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1 /*
2 Minetest
3 Copyright (C) 2013 celeron55, Perttu Ahola <celeron55@gmail.com>
4 Copyright (C) 2013 Kahrl <kahrl@gmx.net>
5
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU Lesser General Public License as published by
8 the Free Software Foundation; either version 2.1 of the License, or
9 (at your option) any later version.
10
11 This program 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 Lesser General Public License for more details.
15
16 You should have received a copy of the GNU Lesser General Public License along
17 with this program; if not, write to the Free Software Foundation, Inc.,
18 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
19 */
20
21 #include "shader.h"
22 #include "irrlichttypes_extrabloated.h"
23 #include "debug.h"
24 #include "main.h" // for g_settings
25 #include "filesys.h"
26 #include "util/container.h"
27 #include "util/thread.h"
28 #include "settings.h"
29 #include <iterator>
30 #include <ICameraSceneNode.h>
31 #include <IGPUProgrammingServices.h>
32 #include <IMaterialRenderer.h>
33 #include <IMaterialRendererServices.h>
34 #include <IShaderConstantSetCallBack.h>
35 #include "EShaderTypes.h"
36 #include "log.h"
37 #include "gamedef.h"
38 #include "strfnd.h" // trim()
39
40 /*
41         A cache from shader name to shader path
42 */
43 MutexedMap<std::string, std::string> g_shadername_to_path_cache;
44
45 /*
46         Gets the path to a shader by first checking if the file
47           name_of_shader/filename
48         exists in shader_path and if not, using the data path.
49
50         If not found, returns "".
51
52         Utilizes a thread-safe cache.
53 */
54 std::string getShaderPath(const std::string &name_of_shader,
55                 const std::string &filename)
56 {
57         std::string combined = name_of_shader + DIR_DELIM + filename;
58         std::string fullpath = "";
59         /*
60                 Check from cache
61         */
62         bool incache = g_shadername_to_path_cache.get(combined, &fullpath);
63         if(incache)
64                 return fullpath;
65
66         /*
67                 Check from shader_path
68         */
69         std::string shader_path = g_settings->get("shader_path");
70         if(shader_path != "")
71         {
72                 std::string testpath = shader_path + DIR_DELIM + combined;
73                 if(fs::PathExists(testpath))
74                         fullpath = testpath;
75         }
76
77         /*
78                 Check from default data directory
79         */
80         if(fullpath == "")
81         {
82                 std::string rel_path = std::string("client") + DIR_DELIM
83                                 + "shaders" + DIR_DELIM
84                                 + name_of_shader + DIR_DELIM
85                                 + filename;
86                 std::string testpath = porting::path_share + DIR_DELIM + rel_path;
87                 if(fs::PathExists(testpath))
88                         fullpath = testpath;
89         }
90
91         // Add to cache (also an empty result is cached)
92         g_shadername_to_path_cache.set(combined, fullpath);
93
94         // Finally return it
95         return fullpath;
