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PolyMaterialManager.cpp 20 KB

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  1. /*
  2. Copyright (C) 2011 by Ivan Safrin
  3. Permission is hereby granted, free of charge, to any person obtaining a copy
  4. of this software and associated documentation files (the "Software"), to deal
  5. in the Software without restriction, including without limitation the rights
  6. to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  7. copies of the Software, and to permit persons to whom the Software is
  8. furnished to do so, subject to the following conditions:
  9. The above copyright notice and this permission notice shall be included in
  10. all copies or substantial portions of the Software.
  11. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  12. IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  13. FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  14. AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  15. LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  16. OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  17. THE SOFTWARE.
  18. */
  19. #include "PolyMaterialManager.h"
  20. #include "PolyCoreServices.h"
  21. #include "PolyCubemap.h"
  22. #include "PolyMaterial.h"
  23. #include "PolyModule.h"
  24. #include "PolyRenderer.h"
  25. #include "PolyResourceManager.h"
  26. #include "PolyFixedShader.h"
  27. #include "tinyxml.h"
  28. using namespace Polycode;
  29. using std::vector;
  30. MaterialManager::MaterialManager() {
  31. premultiplyAlphaOnLoad = false;
  32. clampDefault = false;
  33. mipmapsDefault = true;
  34. }
  35. MaterialManager::~MaterialManager() {
  36. }
  37. void MaterialManager::Update(int elapsed) {
  38. for(int i=0;i < textures.size(); i++) {
  39. textures[i]->updateScroll(elapsed);
  40. }
  41. }
  42. Texture *MaterialManager::getTextureByResourcePath(const String& resourcePath) const {
  43. for(int i=0;i < textures.size(); i++) {
  44. if(textures[i]->getResourcePath() == resourcePath)
  45. return textures[i];
  46. }
  47. return NULL;
  48. }
  49. void MaterialManager::deleteTexture(Texture *texture) {
  50. for(int i=0;i < textures.size(); i++) {
  51. if(textures[i] == texture) {
  52. textures.erase(textures.begin()+i);
  53. CoreServices::getInstance()->getRenderer()->destroyTexture(texture);
  54. return;
  55. }
  56. }
  57. }
  58. void MaterialManager::reloadPrograms() {
  59. for(int m=0; m < shaderModules.size(); m++) {
  60. PolycodeShaderModule *shaderModule = shaderModules[m];
  61. shaderModule->reloadPrograms();
  62. }
  63. vector<Resource *> shaders = CoreServices::getInstance()->getResourceManager()->getResources(Resource::RESOURCE_SHADER);
  64. for(int s = 0; s < shaders.size(); s++) {
  65. Shader *shader = (Shader *)shaders[s];
  66. shader->reload();
  67. }
  68. }
  69. ShaderProgram *MaterialManager::createProgramFromFile(String programPath) {
  70. OSFileEntry entry(programPath, OSFileEntry::TYPE_FILE);
  71. for(int m=0; m < shaderModules.size(); m++) {
  72. PolycodeShaderModule *shaderModule = shaderModules[m];
  73. if(shaderModule->acceptsExtension(entry.extension)) {
  74. ShaderProgram *newProgram = shaderModule->createProgramFromFile(entry.extension, entry.fullPath);
  75. if(newProgram) {
  76. newProgram->setResourcePath(programPath);
  77. }
  78. return newProgram;
  79. }
  80. }
  81. return NULL;
  82. }
  83. void MaterialManager::addShaderModule(PolycodeShaderModule *module) {
  84. shaderModules.push_back(module);
  85. }
  86. #define DEFAULT_TEXTURE "default/default.png"
  87. Texture *MaterialManager::createTextureFromFile(const String& fileName, bool clamp, bool createMipmaps) {
