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source: branches/HeuristicLab.Problems.GaussianProcessTuning/ILNumerics.2.14.4735.573/Drawing/Platform/OpenGL/ILOGLVertexRendererC4fN3fV3f.cs @ 9102

Last change on this file since 9102 was 9102, checked in by gkronber, 12 years ago

#1967: ILNumerics source for experimentation

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1///
2///    This file is part of ILNumerics Community Edition.
3///
4///    ILNumerics Community Edition - high performance computing for applications.
5///    Copyright (C) 2006 - 2012 Haymo Kutschbach, http://ilnumerics.net
6///
7///    ILNumerics Community Edition is free software: you can redistribute it and/or modify
8///    it under the terms of the GNU General Public License version 3 as published by
9///    the Free Software Foundation.
10///
11///    ILNumerics Community Edition is distributed in the hope that it will be useful,
12///    but WITHOUT ANY WARRANTY; without even the implied warranty of
13///    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14///    GNU General Public License for more details.
15///
16///    You should have received a copy of the GNU General Public License
17///    along with ILNumerics Community Edition. See the file License.txt in the root
18///    of your distribution package. If not, see <http://www.gnu.org/licenses/>.
19///
20///    In addition this software uses the following components and/or licenses:
21///
22///    =================================================================================
23///    The Open Toolkit Library License
24///   
25///    Copyright (c) 2006 - 2009 the Open Toolkit library.
26///   
27///    Permission is hereby granted, free of charge, to any person obtaining a copy
28///    of this software and associated documentation files (the "Software"), to deal
29///    in the Software without restriction, including without limitation the rights to
30///    use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
31///    the Software, and to permit persons to whom the Software is furnished to do
32///    so, subject to the following conditions:
33///
34///    The above copyright notice and this permission notice shall be included in all
35///    copies or substantial portions of the Software.
36///
37///    =================================================================================
38///   
39
40using System;
41using ILNumerics.Drawing.Shapes;
42using OpenTK.Graphics;
43using OpenTK.Graphics.OpenGL;
44using ILNumerics.Drawing.Interfaces;
45
46namespace ILNumerics.Drawing.Platform.OpenGL {
47    /// <summary>
48    /// An OpenGL vertex renderer, capable of rendering
49    /// vertex arrays of type C4fN3fV3f (for lit shapes).
50    /// </summary>
51    public unsafe class ILOGLVertexRendererC4fN3fV3f : ILVertexRenderer {
52
53        #region attributes
54        BeginMode m_primitiveType;
55        InterleavedArrayFormat m_vertexFormat;
56        #endregion
57
58        #region properties
59        public BeginMode PrimitiveType {
60            get {
61                return m_primitiveType;
62            }
63            set {
64                m_primitiveType = value;
65            }
66        }
67        #endregion
68
69        public ILOGLVertexRendererC4fN3fV3f (BeginMode primitiveType) {
70            m_primitiveType = primitiveType;
71        }
72
73        public override void Draw(ILRenderProperties props, ILShape shape) {
74            if (shape.VertexCount == 0) return;
75            GL.Enable(EnableCap.Blend);
76            GL.BlendFunc (BlendingFactorSrc.SrcAlpha,
77                          BlendingFactorDest.OneMinusSrcAlpha);
78            GL.Enable(EnableCap.DepthTest);
79            //GL.Disable(EnableCap.PolygonOffsetFill);
80            ILShape<C4fN3fV3f> cShape = (shape as ILShape<C4fN3fV3f>);
81            fixed (C4fN3fV3f* pVertices = cShape.Vertices) {
82                if (UseLight && (cShape is IILSupportsLight)) {
83                    setupLight(cShape as IILSupportsLight); 
84                } else {
85                    GL.Disable(EnableCap.Lighting);
86                }
87                GL.InterleavedArrays(InterleavedArrayFormat.C4fN3fV3f, 0, (IntPtr)pVertices);
88                if (cShape.Shading == ShadingStyles.Interpolate)
89                    GL.ShadeModel(ShadingModel.Smooth);
90                else {
91                    GL.ShadeModel(ShadingModel.Flat);
92                    GL.DisableClientState(EnableCap.ColorArray);
93                    GL.Color4(shape.FillColor); 
94                }
95                GL.DrawArrays(m_primitiveType, 0, cShape.VertexCount);
96                GL.Finish();
97            }
98            GL.Disable(EnableCap.Lighting);
99            ILBorderedShape<C4fN3fV3f> bShape = (shape as ILBorderedShape<C4fN3fV3f>);
100            if (bShape != null && bShape.Border.Visible) {
101                fixed (C4fN3fV3f* pVertices = bShape.Vertices) {
102                    ILOGLPanel.SetupLineStyle(bShape.Border);
