212 lines
5.4 KiB
Text
212 lines
5.4 KiB
Text
/*
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* scan_io_riegl_txt implementation
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*
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* Copyright (C) Thomas Escher, Kai Lingemann, Andreas Nuechter
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*
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* Released under the GPL version 3.
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*
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*/
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/**
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* @file
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* @brief Implementation of reading 3D scans
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* @author Kai Lingemann. Institute of Computer Science, University of Osnabrueck, Germany.
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* @author Andreas Nuechter. Institute of Computer Science, University of Osnabrueck, Germany.
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* @author Thomas Escher
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*/
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#include "scanio/scan_io_riegl_txt.h"
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#include <iostream>
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using std::cout;
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using std::cerr;
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using std::endl;
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#include <vector>
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#ifdef _MSC_VER
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#include <windows.h>
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#endif
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#include <boost/filesystem/operations.hpp>
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#include <boost/filesystem/fstream.hpp>
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using namespace boost::filesystem;
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#include "slam6d/globals.icc"
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#define DATA_PATH_PREFIX "scan"
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#define DATA_PATH_SUFFIX ".txt"
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#define POSE_PATH_PREFIX "scan"
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#define POSE_PATH_SUFFIX ".dat"
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std::list<std::string> ScanIO_riegl_txt::readDirectory(const char* dir_path, unsigned int start, unsigned int end)
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{
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std::list<std::string> identifiers;
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for(unsigned int i = start; i <= end; ++i) {
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// identifier is /d/d/d (000-999)
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std::string identifier(to_string(i,3));
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// scan consists of data (.3d) and pose (.pose) files
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path data(dir_path);
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data /= path(std::string(DATA_PATH_PREFIX) + identifier + DATA_PATH_SUFFIX);
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path pose(dir_path);
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pose /= path(std::string(POSE_PATH_PREFIX) + identifier + POSE_PATH_SUFFIX);
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// stop if part of a scan is missing or end by absence is detected
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if(!exists(data) || !exists(pose))
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break;
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identifiers.push_back(identifier);
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}
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return identifiers;
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}
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void ScanIO_riegl_txt::readPose(const char* dir_path, const char* identifier, double* pose)
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{
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unsigned int i;
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path pose_path(dir_path);
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pose_path /= path(std::string(POSE_PATH_PREFIX) + identifier + POSE_PATH_SUFFIX);
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if(!exists(pose_path))
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throw std::runtime_error(std::string("There is no pose file for [") + identifier + "] in [" + dir_path + "]");
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// open pose file
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ifstream pose_file(pose_path);
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// if the file is open, read contents
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if(pose_file.good()) {
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double rPos[3], rPosTheta[16];
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double inMatrix[16], tMatrix[16];
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for (i = 0; i < 16; ++i)
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pose_file >> inMatrix[i];
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pose_file.close();
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// transform input pose
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tMatrix[0] = inMatrix[5];
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tMatrix[1] = -inMatrix[9];
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tMatrix[2] = -inMatrix[1];
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tMatrix[3] = -inMatrix[13];
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tMatrix[4] = -inMatrix[6];
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tMatrix[5] = inMatrix[10];
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tMatrix[6] = inMatrix[2];
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tMatrix[7] = inMatrix[14];
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tMatrix[8] = -inMatrix[4];
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tMatrix[9] = inMatrix[8];
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tMatrix[10] = inMatrix[0];
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tMatrix[11] = inMatrix[12];
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tMatrix[12] = -inMatrix[7];
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tMatrix[13] = inMatrix[11];
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tMatrix[14] = inMatrix[3];
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tMatrix[15] = inMatrix[15];
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Matrix4ToEuler(tMatrix, rPosTheta, rPos);
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pose[0] = 100*rPos[0];
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pose[1] = 100*rPos[1];
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pose[2] = 100*rPos[2];
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pose[3] = rPosTheta[0];
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pose[4] = rPosTheta[1];
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pose[5] = rPosTheta[2];
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} else {
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throw std::runtime_error(std::string("Pose file could not be opened for [") + identifier + "] in [" + dir_path + "]");
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}
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}
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bool ScanIO_riegl_txt::supports(IODataType type)
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{
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return !!(type & (DATA_XYZ | DATA_REFLECTANCE));
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}
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void ScanIO_riegl_txt::readScan(const char* dir_path, const char* identifier, PointFilter& filter, std::vector<double>* xyz, std::vector<unsigned char>* rgb, std::vector<float>* reflectance, std::vector<float>* amplitude, std::vector<int>* type, std::vector<float>* deviation)
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{
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unsigned int i;
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// error handling
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path data_path(dir_path);
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data_path /= path(std::string(DATA_PATH_PREFIX) + identifier + DATA_PATH_SUFFIX);
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if(!exists(data_path))
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throw std::runtime_error(std::string("There is no scan file for [") + identifier + "] in [" + dir_path + "]");
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if(xyz != 0 || reflectance != 0) {
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// open data file
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ifstream data_file(data_path);
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data_file.exceptions(ifstream::eofbit|ifstream::failbit|ifstream::badbit);
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// read the point count
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unsigned int count;
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data_file >> count;
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// reserve enough space for faster reading
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xyz->reserve(3*count);
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// read points
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// z x y range theta phi reflectance
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double point[7];
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double tmp;
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while(data_file.good()) {
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try {
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for(i = 0; i < 7; ++i) data_file >> point[i];
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} catch(std::ios_base::failure& e) {
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break;
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}
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// the enemy's x/y/z is mapped to slam's z/x/y, shuffle time!
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// invert x axis
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// convert coordinate to cm
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tmp = point[2];
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point[2] = 100.0 * point[0];
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point[0] = -100.0 * point[1];
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point[1] = 100.0 * tmp;
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// apply filter and insert point
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if(filter.check(point)) {
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if(xyz != 0) {
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for(i = 0; i < 3; ++i) xyz->push_back(point[i]);
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}
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if(reflectance != 0) {
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reflectance->push_back(point[6]);
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}
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}
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}
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data_file.close();
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}
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}
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/**
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* class factory for object construction
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*
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* @return Pointer to new object
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*/
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#ifdef _MSC_VER
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extern "C" __declspec(dllexport) ScanIO* create()
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#else
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extern "C" ScanIO* create()
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#endif
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{
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return new ScanIO_riegl_txt;
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}
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/**
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* class factory for object construction
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*
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* @return Pointer to new object
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*/
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#ifdef _MSC_VER
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extern "C" __declspec(dllexport) void destroy(ScanIO *sio)
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#else
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extern "C" void destroy(ScanIO *sio)
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#endif
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{
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delete sio;
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}
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#ifdef _MSC_VER
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BOOL APIENTRY DllMain(HANDLE hModule, DWORD dwReason, LPVOID lpReserved)
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{
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return TRUE;
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}
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#endif
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