ProjectStore.cpp 10 KB

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  1. // Include own headers
  2. #include "ProjectStore.hpp"
  3. // Include modules
  4. #include "MainWindow.hpp"
  5. #include "StringBasics.hpp"
  6. #include "TrackPointRenderer.hpp"
  7. #include "PlatformSupport.hpp"
  8. // Include dependencies
  9. #include <typeinfo>
  10. #include <iostream>
  11. #include <filesystem>
  12. #define META_NAMESPACE "tk-ar-tracking"
  13. ProjectStore::ProjectStore() {
  14. _projectLoaded = false;
  15. _projectModified = false;
  16. load3mfLib();
  17. }
  18. ProjectStore::~ProjectStore() {
  19. }
  20. void ProjectStore::loadMesh(std::string meshFile) {
  21. if (StringBasics::endsWithCaseInsensitive(meshFile, ".STL")) {
  22. printf("Currently unsupported.\n");
  23. } else if (StringBasics::endsWithCaseInsensitive(meshFile, ".3MF")) {
  24. _projectLoaded = true;
  25. // Read 3MF file
  26. Lib3MF::PReader reader = _project->QueryReader("3mf");
  27. reader->ReadFromFile(meshFile);
  28. render3MFMesh();
  29. MainWindow::getInstance()->renderView(Edit);
  30. } else {
  31. // TODO: Show error popup
  32. printf("Unsupported file type.\n");
  33. }
  34. }
  35. bool ProjectStore::loadProject(std::string projectFile) {
  36. if (!_projectLoaded) {
  37. Lib3MF::PReader reader = _project->QueryReader("3mf");
  38. reader->ReadFromFile(projectFile);
  39. _projectLoaded = true;
  40. _projectModified = false;
  41. loadMetaData();
  42. return true;
  43. }
  44. return false;
  45. }
  46. bool ProjectStore::saveProject() {
  47. if (_projectFile != "") {
  48. return saveProject(_projectFile);
  49. }
  50. return false;
  51. }
  52. bool ProjectStore::saveProject(std::string path) {
  53. updateMetaData();
  54. Lib3MF::PWriter writer = _project->QueryWriter("3mf");
  55. writer->WriteToFile(path);
  56. _projectFile = path;
  57. return true;
  58. }
  59. bool ProjectStore::exportProject(std::string path, ExportSettings settings) {
  60. OpenScadRenderer* renderer = new OpenScadRenderer();
  61. // Base for rendering mesh
  62. Lib3MF::PWriter writer = _project->QueryWriter("3mf");
  63. writer->WriteToFile(std::filesystem::temp_directory_path().u8string() + fileDelimiter + "trackpointapp_export.3mf");
  64. // Export file
  65. Lib3MF::PModel exportModel = _wrapper->CreateModel();
  66. Lib3MF::PMetaDataGroup metaData = exportModel->GetMetaDataGroup();
  67. if (settings.OptiTrack) {
  68. renderer->renderOptiTrack(_optiTrackPoints);
  69. Lib3MF::PModel optiTrackModel = _wrapper->CreateModel();
  70. Lib3MF::PReader reader = optiTrackModel->QueryReader("3mf");
  71. reader->ReadFromFile(std::filesystem::temp_directory_path().u8string() + fileDelimiter + "trackpointapp_render_optitrack.3mf");
  72. Lib3MF::PMeshObjectIterator meshIterator = optiTrackModel->GetMeshObjects();
  73. if (meshIterator->Count() != 1) {
  74. return false;
  75. }
  76. meshIterator->MoveNext();
  77. Lib3MF::PMeshObject renderedMesh = meshIterator->GetCurrentMeshObject();
  78. Lib3MF::PMeshObject exportMesh = exportModel->AddMeshObject();
  79. std::vector<Lib3MF::sPosition> verticesBuffer;
  80. std::vector<Lib3MF::sTriangle> triangleBuffer;
  81. renderedMesh->GetVertices(verticesBuffer);
  82. renderedMesh->GetTriangleIndices(triangleBuffer);
  83. exportMesh->SetGeometry(verticesBuffer, triangleBuffer);
  84. std::vector<std::vector<float>> pointsList;
  85. for (OptiTrackPoint* point: _optiTrackPoints) {
  86. std::vector<float> pointData;
  87. osg::Vec3 trackPoint = point->getTrackPoint();
  88. pointData.push_back(trackPoint.x());
  89. pointData.push_back(trackPoint.y());
  90. pointData.push_back(trackPoint.z());
  91. pointsList.push_back(pointData);
  92. }
  93. json trackpointData = pointsList;
