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source: code/trunk/src/modules/objects/ForceField.h @ 11071

Last change on this file since 11071 was 11071, checked in by landauf, 8 years ago

merged branch cpp11_v3 back to trunk

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[9939]1
[2954]2/*
3 *   ORXONOX - the hottest 3D action shooter ever to exist
4 *                    > www.orxonox.net <
5 *
6 *
7 *   License notice:
8 *
9 *   This program is free software; you can redistribute it and/or
10 *   modify it under the terms of the GNU General Public License
11 *   as published by the Free Software Foundation; either version 2
12 *   of the License, or (at your option) any later version.
13 *
14 *   This program is distributed in the hope that it will be useful,
15 *   but WITHOUT ANY WARRANTY; without even the implied warranty of
16 *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17 *   GNU General Public License for more details.
18 *
19 *   You should have received a copy of the GNU General Public License
20 *   along with this program; if not, write to the Free Software
21 *   Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301, USA.
22 *
23 *   Author:
24 *      Aurelian Jaggi
25 *   Co-authors:
[7673]26 *      Damian 'Mozork' Frick
[8397]27 *      Kevin Young
[2954]28 *
29 */
30
[7601]31/**
32    @file ForceField.h
33    @brief Definition of the ForceField class.
34    @ingroup Objects
35*/
[2954]36
37#ifndef _ForceField_H__
38#define _ForceField_H__
39
[5730]40#include "objects/ObjectsPrereqs.h"
[3196]41
[5693]42#include "tools/interfaces/Tickable.h"
[5735]43#include "worldentities/StaticEntity.h"
[2954]44
45namespace orxonox
46{
[7673]47
48    /**
49    @brief
50        The mode of the ForceField.
[7676]51
52    @ingroup Objects
[7673]53    */
[11071]54    enum class ForceFieldMode {
55        tube, //!< The ForceField has a tube shape.
56        sphere, //!< The ForceField has a spherical shape.
57        invertedSphere, //!< The ForceField has a spherical shape but "inverted" behavior.
58        newtonianGravity, //!< The ForceField imitates Newtonian gravitation for use in stellar bodies.
59        homogen //!< Local homogenous Force field with changeable direction for the Space Station
60    };
[7673]61
62    /**
63    @brief
[7678]64        Implements a force field, that applies a force to any @ref orxonox::MobileEntity "MobileEntity" that enters its range.
[7676]65
[7673]66        The following parameters can be set to specify the behavior of the ForceField.
[9939]67        - @b forcedirection The direction and the strength of the homogenous force field. Default is 0,-400,0.
[7676]68        - @b velocity The amount of force the ForceField excerts. Default is 100.
69        - @b diameter The diameter of the ForceField. Default is 500.
70        - @b length The length of the ForceField. Default is 2000.
[7673]71        - @b mode The mode the ForceField is in. For mode:
[7677]72            - <em>tube</em> A ForceField which exerts force only in the direction it is oriented. The force is only exerted on objects that are in a tube of length <em>length</em> and diameter <em>diameter</em> (with rounded start and end faces, so in fact the <em>length</em> parameter specifies a ball with <code>origin + length/2</code> as the center and <code>length/2</code> as the radius). The magintude of the force is proportional to the <em>velocity</em>, being highest when an object is in the middle of the tube (radius-wise), linearly decreasing with greater radii and finally reaching zero, when the object is <code>diameter/2</code> away from the orientation vector.
[7676]73            - <em>sphere</em> A Force Field which exerts force radially away from itself, with the greatest magnitude (proportional to <em>velocity</em>) being in the origin of the ForceField, linearly decreasing with respect to the distance to the origin and finally reaching zero at distance <code>diameter/2</code>.
74            Default is <em>tube</em>.
[7678]75            - <em>invertedSphere</em> A ForceField which excerts force radially towards itself, with the highest force at the boundary of the sphere, linear decreasing until reaching a distance of <code>radius-length</code> from the origin, where the force reaches zero.
[7676]76
[7673]77    @author
78        Aurelian Jaggi
[7676]79
[7673]80    @author
81        Damian 'Mozork' Frick
[7676]82
83    @ingroup Objects
[7673]84    */
[5730]85    class _ObjectsExport ForceField : public StaticEntity, public Tickable