96 }
97
98 /*
99         SourceShaderCache: A cache used for storing source shaders.
100 */
101
102 class SourceShaderCache
103 {
104 public:
105         void insert(const std::string &name_of_shader,
106                         const std::string &filename,
107                         const std::string &program,
108                         bool prefer_local)
109         {
110                 std::string combined = name_of_shader + DIR_DELIM + filename;
111                 // Try to use local shader instead if asked to
112                 if(prefer_local){
113                         std::string path = getShaderPath(name_of_shader, filename);
114                         if(path != ""){
115                                 std::string p = readFile(path);
116                                 if(p != ""){
117                                         m_programs[combined] = p;
118                                         return;
119                                 }
120                         }
121                 }
122                 m_programs[combined] = program;
123         }
124         std::string get(const std::string &name_of_shader,
125                         const std::string &filename)
126         {
127                 std::string combined = name_of_shader + DIR_DELIM + filename;
128                 std::map<std::string, std::string>::iterator n;
129                 n = m_programs.find(combined);
130                 if(n != m_programs.end())
131                         return n->second;
132                 return "";
133         }
134         // Primarily fetches from cache, secondarily tries to read from filesystem
135         std::string getOrLoad(const std::string &name_of_shader,
136                         const std::string &filename)
137         {
138                 std::string combined = name_of_shader + DIR_DELIM + filename;
139                 std::map<std::string, std::string>::iterator n;
140                 n = m_programs.find(combined);
141                 if(n != m_programs.end())
142                         return n->second;
143                 std::string path = getShaderPath(name_of_shader, filename);
144                 if(path == ""){
145                         infostream<<"SourceShaderCache::getOrLoad(): No path found for \""
146                                         <<combined<<"\""<<std::endl;
147                         return "";
148                 }
149                 infostream<<"SourceShaderCache::getOrLoad(): Loading path \""<<path
150                                 <<"\""<<std::endl;
151                 std::string p = readFile(path);
152                 if(p != ""){
153                         m_programs[combined] = p;
154                         return p;
155                 }
156                 return "";
157         }
158 private:
159         std::map<std::string, std::string> m_programs;
160         std::string readFile(const std::string &path)
161         {
162                 std::ifstream is(path.c_str(), std::ios::binary);
163                 if(!is.is_open())
164                         return "";
165                 std::ostringstream tmp_os;
166                 tmp_os << is.rdbuf();
167                 return tmp_os.str();
168         }
169 };
170
171 /*
172         ShaderCallback: Sets constants that can be used in shaders
173 */
174
175 class IShaderConstantSetterRegistry
176 {
177 public:
178         virtual ~IShaderConstantSetterRegistry(){};
179         virtual void onSetConstants(video::IMaterialRendererServices *services,
180                         bool is_highlevel, const std::string &name) = 0;
181 };
182
183 class ShaderCallback : public video::IShaderConstantSetCallBack
184 {
185         IShaderConstantSetterRegistry *m_scsr;
186         std::string m_name;
187
188 public:
189         ShaderCallback(IShaderConstantSetterRegistry *scsr, const std::string &name):
190                 m_scsr(scsr),
191                 m_name(name)
192         {}
193         ~ShaderCallback() {}
194
195         virtual void OnSetConstants(video::IMaterialRendererServices *services, s32 userData)
196         {
197                 video::IVideoDriver *driver = services->getVideoDriver();
198                 assert(driver);
199
200                 bool is_highlevel = userData;
201
202                 m_scsr->onSetConstants(services, is_highlevel, m_name);
203         }
204 };
205
206 /*
207         MainShaderConstantSetter: Set basic constants required for almost everything
208 */
209
210 class MainShaderConstantSetter : public IShaderConstantSetter
211 {
212 public:
213         MainShaderConstantSetter(IrrlichtDevice *device):
214                 m_device(device)
215         {}
216         ~MainShaderConstantSetter() {}
217
218         virtual void onSetConstants(video::IMaterialRendererServices *services,
219                         bool is_highlevel)
220         {
221                 video::IVideoDriver *driver = services->getVideoDriver();
222                 assert(driver);
223
224                 // set inverted world matrix
225                 core::matrix4 invWorld = driver->getTransform(video::ETS_WORLD);
226                 invWorld.makeInverse();