  94. metaData->AddMetaData("tk-ar-tracking", "trackpoints-optitrack", trackpointData.dump(), "string", true);
  95. }
  96. if (settings.EMFTrack) {
  97. }
  98. if (settings.SteamVRTrack) {
  99. }
  100. delete renderer;
  101. Lib3MF::PWriter exportWriter = exportModel->QueryWriter("3mf");
  102. exportWriter->WriteToFile(path);
  103. return true;
  104. }
  105. TrackPoint* ProjectStore::getTrackPointById(int id, ActiveTrackingSystem activeTrackingSystem) {
  106. switch(activeTrackingSystem) {
  107. case OptiTrack: {
  108. return _optiTrackPoints[id];
  109. };
  110. case EMFTrack: {
  111. break;
  112. };
  113. case SteamVRTrack: {
  114. break;
  115. };
  116. case ActionPoints: {
  117. break;
  118. };
  119. }
  120. }
  121. int ProjectStore::getCount(ActiveTrackingSystem activeTrackingSystem) {
  122. switch(activeTrackingSystem) {
  123. case OptiTrack: {
  124. return _optiTrackPoints.size();
  125. };
  126. case EMFTrack: {
  127. break;
  128. };
  129. case SteamVRTrack: {
  130. break;
  131. };
  132. case ActionPoints: {
  133. break;
  134. };
  135. }
  136. }
  137. void ProjectStore::removeTrackPoint(int id, ActiveTrackingSystem activeTrackingSystem) {
  138. switch(activeTrackingSystem) {
  139. case OptiTrack: {
  140. _optiTrackPoints.erase(_optiTrackPoints.begin() + id);
  141. break;
  142. }
  143. case EMFTrack: {
  144. break;
  145. }
  146. case SteamVRTrack: {
  147. break;
  148. }
  149. case ActionPoints: {
  150. break;
  151. }
  152. }
  153. MainWindow::getInstance()->getEditWiget()->updateTrackpointCount();
  154. }
  155. void ProjectStore::updateNormalModifier(osg::Vec3 modifier) {
  156. _normalModifier = modifier;
  157. }
  158. osg::Vec3 ProjectStore::getNormalModifier() {
  159. return _normalModifier;
  160. }
  161. std::vector<OptiTrackPoint*> ProjectStore::getOptiTrackPoints() {
  162. return _optiTrackPoints;
  163. }
  164. void ProjectStore::addOptiTrackPoint(osg::Vec3 point, osg::Vec3 normal) {
  165. OptiTrackPoint* optiTrackPoint = new OptiTrackPoint(point, normal, _normalModifier, _optiTrackSettings.length, _optiTrackSettings.radius);
  166. _optiTrackPoints.push_back(optiTrackPoint);
  167. MainWindow::getInstance()->getEditWiget()->updateTrackpointCount();
  168. }
  169. void ProjectStore::updateOptiTrackSettings(OptiTrackSettings optiTrackSettings) {
  170. _optiTrackSettings = optiTrackSettings;
  171. }
  172. OptiTrackSettings ProjectStore::getOptiTrackSettings() {
  173. return _optiTrackSettings;
  174. }
  175. void ProjectStore::load3mfLib() {
  176. _wrapper = Lib3MF::CWrapper::loadLibrary();
  177. _project = _wrapper->CreateModel();
  178. }
  179. void ProjectStore::render3MFMesh() {
  180. // Get meshes
  181. Lib3MF::PMeshObjectIterator meshIterator = _project->GetMeshObjects();
  182. // Our use case supports just a single mesh per project
  183. if (meshIterator->Count() != 1) {
  184. // TODO: Show error popup
  185. printf("Not 1 mesh: %llu\n", meshIterator->Count());
  186. return;
  187. }
  188. meshIterator->MoveNext();
  189. Lib3MF::PMeshObject mesh = meshIterator->GetCurrentMeshObject();
  190. // Load vertices and triangles and render them
  191. std::vector<Lib3MF::sPosition> verticesBuffer;
  192. mesh->GetVertices(verticesBuffer);
  193. std::vector<Lib3MF::sTriangle> triangleBuffer;
  194. mesh->GetTriangleIndices(triangleBuffer);
  195. // Create osg style arrays
  196. osg::ref_ptr<osg::Vec3Array> vertices = new osg::Vec3Array;
  197. osg::ref_ptr<osg::Vec3Array> normals = new osg::Vec3Array;
  198. // Convert data to osg format and calculate vertex normals
  199. for (const Lib3MF::sTriangle triangle: triangleBuffer) {
  200. // Create osg vectors
  201. osg::Vec3 vertex[3] = {};
  202. for (char i = 0; i < 3; i++) {
