[4271] | 1 | /* -*- mode: C++ ; c-file-style: "stroustrup" -*- *****************************
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| 2 | * Qwt Widget Library
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| 3 | * Copyright (C) 1997 Josef Wilgen
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| 4 | * Copyright (C) 2002 Uwe Rathmann
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| 5 | *
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| 6 | * This library is free software; you can redistribute it and/or
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| 7 | * modify it under the terms of the Qwt License, Version 1.0
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| 8 | *****************************************************************************/
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| 9 |
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| 10 | #include "qwt_matrix_raster_data.h"
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| 11 | #include <qnumeric.h>
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| 12 | #include <qmath.h>
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| 13 |
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| 14 | class QwtMatrixRasterData::PrivateData
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| 15 | {
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| 16 | public:
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| 17 | PrivateData():
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| 18 | resampleMode(QwtMatrixRasterData::NearestNeighbour),
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| 19 | numColumns(0)
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| 20 | {
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| 21 | }
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| 22 |
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[8127] | 23 | inline double value(int row, int col) const
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[4271] | 24 | {
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| 25 | return values.data()[ row * numColumns + col ];
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| 26 | }
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| 27 |
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| 28 | QwtMatrixRasterData::ResampleMode resampleMode;
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| 29 |
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| 30 | QVector<double> values;
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[8127] | 31 | int numColumns;
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| 32 | int numRows;
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[4271] | 33 |
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| 34 | double dx;
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| 35 | double dy;
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| 36 | };
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| 37 |
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| 38 | //! Constructor
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| 39 | QwtMatrixRasterData::QwtMatrixRasterData()
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| 40 | {
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| 41 | d_data = new PrivateData();
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| 42 | update();
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| 43 | }
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| 44 |
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| 45 | //! Destructor
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| 46 | QwtMatrixRasterData::~QwtMatrixRasterData()
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| 47 | {
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| 48 | delete d_data;
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| 49 | }
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| 50 |
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| 51 | /*!
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| 52 | \brief Set the resampling algorithm
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| 53 |
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| 54 | \param mode Resampling mode
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| 55 | \sa resampleMode(), value()
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| 56 | */
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[8127] | 57 | void QwtMatrixRasterData::setResampleMode( ResampleMode mode )
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[4271] | 58 | {
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| 59 | d_data->resampleMode = mode;
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| 60 | }
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| 61 |
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| 62 | /*!
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| 63 | \return resampling algorithm
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| 64 | \sa setResampleMode(), value()
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| 65 | */
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| 66 | QwtMatrixRasterData::ResampleMode QwtMatrixRasterData::resampleMode() const
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| 67 | {
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| 68 | return d_data->resampleMode;
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| 69 | }
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| 70 |
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| 71 | /*!
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| 72 | \brief Assign the bounding interval for an axis
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| 73 |
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| 74 | Setting the bounding intervals for the X/Y axis is mandatory
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| 75 | to define the positions for the values of the value matrix.
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| 76 | The interval in Z direction defines the possible range for
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| 77 | the values in the matrix, what is f.e used by QwtPlotSpectrogram
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| 78 | to map values to colors. The Z-interval might be the bounding
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| 79 | interval of the values in the matrix, but usually it isn't.
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| 80 | ( f.e a interval of 0.0-100.0 for values in percentage )
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| 81 |
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| 82 | \param axis X, Y or Z axis
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| 83 | \param interval Interval
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[9383] | 84 |
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[4271] | 85 | \sa QwtRasterData::interval(), setValueMatrix()
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| 86 | */
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[9383] | 87 | void QwtMatrixRasterData::setInterval(
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[4271] | 88 | Qt::Axis axis, const QwtInterval &interval )
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| 89 | {
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| 90 | QwtRasterData::setInterval( axis, interval );
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| 91 | update();
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| 92 | }
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| 93 |
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| 94 | /*!
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| 95 | \brief Assign a value matrix
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| 96 |
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| 97 | The positions of the values are calculated by dividing
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| 98 | the bounding rectangle of the X/Y intervals into equidistant
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[9383] | 99 | rectangles ( pixels ). Each value corresponds to the center of
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[4271] | 100 | a pixel.
