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Comparing cvsroot/libgender/material.C (file contents):
Revision 1.14 by root, Sat Oct 23 21:43:27 2004 UTC vs.
Revision 1.43 by root, Sat Nov 6 04:31:01 2004 UTC

3 3
4#include <algorithm> 4#include <algorithm>
5 5
6#include "opengl.h" 6#include "opengl.h"
7#include "material.h" 7#include "material.h"
8#include "view.h"
8#include "util.h" 9#include "util.h"
9
10material::~material ()
11{
12}
13
14void
15simple_material::begin ()
16{
17 glMaterialfv (GL_FRONT, GL_DIFFUSE, (GLfloat *) & diffuse);
18 glMaterialfv (GL_FRONT, GL_SPECULAR, (GLfloat *) & specular);
19 glMaterialfv (GL_FRONT, GL_EMISSION, (GLfloat *) & emission);
20 glMaterialf (GL_FRONT, GL_SHININESS, shininess);
21}
22
23void
24simple_material::end ()
25{
26}
27
28void
29osama_material::begin ()
30{
31 cgGLEnableProfile (vsh_profile);
32 cgGLEnableProfile (fsh_profile);
33 cgGLEnableTextureParameter (g_Texture);
34}
35
36void
37osama_material::end ()
38{
39 cgGLDisableTextureParameter (g_Texture);
40 // cgGLUnbindProgram (vsh_profile);
41 // cgGLUnbindProgram (fsh_profile);
42 cgGLDisableProfile (vsh_profile);
43 cgGLDisableProfile (fsh_profile);
44}
45 10
46GLuint 11GLuint
47texture::load_texture (SDL_Surface * surface, GLfloat * tex2oord) 12texture::load_texture (SDL_Surface * surface, GLfloat * tex2oord)
48{ 13{
49 GLuint textur; 14 GLuint name;
50 int w, h;
51 SDL_Surface *image; 15 SDL_Surface *image;
52 SDL_Rect area; 16 SDL_Rect area;
53 Uint32 saved_flags; 17 Uint32 saved_flags;
54 Uint8 saved_alpha; 18 Uint8 saved_alpha;
55 19
56 /* Use the surface width and height expanded to powers of 2 */ 20 /* Use the surface width and height expanded to powers of 2 */
57 //w = power_of_two (surface->w);
58 //h = power_of_two (surface->h);
59 w = power_of_two (surface->w);
60 h = power_of_two (surface->h);
61 tex2oord[0] = 0.0f; /* Min X */ 21 tex2oord[0] = 0.F; /* Min X */
62 tex2oord[1] = 0.0f; /* Min Y */ 22 tex2oord[1] = 0.F; /* Min Y */
63 tex2oord[2] = (GLfloat) surface->w / w; /* Max X */ 23 tex2oord[2] = 1.F; /* Max X */
64 tex2oord[3] = (GLfloat) surface->h / h; /* Max Y */ 24 tex2oord[3] = 1.F; /* Max Y */
65 25
66 image = SDL_CreateRGBSurface (SDL_SWSURFACE, w, h, 32, 26 image = SDL_CreateRGBSurface (SDL_SWSURFACE, surface->w, surface->h, 32,
67#if SDL_BYTEORDER == SDL_LIL_ENDIAN /* OpenGL RGBA masks */ 27#if SDL_BYTEORDER == SDL_LIL_ENDIAN /* OpenGL RGBA masks */
68 0x000000FF, 0x0000FF00, 0x00FF0000, 0xFF000000 28 0x000000FF, 0x0000FF00, 0x00FF0000, 0xFF000000
69#else 29#else
70 0xFF000000, 0x00FF0000, 0x0000FF00, 0x000000FF 30 0xFF000000, 0x00FF0000, 0x0000FF00, 0x000000FF
71#endif 31#endif
90 /* Restore the alpha blending attributes */ 50 /* Restore the alpha blending attributes */
91 if ((saved_flags & SDL_SRCALPHA) == SDL_SRCALPHA) 51 if ((saved_flags & SDL_SRCALPHA) == SDL_SRCALPHA)
92 SDL_SetAlpha (surface, saved_flags, saved_alpha); 52 SDL_SetAlpha (surface, saved_flags, saved_alpha);
93 53
94 /* Create an OpenGL texture for the image */ 54 /* Create an OpenGL texture for the image */
95 glGenTextures (1, &textur); 55 glGenTextures (1, &name);
96 glBindTexture (GL_TEXTURE_2D, textur); 56 glBindTexture (GL_TEXTURE_2D, name);
97 glTexParameteri (GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR); 57 glTexParameteri (GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