  203. vertex[i] = osg::Vec3(verticesBuffer[triangle.m_Indices[i]].m_Coordinates[0], verticesBuffer[triangle.m_Indices[i]].m_Coordinates[1], verticesBuffer[triangle.m_Indices[i]].m_Coordinates[2]);
  204. }
  205. // Calculate normal
  206. osg::Vec3 edgeOne = vertex[1].operator-(vertex[0]);
  207. osg::Vec3 edgeTwo = vertex[2].operator-(vertex[0]);
  208. osg::Vec3 normal = edgeOne.operator^(edgeTwo);
  209. normal.normalize();
  210. // Store them
  211. for (int i = 0; i < 3; i++) {
  212. vertices->push_back(vertex[i]);
  213. normals->push_back(normal);
  214. }
  215. }
  216. // Call renderer
  217. MainWindow* mainWindow = MainWindow::getInstance();
  218. mainWindow->getOsgWidget()->renderBaseMesh(vertices, normals);
  219. }
  220. void ProjectStore::updateMetaData() {
  221. Lib3MF::PMetaDataGroup metaData = _project->GetMetaDataGroup();
  222. try {
  223. Lib3MF::PMetaData versionInformation = metaData->GetMetaDataByKey(META_NAMESPACE, "format");
  224. } catch (Lib3MF::ELib3MFException &e) {
  225. metaData->AddMetaData(META_NAMESPACE, "format", "1.0.0", "string", true);
  226. }
  227. json optiTrackData = json::array();
  228. for (OptiTrackPoint* optiTrackPoint: _optiTrackPoints) {
  229. optiTrackData.push_back({
  230. {"point", osgVecToStdVec(optiTrackPoint->getTranslation())},
  231. {"normal", osgVecToStdVec(optiTrackPoint->getNormal())},
  232. {"normalModifier", osgVecToStdVec(optiTrackPoint->getNormalModifier())},
  233. {"length", optiTrackPoint->getLength()},
  234. {"radius", optiTrackPoint->getRadius()}
  235. });
  236. }
  237. try {
  238. Lib3MF::PMetaData optiTrackPoints = metaData->GetMetaDataByKey(META_NAMESPACE, "optitrack");
  239. optiTrackPoints->SetValue(optiTrackData.dump());
  240. } catch (Lib3MF::ELib3MFException &e) {
  241. metaData->AddMetaData(META_NAMESPACE, "optitrack", optiTrackData.dump(), "string", true);
  242. }
  243. }
  244. void ProjectStore::loadMetaData() {
  245. Lib3MF::PMetaDataGroup metaData = _project->GetMetaDataGroup();
  246. try {
  247. Lib3MF::PMetaData versionInformation = metaData->GetMetaDataByKey(META_NAMESPACE, "format");
  248. } catch (Lib3MF::ELib3MFException &e) {
  249. // TODO: Alert not a TrackpointApp poject
  250. }
  251. Lib3MF::PMetaData optiTrackString;
  252. try {
  253. optiTrackString = metaData->GetMetaDataByKey(META_NAMESPACE, "optitrack");
  254. } catch (Lib3MF::ELib3MFException &e) {
  255. // TODO: Something is wrong with the file
  256. }
  257. auto optiTrackData = json::parse(optiTrackString->GetValue());
  258. _optiTrackPoints.clear();
  259. for (const auto pointData: optiTrackData) {
  260. osg::Vec3f point = osg::Vec3f(pointData["point"][0], pointData["point"][1], pointData["point"][2]);
  261. osg::Vec3f normal = osg::Vec3f(pointData["normal"][0], pointData["normal"][1], pointData["normal"][2]);
  262. osg::Vec3f normalModifier = osg::Vec3f(pointData["normalModifier"][0], pointData["normalModifier"][1], pointData["normalModifier"][2]);
  263. OptiTrackPoint* optiTrackPoint = new OptiTrackPoint(point, normal, normalModifier, static_cast<double>(pointData["length"]), static_cast<double>(pointData["radius"]));
  264. _optiTrackPoints.push_back(optiTrackPoint);
  265. }
  266. render3MFMesh();
  267. MainWindow::getInstance()->renderView(Edit);
  268. MainWindow::getInstance()->getOsgWidget()->getPointRenderer()->render(MainWindow::getInstance()->getEditWiget()->getSelectedTrackingSystem());
  269. MainWindow::getInstance()->getEditWiget()->updateTrackpointCount();
  270. }
  271. std::vector<float> ProjectStore::osgVecToStdVec(osg::Vec3f input) {
  272. std::vector<float> vector;
  273. vector.push_back(input.x());
  274. vector.push_back(input.y());
  275. vector.push_back(input.z());
  276. return vector;
  277. }
  278. osg::Vec3f ProjectStore::stdVecToOsgVec(std::vector<float> input) {
  279. return osg::Vec3f(input[0], input[1], input[2]);
  280. }