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| 101 |
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| 102 | \param values Vector of values
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| 103 | \param numColumns Number of columns
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| 104 |
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| 105 | \sa valueMatrix(), numColumns(), numRows(), setInterval()()
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| 106 | */
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[9383] | 107 | void QwtMatrixRasterData::setValueMatrix(
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[8127] | 108 | const QVector<double> &values, int numColumns )
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[4271] | 109 | {
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| 110 | d_data->values = values;
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[8127] | 111 | d_data->numColumns = qMax( numColumns, 0 );
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[4271] | 112 | update();
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| 113 | }
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| 114 |
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| 115 | /*!
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| 116 | \return Value matrix
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| 117 | \sa setValueMatrix(), numColumns(), numRows(), setInterval()
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| 118 | */
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| 119 | const QVector<double> QwtMatrixRasterData::valueMatrix() const
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| 120 | {
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| 121 | return d_data->values;
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| 122 | }
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| 123 |
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| 124 | /*!
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[8127] | 125 | \brief Change a single value in the matrix
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| 126 |
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| 127 | \param row Row index
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| 128 | \param col Column index
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| 129 | \param value New value
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| 130 |
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| 131 | \sa value(), setValueMatrix()
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| 132 | */
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| 133 | void QwtMatrixRasterData::setValue( int row, int col, double value )
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| 134 | {
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| 135 | if ( row >= 0 && row < d_data->numRows &&
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| 136 | col >= 0 && col < d_data->numColumns )
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| 137 | {
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| 138 | const int index = row * d_data->numColumns + col;
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| 139 | d_data->values.data()[ index ] = value;
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| 140 | }
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| 141 | }
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| 142 |
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| 143 | /*!
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[4271] | 144 | \return Number of columns of the value matrix
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| 145 | \sa valueMatrix(), numRows(), setValueMatrix()
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| 146 | */
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[8127] | 147 | int QwtMatrixRasterData::numColumns() const
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[4271] | 148 | {
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| 149 | return d_data->numColumns;
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| 150 | }
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| 151 |
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| 152 | /*!
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| 153 | \return Number of rows of the value matrix
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| 154 | \sa valueMatrix(), numColumns(), setValueMatrix()
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| 155 | */
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[8127] | 156 | int QwtMatrixRasterData::numRows() const
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[4271] | 157 | {
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| 158 | return d_data->numRows;
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| 159 | }
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| 160 |
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| 161 | /*!
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[8127] | 162 | \brief Calculate the pixel hint
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[4271] | 163 |
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[9383] | 164 | pixelHint() returns the geometry of a pixel, that can be used
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[8127] | 165 | to calculate the resolution and alignment of the plot item, that is
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[9383] | 166 | representing the data.
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[8127] | 167 |
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[4271] | 168 | - NearestNeighbour\n
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[9383] | 169 | pixelHint() returns the surrounding pixel of the top left value
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[4271] | 170 | in the matrix.
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| 171 |
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| 172 | - BilinearInterpolation\n
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| 173 | Returns an empty rectangle recommending
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[9383] | 174 | to render in target device ( f.e. screen ) resolution.
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[4271] | 175 |
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[8127] | 176 | \param area Requested area, ignored
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| 177 | \return Calculated hint
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| 178 |
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[4271] | 179 | \sa ResampleMode, setMatrix(), setInterval()
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| 180 | */
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[8127] | 181 | QRectF QwtMatrixRasterData::pixelHint( const QRectF &area ) const
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[4271] | 182 | {
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[8127] | 183 | Q_UNUSED( area )
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| 184 |
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[4271] | 185 | QRectF rect;
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| 186 | if ( d_data->resampleMode == NearestNeighbour )
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| 187 | {
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| 188 | const QwtInterval intervalX = interval( Qt::XAxis );
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| 189 | const QwtInterval intervalY = interval( Qt::YAxis );
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| 190 | if ( intervalX.isValid() && intervalY.isValid() )
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| 191 | {
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| 192 | rect = QRectF( intervalX.minValue(), intervalY.minValue(),
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| 193 | d_data->dx, d_data->dy );
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| 194 | }
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| 195 | }
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| 196 |
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| 197 | return rect;
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| 198 | }
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| 199 |
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| 200 | /*!