  88. if(fileName.size() == 0) {
  89. Logger::log("empty texture filename, using default texture.\n");
  90. return getTextureByResourcePath(DEFAULT_TEXTURE);
  91. }
  92. Texture *newTexture;
  93. newTexture = getTextureByResourcePath(fileName);
  94. if(newTexture) {
  95. return newTexture;
  96. }
  97. Image *image = new Image(fileName);
  98. if(image->isLoaded()) {
  99. if(premultiplyAlphaOnLoad) {
  100. image->premultiplyAlpha();
  101. }
  102. newTexture = createTexture(image->getWidth(), image->getHeight(), image->getPixels(), clamp, createMipmaps);
  103. newTexture->setResourcePath(fileName);
  104. CoreServices::getInstance()->getResourceManager()->addResource(newTexture);
  105. } else {
  106. Logger::log("Error loading image (\"%s\"), using default texture.\n", fileName.c_str());
  107. newTexture = getTextureByResourcePath(DEFAULT_TEXTURE);
  108. }
  109. delete image;
  110. return newTexture;
  111. }
  112. Texture *MaterialManager::createFramebufferTexture(int width, int height, int type) {
  113. Texture *newTexture = CoreServices::getInstance()->getRenderer()->createFramebufferTexture(width, height);
  114. return newTexture;
  115. }
  116. Texture *MaterialManager::createNewTexture(int width, int height, bool clamp, bool createMipmaps, int type) {
  117. Image *newImage = new Image(width, height, type);
  118. newImage->fill(Color(1,1,1,1));
  119. Texture *retTexture = createTextureFromImage(newImage, clamp, createMipmaps);
  120. delete newImage;
  121. return retTexture;
  122. }
  123. Texture *MaterialManager::createTexture(int width, int height, char *imageData, bool clamp, bool createMipmaps, int type) {
  124. Texture *newTexture = CoreServices::getInstance()->getRenderer()->createTexture(width, height, imageData,clamp, createMipmaps, type);
  125. textures.push_back(newTexture);
  126. return newTexture;
  127. }
  128. Texture *MaterialManager::createTextureFromImage(Image *image, bool clamp, bool createMipmaps) {
  129. Texture *newTexture;
  130. newTexture = createTexture(image->getWidth(), image->getHeight(), image->getPixels(),clamp, createMipmaps, image->getType());
  131. return newTexture;
  132. }
  133. void MaterialManager::reloadProgramsAndTextures() {
  134. reloadTextures();
  135. reloadPrograms();
  136. }
  137. void MaterialManager::reloadTextures() {
  138. for(int i=0; i < textures.size(); i++) {
  139. Texture *texture = textures[i];
  140. texture->recreateFromImageData();
  141. }
  142. }
  143. unsigned int MaterialManager::getNumShaders() {
  144. return shaders.size();
  145. }
  146. Shader *MaterialManager::getShaderByIndex(unsigned int index) {
  147. if(index < shaders.size())
  148. return shaders[index];
  149. else
  150. return NULL;
  151. }
  152. Shader *MaterialManager::createShader(String shaderType, String name, String vpName, String fpName, bool screenShader) {
  153. Shader *retShader = NULL;
  154. for(int m=0; m < shaderModules.size(); m++) {
  155. PolycodeShaderModule *shaderModule = shaderModules[m];
  156. if(shaderModule->getShaderType() == shaderType) {
  157. retShader = shaderModule->createShader(name, vpName, fpName);
  158. }
  159. }
  160. if(retShader) {
  161. retShader->screenShader = screenShader;
  162. retShader->numAreaLights = 0;
  163. retShader->numSpotLights = 0;
  164. }
  165. return retShader;
  166. }
  167. Shader *MaterialManager::createShaderFromXMLNode(TiXmlNode *node) {
  168. TiXmlElement *nodeElement = node->ToElement();
  169. if (!nodeElement) return NULL; // Skip comment nodes
  170. Shader *retShader = NULL;
  171. if(nodeElement->Attribute("type")) {
  172. String shaderType = nodeElement->Attribute("type");
