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https://github.com/ChronosX88/mta-mono.git
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Классы векторов
This commit is contained in:
parent
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<ClInclude Include="src\CMonoObject.h" />
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<ClInclude Include="src\CMonoObject.h" />
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<ClInclude Include="src\CResource.h" />
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<ClInclude Include="src\CResource.h" />
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<ClInclude Include="src\CResourceManager.h" />
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<ClInclude Include="src\CResourceManager.h" />
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<ClInclude Include="src\extra\Vector2.h" />
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<ClInclude Include="src\extra\Vector3.h" />
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<ClInclude Include="src\mta-mono.h" />
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<ClInclude Include="src\mta-mono.h" />
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<ClInclude Include="src\CFunctions.h" />
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<ClInclude Include="src\CFunctions.h" />
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<ClInclude Include="src\Common.h" />
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<ClInclude Include="src\Common.h" />
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157
mta-mono/src/extra/Vector2.h
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157
mta-mono/src/extra/Vector2.h
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/*****************************************************************************
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*
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* PROJECT: Multi Theft Auto v1.0
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* LICENSE: See LICENSE in the top level directory
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* FILE: sdk/CVector2D.h
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* PURPOSE: 2D vector class
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*
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* Multi Theft Auto is available from http://www.multitheftauto.com/
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*
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*****************************************************************************/
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#ifndef __CVector2D_H
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#define __CVector2D_H
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#include <cmath>
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#include "Vector3.h"
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/**
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* CVector2D Structure used to store a 2D vertex.
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*/
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class Vector2
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{
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public:
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Vector2 ( void )
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{
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fX = 0;
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fY = 0;
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}
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Vector2 ( float _fX, float _fY )
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{
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fX = _fX;
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fY = _fY;
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}
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float DotProduct ( Vector2& other ) const
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{
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return fX*other.fX + fY*other.fY;
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}
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float Length () const
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{
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return sqrt ( fX * fX + fY * fY );
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}
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float LengthSquared ( void ) const
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{
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return (fX*fX) + (fY*fY);
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}
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void Normalize ( void )
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{
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float fLength = Length ();
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if ( fLength > 0.0f )
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{
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fX /= fLength;
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fY /= fLength;
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}
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}
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Vector2 operator * ( float fRight ) const
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{
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return Vector2 ( fX * fRight, fY * fRight );
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}
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Vector2 operator / ( float fRight ) const
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{
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float fRcpValue = 1 / fRight;
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return Vector2 ( fX * fRcpValue, fY * fRcpValue );
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}
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Vector2 operator + ( const Vector2& vecRight ) const
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{
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return Vector2 ( fX + vecRight.fX, fY + vecRight.fY );
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}
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Vector2 operator - ( const Vector2& vecRight ) const
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{
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return Vector2 ( fX - vecRight.fX, fY - vecRight.fY );
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}
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Vector2 operator * ( const Vector2& vecRight ) const
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{
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return Vector2 ( fX * vecRight.fX, fY * vecRight.fY );
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}
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Vector2 operator / ( const Vector2& vecRight ) const
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{
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return Vector2 ( fX / vecRight.fX, fY / vecRight.fY );
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}
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void operator += ( float fRight )
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{
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fX += fRight;
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fY += fRight;
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}
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void operator += ( const Vector2& vecRight )
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{
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fX += vecRight.fX;
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fY += vecRight.fY;
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}
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void operator -= ( float fRight )
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{
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fX -= fRight;
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fY -= fRight;
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}
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void operator -= ( const Vector2& vecRight )
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{
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fX -= vecRight.fX;
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fY -= vecRight.fY;
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}
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void operator *= ( float fRight )
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{
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fX *= fRight;
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fY *= fRight;
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}
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void operator *= ( const Vector2& vecRight )
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{
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fX *= vecRight.fX;
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fY *= vecRight.fY;
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}
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void operator /= ( float fRight )
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{
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fX /= fRight;
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fY /= fRight;
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}
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void operator /= ( const Vector2& vecRight )
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{
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fX /= vecRight.fX;
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fY /= vecRight.fY;
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}
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bool operator== ( const Vector2& param ) const
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{
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return ( ( fabs ( fX - param.fX ) < FLOAT_EPSILON ) &&
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( fabs ( fY - param.fY ) < FLOAT_EPSILON ) );
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}
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bool operator!= ( const Vector2& param ) const
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{
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return ( ( fabs ( fX - param.fX ) >= FLOAT_EPSILON ) ||
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( fabs ( fY - param.fY ) >= FLOAT_EPSILON ) );
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}
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float fX;
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float fY;
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};
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#endif
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214
mta-mono/src/extra/Vector3.h
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214
mta-mono/src/extra/Vector3.h
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/*****************************************************************************
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*
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* PROJECT: Multi Theft Auto v1.0
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* LICENSE: See LICENSE in the top level directory
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* FILE: sdk/CVector.h
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* PURPOSE: 3D vector math implementation
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*
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* Multi Theft Auto is available from http://www.multitheftauto.com/
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*
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*****************************************************************************/
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#ifndef __CVector_H
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#define __CVector_H
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#ifdef WIN32
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#include <windows.h>
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#endif
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#include <math.h>
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#define FLOAT_EPSILON 0.0001f
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#define PI (3.14159265358979323846f)
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/**
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* CVector Structure used to store a 3D vertex.