103                    GL.InterleavedArrays(InterleavedArrayFormat.C4fN3fV3f, 0, (IntPtr)pVertices);
104                    GL.DisableClientState(EnableCap.ColorArray);
105                    GL.DrawArrays(BeginMode.LineLoop, 0, bShape.VertexCount);
106                    GL.Finish();
107                }
108            }
109        }
110        public override void Draw(ILRenderProperties props, ILShape shape, int[] indices) {
111            System.Diagnostics.Debug.Assert(indices != null);
112            GL.Enable(EnableCap.DepthTest);
113            GL.Enable(EnableCap.Blend);
114            GL.BlendFunc (BlendingFactorSrc.SrcAlpha,
115                          BlendingFactorDest.OneMinusSrcAlpha);
116            // draw shape
117            ILShape<C4fN3fV3f> cShape = (shape as ILShape<C4fN3fV3f>);
118            fixed (int* pIndices = indices)
119            fixed (C4fN3fV3f* pVertices = cShape.Vertices) {
120                if (UseLight && (cShape is ILLitCompositeShape<C4fN3fV3f>)) {
121                    setupLight(cShape as ILLitCompositeShape<C4fN3fV3f>);
122                } else {
123                    GL.Disable(EnableCap.Lighting);
124                }
125                GL.InterleavedArrays(InterleavedArrayFormat.C4fN3fV3f, 0, (IntPtr)pVertices);
126                if (cShape.Shading == ShadingStyles.Interpolate)
127                    GL.ShadeModel(ShadingModel.Smooth);
128                else {
129                    GL.ShadeModel(ShadingModel.Flat);
130                    GL.DisableClientState(EnableCap.ColorArray);
131                    GL.Color4(shape.FillColor);
132                }
133                GL.DrawElements(m_primitiveType, indices.Length,DrawElementsType.UnsignedInt, (IntPtr)pIndices);
134                //IntPtr pObj = Glu.NewQuadric();
135                //GL.MatrixMode(MatrixMode.Modelview);
136                //GL.PushMatrix();
137                //GL.Translate(cShape.Vertices[0].Position.X, cShape.Vertices[0].Position.Y, cShape.Vertices[0].Position.Z);
138                //Glu.QuadricDrawStyle(pObj, QuadricDrawStyle.Fill);
139                //Glu.Sphere(pObj, 2, 20, 10);
140                //GL.PopMatrix();
141                GL.Finish();
142            }
143            // draw border
144            ILBorderedShape<C4fN3fV3f> bShape = (shape as ILBorderedShape<C4fN3fV3f>);
145            if (bShape != null && bShape.Border.Visible) {
146                fixed (int* pIndices = indices)
147                fixed (C4fN3fV3f* pVertices = bShape.Vertices) {
148                    ILOGLPanel.SetupLineStyle(bShape.Border);
149                    GL.InterleavedArrays(
150                                    InterleavedArrayFormat.C4fN3fV3f, 0, (IntPtr)pVertices);
151                    GL.DisableClientState(EnableCap.ColorArray);
152                    GL.DrawElements(BeginMode.LineLoop, indices.Length,
153                                    DrawElementsType.UnsignedInt, (IntPtr)pIndices);
154                    GL.Finish();
155
156                }
157            }
158
159#if RENDERER_DRAW_NORMALS
160            #region DEBUG_DRAW_NORMALS
161            GL.Color3(0,0,0);
162            GL.Begin(BeginMode.Lines);
163            for (int i = 0; i < shape.VertexCount; i++) {
164                GL.Vertex3(cShape.Vertices[i].XPosition,cShape.Vertices[i].YPosition,cShape.Vertices[i].ZPosition);
165                GL.Vertex3( cShape.Vertices[i].XPosition+cShape.Vertices[i].Normal.X,
166                            cShape.Vertices[i].YPosition+cShape.Vertices[i].Normal.Y,
167                            cShape.Vertices[i].ZPosition+cShape.Vertices[i].Normal.Z);
168            }
169            GL.End();
170            #endregion
171#endif
172            GL.Disable(EnableCap.Lighting);
173
174        }
175        private void setupLight(IILSupportsLight shape) {
176            GL.Enable(EnableCap.Lighting);
177            GL.Enable(EnableCap.ColorMaterial);
178            //GL.Enable(EnableCap.Normalize);
179            GL.ColorMaterial(MaterialFace.FrontAndBack,ColorMaterialParameter.AmbientAndDiffuse);
180           
181            //GL.LightModel(LightModelParameter.LightModelAmbient, 0.2f);
182            float[] tmp = new float[4] {
183                  shape.Material.Specular.R / 255f
184                , shape.Material.Specular.G / 255f
185                , shape.Material.Specular.B / 255f
186                , shape.Material.Specular.A / 255f};
187            GL.Materialv(MaterialFace.FrontAndBack, MaterialParameter.Specular, tmp);
188
189            GL.Material(MaterialFace.FrontAndBack, MaterialParameter.Shininess, shape.Material.Shininess );
190
191            tmp = new float[4] {
192                  shape.Material.Emission.R / 255f
193                , shape.Material.Emission.G / 255f
194                , shape.Material.Emission.B / 255f
195                , shape.Material.Emission.A / 255f};
196            GL.Materialv(MaterialFace.FrontAndBack, MaterialParameter.Emission, tmp);
197           
198        }
199
200    }
201}
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