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| 201 | \return the value at a raster position
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| 202 |
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| 203 | \param x X value in plot coordinates
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| 204 | \param y Y value in plot coordinates
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| 205 |
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| 206 | \sa ResampleMode
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| 207 | */
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| 208 | double QwtMatrixRasterData::value( double x, double y ) const
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| 209 | {
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| 210 | const QwtInterval xInterval = interval( Qt::XAxis );
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| 211 | const QwtInterval yInterval = interval( Qt::YAxis );
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| 212 |
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| 213 | if ( !( xInterval.contains(x) && yInterval.contains(y) ) )
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| 214 | return qQNaN();
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| 215 |
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| 216 | double value;
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| 217 |
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| 218 | switch( d_data->resampleMode )
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| 219 | {
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| 220 | case BilinearInterpolation:
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| 221 | {
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| 222 | int col1 = qRound( (x - xInterval.minValue() ) / d_data->dx ) - 1;
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| 223 | int row1 = qRound( (y - yInterval.minValue() ) / d_data->dy ) - 1;
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| 224 | int col2 = col1 + 1;
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| 225 | int row2 = row1 + 1;
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| 226 |
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| 227 | if ( col1 < 0 )
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| 228 | col1 = col2;
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[8127] | 229 | else if ( col2 >= static_cast<int>( d_data->numColumns ) )
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[4271] | 230 | col2 = col1;
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| 231 |
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| 232 | if ( row1 < 0 )
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| 233 | row1 = row2;
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[8127] | 234 | else if ( row2 >= static_cast<int>( d_data->numRows ) )
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[4271] | 235 | row2 = row1;
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| 236 |
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| 237 | const double v11 = d_data->value( row1, col1 );
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| 238 | const double v21 = d_data->value( row1, col2 );
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| 239 | const double v12 = d_data->value( row2, col1 );
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| 240 | const double v22 = d_data->value( row2, col2 );
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| 241 |
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[9383] | 242 | const double x2 = xInterval.minValue() +
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[4271] | 243 | ( col2 + 0.5 ) * d_data->dx;
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[9383] | 244 | const double y2 = yInterval.minValue() +
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[4271] | 245 | ( row2 + 0.5 ) * d_data->dy;
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[9383] | 246 |
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[4271] | 247 | const double rx = ( x2 - x ) / d_data->dx;
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| 248 | const double ry = ( y2 - y ) / d_data->dy;
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| 249 |
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| 250 | const double vr1 = rx * v11 + ( 1.0 - rx ) * v21;
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| 251 | const double vr2 = rx * v12 + ( 1.0 - rx ) * v22;
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| 252 |
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| 253 | value = ry * vr1 + ( 1.0 - ry ) * vr2;
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| 254 |
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| 255 | break;
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| 256 | }
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| 257 | case NearestNeighbour:
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| 258 | default:
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| 259 | {
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[8127] | 260 | int row = int( (y - yInterval.minValue() ) / d_data->dy );
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| 261 | int col = int( (x - xInterval.minValue() ) / d_data->dx );
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[4271] | 262 |
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| 263 | // In case of intervals, where the maximum is included
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| 264 | // we get out of bound for row/col, when the value for the
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| 265 | // maximum is requested. Instead we return the value
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| 266 | // from the last row/col
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| 267 |
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| 268 | if ( row >= d_data->numRows )
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| 269 | row = d_data->numRows - 1;
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| 270 |
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| 271 | if ( col >= d_data->numColumns )
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| 272 | col = d_data->numColumns - 1;
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| 273 |
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| 274 | value = d_data->value( row, col );
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| 275 | }
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| 276 | }
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| 277 |
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| 278 | return value;
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| 279 | }
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| 280 |
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| 281 | void QwtMatrixRasterData::update()
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| 282 | {
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| 283 | d_data->numRows = 0;
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| 284 | d_data->dx = 0.0;
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| 285 | d_data->dy = 0.0;
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| 286 |
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| 287 | if ( d_data->numColumns > 0 )
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| 288 | {
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| 289 | d_data->numRows = d_data->values.size() / d_data->numColumns;
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| 290 |
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| 291 | const QwtInterval xInterval = interval( Qt::XAxis );
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| 292 | const QwtInterval yInterval = interval( Qt::YAxis );
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| 293 | if ( xInterval.isValid() )
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| 294 | d_data->dx = xInterval.width() / d_data->numColumns;
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| 295 | if ( yInterval.isValid() )
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| 296 | d_data->dy = yInterval.width() / d_data->numRows;
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| 297 | }
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| 298 | }
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