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[libs/gl.git] / source / core / texturecube.cpp
1 #include <msp/datafile/collection.h>
2 #include <msp/gl/extensions/arb_direct_state_access.h>
3 #include <msp/gl/extensions/arb_seamless_cube_map.h>
4 #include <msp/gl/extensions/arb_texture_cube_map.h>
5 #include <msp/gl/extensions/arb_texture_storage.h>
6 #include <msp/io/memory.h>
7 #include <msp/strings/format.h>
8 #include "error.h"
9 #include "texturecube.h"
10
11 using namespace std;
12
13 namespace Msp {
14 namespace GL {
15
16 TextureCubeFace TextureCube::face_order[6] =
17 {
18         POSITIVE_X,
19         NEGATIVE_X,
20         POSITIVE_Y,
21         NEGATIVE_Y,
22         POSITIVE_Z,
23         NEGATIVE_Z
24 };
25
26 Vector3 TextureCube::directions[6] =
27 {
28         Vector3(1, 0, 0),
29         Vector3(-1, 0, 0),
30         Vector3(0, 1, 0),
31         Vector3(0, -1, 0),
32         Vector3(0, 0, 1),
33         Vector3(0, 0, -1)
34 };
35
36 unsigned TextureCube::orientations[12] =
37 {
38         5, 3,
39         4, 3,
40         0, 4,
41         0, 5,
42         0, 3,
43         1, 3
44 };
45
46 TextureCube::TextureCube():
47         Texture(GL_TEXTURE_CUBE_MAP),
48         size(0),
49         allocated(0)
50 {
51         static Require _req(ARB_texture_cube_map);
52         if(ARB_seamless_cube_map)
53                 glEnable(GL_TEXTURE_CUBE_MAP_SEAMLESS);
54 }
55
56 void TextureCube::storage(PixelFormat fmt, unsigned sz, unsigned lv)
57 {
58         if(size>0)
59         {
60                 if(fmt!=format || sz!=size || (lv && lv!=levels))
61                         throw incompatible_data("TextureCube::storage");
62                 return;
63         }
64         if(sz==0)
65                 throw invalid_argument("TextureCube::storage");
66
67         set_format(fmt);
68         size = sz;
69         levels = get_n_levels();
70         if(lv>0)
71                 levels = min(levels, lv);
72 }
73
74 void TextureCube::allocate(unsigned level)
75 {
76         if(size==0)
77                 throw invalid_operation("TextureCube::allocate");
78         if(level>=levels)
79                 throw invalid_argument("TextureCube::allocate");
80         if(allocated&(64<<level))
81                 return;
82
83         if(ARB_texture_storage)
84         {
85                 GLenum fmt = get_gl_pixelformat(storage_fmt);
86                 if(ARB_direct_state_access)
87                         glTextureStorage2D(id, levels, fmt, size, size);
88                 else
89                 {
90                         bind_scratch();
91                         glTexStorage2D(target, levels, fmt, size, size);
92                 }
93                 apply_swizzle();
94                 allocated |= (64<<levels)-1;
95         }
96         else
97         {
98                 for(unsigned i=0; i<6; ++i)
99                         image(enumerate_faces(i), level, 0);
100         }
101 }
102
103 void TextureCube::image(TextureCubeFace face, unsigned level, const void *data)
104 {
105         if(size==0)
106                 throw invalid_operation("TextureCube::image");
107         if(level>=levels)
108                 throw out_of_range("TextureCube::image");
109
110         unsigned lsz = get_level_size(level);
111
112         if(ARB_texture_storage)
113                 return sub_image(face, level, 0, 0, lsz, lsz, data);
114
115         if(!allocated)
116         {
117                 glTexParameteri(target, GL_TEXTURE_MAX_LEVEL, levels-1);
118                 apply_swizzle();
119         }
120
121         GLenum fmt = get_gl_pixelformat(storage_fmt);
122         GLenum comp = get_gl_components(get_components(storage_fmt));
123         GLenum type = get_gl_type(get_component_type(storage_fmt));
124         glTexImage2D(face, level, fmt, lsz, lsz, 0, comp, type, data);
125
126         if(level==0)
127         {
