source: ntrip/trunk/BNC/qwt/qwt_point_polar.cpp@ 9489

Last change on this file since 9489 was 9383, checked in by stoecker, 4 years ago

update to qwt verion 6.1.1 to fix build with newer Qt5

File size: 3.1 KB
RevLine 
[4271]1/* -*- mode: C++ ; c-file-style: "stroustrup" -*- *****************************
2 * QwtPolar Widget Library
3 * Copyright (C) 2008 Uwe Rathmann
4 *
5 * This library is free software; you can redistribute it and/or
6 * modify it under the terms of the Qwt License, Version 1.0
7 *****************************************************************************/
8
9#include "qwt_point_polar.h"
10#include "qwt_math.h"
11
12#if QT_VERSION < 0x040601
13#define qAtan2(y, x) ::atan2(y, x)
14#endif
15
16/*!
17 Convert and assign values from a point in Cartesian coordinates
18
19 \param p Point in Cartesian coordinates
20 \sa setPoint(), toPoint()
21*/
22QwtPointPolar::QwtPointPolar( const QPointF &p )
23{
24 d_radius = qSqrt( qwtSqr( p.x() ) + qwtSqr( p.y() ) );
25 d_azimuth = qAtan2( p.y(), p.x() );
26}
27
28/*!
29 Convert and assign values from a point in Cartesian coordinates
30 \param p Point in Cartesian coordinates
31*/
32void QwtPointPolar::setPoint( const QPointF &p )
33{
34 d_radius = qSqrt( qwtSqr( p.x() ) + qwtSqr( p.y() ) );
35 d_azimuth = qAtan2( p.y(), p.x() );
36}
37
38/*!
39 Convert and return values in Cartesian coordinates
40
[8127]41 \return Converted point in Cartesian coordinates
42
[4271]43 \note Invalid or null points will be returned as QPointF(0.0, 0.0)
44 \sa isValid(), isNull()
45*/
46QPointF QwtPointPolar::toPoint() const
47{
48 if ( d_radius <= 0.0 )
49 return QPointF( 0.0, 0.0 );
50
51 const double x = d_radius * qCos( d_azimuth );
52 const double y = d_radius * qSin( d_azimuth );
53
54 return QPointF( x, y );
55}
56
57/*!
[8127]58 \brief Compare 2 points
[4271]59
60 Two points are equal to each other if radius and
61 azimuth-coordinates are the same. Points are not equal, when
62 the azimuth differs, but other.azimuth() == azimuth() % (2 * PI).
63
[8127]64 \return True if the point is equal to other; otherwise return false.
65
[4271]66 \sa normalized()
67*/
68bool QwtPointPolar::operator==( const QwtPointPolar &other ) const
69{
70 return d_radius == other.d_radius && d_azimuth == other.d_azimuth;
71}
72
73/*!
[8127]74 Compare 2 points
[4271]75
76 Two points are equal to each other if radius and
77 azimuth-coordinates are the same. Points are not equal, when
78 the azimuth differs, but other.azimuth() == azimuth() % (2 * PI).
79
[8127]80 \return True if the point is not equal to other; otherwise return false.
[4271]81 \sa normalized()
82*/
83bool QwtPointPolar::operator!=( const QwtPointPolar &other ) const
84{
85 return d_radius != other.d_radius || d_azimuth != other.d_azimuth;
86}
87
88/*!
89 Normalize radius and azimuth
90
91 When the radius is < 0.0 it is set to 0.0. The azimuth is
92 a value >= 0.0 and < 2 * M_PI.
[8127]93
94 \return Normalized point
[4271]95*/
96QwtPointPolar QwtPointPolar::normalized() const
97{
98 const double radius = qMax( d_radius, 0.0 );
99
100 double azimuth = d_azimuth;
101 if ( azimuth < -2.0 * M_PI || azimuth >= 2 * M_PI )
102 azimuth = ::fmod( d_azimuth, 2 * M_PI );
103
104 if ( azimuth < 0.0 )
105 azimuth += 2 * M_PI;
106
107 return QwtPointPolar( azimuth, radius );
108}
109
110#ifndef QT_NO_DEBUG_STREAM
111
112QDebug operator<<( QDebug debug, const QwtPointPolar &point )
113{
[9383]114 debug.nospace() << "QwtPointPolar("
[4271]115 << point.azimuth() << "," << point.radius() << ")";
116
117 return debug.space();
118}
119
120#endif
121
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