[3064]86    {
[7673]87        public:
[9667]88            ForceField(Context* context);
[7673]89            virtual ~ForceField();
[2954]90
[11071]91            virtual void XMLPort(Element& xmlelement, XMLPort::Mode mode) override; //!< Creates a ForceField object through XML.
[7801]92            void registerVariables(); //!< Registers the variables that should get synchronised over the network
[11071]93            virtual void tick(float dt) override; //!< A method that is called every tick.
[7801]94           
[7676]95
96            /**
97            @brief Set the velocity of the ForceField.
98            @param vel The velocity to be set.
99            */
[7673]100            inline void setVelocity(float vel)
101                { this->velocity_ = vel; }
[7676]102            /**
103            @brief Get the velocity of the ForceField.
104            @return Returns the velocity of the ForceField.
105            */
[7673]106            inline float getVelocity()
107                { return this->velocity_; }
[5693]108
[7676]109            /**
[8397]110            @brief Set the diameter of the ForceField. In mode StellarBody this stands for the outer radius.
[7676]111            @param diam The diameter to be set.
112            */
[7673]113            inline void setDiameter(float diam)
[7676]114                { this->radius_ = diam/2; }
115            /**
[8397]116            @brief Get the diameter of the ForceField. In mode StellarBody this stands for the outer radius.
[7676]117            @return Returns the diameter of the ForceField.
118            */
[7673]119            inline float getDiameter()
[7676]120                { return this->radius_*2; }
[8397]121       
122            /**
123            @brief Set the diameter of the stellar body for the Newtonian ForceField.
124            @param massDiam The diameter of the stellar body.
125            */
126            inline void setMassDiameter(float massDiam)
127                { this->massRadius_ = massDiam/2; }
128       
129            /**
130            @brief Get the diameter of the stellar body for the Newtonian ForceField.
131            @return float Returns the diameter of the stellar body.
132            */
133            inline float getMassDiameter()
134                { return this->massRadius_*2; }
[5693]135
[7676]136            /**
137            @brief Set the length of the ForceField.
138            @param l The length to be set.
139            */
[7673]140            inline void setLength(float l)
[7676]141                { this->halfLength_ = l/2; }
142            /**
143            @brief Get the length of the ForceField.
144            @return Returns the length of the ForceField.
145            */
[7673]146            inline float getLength()
[7676]147                { return this->halfLength_*2; }
[2954]148
[9939]149            inline void setForceDirection(Vector3 forcedir)
150                { this->forceDirection_ = forcedir; }
151
152            inline Vector3 getForceDirection()
153                { return this->forceDirection_; }
154
155
[7676]156            void setMode(const std::string& mode); //!< Set the mode of the ForceField.
157            const std::string& getMode(void); //!< Get the mode of the ForceField.
158
159            //! Strings to represent the modes.
[7674]160            static const std::string modeTube_s;
161            static const std::string modeSphere_s;
[7677]162            static const std::string modeInvertedSphere_s;
[8397]163            static const std::string modeNewtonianGravity_s;
[9939]164            static const std::string modeHomogen_s;
165
[10622]166        private:
[7676]167            float velocity_; //!< The velocity of the ForceField.
168            float radius_; //!< The radius of the ForceField.
[8397]169            float massRadius_; //!< The radius of the stellar body for the Newtonian ForceField.
[7676]170            float halfLength_; //!< Half of the length of the ForceField.
[11071]171            ForceFieldMode mode_; //!< The mode of the ForceField.
[8397]172           
173            //! Gravitational constant for Newtonian ForceFields.
174            static const float gravConstant_;
175            //! Attenuation factor for Newtonian ForceFields
176            static const float attenFactor_;
[9939]177            Vector3 forceDirection_;
[2954]178  };
179}
180
181#endif
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