227                 if(is_highlevel)
228                         services->setVertexShaderConstant("mInvWorld", invWorld.pointer(), 16);
229                 else
230                         services->setVertexShaderConstant(invWorld.pointer(), 0, 4);
231
232                 // set clip matrix
233                 core::matrix4 worldViewProj;
234                 worldViewProj = driver->getTransform(video::ETS_PROJECTION);
235                 worldViewProj *= driver->getTransform(video::ETS_VIEW);
236                 worldViewProj *= driver->getTransform(video::ETS_WORLD);
237                 if(is_highlevel)
238                         services->setVertexShaderConstant("mWorldViewProj", worldViewProj.pointer(), 16);
239                 else
240                         services->setVertexShaderConstant(worldViewProj.pointer(), 4, 4);
241
242                 // set transposed world matrix
243                 core::matrix4 world = driver->getTransform(video::ETS_WORLD);
244                 world = world.getTransposed();
245                 if(is_highlevel)
246                         services->setVertexShaderConstant("mTransWorld", world.pointer(), 16);
247                 else
248                         services->setVertexShaderConstant(world.pointer(), 8, 4);
249         }
250
251 private:
252         IrrlichtDevice *m_device;
253 };
254
255 /*
256         ShaderSource
257 */
258
259 class ShaderSource : public IWritableShaderSource, public IShaderConstantSetterRegistry
260 {
261 public:
262         ShaderSource(IrrlichtDevice *device);
263         ~ShaderSource();
264
265         /*
266                 Gets a shader material id from cache or
267                 - if main thread, from getShaderIdDirect
268                 - if other thread, adds to request queue and waits for main thread
269         */
270         u32 getShaderId(const std::string &name);
271
272         /*
273                 - If shader material specified by name is found from cache,
274                   return the cached id.
275                 - Otherwise generate the shader material, add to cache and return id.
276
277                 The id 0 points to a null shader. Its material is EMT_SOLID.
278         */
279         u32 getShaderIdDirect(const std::string &name);
280
281         // Finds out the name of a cached shader.
282         std::string getShaderName(u32 id);
283
284         /*
285                 If shader specified by the name pointed by the id doesn't
286                 exist, create it, then return the cached shader.
287
288                 Can be called from any thread. If called from some other thread
289                 and not found in cache, the call is queued to the main thread
290                 for processing.
291         */
292         ShaderInfo getShader(u32 id);
293
294         ShaderInfo getShader(const std::string &name)
295         {
296                 return getShader(getShaderId(name));
297         }
298
299         // Processes queued shader requests from other threads.
300         // Shall be called from the main thread.
301         void processQueue();
302
303         // Insert a shader program into the cache without touching the
304         // filesystem. Shall be called from the main thread.
305         void insertSourceShader(const std::string &name_of_shader,
306                 const std::string &filename, const std::string &program);
307
308         // Rebuild shaders from the current set of source shaders
309         // Shall be called from the main thread.
310         void rebuildShaders();
311
312         void addGlobalConstantSetter(IShaderConstantSetter *setter)
313         {
314                 m_global_setters.push_back(setter);
315         }
316
317         void onSetConstants(video::IMaterialRendererServices *services,
318                         bool is_highlevel, const std::string &name);
319
320 private:
321
322         // The id of the thread that is allowed to use irrlicht directly
323         threadid_t m_main_thread;
324         // The irrlicht device
325         IrrlichtDevice *m_device;
326         // The set-constants callback
327         ShaderCallback *m_shader_callback;
328
329         // Cache of source shaders
330         // This should be only accessed from the main thread
331         SourceShaderCache m_sourcecache;
332
333         // A shader id is index in this array.
334         // The first position contains a dummy shader.
335         std::vector<ShaderInfo> m_shaderinfo_cache;
336         // Maps a shader name to an index in the former.
337         std::map<std::string, u32> m_name_to_id;
338         // The two former containers are behind this mutex
339         JMutex m_shaderinfo_cache_mutex;
340
341         // Queued shader fetches (to be processed by the main thread)
342         RequestQueue<std::string, u32, u8, u8> m_get_shader_queue;
343
344         // Global constant setters
345         // TODO: Delete these in the destructor
346         std::vector<IShaderConstantSetter*> m_global_setters;
347 };
348
349 IWritableShaderSource* createShaderSource(IrrlichtDevice *device)
350 {
351         return new ShaderSource(device);