128                 allocated |= 1<<get_face_index(face);
129                 if((allocated&63)==63)
130                         allocated |= 64;
131         }
132         else if(!(allocated&(64<<level)))
133         {
134                 for(unsigned i=0; i<6; ++i)
135                         if(enumerate_faces(i)!=face)
136                                 glTexImage2D(enumerate_faces(i), level, fmt, lsz, lsz, 0, comp, type, 0);
137
138                 allocated |= 64<<level;
139         }
140 }
141
142 void TextureCube::image(TextureCubeFace face, unsigned level, PixelComponents comp, DataType type, const void *data)
143 {
144         if(comp!=get_components(format) || type!=get_component_type(format))
145                 throw incompatible_data("TextureCube::image");
146         image(face, level, data);
147 }
148
149 void TextureCube::sub_image(TextureCubeFace face, unsigned level, int x, int y, unsigned wd, unsigned ht, const void *data)
150 {
151         if(size==0)
152                 throw invalid_operation("TextureCube::sub_image");
153         if(level>=levels)
154                 throw out_of_range("TextureCube::sub_image");
155
156         allocate(level);
157
158         GLenum comp = get_gl_components(get_components(storage_fmt));
159         GLenum type = get_gl_type(get_component_type(storage_fmt));
160         if(ARB_direct_state_access)
161                 glTextureSubImage3D(id, level, x, y, get_face_index(face), wd, ht, 1, comp, type, data);
162         else
163         {
164                 bind_scratch();
165                 glTexSubImage2D(face, level, x, y, wd, ht, comp, type, data);
166         }
167 }
168
169 void TextureCube::sub_image(TextureCubeFace face, unsigned level, int x, int y, unsigned wd, unsigned ht, PixelComponents comp, DataType type, const void *data)
170 {
171         if(comp!=get_components(format) || type!=get_component_type(format))
172                 throw incompatible_data("TextureCube::subimage");
173         sub_image(face, level, x, y, wd, ht, data);
174 }
175
176 void TextureCube::image(TextureCubeFace face, const Graphics::Image &img)
177 {
178         unsigned w = img.get_width();
179         unsigned h = img.get_height();
180         if(w!=h)
181                 throw incompatible_data("TextureCube::image");
182
183         PixelFormat fmt = pixelformat_from_image(img);
184         storage(make_pixelformat(get_components(fmt), get_component_type(fmt), use_srgb_format), w);
185
186         image(face, 0, img.get_pixels());
187 }
188
189 void TextureCube::image(TextureCubeFace face, const Graphics::Image &img, bool)
190 {
191         image(face, img);
192 }
193
194 void TextureCube::image(const Graphics::Image &img, unsigned lv)
195 {
196         unsigned w = img.get_width();
197         unsigned h = img.get_height();
198
199         if(h!=w*6)
200                 throw incompatible_data("TextureCube::image");
201         h /= 6;
202
203         PixelFormat fmt = pixelformat_from_image(img);
204         if(size==0)
205                 storage(make_pixelformat(get_components(fmt), get_component_type(fmt), use_srgb_format), w, lv);
206         else if(w!=size || h!=size)
207                 throw incompatible_data("TextureCube::image");
208
209         const char *pixels = reinterpret_cast<const char *>(img.get_pixels());
210         unsigned face_size = img.get_stride()*size;
211         for(unsigned i=0; i<6; ++i)
212                 image(enumerate_faces(i), 0, pixels+i*face_size);
213 }
214
215 unsigned TextureCube::get_n_levels() const
216 {
217         unsigned n = 0;
218         for(unsigned s=size; s; s>>=1, ++n) ;
219         return n;
220 }
221
222 unsigned TextureCube::get_level_size(unsigned level) const
223 {
224         return size>>level;
225 }
226
227 TextureCubeFace TextureCube::enumerate_faces(unsigned i)
228 {
229         if(i>=6)
