/usr/include/visp/vpLaserScan.h is in libvisp-dev 2.9.0-3+b2.
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*
* $Id: vpLaserScan.h 4649 2014-02-07 14:57:11Z fspindle $
*
* This file is part of the ViSP software.
* Copyright (C) 2005 - 2014 by INRIA. All rights reserved.
*
* This software is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* ("GPL") version 2 as published by the Free Software Foundation.
* See the file LICENSE.txt at the root directory of this source
* distribution for additional information about the GNU GPL.
*
* For using ViSP with software that can not be combined with the GNU
* GPL, please contact INRIA about acquiring a ViSP Professional
* Edition License.
*
* See http://www.irisa.fr/lagadic/visp/visp.html for more information.
*
* This software was developed at:
* INRIA Rennes - Bretagne Atlantique
* Campus Universitaire de Beaulieu
* 35042 Rennes Cedex
* France
* http://www.irisa.fr/lagadic
*
* If you have questions regarding the use of this file, please contact
* INRIA at visp@inria.fr
*
* This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
* WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
*
*
* Description:
* Laser scan data structure.
*
* Authors:
* Fabien Spindler
*
*****************************************************************************/
#ifndef vpLaserScan_h
#define vpLaserScan_h
/*!
\file vpLaserScan.h
\brief Implements a laser scan data structure.
*/
#include "visp/vpScanPoint.h"
#include <vector>
/*!
\class vpLaserScan
\brief Implements a laser scan data structure that contains
especially the list of scanned points that have been recorded for
this laser scan.
Other data as the start/stop angle, the start/end timestamp are
also considered.
*/
class VISP_EXPORT vpLaserScan
{
public:
/*! Default constructor that initialize all the internal variable to zero. */
vpLaserScan()
: listScanPoints(), startTimestamp(0), endTimestamp(0), measurementId(0),
numSteps(0), startAngle(0), stopAngle(0), numPoints(0)
{
}
/*! Copy constructor. */
vpLaserScan(const vpLaserScan &scan)
: listScanPoints(), startTimestamp(0), endTimestamp(0), measurementId(0),
numSteps(0), startAngle(0), stopAngle(0), numPoints(0)
{
startTimestamp = scan.startTimestamp;
endTimestamp = scan.endTimestamp;
measurementId = scan.measurementId;
numSteps = scan.numSteps;
startAngle = scan.startAngle;
stopAngle = scan.stopAngle;
numPoints = scan.numPoints;
listScanPoints = scan.listScanPoints;
}
/*! Default destructor that does nothing. */
virtual ~vpLaserScan() {};
/*! Add the scan point at the end of the list. */
inline void addPoint(const vpScanPoint &p) {
listScanPoints.push_back( p );
}
/*! Drop the list of points. */
inline void clear() {
listScanPoints.clear( );
}
/*! Get the list of points. */
inline std::vector<vpScanPoint> getScanPoints() {
return listScanPoints;
}
/*! Specifies the id of former measurements and increases with
every measurement. */
inline void setMeasurementId(const unsigned short &id) {
this->measurementId = id;
}
/*! Start time of measurement. */
inline void setStartTimestamp(const double &start_timestamp) {
this->startTimestamp = start_timestamp;
}
/*! End time of measurement. */
inline void setEndTimestamp(const double &end_timestamp) {
this->endTimestamp = end_timestamp;
}
/*! Angular steps per scanner rotation. */
inline void setNumSteps(const unsigned short &num_steps) {
this->numSteps = num_steps;
}
/*! Start angle of the measurement in angular steps. */
inline void setStartAngle(const short &start_angle) {
this->startAngle = start_angle;
}
/*! Stop angle of the measurement in angular steps. */
inline void setStopAngle(const short &stop_angle) {
this->stopAngle = stop_angle;
}
/*! Number of measured points of the measurement. */
inline void setNumPoints(const unsigned short &num_points) {
this->numPoints = num_points;
}
/*! Return the measurement start time. */
inline double getStartTimestamp() {
return startTimestamp;
}
/*! Return the measurement end time. */
inline double getEndTimestamp() {
return endTimestamp;
}
private:
std::vector<vpScanPoint> listScanPoints;
double startTimestamp;
double endTimestamp;
unsigned short measurementId;
unsigned short numSteps;
short startAngle;
short stopAngle;
unsigned short numPoints;
};
#endif
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