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source: code/branches/tutorial2/src/orxonox/worldentities/AutonomousDrone.cc @ 7446

Last change on this file since 7446 was 7446, checked in by dafrick, 14 years ago

Removing all the stuff the students are supposed to fill in themselves.

File size: 6.6 KB
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1/*
2 *   ORXONOX - the hottest 3D action shooter ever to exist
3 *                    > www.orxonox.net <
4 *
5 *
6 *   License notice:
7 *
8 *   This program is free software; you can redistribute it and/or
9 *   modify it under the terms of the GNU General Public License
10 *   as published by the Free Software Foundation; either version 2
11 *   of the License, or (at your option) any later version.
12 *
13 *   This program is distributed in the hope that it will be useful,
14 *   but WITHOUT ANY WARRANTY; without even the implied warranty of
15 *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16 *   GNU General Public License for more details.
17 *
18 *   You should have received a copy of the GNU General Public License
19 *   along with this program; if not, write to the Free Software
20 *   Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301, USA.
21 *
22 *   Author:
23 *      Oli Scheuss
24 *   Co-authors:
25 *      Damian 'Mozork' Frick
26 *
27 */
28
29#include "AutonomousDrone.h"
30
31#include "core/CoreIncludes.h"
32#include "BulletDynamics/Dynamics/btRigidBody.h"
33
34namespace orxonox
35{
36    //TODO: Put your code in here:
37    // Create the factory for the drone.
38
39    /**
40    @brief
41        Constructor. Registers the object and initializes some default values.
42    @param creator
43        The creator of this object.
44    */
45    AutonomousDrone::AutonomousDrone(BaseObject* creator) : ControllableEntity(creator)
46    {
47        //TODO: Put your code in here:
48        // Register the drone class to the core.
49
50        this->myController_ = NULL;
51
52        this->localLinearAcceleration_.setValue(0, 0, 0);
53        this->localAngularAcceleration_.setValue(0, 0, 0);
54        this->primaryThrust_  = 100;
55        this->auxiliaryThrust_ = 100;
56        this->rotationThrust_ = 10;
57
58        this->setCollisionType(WorldEntity::Dynamic);
59
60        this->myController_ = new AutonomousDroneController(this); // Creates a new controller and passes our this pointer to it as creator.
61    }
62
63    /**
64    @brief
65        Destructor. Destroys controller, if present.
66    */
67    AutonomousDrone::~AutonomousDrone()
68    {
69        // Deletes the controller if the object was initialized and the pointer to the controller is not NULL.
70        if( this->isInitialized() && this->myController_ != NULL )
71            delete this->myController_;
72    }
73
74    /**
75    @brief
76        Method for creating a AutonomousDrone through XML.
77    */
78    void AutonomousDrone::XMLPort(Element& xmlelement, XMLPort::Mode mode)
79    {
80        // This calls the XMLPort function of the parent class
81        SUPER(AutonomousDrone, XMLPort, xmlelement, mode);
82
83        XMLPortParam(AutonomousDrone, "primaryThrust", setPrimaryThrust, getPrimaryThrust, xmlelement, mode);
84        //TODO: Put your code in here:
85        // Make sure you add the variables auxiliaryThrust_ and rotationThrust_ to XMLPort.
86        // Make sure that the set- and get-functions exist.
87        // Variables can be added by the following command
88        // XMLPortParam(Classname, "xml-attribute-name (i.e. variablename)", setFunction, getFunction, xmlelement, mode)
89
90    }
91
92    /**
93    @brief
94        Defines which actions the AutonomousDrone has to take in each tick.
95    @param dt
96        The length of the tick.
97    */
98    void AutonomousDrone::tick(float dt)
99    {
100        SUPER(AutonomousDrone, tick, dt);
101
102        this->localLinearAcceleration_.setX(this->localLinearAcceleration_.x() * getMass() * this->auxiliaryThrust_);
103        this->localLinearAcceleration_.setY(this->localLinearAcceleration_.y() * getMass() * this->auxiliaryThrust_);
104        if (this->localLinearAcceleration_.z() > 0)
105            this->localLinearAcceleration_.setZ(this->localLinearAcceleration_.z() * getMass() * this->auxiliaryThrust_);
106        else
107            this->localLinearAcceleration_.setZ(this->localLinearAcceleration_.z() * getMass() * this->primaryThrust_);
108        this->physicalBody_->applyCentralForce(physicalBody_->getWorldTransform().getBasis() * this->localLinearAcceleration_);
109        this->localLinearAcceleration_.setValue(0, 0, 0);
110
111        this->localAngularAcceleration_ *= this->getLocalInertia() * this->rotationThrust_;
112        this->physicalBody_->applyTorque(physicalBody_->getWorldTransform().getBasis() * this->localAngularAcceleration_);
113        this->localAngularAcceleration_.setValue(0, 0, 0);
114    }
115
116    /**
117    @brief
118        Moves the AutonomousDrone in the negative z-direction (Front/Back) by an amount specified by the first component of the input 2-dim vector.
119    @param value
120        The vector determining the amount of the movement.
121    */
122    void AutonomousDrone::moveFrontBack(const Vector2& value)
123    {
124        this->localLinearAcceleration_.setZ(this->localLinearAcceleration_.z() - value.x);
125    }
126
127    /**
128    @brief
129        Moves the AutonomousDrone in the x-direction (Right/Left) by an amount specified by the first component of the input 2-dim vector.
130    @param value
131        The vector determining the amount of the movement.
132    */
133    void AutonomousDrone::moveRightLeft(const Vector2& value)
134    {
135        this->localLinearAcceleration_.setX(this->localLinearAcceleration_.x() + value.x);
136    }
137
138    /**
139    @brief
140        Moves the AutonomousDrone in the y-direction (Up/Down) by an amount specified by the first component of the input 2-dim vector.
141    @param value
142        The vector determining the amount of the movement.
143    */
144    void AutonomousDrone::moveUpDown(const Vector2& value)
145    {
146        this->localLinearAcceleration_.setY(this->localLinearAcceleration_.y() + value.x);
147    }
148
149    /**
150    @brief
151        Rotates the AutonomousDrone around the y-axis by the amount specified by the first component of the input 2-dim vector.
152    @param value
153        The vector determining the amount of the angular movement.
154    */
155    void AutonomousDrone::rotateYaw(const Vector2& value)
156    {
157        this->localAngularAcceleration_.setY(this->localAngularAcceleration_.y() - value.x);
158    }
159
160    /**
161    @brief
162        Rotates the AutonomousDrone around the x-axis by the amount specified by the first component of the input 2-dim vector.
163    @param value
164        The vector determining the amount of the angular movement.
165    */
166    void AutonomousDrone::rotatePitch(const Vector2& value)
167    {
168        this->localAngularAcceleration_.setX(this->localAngularAcceleration_.x() + value.x);
169    }
170
171    /**
172    @brief
173        Rotates the AutonomousDrone around the z-axis by the amount specified by the first component of the input 2-dim vector.
174    @param value
175        The vector determining the amount of the angular movement.
176    */
177    void AutonomousDrone::rotateRoll(const Vector2& value)
178    {
179        this->localAngularAcceleration_.setZ(this->localAngularAcceleration_.z() + value.x);
180    }
181
182}
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