230                 throw out_of_range("TextureCube::enumerate_faces");
231         return face_order[i];
232 }
233
234 unsigned TextureCube::get_face_index(TextureCubeFace face)
235 {
236         switch(face)
237         {
238         case POSITIVE_X: return 0;
239         case NEGATIVE_X: return 1;
240         case POSITIVE_Y: return 2;
241         case NEGATIVE_Y: return 3;
242         case POSITIVE_Z: return 4;
243         case NEGATIVE_Z: return 5;
244         default: throw invalid_argument("TextureCube::get_face_index");
245         }
246 }
247
248 const Vector3 &TextureCube::get_face_direction(TextureCubeFace face)
249 {
250         return directions[get_face_index(face)];
251 }
252
253 const Vector3 &TextureCube::get_s_direction(TextureCubeFace face)
254 {
255         return directions[orientations[get_face_index(face)*2]];
256 }
257
258 const Vector3 &TextureCube::get_t_direction(TextureCubeFace face)
259 {
260         return directions[orientations[get_face_index(face)*2+1]];
261 }
262
263 Vector3 TextureCube::get_texel_direction(TextureCubeFace face, unsigned u, unsigned v)
264 {
265         float s = (u+0.5f)*2.0f/size-1.0f;
266         float t = (v+0.5f)*2.0f/size-1.0f;
267         const Vector3 &fv = get_face_direction(face);
268         const Vector3 &sv = get_s_direction(face);
269         const Vector3 &tv = get_t_direction(face);
270         return fv+s*sv+t*tv;
271 }
272
273 uint64_t TextureCube::get_data_size() const
274 {
275         return id ? size*size*6*get_pixel_size(storage_fmt) : 0;
276 }
277
278
279 TextureCube::Loader::Loader(TextureCube &t):
280         DataFile::DerivedObjectLoader<TextureCube, Texture::Loader>(t)
281 {
282         init();
283 }
284
285 TextureCube::Loader::Loader(TextureCube &t, Collection &c):
286         DataFile::DerivedObjectLoader<TextureCube, Texture::Loader>(t, c)
287 {
288         init();
289 }
290
291 void TextureCube::Loader::init()
292 {
293         add("external_image", &Loader::external_image);
294         add("image_data", &Loader::image_data);
295         add("raw_data", &Loader::raw_data);
296         add("storage", &Loader::storage);
297         add("storage", &Loader::storage_levels);
298 }
299
300 void TextureCube::Loader::external_image(TextureCubeFace face, const string &fn)
301 {
302         Graphics::Image img;
303         RefPtr<IO::Seekable> io = get_collection().open_raw(fn);
304         img.load_io(*io);
305
306         obj.image(face, img);
307 }
308
309 void TextureCube::Loader::image_data(TextureCubeFace face, const string &data)
310 {
311         Graphics::Image img;
312         IO::Memory mem(data.data(), data.size());
313         img.load_io(mem);
314
315         obj.image(face, img);
316 }
317
318 void TextureCube::Loader::raw_data(TextureCubeFace face, const string &data)
319 {
320         obj.image(face, 0, data.data());
321 }
322
323 void TextureCube::Loader::storage(PixelFormat fmt, unsigned s)
324 {
325         obj.storage(fmt, s);
326 }
327
328 void TextureCube::Loader::storage_levels(PixelFormat fmt, unsigned s, unsigned l)
329 {
330         obj.storage(fmt, s, l);
331 }
332
333
334 void operator>>(const LexicalConverter &conv, TextureCubeFace &face)
335 {
336         const string &str = conv.get();
337         if(str=="POSITIVE_X")
338                 face = POSITIVE_X;
339         else if(str=="NEGATIVE_X")
340                 face = NEGATIVE_X;
341         else if(str=="POSITIVE_Y")
342                 face = POSITIVE_Y;
343         else if(str=="NEGATIVE_Y")
344                 face = NEGATIVE_Y;
345         else if(str=="POSITIVE_Z")
346                 face = POSITIVE_Z;
347         else if(str=="NEGATIVE_Z")
348                 face = NEGATIVE_Z;
349         else
350                 throw lexical_error(format("conversion of '%s' to TextureCubeFace", str));
351 }
352
353 } // namespace GL
354 } // namespace Msp