[4272] | 1 | /* -*- mode: C++ ; c-file-style: "stroustrup" -*- *****************************
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| 2 | * QwtPolar Widget Library
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| 3 | * Copyright (C) 2008 Uwe Rathmann
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| 4 | *
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| 5 | * This library is free software; you can redistribute it and/or
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| 6 | * modify it under the terms of the Qwt License, Version 1.0
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| 7 | *****************************************************************************/
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| 8 |
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| 9 | #include "qwt_polar_spectrogram.h"
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| 10 | #include "qwt_polar.h"
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| 11 | #include "qwt_polar_plot.h"
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| 12 | #include <qwt_color_map.h>
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| 13 | #include <qwt_scale_map.h>
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| 14 | #include <qwt_raster_data.h>
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| 15 | #include <qwt_math.h>
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| 16 | #include <qpainter.h>
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| 17 | #if QT_VERSION >= 0x040400
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| 18 | #include <qthread.h>
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| 19 | #include <qfuture.h>
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| 20 | #include <qtconcurrentrun.h>
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| 21 | #endif
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| 22 |
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| 23 | #if QWT_VERSION < 0x060100
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| 24 |
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| 25 | static inline double qwtFastAtan( double x )
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| 26 | {
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| 27 | if ( x < -1.0 )
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| 28 | return -M_PI_2 - x / ( x * x + 0.28 );
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| 29 |
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| 30 | if ( x > 1.0 )
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| 31 | return M_PI_2 - x / ( x * x + 0.28 );
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| 32 |
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| 33 | return x / ( 1.0 + x * x * 0.28 );
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| 34 | }
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| 35 |
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| 36 | static inline double qwtFastAtan2( double y, double x )
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| 37 | {
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| 38 | if ( x > 0 )
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| 39 | return qwtFastAtan( y / x );
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| 40 |
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| 41 | if ( x < 0 )
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| 42 | {
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| 43 | const double d = qwtFastAtan( y / x );
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| 44 | return ( y >= 0 ) ? d + M_PI : d - M_PI;
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| 45 | }
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| 46 |
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| 47 | if ( y < 0.0 )
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| 48 | return -M_PI_2;
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| 49 |
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| 50 | if ( y > 0.0 )
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| 51 | return M_PI_2;
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| 52 |
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| 53 | return 0.0;
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| 54 | }
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| 55 |
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| 56 | #endif // QWT_VERSION < 0x060100
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| 57 |
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| 58 | #if QT_VERSION < 0x040601
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| 59 | #define qAtan2(y, x) ::atan2(y, x)
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| 60 | #endif
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| 61 |
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| 62 | static bool qwtNeedsClipping( const QRectF &plotRect, const QRectF &rect )
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| 63 | {
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| 64 | QPointF points[4];
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| 65 | points[0] = rect.topLeft();
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| 66 | points[1] = rect.topRight();
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| 67 | points[2] = rect.bottomLeft();
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| 68 | points[3] = rect.bottomRight();
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| 69 |
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| 70 | const double radius = plotRect.width() / 2.0;
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| 71 | const QPointF pole = plotRect.center();
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| 72 |
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| 73 | for ( int i = 0; i < 4; i++ )
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| 74 | {
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| 75 | const double dx = points[i].x() - pole.x();
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| 76 | const double dy = points[i].y() - pole.y();
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| 77 |
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| 78 | if ( qSqrt( dx * dx + dy * dy ) > radius )
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| 79 | return true;
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| 80 | }
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| 81 |
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| 82 | return false;
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| 83 | }
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| 84 |
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| 85 | class QwtPolarSpectrogram::TileInfo
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| 86 | {
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| 87 | public:
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| 88 | QPoint imagePos;
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| 89 | QRect rect;
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| 90 | QImage *image;
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| 91 | };
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| 92 |
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| 93 | class QwtPolarSpectrogram::PrivateData
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| 94 | {
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| 95 | public:
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| 96 | PrivateData():
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| 97 | data( NULL ),
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| 98 | renderThreadCount( 1 )
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| 99 | {
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| 100 | colorMap = new QwtLinearColorMap();
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| 101 | }
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| 102 |
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| 103 | ~PrivateData()
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| 104 | {
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| 105 | delete data;
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| 106 | delete colorMap;
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| 107 | }
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| 108 |
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| 109 | QwtRasterData *data;
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| 110 | QwtColorMap *colorMap;
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| 111 |
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| 112 | uint renderThreadCount;
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| 113 |
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| 114 | QwtPolarSpectrogram::PaintAttributes paintAttributes;
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| 115 | };
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| 116 |
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| 117 | //! Constructor
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| 118 | QwtPolarSpectrogram::QwtPolarSpectrogram():
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| 119 | QwtPolarItem( QwtText( "Spectrogram" ) )
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| 120 | {
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| 121 | d_data = new PrivateData;
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| 122 |
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| 123 | setItemAttribute( QwtPolarItem::AutoScale );
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| 124 | setItemAttribute( QwtPolarItem::Legend, false );
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| 125 |
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| 126 | setZ( 20.0 );
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| 127 | }
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| 128 |
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| 129 | //! Destructor
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| 130 | QwtPolarSpectrogram::~QwtPolarSpectrogram()
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| 131 | {
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| 132 | delete d_data;
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| 133 | }
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| 134 |
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| 135 | //! \return QwtPolarItem::Rtti_PolarSpectrogram
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| 136 | int QwtPolarSpectrogram::rtti() const
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| 137 | {
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| 138 | return QwtPolarItem::Rtti_PolarSpectrogram;
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| 139 | }
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| 140 |
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| 141 | /*!