  173. for(int m=0; m < shaderModules.size(); m++) {
  174. PolycodeShaderModule *shaderModule = shaderModules[m];
  175. if(shaderModule->getShaderType() == shaderType) {
  176. retShader = shaderModule->createShader(node);
  177. }
  178. }
  179. }
  180. if (!retShader)
  181. return NULL;
  182. int numAreaLights = 0;
  183. int numSpotLights = 0;
  184. if(nodeElement->Attribute("numAreaLights")) {
  185. numAreaLights = atoi(nodeElement->Attribute("numAreaLights"));
  186. }
  187. if(nodeElement->Attribute("numSpotLights")) {
  188. numSpotLights = atoi(nodeElement->Attribute("numSpotLights"));
  189. }
  190. retShader->screenShader = false;
  191. if(nodeElement->Attribute("screen")) {
  192. if(String(nodeElement->Attribute("screen")) == "true") {
  193. retShader->screenShader = true;
  194. }
  195. }
  196. if(retShader) {
  197. retShader->numAreaLights = numAreaLights;
  198. retShader->numSpotLights = numSpotLights;
  199. }
  200. return retShader;
  201. }
  202. Shader *MaterialManager::setShaderFromXMLNode(TiXmlNode *node) {
  203. TiXmlElement *nodeElement = node->ToElement();
  204. if (!nodeElement) return NULL; // Skip comment nodes
  205. Shader *retShader = NULL;
  206. if(nodeElement->Attribute("type")) {
  207. String shaderType = nodeElement->Attribute("type");
  208. if(shaderType == "fixed") {
  209. FixedShader *fShader = new FixedShader();
  210. retShader = fShader;
  211. }
  212. } else {
  213. retShader = (Shader*)CoreServices::getInstance()->getResourceManager()->getResource(Resource::RESOURCE_SHADER, nodeElement->Attribute("name"));
  214. }
  215. return retShader;
  216. }
  217. // for (pChild = node->FirstChild(); pChild != 0; pChild = pChild->NextSibling()) {
  218. // if(strcmp(pChild->Value(), "textures") == 0) {
  219. // for (pChild2 = pChild->FirstChild(); pChild2 != 0; pChild2 = pChild2->NextSibling()) {
  220. // if(strcmp(pChild2->Value(), "texture") == 0)
  221. // fShader->setDiffuseTexture((Texture*)CoreServices::getInstance()->getResourceManager()->getResource(Resource::RESOURCE_TEXTURE, pChild2->ToElement()->GetText()));
  222. // }
  223. // }
  224. // }
  225. Cubemap *MaterialManager::cubemapFromXMLNode(TiXmlNode *node) {
  226. TiXmlElement *nodeElement = node->ToElement();
  227. if (!nodeElement) return NULL; // Skip comment nodes
  228. Cubemap *newCubemap = NULL;
  229. String name = nodeElement->Attribute("name");
  230. String xPos = nodeElement->Attribute("xPos");
  231. String xNeg = nodeElement->Attribute("xNeg");
  232. String yPos = nodeElement->Attribute("yPos");
  233. String yNeg = nodeElement->Attribute("yNeg");
  234. String zPos = nodeElement->Attribute("zPos");
  235. String zNeg = nodeElement->Attribute("zNeg");
  236. newCubemap = CoreServices::getInstance()->getRenderer()->createCubemap(
  237. CoreServices::getInstance()->getMaterialManager()->createTextureFromFile(xPos),
  238. CoreServices::getInstance()->getMaterialManager()->createTextureFromFile(xNeg),
  239. CoreServices::getInstance()->getMaterialManager()->createTextureFromFile(yPos),
  240. CoreServices::getInstance()->getMaterialManager()->createTextureFromFile(yNeg),
  241. CoreServices::getInstance()->getMaterialManager()->createTextureFromFile(zPos),
  242. CoreServices::getInstance()->getMaterialManager()->createTextureFromFile(zNeg)
  243. );
  244. newCubemap->setResourceName(name);
  245. return newCubemap;
  246. }
  247. void MaterialManager::addMaterial(Material *material) {
  248. materials.push_back(material);
  249. }
  250. void MaterialManager::addShader(Shader *shader) {
  251. shaders.push_back(shader);
  252. }
  253. std::vector<Shader*> MaterialManager::loadShadersFromFile(String fileName) {
  254. std::vector<Shader*> retVector;
