b1f478e5d2
that used it, all references to the Standard C++ stream classes use the std::ostream etc convention, all references to "using namespace std" and "using namespace std::ostream etc" have been removed.
161 lines
4.4 KiB
Plaintext
161 lines
4.4 KiB
Plaintext
//C++ header - Open Scene Graph - Copyright (C) 1998-2001 Robert Osfield
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//Distributed under the terms of the GNU Library General Public License (LGPL)
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//as published by the Free Software Foundation.
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#ifndef OSG_VEC2
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#define OSG_VEC2 1
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#include <osg/Math>
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#include <iostream>
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namespace osg {
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/** General purpose float pair, uses include representation of
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texture coordinates.
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No support yet added for float * Vec2 - is it necessary?
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Need to define a non-member non-friend operator* etc.
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BTW: Vec2 * float is okay
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*/
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class Vec2
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{
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public:
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Vec2() {} // no operations done to maintain speed
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Vec2(float x,float y) { _v[0]=x; _v[1]=y; }
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float _v[2];
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inline const bool operator == (const Vec2& v) const { return _v[0]==v._v[0] && _v[1]==v._v[1]; }
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inline const bool operator != (const Vec2& v) const { return _v[0]!=v._v[0] || _v[1]!=v._v[1]; }
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inline const bool operator < (const Vec2& v) const
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{
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if (_v[0]<v._v[0]) return true;
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else if (_v[0]>v._v[0]) return false;
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else return (_v[1]<v._v[1]);
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}
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inline float* ptr() { return _v; }
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inline const float* ptr() const { return _v; }
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inline void set( float x, float y ) { _v[0]=x; _v[1]=y; }
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inline float& operator [] (int i) { return _v[i]; }
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inline const float operator [] (int i) const { return _v[i]; }
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inline float& x() { return _v[0]; }
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inline float& y() { return _v[1]; }
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inline const float x() const { return _v[0]; }
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inline const float y() const { return _v[1]; }
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inline const bool valid() const { return !isNaN() && !isInfinite(); }
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inline const bool isNaN() const { return osg::isNaN(_v[0]) || osg::isNaN(_v[1]); }
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inline const bool isInfinite() const { return osg::isInfinite(_v[0]) || osg::isInfinite(_v[1]); }
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/// dot product
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inline const float operator * (const Vec2& rhs) const
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{
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return _v[0]*rhs._v[0]+_v[1]*rhs._v[1];
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}
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/// multiply by scalar
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inline const Vec2 operator * (const float& rhs) const
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{
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return Vec2(_v[0]*rhs, _v[1]*rhs);
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}
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/// unary multiply by scalar
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inline Vec2& operator *= (const float& rhs)
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{
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_v[0]*=rhs;
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_v[1]*=rhs;
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return *this;
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}
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/// divide by scalar
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inline const Vec2 operator / (const float& rhs) const
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{
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return Vec2(_v[0]/rhs, _v[1]/rhs);
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}
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/// unary divide by scalar
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inline Vec2& operator /= (const float& rhs)
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{
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_v[0]/=rhs;
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_v[1]/=rhs;
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return *this;
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}
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/// binary vector add
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inline const Vec2 operator + (const Vec2& rhs) const
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{
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return Vec2(_v[0]+rhs._v[0], _v[1]+rhs._v[1]);
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}
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/** unary vector add. Slightly more efficient because no temporary
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intermediate object.*/
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inline Vec2& operator += (const Vec2& rhs)
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{
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_v[0] += rhs._v[0];
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_v[1] += rhs._v[1];
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return *this;
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}
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/// binary vector subtract
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inline const Vec2 operator - (const Vec2& rhs) const
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{
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return Vec2(_v[0]-rhs._v[0], _v[1]-rhs._v[1]);
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}
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/// unary vector subtract
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inline Vec2& operator -= (const Vec2& rhs)
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{
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_v[0]-=rhs._v[0];
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_v[1]-=rhs._v[1];
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return *this;
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}
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/// negation operator. Returns the negative of the Vec2
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inline const Vec2 operator - () const
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{
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return Vec2 (-_v[0], -_v[1]);
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}
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/// Length of the vector = sqrt( vec . vec )
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inline const float length() const
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{
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return sqrtf( _v[0]*_v[0] + _v[1]*_v[1] );
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}
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/// Length squared of the vector = vec . vec
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inline const float length2( void ) const
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{
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return _v[0]*_v[0] + _v[1]*_v[1];
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}
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/** normalize the vector so that it has length unity
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returns the previous length of the vector*/
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inline const float normalize()
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{
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float norm = Vec2::length();
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_v[0] /= norm;
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_v[1] /= norm;
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return( norm );
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}
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friend inline std::ostream& operator << (std::ostream& output, const Vec2& vec)
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{
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output << vec._v[0] << " "
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<< vec._v[1];
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return output; // to enable cascading
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}
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}; // end of class Vec2
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} // end of namespace osg
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#endif
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