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| 142 | Set the data to be displayed
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| 143 |
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| 144 | \param data Spectrogram Data
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| 145 | \sa data()
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| 146 |
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| 147 | \warning QwtRasterData::initRaster() is called each time before the
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| 148 | image is rendered, but without any useful parameters.
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| 149 | Also QwtRasterData::rasterHint() is not used.
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| 150 | */
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| 151 | void QwtPolarSpectrogram::setData( QwtRasterData *data )
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| 152 | {
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| 153 | if ( data != d_data->data )
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| 154 | {
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| 155 | delete d_data->data;
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| 156 | d_data->data = data;
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| 157 |
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| 158 | itemChanged();
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| 159 | }
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| 160 | }
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| 161 |
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| 162 | /*!
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| 163 | \return Spectrogram data
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| 164 | \sa setData()
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| 165 | */
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| 166 | const QwtRasterData *QwtPolarSpectrogram::data() const
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| 167 | {
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| 168 | return d_data->data;
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| 169 | }
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| 170 |
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| 171 | /*!
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| 172 | Change the color map
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| 173 |
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| 174 | Often it is useful to display the mapping between intensities and
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| 175 | colors as an additional plot axis, showing a color bar.
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| 176 |
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| 177 | \param colorMap Color Map
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| 178 |
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| 179 | \sa colorMap(), QwtScaleWidget::setColorBarEnabled(),
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| 180 | QwtScaleWidget::setColorMap()
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| 181 | */
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| 182 | void QwtPolarSpectrogram::setColorMap( QwtColorMap *colorMap )
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| 183 | {
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| 184 | if ( d_data->colorMap != colorMap )
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| 185 | {
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| 186 | delete d_data->colorMap;
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| 187 | d_data->colorMap = colorMap;
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| 188 | }
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| 189 |
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| 190 | itemChanged();
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| 191 | }
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| 192 |
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| 193 | /*!
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| 194 | \return Color Map used for mapping the intensity values to colors
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| 195 | \sa setColorMap()
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| 196 | */
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| 197 | const QwtColorMap *QwtPolarSpectrogram::colorMap() const
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| 198 | {
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| 199 | return d_data->colorMap;
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| 200 | }
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| 201 |
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| 202 | /*!
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| 203 | Specify an attribute how to draw the curve
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| 204 |
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| 205 | \param attribute Paint attribute
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| 206 | \param on On/Off
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| 207 | \sa testPaintAttribute()
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| 208 | */
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| 209 | void QwtPolarSpectrogram::setPaintAttribute( PaintAttribute attribute, bool on )
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| 210 | {
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| 211 | if ( on )
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| 212 | d_data->paintAttributes |= attribute;
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| 213 | else
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| 214 | d_data->paintAttributes &= ~attribute;
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| 215 | }
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| 216 |
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| 217 | /*!
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| 218 | \param attribute Paint attribute
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| 219 | \return True, when attribute has been set
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| 220 | \sa setPaintAttribute()
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| 221 | */
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| 222 | bool QwtPolarSpectrogram::testPaintAttribute( PaintAttribute attribute ) const
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| 223 | {
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| 224 | return ( d_data->paintAttributes & attribute );
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| 225 | }
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| 226 |
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| 227 | /*!
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| 228 | Rendering an image from the raster data can often be done
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| 229 | parallel on a multicore system.
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| 230 |
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| 231 | \param numThreads Number of threads to be used for rendering.
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| 232 | If numThreads is set to 0, the system specific
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| 233 | ideal thread count is used.