98 glTexParameteri (GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR_MIPMAP_LINEAR); 58 glTexParameteri (GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR_MIPMAP_LINEAR);
99 glTexParameteri (GL_TEXTURE_2D, GL_GENERATE_MIPMAP_SGIS, GL_TRUE); // GENERATE_MIPMAP_SGIS 59 glTexParameteri (GL_TEXTURE_2D, GL_GENERATE_MIPMAP, GL_TRUE);
100 glTexImage2D (GL_TEXTURE_2D, 60 glTexImage2D (GL_TEXTURE_2D,
101 0, 61 0,
102 GL_RGBA, w, h, 0, GL_RGBA, GL_UNSIGNED_BYTE, image->pixels); 62 GL_RGBA, surface->w, surface->h, 0, GL_RGBA, GL_UNSIGNED_BYTE, image->pixels);
103 SDL_FreeSurface (image); /* No longer needed */ 63 SDL_FreeSurface (image); /* No longer needed */
104 64
105 return textur; 65 return name;
106} 66}
107 67
108CGcontext cgc; 68material::~material ()
109
110void
111init_shaders ()
112{ 69{
113 cgc = cgCreateContext ();
114} 70}
115 71
72void material::enable (view &ctx)
73{
74 pass::matmap_t &matmap = ctx.pass_data->matmap;
75
76 pass::matmap_t::iterator i = matmap.find (this);
77
78 if (i == matmap.end ())
79 {
80 string vsh_src, fsh_src;
81
82 shader::shader_builder::start ();
83
84 if (ctx.pass_data->l)
85 ctx.pass_data->l->vsh ();
86
87 vsh (ctx);
88
89 {
90 using namespace shader::compile;
91
92 z (vout.position) = (log2 (z (vout.position) + 1.F) * 1.82F - 1);
93 //z (vout.position) = z (vout.position) - 1;
94 }
95
96 vsh_src = shader::shader_builder::stop ();
97
98 shader::shader_builder::start ();
99
100 if (ctx.pass_data->l)
101 {
102 ctx.pass_data->l->fsh ();
103
104 fsh (ctx);
105 }
106 else
107 shader::compile::fout.frag_color = shader::compile::float4 (1., 0., 1., 1.);
108
109 fsh_src = shader::shader_builder::stop ();
110
111 shader::program_object po = shader::get_program (vsh_src, fsh_src);
112 matmap.insert (pass::matmap_t::value_type (this, po));
113
114 po->enable ();
115 }
116 else
117 i->second->enable ();
118}
119
120void material::disable (view &ctx)
121{
122}
123
124test_material::test_material ()
125//: tex ("textures/osama.jpg"), texvar (tex.name)
126: tex ("textures/rockwall.jpg"), texvar (tex.name)
127, norm ("textures/rockwall_normal.jpg"), normvar (norm.name)
128{
129}
130
131static shader::varying_3f normal;
132static shader::varying_2f texcoord;
133
134void test_material::vsh (view &ctx)
135{
136 using namespace shader::compile;
137
138 std_vsh ();
139
140 if (ctx.pass_data->l)
141 {
142 texcoord = xy (vin.tex_coord[0]);
143 normal = normal_matrix * vin.normal;
144 }
145}
146
147void test_material::fsh (view &ctx)
148{
149 using namespace shader::compile;
150
151 if (ctx.pass_data->l)
152 {
153 temp_3f lc;
154 temp_1f fac;
155
156 temp_3f rot1, rot2, rot3;
157
158 yxz (rot1) = (texture_2d (normvar, texcoord) * 2.F - 1.F);
159
160 //rot1 = normal_matrix * rot1;
161
162 rot2 = float3 (x(rot1), z(rot1), -y(rot1));
163 rot3 = float3 (y(rot1), -x(rot1), z(rot1));
164
165 normal = mat3 (rot1, rot2, rot3) * normal;
166
167 fac = dot (normalize (normal), normalize (ctx.pass_data->l->sh_lightvec));
168 fac = max (pow (max (fac, 0.0), 6), 0.3);
169 xyz (fout.frag_color) = (texture_2d (texvar, texcoord) + 0.2F) * fac
170 * ctx.pass_data->l->sh_colour;
171 //xyz (fout.frag_color) = lc * fac;
172 }
173}
174
175void test_material::enable (view &ctx)
176{
177 material::enable (ctx);
178 texvar->enable ();
179 normvar->enable ();
180}
181
182void test_material::disable (view &ctx)
183{
184 normvar->disable ();
185 texvar->disable ();
186 material::disable (ctx);
187}
188
189test_material *testmat;
190

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