352 }
353
354 /*
355         Generate shader given the shader name.
356 */
357 ShaderInfo generate_shader(std::string name, IrrlichtDevice *device,
358                 video::IShaderConstantSetCallBack *callback,
359                 SourceShaderCache *sourcecache);
360
361 /*
362         Load shader programs
363 */
364 void load_shaders(std::string name, SourceShaderCache *sourcecache,
365                 video::E_DRIVER_TYPE drivertype, bool enable_shaders,
366                 std::string &vertex_program, std::string &pixel_program,
367                 std::string &geometry_program, bool &is_highlevel);
368
369 ShaderSource::ShaderSource(IrrlichtDevice *device):
370                 m_device(device)
371 {
372         assert(m_device);
373
374         m_shader_callback = new ShaderCallback(this, "default");
375
376         m_shaderinfo_cache_mutex.Init();
377
378         m_main_thread = get_current_thread_id();
379
380         // Add a dummy ShaderInfo as the first index, named ""
381         m_shaderinfo_cache.push_back(ShaderInfo());
382         m_name_to_id[""] = 0;
383
384         // Add main global constant setter
385         addGlobalConstantSetter(new MainShaderConstantSetter(device));
386 }
387
388 ShaderSource::~ShaderSource()
389 {
390         //m_shader_callback->drop();
391
392         for (std::vector<IShaderConstantSetter*>::iterator iter = m_global_setters.begin();
393                         iter != m_global_setters.end(); iter++) {
394                 delete *iter;
395         }
396         m_global_setters.clear();
397 }
398
399 u32 ShaderSource::getShaderId(const std::string &name)
400 {
401         //infostream<<"getShaderId(): \""<<name<<"\""<<std::endl;
402
403         {
404                 /*
405                         See if shader already exists
406                 */
407                 JMutexAutoLock lock(m_shaderinfo_cache_mutex);
408                 std::map<std::string, u32>::iterator n;
409                 n = m_name_to_id.find(name);
410                 if(n != m_name_to_id.end())
411                         return n->second;
412         }
413
414         /*
415                 Get shader
416         */
417         if(get_current_thread_id() == m_main_thread){
418                 return getShaderIdDirect(name);
419         } else {
420                 infostream<<"getShaderId(): Queued: name=\""<<name<<"\""<<std::endl;
421
422                 // We're gonna ask the result to be put into here
423                 ResultQueue<std::string, u32, u8, u8> result_queue;
424
425                 // Throw a request in
426                 m_get_shader_queue.add(name, 0, 0, &result_queue);
427
428                 infostream<<"Waiting for shader from main thread, name=\""
429                                 <<name<<"\""<<std::endl;
430
431                 try{
432                         // Wait result for a second
433                         GetResult<std::string, u32, u8, u8>
434                                         result = result_queue.pop_front(1000);
435
436                         // Check that at least something worked OK
437                         assert(result.key == name);
438
439                         return result.item;
440                 }
441                 catch(ItemNotFoundException &e){
442                         infostream<<"Waiting for shader timed out."<<std::endl;
443                         return 0;
444                 }
445         }
446
447         infostream<<"getShaderId(): Failed"<<std::endl;
448
449         return 0;
450 }
451
452 /*
453         This method generates all the shaders
454 */
455 u32 ShaderSource::getShaderIdDirect(const std::string &name)
456 {
457         //infostream<<"getShaderIdDirect(): name=\""<<name<<"\""<<std::endl;
458
459         // Empty name means shader 0
460         if(name == ""){
461                 infostream<<"getShaderIdDirect(): name is empty"<<std::endl;
462                 return 0;
463         }
464
465         /*