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| 234 |
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| 235 | The default thread count is 1 ( = no additional threads )
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| 236 |
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| 237 | \warning Rendering in multiple threads is only supported for Qt >= 4.4
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| 238 | \sa renderThreadCount(), renderImage(), renderTile()
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| 239 | */
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| 240 | void QwtPolarSpectrogram::setRenderThreadCount( uint numThreads )
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| 241 | {
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| 242 | d_data->renderThreadCount = numThreads;
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| 243 | }
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| 244 |
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| 245 | /*!
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| 246 | \return Number of threads to be used for rendering.
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| 247 | If numThreads is set to 0, the system specific
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| 248 | ideal thread count is used.
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| 249 |
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| 250 | \warning Rendering in multiple threads is only supported for Qt >= 4.4
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| 251 | \sa setRenderThreadCount(), renderImage(), renderTile()
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| 252 | */
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| 253 | uint QwtPolarSpectrogram::renderThreadCount() const
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| 254 | {
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| 255 | return d_data->renderThreadCount;
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| 256 | }
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| 257 |
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| 258 | /*!
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| 259 | Draw the spectrogram
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| 260 |
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| 261 | \param painter Painter
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| 262 | \param azimuthMap Maps azimuth values to values related to 0.0, M_2PI
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| 263 | \param radialMap Maps radius values into painter coordinates.
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| 264 | \param pole Position of the pole in painter coordinates
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| 265 | \param radius Radius of the complete plot area in painter coordinates
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| 266 | \param canvasRect Contents rect of the canvas in painter coordinates
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| 267 | */
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| 268 | void QwtPolarSpectrogram::draw( QPainter *painter,
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| 269 | const QwtScaleMap &azimuthMap, const QwtScaleMap &radialMap,
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| 270 | const QPointF &pole, double,
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| 271 | const QRectF &canvasRect ) const
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| 272 | {
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| 273 | const QRectF plotRect = plot()->plotRect( canvasRect.toRect() );
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| 274 |
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| 275 | QRegion clipRegion( canvasRect.toRect() );
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| 276 | if ( qwtNeedsClipping( plotRect, canvasRect ) )
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| 277 | {
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| 278 | // For large plotRects the ellipse becomes a huge polygon.
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| 279 | // So we better clip only, when we really need to.
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| 280 |
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| 281 | clipRegion &= QRegion( plotRect.toRect(), QRegion::Ellipse );
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| 282 | }
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| 283 |
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| 284 | QRect imageRect = canvasRect.toRect();
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| 285 |
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| 286 | if ( painter->hasClipping() )
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| 287 | imageRect &= painter->clipRegion().boundingRect();
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| 288 |
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| 289 | const QwtInterval radialInterval =
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| 290 | boundingInterval( QwtPolar::ScaleRadius );
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| 291 | if ( radialInterval.isValid() )
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| 292 | {
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| 293 | const double radius = radialMap.transform( radialInterval.maxValue() ) -
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| 294 | radialMap.transform( radialInterval.minValue() );
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| 295 |
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| 296 | QRectF r( 0, 0, 2 * radius, 2 * radius );
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| 297 | r.moveCenter( pole );
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| 298 |
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| 299 | clipRegion &= QRegion( r.toRect(), QRegion::Ellipse );;
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| 300 |
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| 301 | imageRect &= r.toRect();
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| 302 | }
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| 303 |
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| 304 | const QImage image = renderImage( azimuthMap, radialMap, pole, imageRect );
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| 305 |
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| 306 | painter->save();
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| 307 | painter->setClipRegion( clipRegion );
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| 308 |
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| 309 | painter->drawImage( imageRect, image );
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| 310 |
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| 311 | painter->restore();
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| 312 | }
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| 313 |
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| 314 | /*!
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| 315 | \brief Render an image from the data and color map.
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| 316 |
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| 317 | The area is translated into a rect of the paint device.
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| 318 | For each pixel of this rect the intensity is mapped
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| 319 | into a color.
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| 320 |
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| 321 | \param azimuthMap Maps azimuth values to values related to 0.0, M_2PI
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| 322 | \param radialMap Maps radius values into painter coordinates.
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| 323 | \param pole Position of the pole in painter coordinates
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| 324 | \param rect Target rectangle of the image in painter coordinates
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| 325 |
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| 326 | \return A QImage::Format_Indexed8 or QImage::Format_ARGB32 depending
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| 327 | on the color map.
