Wizualizacja konfiguracji dłoni  1.0
Dokumentacja klasy QCPColorGradient

Defines a color gradient for use with e.g. QCPColorMap. Więcej...

#include <qcustomplot.hh>

Typy publiczne

enum  ColorInterpolation { ciRGB, ciHSV }
 
enum  GradientPreset {
  gpGrayscale, gpHot, gpCold, gpNight,
  gpCandy, gpGeography, gpIon, gpThermal,
  gpPolar, gpSpectrum, gpJet, gpHues
}
 

Metody publiczne

 QCPColorGradient ()
 
 QCPColorGradient (GradientPreset preset)
 
bool operator== (const QCPColorGradient &other) const
 
bool operator!= (const QCPColorGradient &other) const
 
int levelCount () const
 
QMap< double, QColor > colorStops () const
 
ColorInterpolation colorInterpolation () const
 
bool periodic () const
 
void setLevelCount (int n)
 
void setColorStops (const QMap< double, QColor > &colorStops)
 
void setColorStopAt (double position, const QColor &color)
 
void setColorInterpolation (ColorInterpolation interpolation)
 
void setPeriodic (bool enabled)
 
void colorize (const double *data, const QCPRange &range, QRgb *scanLine, int n, int dataIndexFactor=1, bool logarithmic=false)
 
void colorize (const double *data, const unsigned char *alpha, const QCPRange &range, QRgb *scanLine, int n, int dataIndexFactor=1, bool logarithmic=false)
 
QRgb color (double position, const QCPRange &range, bool logarithmic=false)
 
void loadPreset (GradientPreset preset)
 
void clearColorStops ()
 
QCPColorGradient inverted () const
 

Metody chronione

bool stopsUseAlpha () const
 
void updateColorBuffer ()
 

Atrybuty chronione

int mLevelCount
 
QMap< double, QColor > mColorStops
 
ColorInterpolation mColorInterpolation
 
bool mPeriodic
 
QVector< QRgb > mColorBuffer
 
bool mColorBufferInvalidated
 

Opis szczegółowy

This class describes a color gradient which can be used to encode data with color. For example, QCPColorMap and QCPColorScale have setGradient methods which take an instance of this class. Colors are set with setColorStopAt(double position, const QColor &color) with a position from 0 to 1. In between these defined color positions, the color will be interpolated linearly either in RGB or HSV space, see setColorInterpolation.

Alternatively, load one of the preset color gradients shown in the image below, with loadPreset, or by directly specifying the preset in the constructor.

Apart from red, green and blue components, the gradient also interpolates the alpha values of the configured color stops. This allows to display some portions of the data range as transparent in the plot.

QCPColorGradient.png

The ructor allows directly converting a GradientPreset to a QCPColorGradient. This means that you can directly pass GradientPreset to all the setGradient methods, e.g.:

The total number of levels used in the gradient can be set with setLevelCount. Whether the color gradient shall be applied periodically (wrapping around) to data values that lie outside the data range specified on the plottable instance can be controlled with setPeriodic.

Dokumentacja składowych wyliczanych

Defines the color spaces in which color interpolation between gradient stops can be performed.

Zobacz również
setColorInterpolation
Wartości wyliczeń
ciRGB 

Color channels red, green and blue are linearly interpolated.

ciHSV 

Color channels hue, saturation and value are linearly interpolated (The hue is interpolated over the shortest angle distance)

Defines the available presets that can be loaded with loadPreset. See the documentation there for an image of the presets.

Wartości wyliczeń
gpGrayscale 

Continuous lightness from black to white (suited for non-biased data representation)

gpHot 

Continuous lightness from black over firey colors to white (suited for non-biased data representation)

gpCold 

Continuous lightness from black over icey colors to white (suited for non-biased data representation)

gpNight 

Continuous lightness from black over weak blueish colors to white (suited for non-biased data representation)

gpCandy 

Blue over pink to white.

gpGeography 

Colors suitable to represent different elevations on geographical maps.

gpIon 

Half hue spectrum from black over purple to blue and finally green (creates banding illusion but allows more precise magnitude estimates)

gpThermal 

Colors suitable for thermal imaging, ranging from dark blue over purple to orange, yellow and white.

gpPolar 

Colors suitable to emphasize polarity around the center, with blue for negative, black in the middle and red for positive values.

gpSpectrum 

An approximation of the visible light spectrum (creates banding illusion but allows more precise magnitude estimates)

gpJet 

Hue variation similar to a spectrum, often used in numerical visualization (creates banding illusion but allows more precise magnitude estimates)

gpHues 

Full hue cycle, with highest and lowest color red (suitable for periodic data, such as angles and phases, see setPeriodic)

Dokumentacja konstruktora i destruktora

QCPColorGradient::QCPColorGradient ( )

Constructs a new, empty QCPColorGradient with no predefined color stops. You can add own color stops with setColorStopAt.

The color level count is initialized to 350.

QCPColorGradient::QCPColorGradient ( GradientPreset  preset)

Constructs a new QCPColorGradient initialized with the colors and color interpolation according to preset.

The color level count is initialized to 350.

Dokumentacja funkcji składowych

void QCPColorGradient::clearColorStops ( )

Clears all color stops.

