forked from bartvdbraak/blender
272a91f754
GLEW ==== Added the GLEW opengl extension library into extern/, always compiled into Blender now. This is much nicer than doing this kind of extension management manually, and will be used in the game engine, for GLSL, and other opengl extensions. * According to the GLEW website it works on Windows, Linux, Mac OS X, FreeBSD, Irix, and Solaris. There might still be platform specific issues due to this commit, so let me know and I'll look into it. * This means also that all extensions will now always be compiled in, regardless of the glext.h on the platform where compilation happens. Game Engine =========== Refactoring of the use of opengl extensions and other drawing code in the game engine, and cleaning up some hacks related to GLSL integration. These changes will be merged into trunk too after this. The game engine graphics demos & apricot level survived my tests, but this could use some good testing of course. For users: please test with the options "Generate Display Lists" and "Vertex Arrays" enabled, these should be the fastest and are supposed to be "unreliable", but if that's the case that's probably due to bugs that can be fixed. * The game engine now also uses GLEW for extensions, replacing the custom opengl extensions code that was there. Removes a lot of #ifdef's, but the runtime checks stay of course. * Removed the WITHOUT_GLEXT environment variable. This was added to work around a specific bug and only disabled multitexturing anyway. It might also have caused a slowdown since it was retrieving the environment variable for every vertex in immediate mode (bug #13680). * Refactored the code to allow drawing skinned meshes with vertex arrays too, removing some specific immediate mode drawing functions for this that only did extra normal calculation. Now it always splits vertices of flat faces instead. * Refactored normal recalculation with some minor optimizations, required for the above change. * Removed some outdated code behind the __NLA_OLDDEFORM #ifdef. * Fixed various bugs in setting of multitexture coordinates and vertex attributes for vertex arrays. These were not being enabled/disabled correct according to the opengl spec, leading to crashes. Also tangent attributes used an immediate mode call for vertex arrays, which can't work. * Fixed use of uninitialized variable in RAS_TexVert. * Exporting skinned meshes was doing O(n^2) lookups for vertices and deform weights, now uses same trick as regular meshes.
129 lines
2.8 KiB
C++
129 lines
2.8 KiB
C++
#ifndef __KX_BLENDER_MATERIAL_H__
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#define __KX_BLENDER_MATERIAL_H__
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#include <vector>
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#include "RAS_IPolygonMaterial.h"
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#include "BL_Material.h"
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#include "BL_Texture.h"
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#include "BL_Shader.h"
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#include "BL_BlenderShader.h"
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#include "PyObjectPlus.h"
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#include "MT_Vector3.h"
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#include "MT_Vector4.h"
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struct MTFace;
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class KX_Scene;
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class KX_BlenderMaterial : public PyObjectPlus, public RAS_IPolyMaterial
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{
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Py_Header;
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public:
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// --------------------------------
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KX_BlenderMaterial(
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class KX_Scene* scene,
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BL_Material* mat,
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bool skin,
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int lightlayer,
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void* clientobject,
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PyTypeObject* T=&Type
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);
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virtual ~KX_BlenderMaterial();
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// --------------------------------
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virtual TCachingInfo GetCachingInfo(void) const {
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return (void*) this;
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}
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virtual
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bool Activate(
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RAS_IRasterizer* rasty,
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TCachingInfo& cachingInfo
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) const;
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virtual
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void ActivateMeshSlot(
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const KX_MeshSlot & ms,
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RAS_IRasterizer* rasty
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) const;
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void ActivateMat(
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RAS_IRasterizer* rasty,
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TCachingInfo& cachingInfo
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)const;
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void ActivatShaders(
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RAS_IRasterizer* rasty,
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TCachingInfo& cachingInfo
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)const;
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void ActivateBlenderShaders(
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RAS_IRasterizer* rasty,
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TCachingInfo& cachingInfo
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)const;
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MTFace* GetMTFace(void) const;
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unsigned int* GetMCol(void) const;
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// for ipos
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void UpdateIPO(
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MT_Vector4 rgba, MT_Vector3 specrgb,
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MT_Scalar hard, MT_Scalar spec,
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MT_Scalar ref, MT_Scalar emit, MT_Scalar alpha
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);
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// --------------------------------
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virtual PyObject* _getattr(const STR_String& attr);
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virtual int _setattr(const STR_String& attr, PyObject *pyvalue);
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KX_PYMETHOD_DOC( KX_BlenderMaterial, getShader );
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KX_PYMETHOD_DOC( KX_BlenderMaterial, getMaterialIndex );
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KX_PYMETHOD_DOC( KX_BlenderMaterial, getTexture );
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KX_PYMETHOD_DOC( KX_BlenderMaterial, setTexture );
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KX_PYMETHOD_DOC( KX_BlenderMaterial, setBlending );
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// --------------------------------
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// pre calculate to avoid pops/lag at startup
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virtual void OnConstruction( );
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private:
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BL_Material* mMaterial;
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BL_Shader* mShader;
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BL_BlenderShader* mBlenderShader;
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KX_Scene* mScene;
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BL_Texture mTextures[MAXTEX]; // texture array
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bool mUserDefBlend;
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unsigned int mBlendFunc[2];
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bool mModified;
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bool mConstructed; // if false, don't clean on exit
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void SetBlenderGLSLShader();
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void ActivatGLMaterials( RAS_IRasterizer* rasty )const;
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void ActivateTexGen( RAS_IRasterizer *ras ) const;
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// message centers
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void setTexData( bool enable,RAS_IRasterizer *ras);
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void setBlenderShaderData( bool enable, RAS_IRasterizer *ras);
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void setShaderData( bool enable, RAS_IRasterizer *ras);
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bool setDefaultBlending();
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void setObjectMatrixData(int i, RAS_IRasterizer *ras);
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void setTexMatrixData(int i);
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void setLightData();
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// cleanup stuff
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void OnExit();
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mutable int mPass;
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};
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#endif
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