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SteamworksSDK/SteamworksExample/GameEngine.h
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Riley Labrecque d733f538e6 v1.05
2016-07-07 05:54:52 -06:00

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C++

//========= Copyright © 1996-2008, Valve LLC, All rights reserved. ============
//
// Purpose: Main class for the game engine
//
// $NoKeywords: $
//=============================================================================
#ifndef GAMEENGINE_H
#define GAMEENGINE_H
#include <set>
#include <map>
// How big is the vertex buffer for batching lines in total?
// NOTE: This must be a multiple of the batch size below!!! (crashes will occur if it isn't)
#define LINE_BUFFER_TOTAL_SIZE 1000
// How many lines do we put in the buffer in between flushes?
//
// This should be enough smaller than the total size so that draw calls
// can finish using the data before we wrap around and discard it.
#define LINE_BUFFER_BATCH_SIZE 250
// How big is the vertex buffer for batching points in total?
// NOTE: This must be a multiple of the batch size below!!! (crashes will occur if it isn't)
#define POINT_BUFFER_TOTAL_SIZE 1800
// How many points do we put in the buffer in between flushes?
//
// This should be enough smaller than the total size so that draw calls
// can finish using the data before we wrap around and discard it.
#define POINT_BUFFER_BATCH_SIZE 600
// How big is the vertex buffer for batching quads in total?
// NOTE: This must be a multiple of the batch size below!!! (crashes will occur if it isn't)
#define QUAD_BUFFER_TOTAL_SIZE 1000
// How many quads do we put in the buffer in between flushes?
//
// This should be enough smaller than the total size so that draw calls
// can finish using the data before we wrap around and discard it.
#define QUAD_BUFFER_BATCH_SIZE 250
// Vertex struct for line batches
struct LineVertex_t
{
float x, y, z, rhw;
DWORD color;
};
// Vertex struct for point batches
struct PointVertex_t
{
float x, y, z, rhw;
DWORD color;
};
// Vertex struct for textured quads
struct TexturedQuadVertex_t
{
float x, y, z, rhw;
DWORD color;
float u, v; // texture coordinates
};
// WndProc declaration
LRESULT CALLBACK GameWndProc( HWND hWnd, UINT msg, WPARAM wParam, LPARAM lParam );
// Typedef for font handles
typedef int HGAMEFONT;
// Typedef for vertex buffer handles
typedef int HGAMEVERTBUF;
// Typedef for texture handles
typedef int HGAMETEXTURE;
class CGameEngine
{
public:
// Static methods for tracing mapping of game engine class instances to hwnds
static CGameEngine * FindEngineInstanceForHWND( HWND hWnd );
static void AddInstanceToHWNDMap( CGameEngine* pInstance, HWND hWnd );
static void RemoveInstanceFromHWNDMap( HWND hWnd );
// Constructor
CGameEngine( HINSTANCE hInstance, int nShowCommand, int32 nWindowWidth, int32 nWindowHeight );
// Destructor
~CGameEngine() { Shutdown(); }
// Check if the game engine is initialized ok and ready for use
bool BReadyForUse() { return m_bEngineReadyForUse; }
// Check if the engine is shutting down
bool BShuttingDown() { return m_bShuttingDown; }
// Set the background color
void SetBackgroundColor( short a, short r, short g, short b );
// Start a frame, clear(), beginscene(), etc
bool StartFrame();
// Finish a frame, endscene(), present(), etc.
void EndFrame();
// Shutdown the game engine
void Shutdown();
// Pump messages from the OS
void MessagePump();
// Accessors for game screen size
int32 GetViewportWidth() { return m_nViewportWidth; }
int32 GetViewportHeight() { return m_nViewportHeight; }
// Function for drawing text to the screen, dwFormat is a combination of flags like DT_LEFT, DT_VCENTER etc...