  255. TiXmlDocument doc(fileName.c_str());
  256. doc.LoadFile();
  257. if(doc.Error()) {
  258. Logger::log("XML Error: %s\n", doc.ErrorDesc());
  259. } else {
  260. TiXmlElement *mElem = doc.RootElement()->FirstChildElement("shaders");
  261. if(mElem) {
  262. TiXmlNode* pChild;
  263. for (pChild = mElem->FirstChild(); pChild != 0; pChild = pChild->NextSibling()) {
  264. Shader *newShader = createShaderFromXMLNode(pChild);
  265. if(newShader != NULL) {
  266. Logger::log("Adding shader %s\n", newShader->getName().c_str());
  267. newShader->setResourceName(newShader->getName());
  268. retVector.push_back(newShader);
  269. }
  270. }
  271. }
  272. }
  273. return retVector;
  274. }
  275. std::vector<Cubemap*> MaterialManager::loadCubemapsFromFile(String fileName) {
  276. std::vector<Cubemap*> retVector;
  277. TiXmlDocument doc(fileName.c_str());
  278. doc.LoadFile();
  279. if(doc.Error()) {
  280. Logger::log("XML Error: %s\n", doc.ErrorDesc());
  281. } else {
  282. TiXmlElement *mElem = doc.RootElement()->FirstChildElement("cubemaps");
  283. if(mElem) {
  284. TiXmlNode* pChild;
  285. for (pChild = mElem->FirstChild(); pChild != 0; pChild = pChild->NextSibling()) {
  286. Cubemap *newCubemap = cubemapFromXMLNode(pChild);
  287. if (newCubemap) {
  288. retVector.push_back(newCubemap);
  289. }
  290. }
  291. }
  292. }
  293. return retVector;
  294. }
  295. std::vector<Material*> MaterialManager::loadMaterialsFromFile(String fileName) {
  296. std::vector<Material*> retVector;
  297. TiXmlDocument doc(fileName.c_str());
  298. doc.LoadFile();
  299. if(doc.Error()) {
  300. Logger::log("XML Error: %s\n", doc.ErrorDesc());
  301. } else {
  302. TiXmlElement *mElem = doc.RootElement()->FirstChildElement("materials");
  303. if(mElem) {
  304. TiXmlNode* pChild;
  305. for (pChild = mElem->FirstChild(); pChild != 0; pChild = pChild->NextSibling()) {
  306. Material *newMat = materialFromXMLNode(pChild);
  307. if (newMat) {
  308. retVector.push_back(newMat);
  309. }
  310. }
  311. }
  312. }
  313. return retVector;
  314. }
  315. Material *MaterialManager::createMaterial(String materialName, String shaderName) {
  316. Material *newMaterial = new Material(materialName);
  317. Shader *retShader = (Shader*)CoreServices::getInstance()->getResourceManager()->getResource(Resource::RESOURCE_SHADER, shaderName);
  318. if(retShader) {
  319. ShaderBinding *newShaderBinding = retShader->createBinding();
  320. newMaterial->addShader(retShader, newShaderBinding);
  321. }
  322. return newMaterial;
  323. }
  324. Material *MaterialManager::materialFromXMLNode(TiXmlNode *node) {
  325. TiXmlElement *nodeElement = node->ToElement();
  326. if (!nodeElement) return NULL; // Skip comment nodes
  327. String mname = nodeElement->Attribute("name");
  328. TiXmlNode* pChild, *pChild2,*pChild3;
  329. Shader *materialShader;
  330. ShaderBinding *newShaderBinding;
  331. vector<Shader*> materialShaders;
  332. vector<ShaderBinding*> newShaderBindings;
  333. vector<ShaderRenderTarget*> renderTargets;
  334. Material *newMaterial = new Material(mname);
  335. if(nodeElement->Attribute("screen")) {
  336. if(String(nodeElement->Attribute("screen")) == "true") {
  337. newMaterial->screenMaterial = true;
  338. }
  339. }
  340. if(nodeElement->Attribute("blendingMode")) {
  341. newMaterial->blendingMode = atoi(nodeElement->Attribute("blendingMode"));
  342. }
  343. for (pChild3 = node->FirstChild(); pChild3 != 0; pChild3 = pChild3->NextSibling()) {
  344. TiXmlElement *pChild3Element = pChild3->ToElement();
  345. if (!pChild3Element) continue; // Skip comment nodes
  346. if(strcmp(pChild3->Value(), "rendertargets") == 0) {
