?? cameraapp.cpp
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//////////////////////////////////////////////////////////////////////////////////////////////////
//
// File: cameraApp.cpp
//
// Author: Frank Luna (C) All Rights Reserved
//
// System: AMD Athlon 1800+ XP, 512 DDR, Geforce 3, Windows XP, MSVC++ 7.0
//
// Desc: Demonstrates using the Camera class.
//
//////////////////////////////////////////////////////////////////////////////////////////////////
#include "d3dUtility.h"
#include "camera.h"
//
// Globals
//
IDirect3DDevice9* Device = 0;
const int Width = 640;
const int Height = 480;
Camera TheCamera(Camera::LANDOBJECT);
//
// Framework functions
//
bool Setup()
{
//
// Setup a basic scene. The scene will be created the
// first time this function is called.
//
d3d::DrawBasicScene(Device, 0.0f);
//
// Set projection matrix.
//
D3DXMATRIX proj;
D3DXMatrixPerspectiveFovLH(
&proj,
D3DX_PI * 0.25f, // 45 - degree
(float)Width / (float)Height,
1.0f,
1000.0f);
Device->SetTransform(D3DTS_PROJECTION, &proj);
return true;
}
void Cleanup()
{
// pass 0 for the first parameter to instruct cleanup.
d3d::DrawBasicScene(0, 0.0f);
}
bool Display(float timeDelta)
{
if( Device )
{
//
// Update: Update the camera.
//
if( ::GetAsyncKeyState('W') & 0x8000f )
TheCamera.walk(4.0f * timeDelta);
if( ::GetAsyncKeyState('S') & 0x8000f )
TheCamera.walk(-4.0f * timeDelta);
if( ::GetAsyncKeyState('A') & 0x8000f )
TheCamera.strafe(-4.0f * timeDelta);
if( ::GetAsyncKeyState('D') & 0x8000f )
TheCamera.strafe(4.0f * timeDelta);
if( ::GetAsyncKeyState('R') & 0x8000f )
TheCamera.fly(4.0f * timeDelta);
if( ::GetAsyncKeyState('F') & 0x8000f )
TheCamera.fly(-4.0f * timeDelta);
if( ::GetAsyncKeyState(VK_UP) & 0x8000f )
TheCamera.pitch(1.0f * timeDelta);
if( ::GetAsyncKeyState(VK_DOWN) & 0x8000f )
TheCamera.pitch(-1.0f * timeDelta);
if( ::GetAsyncKeyState(VK_LEFT) & 0x8000f )
TheCamera.yaw(-1.0f * timeDelta);
if( ::GetAsyncKeyState(VK_RIGHT) & 0x8000f )
TheCamera.yaw(1.0f * timeDelta);
if( ::GetAsyncKeyState('N') & 0x8000f )
TheCamera.roll(1.0f * timeDelta);
if( ::GetAsyncKeyState('M') & 0x8000f )
TheCamera.roll(-1.0f * timeDelta);
// Update the view matrix representing the cameras
// new position/orientation.
D3DXMATRIX V;
TheCamera.getViewMatrix(&V);
Device->SetTransform(D3DTS_VIEW, &V);
//
// Render
//
Device->Clear(0, 0, D3DCLEAR_TARGET | D3DCLEAR_ZBUFFER, 0x00000000, 1.0f, 0);
Device->BeginScene();
d3d::DrawBasicScene(Device, 1.0f);
Device->EndScene();
Device->Present(0, 0, 0, 0);
}
return true;
}
//
// WndProc
//
LRESULT CALLBACK d3d::WndProc(HWND hwnd, UINT msg, WPARAM wParam, LPARAM lParam)
{
switch( msg )
{
case WM_DESTROY:
::PostQuitMessage(0);
break;
case WM_KEYDOWN:
if( wParam == VK_ESCAPE )
::DestroyWindow(hwnd);
break;
}
return ::DefWindowProc(hwnd, msg, wParam, lParam);
}
//
// WinMain
//
int WINAPI WinMain(HINSTANCE hinstance,
HINSTANCE prevInstance,
PSTR cmdLine,
int showCmd)
{
if(!d3d::InitD3D(hinstance,
Width, Height, true, D3DDEVTYPE_HAL, &Device))
{
::MessageBox(0, "InitD3D() - FAILED", 0, 0);
return 0;
}
if(!Setup())
{
::MessageBox(0, "Setup() - FAILED", 0, 0);
return 0;
}
d3d::EnterMsgLoop( Display );
Cleanup();
Device->Release();
return 0;
}
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