bool BDrawString( HGAMEFONT hFont, RECT rect, DWORD dwColor, DWORD dwFormat, const char *pchText );
// Create a new font returning our internal handle value for it (0 means failure)
HGAMEFONT HCreateFont( int nHeight, int nFontWeight, bool bItalic, char * pchFont );
// Create a new texture returning our internal handle value for it (0 means failure)
HGAMETEXTURE HCreateTexture( byte *pRGBAData, uint32 uWidth, uint32 uHeight );
// Draw a line, the engine itself will manage batching these (although you can explicitly flush if you need to)
bool BDrawLine( float xPos0, float yPos0, DWORD dwColor0, float xPos1, float yPos1, DWORD dwColor1 );
// Flush the line buffer
bool BFlushLineBuffer();
// Draw a point, the engine itself will manage batching these (although you can explicitly flush if you need to)
bool BDrawPoint( float xPos, float yPos, DWORD dwColor );
// Flush the point buffer
bool BFlushPointBuffer();
// Draw a filled quad
bool BDrawFilledQuad( float xPos0, float yPos0, float xPos1, float yPos1, DWORD dwColor );
// Draw a textured rectangle
bool BDrawTexturedQuad( float xPos0, float yPos0, float xPos1, float yPos1,
float u0, float v0, float u1, float v1, DWORD dwColor, HGAMETEXTURE hTexture );
// Flush any still cached quad buffers
bool BFlushQuadBuffer();
// Track the state of keyboard input
void RecordKeyDown( DWORD dwVK );
void RecordKeyUp( DWORD dwVK );
// Get the current state of a key
bool BIsKeyDown( DWORD dwVK );
// Get the first (in some arbitrary order) key down, if any
bool BGetFirstKeyDown( DWORD *pdwVK );
// Get current tick count for the game engine
uint64 GetGameTickCount() { return m_ulGameTickCount; }
// Get the tick count elapsed since the previous frame
// bugbug - We use this time to compute things like thrust and acceleration in the game,
// so it's important in doesn't jump ahead by large increments... Need a better
// way to handle that.
uint64 GetGameTicksFrameDelta() { return m_ulGameTickCount - m_ulPreviousGameTickCount; }
void SetGameTickCount( uint64 ulGameTickCount ) { m_ulPreviousGameTickCount = m_ulGameTickCount; m_ulGameTickCount = ulGameTickCount; }
// Get the game engines hwnd
HWND GetGameHWND() { return m_hWnd; }
// Check if the game engine hwnd currently has focus (and a working d3d device)
bool BGameEngineHasFocus() { return ::GetForegroundWindow() == m_hWnd && !m_bDeviceLost; }
// Set the max FPS for the engine to run at (will sleep in EndFrame() to limit the rate)
void SetMaxFPS( float flMaxFPS ) { m_flMaxFPS = flMaxFPS; }
private:
// Creates the hwnd for the game
bool BCreateGameWindow( int nShowCommand );
// Initializes D3D for the game
bool BInitializeD3D9();
// Resets all the render, texture, and sampler states to our defaults
void ResetRenderStates();
// Create a new vertex buffer returning our internal handle for it (0 means failure)
HGAMEVERTBUF HCreateVertexBuffer( uint32 nSizeInBytes, DWORD dwUsage, DWORD dwFVF );
// Lock an entire vertex buffer with the specified flags
bool BLockEntireVertexBuffer( HGAMEVERTBUF hVertBuf, void **ppVoid, DWORD dwFlags );
// Unlock a vertex buffer
bool BUnlockVertexBuffer( HGAMEVERTBUF hVertBuf );
// Release a vertex buffer and free its resources
bool BReleaseVertexBuffer( HGAMEVERTBUF hVertBuf );
// Set steam source
bool BSetStreamSource( HGAMEVERTBUF hVertBuf, uint32 uOffset, uint32 uStride );
// Render primitives out of the current stream source
bool BRenderPrimitive( D3DPRIMITIVETYPE primType, uint32 uStartVertex, uint32 uCount );