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*/
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class Vector3
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{
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public:
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float fX, fY, fZ;
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Vector3 ()
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{
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this->fX = 0;
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this->fY = 0;
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this->fZ = 0;
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};
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Vector3 ( float fX, float fY, float fZ)
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{
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this->fX = fX;
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this->fY = fY;
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this->fZ = fZ;
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}
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float Normalize ( void )
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{
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float t = sqrt(fX*fX + fY*fY + fZ*fZ);
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if ( t > FLOAT_EPSILON )
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{
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float fRcpt = 1 / t;
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fX *= fRcpt;
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fY *= fRcpt;
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fZ *= fRcpt;
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}
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else
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t = 0;
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return t;
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}
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float Length ( void ) const
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{
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return sqrt ( (fX*fX) + (fY*fY) + (fZ*fZ) );
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}
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float LengthSquared ( void ) const
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{
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return (fX*fX) + (fY*fY) + (fZ*fZ);
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}
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float DotProduct ( const Vector3 * param ) const
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{
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return fX*param->fX + fY*param->fY + fZ*param->fZ;
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}
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void CrossProduct ( const Vector3 * param )
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{
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float _fX = fX, _fY = fY, _fZ = fZ;
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fX = _fY * param->fZ - param->fY * _fZ;
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fY = _fZ * param->fX - param->fZ * _fX;
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fZ = _fX * param->fY - param->fX * _fY;
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}
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// Convert (direction) to rotation
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Vector3 ToRotation ( void ) const
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{
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Vector3 vecRotation;
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vecRotation.fZ = atan2 ( fY, fX );
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Vector3 vecTemp ( sqrt ( fX * fX + fY * fY ), fZ, 0 );
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vecTemp.Normalize ();
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vecRotation.fY = atan2 ( vecTemp.fX, vecTemp.fY ) - PI / 2;
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return vecRotation;
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}
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// Return a perpendicular direction
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Vector3 GetOtherAxis ( void ) const
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{
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Vector3 vecResult;
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if ( abs( fX ) > abs( fY ) )
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vecResult = Vector3( fZ, 0, -fX );
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else
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vecResult = Vector3( 0, -fZ, fY );
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vecResult.Normalize();
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return vecResult;
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}
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Vector3 operator + ( const Vector3& vecRight ) const
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{
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return Vector3 ( fX + vecRight.fX, fY + vecRight.fY, fZ + vecRight.fZ );
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}
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Vector3 operator - ( const Vector3& vecRight ) const
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{
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return Vector3 ( fX - vecRight.fX, fY - vecRight.fY, fZ - vecRight.fZ );
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}
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Vector3 operator * ( const Vector3& vecRight ) const
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{
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return Vector3 ( fX * vecRight.fX, fY * vecRight.fY, fZ * vecRight.fZ );
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}
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Vector3 operator * ( float fRight ) const
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{
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return Vector3 ( fX * fRight, fY * fRight, fZ * fRight );
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}
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Vector3 operator / ( const Vector3& vecRight ) const
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{
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return Vector3 ( fX / vecRight.fX, fY / vecRight.fY, fZ / vecRight.fZ );
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}
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Vector3 operator / ( float fRight ) const
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{
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float fRcpValue = 1 / fRight;
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return Vector3 ( fX * fRcpValue, fY * fRcpValue, fZ * fRcpValue );
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}
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Vector3 operator - () const
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{
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return Vector3 ( -fX, -fY, -fZ );
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}
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void operator += ( float fRight )
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{
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fX += fRight;
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fY += fRight;
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fZ += fRight;
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}
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void operator += ( const Vector3& vecRight )
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{
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fX += vecRight.fX;
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fY += vecRight.fY;
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fZ += vecRight.fZ;
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}
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void operator -= ( float fRight )
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{
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fX -= fRight;
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fY -= fRight;
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fZ -= fRight;
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}
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void operator -= ( const Vector3& vecRight )
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{
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fX -= vecRight.fX;
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fY -= vecRight.fY;
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fZ -= vecRight.fZ;
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}
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void operator *= ( float fRight )
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{
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fX *= fRight;
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fY *= fRight;
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fZ *= fRight;
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}
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void operator *= ( const Vector3& vecRight )
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{
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fX *= vecRight.fX;
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fY *= vecRight.fY;
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fZ *= vecRight.fZ;
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}
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void operator /= ( float fRight )
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{
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float fRcpValue = 1 / fRight;
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fX *= fRcpValue;
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fY *= fRcpValue;
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fZ *= fRcpValue;
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}
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void operator /= ( const Vector3& vecRight )
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{
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fX /= vecRight.fX;
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fY /= vecRight.fY;
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fZ /= vecRight.fZ;
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}
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bool operator== ( const Vector3& param ) const
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{
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return ( ( fabs ( fX - param.fX ) < FLOAT_EPSILON ) &&
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( fabs ( fY - param.fY ) < FLOAT_EPSILON ) &&
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( fabs ( fZ - param.fZ ) < FLOAT_EPSILON ) );
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}
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bool operator!= ( const Vector3& param ) const
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{
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return ( ( fabs ( fX - param.fX ) >= FLOAT_EPSILON ) ||
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( fabs ( fY - param.fY ) >= FLOAT_EPSILON ) ||
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( fabs ( fZ - param.fZ ) >= FLOAT_EPSILON ) );
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}
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};
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#endif
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