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| 328 |
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| 329 | \sa QwtRasterData::intensity(), QwtColorMap::rgb(),
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| 330 | QwtColorMap::colorIndex()
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| 331 | */
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| 332 | QImage QwtPolarSpectrogram::renderImage(
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| 333 | const QwtScaleMap &azimuthMap, const QwtScaleMap &radialMap,
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| 334 | const QPointF &pole, const QRect &rect ) const
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| 335 | {
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| 336 | if ( d_data->data == NULL || d_data->colorMap == NULL )
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| 337 | return QImage();
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| 338 |
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| 339 | QImage image( rect.size(), d_data->colorMap->format() == QwtColorMap::RGB
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| 340 | ? QImage::Format_ARGB32 : QImage::Format_Indexed8 );
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| 341 |
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| 342 | const QwtInterval intensityRange = d_data->data->interval( Qt::ZAxis );
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| 343 | if ( !intensityRange.isValid() )
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| 344 | return image;
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| 345 |
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| 346 | if ( d_data->colorMap->format() == QwtColorMap::Indexed )
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| 347 | image.setColorTable( d_data->colorMap->colorTable( intensityRange ) );
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| 348 |
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| 349 | /*
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| 350 | For the moment we only announce the composition of the image by
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| 351 | calling initRaster(), but we don't pass any useful parameters.
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| 352 | ( How to map rect into something, that is useful to initialize a matrix
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| 353 | of values in polar coordinates ? )
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| 354 | */
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| 355 | d_data->data->initRaster( QRectF(), QSize() );
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| 356 |
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| 357 |
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| 358 | #if QT_VERSION >= 0x040400 && !defined(QT_NO_QFUTURE)
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| 359 | uint numThreads = d_data->renderThreadCount;
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| 360 |
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| 361 | if ( numThreads <= 0 )
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| 362 | numThreads = QThread::idealThreadCount();
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| 363 |
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| 364 | if ( numThreads <= 0 )
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| 365 | numThreads = 1;
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| 366 |
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| 367 | const int numRows = rect.height() / numThreads;
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| 368 |
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| 369 |
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| 370 | QVector<TileInfo> tileInfos;
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| 371 | for ( uint i = 0; i < numThreads; i++ )
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| 372 | {
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| 373 | QRect tile( rect.x(), rect.y() + i * numRows, rect.width(), numRows );
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| 374 | if ( i == numThreads - 1 )
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| 375 | tile.setHeight( rect.height() - i * numRows );
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| 376 |
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| 377 | TileInfo tileInfo;
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| 378 | tileInfo.imagePos = rect.topLeft();
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| 379 | tileInfo.rect = tile;
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| 380 | tileInfo.image = ℑ
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| 381 |
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| 382 | tileInfos += tileInfo;
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| 383 | }
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| 384 |
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| 385 | QVector< QFuture<void> > futures;
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| 386 | for ( int i = 0; i < tileInfos.size(); i++ )
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| 387 | {
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| 388 | if ( i == tileInfos.size() - 1 )
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| 389 | {
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| 390 | renderTile( azimuthMap, radialMap, pole, &tileInfos[i] );
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| 391 | }
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| 392 | else
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| 393 | {
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| 394 | futures += QtConcurrent::run( this, &QwtPolarSpectrogram::renderTile,
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| 395 | azimuthMap, radialMap, pole, &tileInfos[i] );
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| 396 | }
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| 397 | }
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| 398 | for ( int i = 0; i < futures.size(); i++ )
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| 399 | futures[i].waitForFinished();
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| 400 |
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| 401 | #else // QT_VERSION < 0x040400
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| 402 | renderTile( azimuthMap, radialMap, pole, rect.topLeft(), rect, &image );
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| 403 | #endif
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| 404 |
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| 405 | d_data->data->discardRaster();
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| 406 |
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| 407 | return image;
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| 408 | }
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| 409 |
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| 410 | void QwtPolarSpectrogram::renderTile(
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| 411 | const QwtScaleMap &azimuthMap, const QwtScaleMap &radialMap,
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| 412 | const QPointF &pole, TileInfo *tileInfo ) const
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| 413 | {
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| 414 | renderTile( azimuthMap, radialMap, pole,
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| 415 | tileInfo->imagePos, tileInfo->rect, tileInfo->image );
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| 416 | }
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| 417 |
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| 418 | /*!
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| 419 | \brief Render a sub-rectangle of an image
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| 420 |
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| 421 | renderTile() is called by renderImage() to render different parts
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| 422 | of the image by concurrent threads.
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| 423 |
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| 424 | \param azimuthMap Maps azimuth values to values related to 0.0, M_2PI
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| 425 | \param radialMap Maps radius values into painter coordinates.