466                 Calling only allowed from main thread
467         */
468         if(get_current_thread_id() != m_main_thread){
469                 errorstream<<"ShaderSource::getShaderIdDirect() "
470                                 "called not from main thread"<<std::endl;
471                 return 0;
472         }
473
474         /*
475                 See if shader already exists
476         */
477         {
478                 JMutexAutoLock lock(m_shaderinfo_cache_mutex);
479
480                 std::map<std::string, u32>::iterator n;
481                 n = m_name_to_id.find(name);
482                 if(n != m_name_to_id.end()){
483                         /*infostream<<"getShaderIdDirect(): \""<<name
484                                         <<"\" found in cache"<<std::endl;*/
485                         return n->second;
486                 }
487         }
488
489         /*infostream<<"getShaderIdDirect(): \""<<name
490                         <<"\" NOT found in cache. Creating it."<<std::endl;*/
491
492         ShaderInfo info = generate_shader(name, m_device,
493                         m_shader_callback, &m_sourcecache);
494
495         /*
496                 Add shader to caches (add dummy shaders too)
497         */
498
499         JMutexAutoLock lock(m_shaderinfo_cache_mutex);
500
501         u32 id = m_shaderinfo_cache.size();
502         m_shaderinfo_cache.push_back(info);
503         m_name_to_id[name] = id;
504
505         /*infostream<<"getShaderIdDirect(): "
506                         <<"Returning id="<<id<<" for name \""<<name<<"\""<<std::endl;*/
507
508         return id;
509 }
510
511 std::string ShaderSource::getShaderName(u32 id)
512 {
513         JMutexAutoLock lock(m_shaderinfo_cache_mutex);
514
515         if(id >= m_shaderinfo_cache.size()){
516                 errorstream<<"ShaderSource::getShaderName(): id="<<id
517                                 <<" >= m_shaderinfo_cache.size()="
518                                 <<m_shaderinfo_cache.size()<<std::endl;
519                 return "";
520         }
521
522         return m_shaderinfo_cache[id].name;
523 }
524
525 ShaderInfo ShaderSource::getShader(u32 id)
526 {
527         JMutexAutoLock lock(m_shaderinfo_cache_mutex);
528
529         if(id >= m_shaderinfo_cache.size())
530                 return ShaderInfo();
531
532         return m_shaderinfo_cache[id];
533 }
534
535 void ShaderSource::processQueue()
536 {
537         /*
538                 Fetch shaders
539         */
540         if(!m_get_shader_queue.empty()){
541                 GetRequest<std::string, u32, u8, u8>
542                                 request = m_get_shader_queue.pop();
543
544                 /*infostream<<"ShaderSource::processQueue(): "
545                                 <<"got shader request with "
546                                 <<"name=\""<<request.key<<"\""
547                                 <<std::endl;*/
548
549                 m_get_shader_queue.pushResult(request,getShaderIdDirect(request.key));
550         }
551 }
552
553 void ShaderSource::insertSourceShader(const std::string &name_of_shader,
554                 const std::string &filename, const std::string &program)
555 {
556         /*infostream<<"ShaderSource::insertSourceShader(): "
557                         "name_of_shader=\""<<name_of_shader<<"\", "
558                         "filename=\""<<filename<<"\""<<std::endl;*/
559
560         assert(get_current_thread_id() == m_main_thread);
561
562         m_sourcecache.insert(name_of_shader, filename, program, true);
563 }
564
565 void ShaderSource::rebuildShaders()
566 {
567         JMutexAutoLock lock(m_shaderinfo_cache_mutex);
568
569         /*// Oh well... just clear everything, they'll load sometime.
570         m_shaderinfo_cache.clear();
571         m_name_to_id.clear();*/
572
573         /*
574                 FIXME: Old shader materials can't be deleted in Irrlicht,
575                 or can they?
