/** * @file * @brief Implementation of reading 3D scans * @author Kai Lingemann. Institute of Computer Science, University of Osnabrueck, Germany. * @author Andreas Nuechter. Institute of Computer Science, University of Osnabrueck, Germany. * @author Jochen Sprickerhof */ #include "slam6d/scan_io_uos_frames.h" #include "slam6d/globals.icc" #include using std::ifstream; #include using std::cout; using std::cerr; using std::endl; #include using std::exception; #ifdef _MSC_VER #include #endif /** * Reads specified scans from given directory. * * Scan poses will NOT be initialized after a call * to this function. * * This function actually implements loading of 3D scans * in UOS file format and will be compiled as shared lib. * * @param start Starts to read with this scan * @param end Stops with this scan * @param dir The directory from which to read * @param maxDist Reads only Points up to this Distance * @param minDist Reads only Points from this Distance * @param euler Initital pose estimates (will not be applied to the points * @param ptss Vector containing the read points */ int ScanIO_uos_frames::readScans(int start, int end, string &dir, int maxDist, int mindist, double *euler, vector &ptss) { static int fileCounter = start; string scanFileName; string framesFileName; ifstream scan_in, frames_in; double maxDist2 = sqr(maxDist); int my_fileNr = fileCounter; double transMat[16]; int type; if (end > -1 && fileCounter > end) return -1; // 'nuf read scanFileName = dir + "scan" + to_string(fileCounter,3) + ".3d"; framesFileName = dir + "scan" + to_string(fileCounter,3) + ".frames"; scan_in.open(scanFileName.c_str()); frames_in.open(framesFileName.c_str()); // read 3D scan if (!frames_in.good() && !scan_in.good()) return -1; // no more files in the directory if (!frames_in.good()) { cerr << "ERROR: Missing file " << framesFileName << endl; exit(1); } if (!scan_in.good()) { cerr << "ERROR: Missing file " << scanFileName << endl; exit(1); } cout << "Processing Scan " << scanFileName; while(frames_in) { try { frames_in >> transMat >> type; } catch(const exception &e) { break; } } Matrix4ToEuler(transMat, &euler[3], euler); cout << " @ pose (" << euler[0] << "," << euler[1] << "," << euler[2] << "," << euler[3] << "," << euler[4] << "," << euler[5] << ")" << endl; // overread the first line char dummy[255]; scan_in.getline(dummy, 255); while (scan_in.good()) { Point p; try { scan_in >> p; } catch (...) { break; } // load points up to a certain distance only // maxDist2 = -1 indicates no limitation if (maxDist == -1 || sqr(p.x) + sqr(p.y) + sqr(p.z) < maxDist2) ptss.push_back(p); } scan_in.close(); scan_in.clear(); frames_in.close(); frames_in.clear(); fileCounter++; return my_fileNr; } /** * class factory for object construction * * @return Pointer to new object */ #ifdef _MSC_VER extern "C" __declspec(dllexport) ScanIO* create() #else extern "C" ScanIO* create() #endif { return new ScanIO_uos_frames; } /** * class factory for object construction * * @return Pointer to new object */ #ifdef _MSC_VER extern "C" __declspec(dllexport) void destroy(ScanIO *sio) #else extern "C" void destroy(ScanIO *sio) #endif { delete sio; } #ifdef _MSC_VER BOOL APIENTRY DllMain(HANDLE hModule, DWORD dwReason, LPVOID lpReserved) { return TRUE; } #endif