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| 426 | \param pole Position of the pole in painter coordinates
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| 427 | \param imagePos Top/left position of the image in painter coordinates
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| 428 | \param tile Sub-rectangle of the tile in painter coordinates
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| 429 | \param image Image to be rendered
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| 430 |
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| 431 | \sa setRenderThreadCount()
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| 432 | \note renderTile needs to be reentrant
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| 433 | */
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| 434 | void QwtPolarSpectrogram::renderTile(
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| 435 | const QwtScaleMap &azimuthMap, const QwtScaleMap &radialMap,
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| 436 | const QPointF &pole, const QPoint &imagePos,
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| 437 | const QRect &tile, QImage *image ) const
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| 438 | {
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| 439 | const QwtInterval intensityRange = d_data->data->interval( Qt::ZAxis );
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| 440 | if ( !intensityRange.isValid() )
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| 441 | return;
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| 442 |
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| 443 | const bool doFastAtan = testPaintAttribute( ApproximatedAtan );
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| 444 |
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| 445 | const int y0 = imagePos.y();
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| 446 | const int y1 = tile.top();
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| 447 | const int y2 = tile.bottom();
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| 448 |
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| 449 | const int x0 = imagePos.x();
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| 450 | const int x1 = tile.left();
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| 451 | const int x2 = tile.right();
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| 452 |
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| 453 | if ( d_data->colorMap->format() == QwtColorMap::RGB )
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| 454 | {
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| 455 | for ( int y = y1; y <= y2; y++ )
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| 456 | {
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| 457 | const double dy = pole.y() - y;
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| 458 | const double dy2 = qwtSqr( dy );
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| 459 |
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| 460 | QRgb *line = reinterpret_cast<QRgb *>( image->scanLine( y - y0 ) );
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| 461 | line += x1 - x0;
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| 462 |
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| 463 | for ( int x = x1; x <= x2; x++ )
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| 464 | {
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| 465 | const double dx = x - pole.x();
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| 466 |
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| 467 | double a = doFastAtan ? qwtFastAtan2( dy, dx ) : qAtan2( dy, dx );
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| 468 | if ( a < 0.0 )
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| 469 | a += 2 * M_PI;
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| 470 | if ( a < azimuthMap.p1() )
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| 471 | a += 2 * M_PI;
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| 472 |
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| 473 | const double r = qSqrt( qwtSqr( dx ) + dy2 );
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| 474 |
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| 475 | const double azimuth = azimuthMap.invTransform( a );
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| 476 | const double radius = radialMap.invTransform( r );
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| 477 |
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| 478 | const double value = d_data->data->value( azimuth, radius );
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| 479 | *line++ = d_data->colorMap->rgb( intensityRange, value );
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| 480 | }
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| 481 | }
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| 482 | }
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| 483 | else if ( d_data->colorMap->format() == QwtColorMap::Indexed )
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| 484 | {
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| 485 | for ( int y = y1; y <= y2; y++ )
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| 486 | {
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| 487 | const double dy = pole.y() - y;
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| 488 | const double dy2 = qwtSqr( dy );
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| 489 |
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| 490 | unsigned char *line = image->scanLine( y - y0 );
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| 491 | line += x1 - x0;
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| 492 | for ( int x = x1; x <= x2; x++ )
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| 493 | {
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| 494 | const double dx = x - pole.x();
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| 495 |
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| 496 | double a = doFastAtan ? qwtFastAtan2( dy, dx ) : qAtan2( dy, dx );
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| 497 | if ( a < 0.0 )
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| 498 | a += 2 * M_PI;
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| 499 | if ( a < azimuthMap.p1() )
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| 500 | a += 2 * M_PI;
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| 501 |
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| 502 | const double r = qSqrt( qwtSqr( dx ) + dy2 );
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| 503 |
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| 504 | const double azimuth = azimuthMap.invTransform( a );
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| 505 | const double radius = radialMap.invTransform( r );
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| 506 |
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| 507 | const double value = d_data->data->value( azimuth, radius );
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| 508 | *line++ = d_data->colorMap->colorIndex( intensityRange, value );
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| 509 | }
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| 510 | }
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| 511 | }
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| 512 | }
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| 513 |
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| 514 | /*!
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| 515 | Interval, that is necessary to display the item
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| 516 | This interval can be useful for operations like clipping or autoscaling
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| 517 |
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| 518 | \param scaleId Scale index
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| 519 | \return bounding interval ( == position )
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| 520 |
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| 521 | \sa position()
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| 522 | */
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| 523 | QwtInterval QwtPolarSpectrogram::boundingInterval( int scaleId ) const
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| 524 | {
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| 525 | if ( scaleId == QwtPolar::ScaleRadius )
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| 526 | return d_data->data->interval( Qt::YAxis );
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| 527 |
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| 528 | return QwtPolarItem::boundingInterval( scaleId );
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| 529 | }
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