// Set vertex format
bool BSetFVF( DWORD dwFormat );
// Handle losing the d3d device (ie, release resources)
bool BHandleLostDevice();
// Handle reseting the d3d device (ie, acquire resources again)
bool BHandleResetDevice();
private:
// Tracks whether the engine is ready for use
bool m_bEngineReadyForUse;
// Tracks if we are shutting down
bool m_bShuttingDown;
// Color we clear the background of the window to each frame
DWORD m_dwBackgroundColor;
// HInstance for the application running the engine
HINSTANCE m_hInstance;
// HWND for the engine instance
HWND m_hWnd;
// IDirect3D9 interface
IDirect3D9 *m_pD3D9Interface;
// IDirect3DDevice9 interface
IDirect3DDevice9 *m_pD3D9Device;
// Size of the window to display the game in
int32 m_nWindowWidth;
int32 m_nWindowHeight;
// Size of actual d3d viewport (window size minus borders, title, etc)
int32 m_nViewportWidth;
int32 m_nViewportHeight;
// Next font handle value to give out
HGAMEFONT m_nNextFontHandle;
// Map of font handles to font objects
std::map<HGAMEFONT, ID3DXFont *> m_MapFontInstances;
// Next vertex buffer handle value to give out
HGAMEVERTBUF m_nNextVertBufferHandle;
// Map of handles to vertex buffer objects
struct VertBufData_t
{
bool m_bIsLocked;
IDirect3DVertexBuffer9 * m_pBuffer;
};
std::map<HGAMEVERTBUF, VertBufData_t> m_MapVertexBuffers;
HGAMETEXTURE m_nNextTextureHandle;
// Map of handles to texture objects
struct TextureData_t
{
byte *m_pRGBAData; // We keep a copy of the raw data so we can rebuild textures after a device is lost
uint32 m_uWidth;
uint32 m_uHeight;
LPDIRECT3DTEXTURE9 m_pTexture;
};
std::map<HGAMETEXTURE, TextureData_t> m_MapTextures;
// Vertex buffer for textured quads
HGAMEVERTBUF m_hQuadBuffer;
// Last texture used in drawing a batched quad
HGAMETEXTURE m_hLastTexture;
// Pointer to quad vertex data
TexturedQuadVertex_t *m_pQuadVertexes;
// How many quads are awaiting flushing
DWORD m_dwQuadsToFlush;
// Where does the current batch begin
DWORD m_dwQuadBufferBatchPos;
// White texture used when drawing filled quads
HGAMETEXTURE m_hTextureWhite;
// Currently set FVF format
DWORD m_dwCurrentFVF;
// Map of key state
std::set<DWORD> m_SetKeysDown;
// Current game time in milliseconds
uint64 m_ulGameTickCount;
// Game time at the start of the previous frame
uint64 m_ulPreviousGameTickCount;
// Maximum FPS to run the engine at
float m_flMaxFPS;
// Map of engine instances by HWND, used in wndproc to find engine instance for messages
static std::map<HWND, CGameEngine *> m_MapEngineInstances;
// Internal vertex buffer for batching line drawing
HGAMEVERTBUF m_hLineBuffer;
// Pointer to actual line buffer memory (valid only while locked)
LineVertex_t *m_pLineVertexes;
// Track how many lines are awaiting flushing in our line buffer
DWORD m_dwLinesToFlush;
// Track where the current batch starts in the vert buffer
DWORD m_dwLineBufferBatchPos;
// Internal vertex buffer for batching point drawing
HGAMEVERTBUF m_hPointBuffer;
// Pointer to actual point buffer memory (valid only while locked)
PointVertex_t *m_pPointVertexes;
// Track how many points are awaiting flushing in our line buffer
DWORD m_dwPointsToFlush;
// Track where the current batch starts in the vert buffer
DWORD m_dwPointBufferBatchPos;
// Track if we have lost the d3d device
bool m_bDeviceLost;
// Presentation parameters, saved in case of lost device needing reset
D3DPRESENT_PARAMETERS m_d3dpp;
};
#endif // GAMEENGINE_H