576                 (This would be nice to do in the destructor too)
577         */
578
579         // Recreate shaders
580         for(u32 i=0; i<m_shaderinfo_cache.size(); i++){
581                 ShaderInfo *info = &m_shaderinfo_cache[i];
582                 if(info->name != ""){
583                         *info = generate_shader(info->name, m_device,
584                                         m_shader_callback, &m_sourcecache);
585                 }
586         }
587 }
588
589 void ShaderSource::onSetConstants(video::IMaterialRendererServices *services,
590                 bool is_highlevel, const std::string &name)
591 {
592         for(u32 i=0; i<m_global_setters.size(); i++){
593                 IShaderConstantSetter *setter = m_global_setters[i];
594                 setter->onSetConstants(services, is_highlevel);
595         }
596 }
597  
598 ShaderInfo generate_shader(std::string name, IrrlichtDevice *device,
599                 video::IShaderConstantSetCallBack *callback,
600                 SourceShaderCache *sourcecache)
601 {
602         /*infostream<<"generate_shader(): "
603                         "\""<<name<<"\""<<std::endl;*/
604
605         ShaderInfo shaderinfo;
606         shaderinfo.name = name;
607         shaderinfo.material = video::EMT_SOLID;
608
609         /*
610                 Get the base material
611         */
612         std::string base_material_name =
613                 trim(sourcecache->getOrLoad(name, "base.txt"));
614         for(s32 i = 0; video::sBuiltInMaterialTypeNames[i] != 0; i++){
615                 if(video::sBuiltInMaterialTypeNames[i] == base_material_name){
616                         shaderinfo.material = (video::E_MATERIAL_TYPE) i;
617                         break;
618                 }
619         }
620
621         bool enable_shaders = g_settings->getBool("enable_shaders");
622         if(!enable_shaders)
623                 return shaderinfo;
624
625         video::IVideoDriver* driver = device->getVideoDriver();
626         assert(driver);
627
628         video::IGPUProgrammingServices *gpu = driver->getGPUProgrammingServices();
629         if(!gpu){
630                 errorstream<<"generate_shader(): "
631                                 "failed to generate \""<<name<<"\", "
632                                 "GPU programming not supported."
633                                 <<std::endl;
634                 return shaderinfo;
635         }
636
637         // Choose shader language depending on driver type and settings
638         // Then load shaders
639         std::string vertex_program;
640         std::string pixel_program;
641         std::string geometry_program;
642         bool is_highlevel;
643         load_shaders(name, sourcecache, driver->getDriverType(),
644                         enable_shaders, vertex_program, pixel_program,
645                         geometry_program, is_highlevel);
646
647         // Check hardware/driver support
648         if(vertex_program != "" &&
649                         !driver->queryFeature(video::EVDF_VERTEX_SHADER_1_1) &&
650                         !driver->queryFeature(video::EVDF_ARB_VERTEX_PROGRAM_1)){
651                 infostream<<"generate_shader(): vertex shaders disabled "
652                                 "because of missing driver/hardware support."
653                                 <<std::endl;
654                 vertex_program = "";
655         }
656         if(pixel_program != "" &&
657                         !driver->queryFeature(video::EVDF_PIXEL_SHADER_1_1) &&
658                         !driver->queryFeature(video::EVDF_ARB_FRAGMENT_PROGRAM_1)){
659                 infostream<<"generate_shader(): pixel shaders disabled "
660                                 "because of missing driver/hardware support."
661                                 <<std::endl;
662                 pixel_program = "";
663         }
664         if(geometry_program != "" &&
665                         !driver->queryFeature(video::EVDF_GEOMETRY_SHADER)){
666                 infostream<<"generate_shader(): geometry shaders disabled "
667                                 "because of missing driver/hardware support."