Zobacz również
setColorStops, setColorStopAt
QRgb QCPColorGradient::color ( double  position,
const QCPRange range,
bool  logarithmic = false 
)
ColorInterpolation QCPColorGradient::colorInterpolation ( ) const
inline
void QCPColorGradient::colorize ( const double *  data,
const QCPRange range,
QRgb *  scanLine,
int  n,
int  dataIndexFactor = 1,
bool  logarithmic = false 
)

To jest metoda przeciążona, udostępniona dla wygody. Różni się od powyższej metody tylko zestawem akceptowanych argumentów.

This method is used to quickly convert a data array to colors. The colors will be output in the array scanLine. Both data and scanLine must have the length n when passed to this function. The data range that shall be used for mapping the data value to the gradient is passed in range. logarithmic indicates whether the data values shall be mapped to colors logarithmically.

if data actually contains 2D-data linearized via [row*columnCount + column], you can set dataIndexFactor to columnCount to convert a column instead of a row of the data array, in scanLine. scanLine will remain a regular (1D) array. This works because data is addressed data[i*dataIndexFactor].

Use the overloaded method to additionally provide alpha map data.

The QRgb values that are placed in scanLine have their r, g and b components premultiplied with alpha (see QImage::Format_ARGB32_Premultiplied).

void QCPColorGradient::colorize ( const double *  data,
const unsigned char *  alpha,
const QCPRange range,
QRgb *  scanLine,
int  n,
int  dataIndexFactor = 1,
bool  logarithmic = false 
)

To jest metoda przeciążona, udostępniona dla wygody. Różni się od powyższej metody tylko zestawem akceptowanych argumentów.

Additionally to the other overload of colorize, this method takes the array alpha, which has the same size and structure as data and encodes the alpha information per data point.

The QRgb values that are placed in scanLine have their r, g and b components premultiplied with alpha (see QImage::Format_ARGB32_Premultiplied).

QMap<double, QColor> QCPColorGradient::colorStops ( ) const
inline
QCPColorGradient QCPColorGradient::inverted ( ) const

Returns an inverted gradient. The inverted gradient has all properties as this QCPColorGradient, but the order of the color stops is inverted.

Zobacz również
setColorStops, setColorStopAt
int QCPColorGradient::levelCount ( ) const
inline
void QCPColorGradient::loadPreset ( GradientPreset  preset)

Clears the current color stops and loads the specified preset. A preset consists of predefined color stops and the corresponding color interpolation method.

The available presets are:

QCPColorGradient.png
bool QCPColorGradient::operator!= ( const QCPColorGradient other) const
inline
bool QCPColorGradient::operator== ( const QCPColorGradient other) const
bool QCPColorGradient::periodic ( ) const
inline
void QCPColorGradient::setColorInterpolation ( QCPColorGradient::ColorInterpolation  interpolation)

Sets whether the colors in between the configured color stops (see setColorStopAt) shall be interpolated linearly in RGB or in HSV color space.

For example, a sweep in RGB space from red to green will have a muddy brown intermediate color, whereas in HSV space the intermediate color is yellow.

void QCPColorGradient::setColorStopAt ( double  position,
const QColor &  color 
)

Sets the color the gradient will have at the specified position (from 0 to 1). In between these color stops, the color is interpolated according to setColorInterpolation.

Zobacz również
setColorStops, clearColorStops
void QCPColorGradient::setColorStops ( const QMap< double, QColor > &  colorStops)

Sets at which positions from 0 to 1 which color shall occur. The positions are the keys, the colors are the values of the passed QMap colorStops. In between these color stops, the color is interpolated according to setColorInterpolation.

A more convenient way to create a custom gradient may be to clear all color stops with clearColorStops (or creating a new, empty QCPColorGradient) and then adding them one by one with setColorStopAt.

Zobacz również
clearColorStops
void QCPColorGradient::setLevelCount ( int  n)

Sets the number of discretization levels of the color gradient to n. The default is 350 which is typically enough to create a smooth appearance. The minimum number of levels is 2.

QCPColorGradient-levelcount.png
void QCPColorGradient::setPeriodic ( bool  enabled)

Sets whether data points that are outside the configured data range (e.g. QCPColorMap::setDataRange) are colored by periodically repeating the color gradient or whether they all have the same color, corresponding to the respective gradient boundary color.

QCPColorGradient-periodic.png

As shown in the image above, gradients that have the same start and end color are especially suitable for a periodic gradient mapping, since they produce smooth color transitions throughout the color map. A preset that has this property is gpHues.

In practice, using periodic color gradients makes sense when the data corresponds to a periodic dimension, such as an angle or a phase. If this is not the case, the color encoding might become ambiguous, because multiple different data values are shown as the same color.

bool QCPColorGradient::stopsUseAlpha ( ) const
protected
void QCPColorGradient::updateColorBuffer ( )
protected

Dokumentacja atrybutów składowych

QVector<QRgb> QCPColorGradient::mColorBuffer
protected
bool QCPColorGradient::mColorBufferInvalidated
protected
ColorInterpolation QCPColorGradient::mColorInterpolation
protected
QMap<double, QColor> QCPColorGradient::mColorStops
protected
int QCPColorGradient::mLevelCount
protected
bool QCPColorGradient::mPeriodic
protected

Dokumentacja dla tej klasy została wygenerowana z plików: