bgfx/src/renderer_d3d9.h

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/*
* Copyright 2011-2012 Branimir Karadzic. All rights reserved.
* License: http://www.opensource.org/licenses/BSD-2-Clause
*/
#ifndef __RENDERER_D3D9_H__
#define __RENDERER_D3D9_H__
#define BGFX_CONFIG_RENDERER_DIRECT3D_EX (BX_PLATFORM_WINDOWS && 0)
#if BX_PLATFORM_WINDOWS
# if !BGFX_CONFIG_RENDERER_DIRECT3D_EX
# define D3D_DISABLE_9EX
# endif // !BGFX_CONFIG_RENDERER_DIRECT3D_EX
# include <d3d9.h>
# ifndef D3DFMT_NULL
# define D3DFMT_NULL ( (D3DFORMAT)MAKEFOURCC('N','U','L','L') )
# endif // D3DFMT_NULL
# ifndef D3DFMT_DF16
# define D3DFMT_DF16 ( (D3DFORMAT)MAKEFOURCC('D','F','1','6') )
# endif // D3DFMT_DF16
# ifndef D3DFMT_DF24
# define D3DFMT_DF24 ( (D3DFORMAT)MAKEFOURCC('D','F','2','4') )
# endif // D3DFMT_DF24
# ifndef D3DFMT_INTZ
# define D3DFMT_INTZ ( (D3DFORMAT)MAKEFOURCC('I','N','T','Z') )
# endif // D3DFMT_INTZ
# ifndef D3DFMT_RAWZ
# define D3DFMT_RAWZ ( (D3DFORMAT)MAKEFOURCC('R','A','W','Z') )
# endif // D3DFMT_RAWZ
# if BGFX_CONFIG_RENDERER_DIRECT3D_EX
typedef HRESULT (WINAPI *Direct3DCreate9ExFunc)(UINT SDKVersion, IDirect3D9Ex**);
# else
typedef IDirect3D9* (WINAPI *Direct3DCreate9Func)(UINT SDKVersion);
# endif // BGFX_CONFIG_RENDERER_DIRECT3D_EX
typedef int (WINAPI *D3DPERF_BeginEventFunc)(D3DCOLOR col, LPCWSTR wszName);
typedef int (WINAPI *D3DPERF_EndEventFunc)();
typedef void (WINAPI *D3DPERF_SetMarkerFunc)(D3DCOLOR col, LPCWSTR wszName);
typedef void (WINAPI *D3DPERF_SetRegionFunc)(D3DCOLOR col, LPCWSTR wszName);
typedef BOOL (WINAPI *D3DPERF_QueryRepeatFrameFunc)();
typedef void (WINAPI *D3DPERF_SetOptionsFunc)(DWORD dwOptions);
typedef DWORD (WINAPI *D3DPERF_GetStatusFunc)();
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# define _PIX_SETMARKER(_col, _name) s_renderCtx.m_D3DPERF_SetMarker(_col, KeyL#_name)
# define _PIX_BEGINEVENT(_col, _name) s_renderCtx.m_D3DPERF_BeginEvent(_col, KeyL#_name)
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# define _PIX_ENDEVENT() s_renderCtx.m_D3DPERF_EndEvent()
#elif BX_PLATFORM_XBOX360
# include <xgraphics.h>
# define D3DUSAGE_DYNAMIC 0 // not supported on X360
# define D3DLOCK_DISCARD 0 // not supported on X360
# define D3DERR_DEVICEHUNG D3DERR_DEVICELOST // not supported on X360
# define D3DERR_DEVICEREMOVED D3DERR_DEVICELOST // not supported on X360
# define D3DMULTISAMPLE_8_SAMPLES D3DMULTISAMPLE_4_SAMPLES
# define D3DMULTISAMPLE_16_SAMPLES D3DMULTISAMPLE_4_SAMPLES
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# define D3DFMT_DF24 D3DFMT_D24FS8
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# define _PIX_SETMARKER(_col, _name) do {} while(0)
# define _PIX_BEGINEVENT(_col, _name) do {} while(0)
# define _PIX_ENDEVENT() do {} while(0)
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#endif // BX_PLATFORM_
namespace bgfx
{
# define _DX_CHECK(_call) \
do { \
HRESULT __hr__ = _call; \
BX_CHECK(SUCCEEDED(__hr__), #_call " FAILED 0x%08x\n", (uint32_t)__hr__); \
} while (0)
#if BGFX_CONFIG_DEBUG
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# define DX_CHECK(_call) _DX_CHECK(_call)
#else
# define DX_CHECK(_call) _call
#endif // BGFX_CONFIG_DEBUG
#if BGFX_CONFIG_DEBUG_PIX
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# define PIX_SETMARKER(_col, _name) _PIX_SETMARKER(_col, _name)
# define PIX_BEGINEVENT(_col, _name) _PIX_BEGINEVENT(_col, _name)
# define PIX_ENDEVENT() _PIX_ENDEVENT()
#else
# define PIX_SETMARKER(_col, _name)
# define PIX_BEGINEVENT(_col, _name)
# define PIX_ENDEVENT()
#endif // BGFX_CONFIG_DEBUG_PIX
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#if BGFX_CONFIG_DEBUG
# define DX_RELEASE(_ptr, _expected) \
do { \
if (NULL != _ptr) \
{ \
ULONG count = _ptr->Release(); \
BX_CHECK(_expected == count, "RefCount is %d (expected %d).", count, _expected); \
_ptr = NULL; \
} \
} while (0)
#else
# define DX_RELEASE(_ptr, _expected) \
do { \
if (NULL != _ptr) \
{ \
_ptr->Release(); \
_ptr = NULL; \
} \
} while (0)
#endif // BGFX_CONFIG_DEBUG
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struct Msaa
{
D3DMULTISAMPLE_TYPE m_type;
DWORD m_quality;
};
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struct IndexBuffer
{
IndexBuffer()
: m_ptr(NULL)
, m_dynamic(false)
{
}
void create(uint32_t _size, void* _data);
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void update(uint32_t _offset, uint32_t _size, void* _data)
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{
void* buffer;
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DX_CHECK(m_ptr->Lock(_offset
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, _size
, &buffer
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, m_dynamic && 0 == _offset && m_size == _size ? D3DLOCK_DISCARD : 0
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) );
memcpy(buffer, _data, _size);
m_ptr->Unlock();
}
void destroy()
{
if (NULL != m_ptr)
{
DX_RELEASE(m_ptr, 0);
m_dynamic = false;
}
}
void preReset();
void postReset();
IDirect3DIndexBuffer9* m_ptr;
uint32_t m_size;
bool m_dynamic;
};
struct VertexBuffer
{
VertexBuffer()
: m_ptr(NULL)
, m_dynamic(false)
{
}
void create(uint32_t _size, void* _data, VertexDeclHandle _declHandle);
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void update(uint32_t _offset, uint32_t _size, void* _data)
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{
void* buffer;
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DX_CHECK(m_ptr->Lock(_offset
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, _size
, &buffer
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, m_dynamic && 0 == _offset && m_size == _size ? D3DLOCK_DISCARD : 0
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) );
memcpy(buffer, _data, _size);
m_ptr->Unlock();
}
void destroy()
{
if (NULL != m_ptr)
{
DX_RELEASE(m_ptr, 0);
m_dynamic = false;
}
}
void preReset();
void postReset();
IDirect3DVertexBuffer9* m_ptr;
uint32_t m_size;
VertexDeclHandle m_decl;
bool m_dynamic;
};
struct VertexDeclaration
{
void create(const VertexDecl& _decl);
void destroy()
{
DX_RELEASE(m_ptr, 0);
}
IDirect3DVertexDeclaration9* m_ptr;
VertexDecl m_decl;
};
struct Shader
{
Shader()
: m_ptr(NULL)
{
}
void create(bool _fragment, const Memory* _mem);
DWORD* getShaderCode(uint8_t _fragmentBit, const Memory* _mem);
void destroy()
{
ConstantBuffer::destroy(m_constantBuffer);
m_constantBuffer = NULL;
m_numPredefined = 0;
DX_RELEASE(m_ptr, 0);
}
IUnknown* m_ptr;
ConstantBuffer* m_constantBuffer;
PredefinedUniform m_predefined[PredefinedUniform::Count];
uint8_t m_numPredefined;
};
struct Material
{
void create(const Shader& _vsh, const Shader& _fsh)
{
BX_CHECK(NULL != _vsh.m_ptr, "Vertex shader doesn't exist.");
m_vsh = &_vsh;
BX_CHECK(NULL != _fsh.m_ptr, "Fragment shader doesn't exist.");
m_fsh = &_fsh;
memcpy(&m_predefined[0], _vsh.m_predefined, _vsh.m_numPredefined*sizeof(PredefinedUniform) );
memcpy(&m_predefined[_vsh.m_numPredefined], _fsh.m_predefined, _fsh.m_numPredefined*sizeof(PredefinedUniform) );
m_numPredefined = _vsh.m_numPredefined + _fsh.m_numPredefined;
}
void destroy()
{
m_numPredefined = 0;
m_vsh = NULL;
m_fsh = NULL;
}
const Shader* m_vsh;
const Shader* m_fsh;
PredefinedUniform m_predefined[PredefinedUniform::Count*2];
uint8_t m_numPredefined;
};
struct Texture
{
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enum Enum
{
Texture2D,
Texture3D,
TextureCube,
};
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Texture()
: m_ptr(NULL)
{
}
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void createTexture(uint32_t _width, uint32_t _height, uint8_t _numMips, D3DFORMAT _fmt);
void createVolumeTexture(uint32_t _width, uint32_t _height, uint32_t _depth, uint32_t _numMips, D3DFORMAT _fmt);
void createCubeTexture(uint32_t _edge, uint32_t _numMips, D3DFORMAT _fmt);
uint8_t* lock(uint8_t _side, uint8_t _lod, uint32_t& _pitch, uint32_t& _slicePitch);
void unlock(uint8_t _side, uint8_t _lod);
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void create(const Memory* _mem, uint32_t _flags);
void destroy()
{
DX_RELEASE(m_ptr, 0);
}
void commit(uint8_t _stage);
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IDirect3DBaseTexture9* m_ptr;
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D3DTEXTUREFILTERTYPE m_minFilter;
D3DTEXTUREFILTERTYPE m_magFilter;
D3DTEXTUREFILTERTYPE m_mipFilter;
D3DTEXTUREADDRESS m_tau;
D3DTEXTUREADDRESS m_tav;
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D3DTEXTUREADDRESS m_taw;
Enum m_type;
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bool m_srgb;
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};
struct RenderTarget
{
RenderTarget()
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: m_rt(NULL)
, m_colorTexture(NULL)
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, m_color(NULL)
, m_depthTexture(NULL)
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, m_depth(NULL)
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, m_minFilter(D3DTEXF_LINEAR)
, m_magFilter(D3DTEXF_LINEAR)
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, m_width(0)
, m_height(0)
, m_flags(0)
, m_depthOnly(false)
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{
}
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void create(uint16_t _width, uint16_t _height, uint32_t _flags, uint32_t _textureFlags);
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void createTextures();
void destroyTextures();
void destroy()
{
destroyTextures();
m_flags = 0;
}
void preReset()
{
destroyTextures();
}
void postReset()
{
createTextures();
}
void commit(uint8_t _stage);
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void resolve();
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Msaa m_msaa;
IDirect3DSurface9* m_rt;
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IDirect3DTexture9* m_colorTexture;
IDirect3DSurface9* m_color;
IDirect3DTexture9* m_depthTexture;
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IDirect3DSurface9* m_depth;
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D3DTEXTUREFILTERTYPE m_minFilter;
D3DTEXTUREFILTERTYPE m_magFilter;
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uint16_t m_width;
uint16_t m_height;
uint32_t m_flags;
bool m_depthOnly;
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};
} // namespace bgfx
#endif // __RENDERER_D3D9_H__