  347. if(pChild3Element->Attribute("type")) {
  348. if(strcmp(pChild3Element->Attribute("type"), "rgba_fp16") == 0) {
  349. newMaterial->fp16RenderTargets = true;
  350. }
  351. }
  352. for (pChild = pChild3->FirstChild(); pChild != 0; pChild = pChild->NextSibling()) {
  353. TiXmlElement *pChildElement = pChild->ToElement();
  354. if (!pChildElement) continue; // Skip comment nodes
  355. if(strcmp(pChild->Value(), "rendertarget") == 0) {
  356. ShaderRenderTarget *newTarget = new ShaderRenderTarget;
  357. newTarget->id = pChildElement->Attribute("id");
  358. newTarget->width = CoreServices::getInstance()->getRenderer()->getXRes();
  359. newTarget->height = CoreServices::getInstance()->getRenderer()->getYRes();
  360. newTarget->sizeMode = ShaderRenderTarget::SIZE_MODE_PIXELS;
  361. if(pChildElement->Attribute("width") && pChildElement->Attribute("height")) {
  362. newTarget->width = atof(pChildElement->Attribute("width"));
  363. newTarget->height = atof(pChildElement->Attribute("height"));
  364. if(pChildElement->Attribute("sizeMode")) {
  365. if(strcmp(pChildElement->Attribute("sizeMode"), "normalized") == 0) {
  366. newTarget->sizeMode = ShaderRenderTarget::SIZE_MODE_NORMALIZED;
  367. if(newTarget->width > 1.0f)
  368. newTarget->width = 1.0f;
  369. if(newTarget->height > 1.0f)
  370. newTarget->height = 1.0f;
  371. }
  372. }
  373. }
  374. newTarget->normalizedWidth = -1;
  375. newTarget->normalizedHeight = -1;
  376. newMaterial->recreateRenderTarget(newTarget);
  377. renderTargets.push_back(newTarget);
  378. }
  379. }
  380. }
  381. }
  382. for (pChild3 = node->FirstChild(); pChild3 != 0; pChild3 = pChild3->NextSibling()) {
  383. TiXmlElement *pChild3Element = pChild3->ToElement();
  384. if (!pChild3Element) continue; // Skip comment nodes
  385. if(strcmp(pChild3->Value(), "shader") == 0) {
  386. materialShader = setShaderFromXMLNode(pChild3);
  387. if(materialShader) {
  388. newShaderBinding = materialShader->createBinding();
  389. materialShaders.push_back(materialShader);
  390. newShaderBindings.push_back(newShaderBinding);
  391. for (pChild = pChild3->FirstChild(); pChild != 0; pChild = pChild->NextSibling()) {
  392. TiXmlElement *pChildElement = pChild->ToElement();
  393. if (!pChildElement) continue; // Skip comment nodes
  394. if(strcmp(pChild->Value(), "params") == 0) {
  395. for (pChild2 = pChild->FirstChild(); pChild2 != 0; pChild2 = pChild2->NextSibling()) {
  396. TiXmlElement *pChild2Element = pChild2->ToElement();
  397. if (!pChild2Element) continue; // Skip comment nodes
  398. if(strcmp(pChild2->Value(), "param") == 0){
  399. String pname = pChild2Element->Attribute("name");
  400. if(!CoreServices::getInstance()->getRenderer()->getDataPointerForName(pname)) {
  401. String pvalue = pChild2Element->Attribute("value");
  402. int type = materialShader->getExpectedParamType(pname);
  403. LocalShaderParam *param = newShaderBinding->addParam(type, pname);
  404. if(param) {
  405. switch(type) {
  406. case ProgramParam::PARAM_NUMBER:
  407. {
  408. param->setNumber(atof(pvalue.c_str()));
  409. }
  410. break;
  411. case ProgramParam::PARAM_VECTOR2:
  412. {
  413. std::vector<String> values = pvalue.split(" ");
  414. if(values.size() == 2) {
  415. param->setVector2(Vector2(atof(values[0].c_str()), atof(values[1].c_str())));
  416. } else {
  417. printf("Material parameter error: A Vector2 must have 2 values (%d provided)!\n", (int)values.size());
  418. }
  419. }
  420. break;
  421. case ProgramParam::PARAM_VECTOR3:
  422. {
  423. std::vector<String> values = pvalue.split(" ");
  424. if(values.size() == 3) {
  425. param->setVector3(Vector3(atof(values[0].c_str()), atof(values[1].c_str()), atof(values[2].c_str())));