668                                 <<std::endl;
669                 geometry_program = "";
670         }
671
672         // If no shaders are used, don't make a separate material type
673         if(vertex_program == "" && pixel_program == "" && geometry_program == "")
674                 return shaderinfo;
675
676         // Call addHighLevelShaderMaterial() or addShaderMaterial()
677         const c8* vertex_program_ptr = 0;
678         const c8* pixel_program_ptr = 0;
679         const c8* geometry_program_ptr = 0;
680         if(vertex_program != "")
681                 vertex_program_ptr = vertex_program.c_str();
682         if(pixel_program != "")
683                 pixel_program_ptr = pixel_program.c_str();
684         if(geometry_program != "")
685                 geometry_program_ptr = geometry_program.c_str();
686         s32 shadermat = -1;
687         if(is_highlevel){
688                 infostream<<"Compiling high level shaders for "<<name<<std::endl;
689                 shadermat = gpu->addHighLevelShaderMaterial(
690                         vertex_program_ptr,   // Vertex shader program
691                         "vertexMain",         // Vertex shader entry point
692                         video::EVST_VS_1_1,   // Vertex shader version
693                         pixel_program_ptr,    // Pixel shader program
694                         "pixelMain",          // Pixel shader entry point
695                         video::EPST_PS_1_1,   // Pixel shader version
696                         geometry_program_ptr, // Geometry shader program
697                         "geometryMain",       // Geometry shader entry point
698                         video::EGST_GS_4_0,   // Geometry shader version
699                         scene::EPT_TRIANGLES,      // Geometry shader input
700                         scene::EPT_TRIANGLE_STRIP, // Geometry shader output
701                         0,                         // Support maximum number of vertices
702                         callback,             // Set-constant callback
703                         shaderinfo.material,  // Base material
704                         1                     // Userdata passed to callback
705                         );
706
707                 if(shadermat == -1){
708                         errorstream<<"generate_shader(): "
709                                         "failed to generate \""<<name<<"\", "
710                                         "addHighLevelShaderMaterial failed."
711                                         <<std::endl;
712                         return shaderinfo;
713                 }
714         }
715         else{
716                 infostream<<"Compiling assembly shaders for "<<name<<std::endl;
717                 shadermat = gpu->addShaderMaterial(
718                         vertex_program_ptr,   // Vertex shader program
719                         pixel_program_ptr,    // Pixel shader program
720                         callback,             // Set-constant callback
721                         shaderinfo.material,  // Base material
722                         0                     // Userdata passed to callback
723                         );
724
725                 if(shadermat == -1){
726                         errorstream<<"generate_shader(): "
727                                         "failed to generate \""<<name<<"\", "
728                                         "addShaderMaterial failed."
729                                         <<std::endl;
730                         return shaderinfo;
731                 }
732         }
733
734         // HACK, TODO: investigate this better
735         // Grab the material renderer once more so minetest doesn't crash on exit
736         driver->getMaterialRenderer(shadermat)->grab();
737
738         // Apply the newly created material type
739         shaderinfo.material = (video::E_MATERIAL_TYPE) shadermat;
740         return shaderinfo;
741 }
742
743 void load_shaders(std::string name, SourceShaderCache *sourcecache,
744                 video::E_DRIVER_TYPE drivertype, bool enable_shaders,
745                 std::string &vertex_program, std::string &pixel_program,
746                 std::string &geometry_program, bool &is_highlevel)
747 {
748         vertex_program = "";
749         pixel_program = "";
750         geometry_program = "";
751         is_highlevel = false;
752
753         if(enable_shaders){
754                 // Look for high level shaders
755                 if(drivertype == video::EDT_DIRECT3D9){
756                         // Direct3D 9: HLSL
757                         // (All shaders in one file)
758                         vertex_program = sourcecache->getOrLoad(name, "d3d9.hlsl");
759                         pixel_program = vertex_program;
760                         geometry_program = vertex_program;
761                 }
762                 else if(drivertype == video::EDT_OPENGL){
763                         // OpenGL: GLSL
764                         vertex_program = sourcecache->getOrLoad(name, "opengl_vertex.glsl");
765                         pixel_program = sourcecache->getOrLoad(name, "opengl_fragment.glsl");
766                         geometry_program = sourcecache->getOrLoad(name, "opengl_geometry.glsl");
767                 }
768                 if(vertex_program != "" || pixel_program != "" || geometry_program != ""){
769                         is_highlevel = true;
770                         return;
771                 }
772         }
773
774 }