looking down
// from a birds eys view or the x-z plane

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