  426. } else {
  427. printf("Material parameter error: A Vector3 must have 3 values (%d provided)!\n", (int)values.size());
  428. }
  429. }
  430. break;
  431. case ProgramParam::PARAM_COLOR:
  432. {
  433. std::vector<String> values = pvalue.split(" ");
  434. if(values.size() == 4) {
  435. param->setColor(Color(atof(values[0].c_str()), atof(values[1].c_str()), atof(values[2].c_str()), atof(values[3].c_str())));
  436. } else {
  437. printf("Material parameter error: A Vector3 must have 3 values (%d provided)!\n", (int)values.size());
  438. }
  439. }
  440. break;
  441. }
  442. }
  443. }
  444. }
  445. }
  446. }
  447. if(strcmp(pChild->Value(), "targettextures") == 0) {
  448. for (pChild2 = pChild->FirstChild(); pChild2 != 0; pChild2 = pChild2->NextSibling()) {
  449. TiXmlElement *pChild2Element = pChild2->ToElement();
  450. if (!pChild2Element) continue; // Skip comment nodes
  451. if(strcmp(pChild2->Value(), "targettexture") == 0){
  452. RenderTargetBinding* newBinding = new RenderTargetBinding;
  453. newBinding->id = pChild2Element->Attribute("id");
  454. newBinding->name = "";
  455. if(pChild2Element->Attribute("name")) {
  456. newBinding->name = pChild2Element->Attribute("name");
  457. }
  458. String mode = pChild2Element->Attribute("mode");
  459. if(strcmp(mode.c_str(), "in") == 0) {
  460. newBinding->mode = RenderTargetBinding::MODE_IN;
  461. } else if(strcmp(mode.c_str(), "color") == 0) {
  462. newBinding->mode = RenderTargetBinding::MODE_COLOR;
  463. } else if(strcmp(mode.c_str(), "depth") == 0) {
  464. newBinding->mode = RenderTargetBinding::MODE_DEPTH;
  465. } else {
  466. newBinding->mode = RenderTargetBinding::MODE_OUT;
  467. }
  468. newShaderBinding->addRenderTargetBinding(newBinding);
  469. for(int l=0; l < renderTargets.size(); l++) {
  470. if(renderTargets[l]->id == newBinding->id) {
  471. printf("Assigning texture to %s\n", newBinding->id.c_str());
  472. newBinding->texture = renderTargets[l]->texture;
  473. }
  474. }
  475. if(newBinding->mode == RenderTargetBinding::MODE_IN) {
  476. newShaderBinding->addTexture(newBinding->name, newBinding->texture);
  477. }
  478. }
  479. }
  480. }
  481. if(strcmp(pChild->Value(), "textures") == 0) {
  482. for (pChild2 = pChild->FirstChild(); pChild2 != 0; pChild2 = pChild2->NextSibling()) {
  483. TiXmlElement *pChild2Element = pChild2->ToElement();
  484. if (!pChild2Element) continue; // Skip comment nodes
  485. if(strcmp(pChild2->Value(), "texture") == 0){
  486. String tname = "";
  487. if(pChild2Element->Attribute("name")) {
  488. tname = pChild2Element->Attribute("name");
  489. }
  490. Texture *texture = CoreServices::getInstance()->getMaterialManager()->createTextureFromFile(pChild2Element->GetText());
  491. newShaderBinding->addTexture(tname,texture);
  492. // newShaderBinding->addTexture(tname, (Texture*)CoreServices::getInstance()->getResourceManager()->getResource(Resource::RESOURCE_TEXTURE, pChild2Element->GetText()));
  493. }
  494. if(strcmp(pChild2->Value(), "cubemap") == 0){
  495. String tname = "";
  496. if(pChild2Element->Attribute("name")) {
  497. tname = pChild2Element->Attribute("name");
  498. }
  499. newShaderBinding->addCubemap(tname, (Cubemap*)CoreServices::getInstance()->getResourceManager()->getResource(Resource::RESOURCE_CUBEMAP, pChild2Element->GetText()));
  500. }
  501. }
  502. }
  503. }
  504. }
  505. }
  506. }
  507. for(int i=0; i< materialShaders.size(); i++) {
  508. newMaterial->addShader(materialShaders[i],newShaderBindings[i]);
  509. }
  510. for(int i=0; i< renderTargets.size(); i++) {
  511. newMaterial->addShaderRenderTarget(renderTargets[i]);
  512. }
  513. return newMaterial;
  514. }