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User Documentation |
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Centre for Vision, Speech & Signal Processing |
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PUBLIC |
RealYUVImageCnvC::RealYUVImageCnvC(void)
RealYUVImageCnvC::RealYUVImageCnvC(const RealYUVImageCnvC &)
RealYUVImageCnvC::RealYUVImageCnvC(const RealYUVImageC &)
RealYUVImageCnvC::RealYUVImageCnvC(ColorImageAC *)
RealYUVImageCnvC::~RealYUVImageCnvC(void)
RealYUVImageCnvC::ColorImageA(void) const
RealYUVImageCnvC::ColorImageA(void)
RealYUVImageCnvC::Y(void)
RealYUVImageCnvC::Red(void)
RealYUVImageCnvC::Green(void)
RealYUVImageCnvC::Blue(void)
RealYUVImageCnvC::RealY(void)
RealYUVImageCnvC::RealRed(void)
RealYUVImageCnvC::RealGreen(void)
RealYUVImageCnvC::RealBlue(void)
RealYUVImageCnvC::Rgb(void)
RealYUVImageCnvC::RealRgb(void)
RealYUVImageCnvC::Yuv(void)
RealYUVImageCnvC::RealYuv(void)
ColorImageAC::operator=(const ColorImageAC &)
ColorImageAC::Y(void)
ColorImageAC::Red(void)
ColorImageAC::Green(void)
ColorImageAC::Blue(void)
ColorImageAC::RealY(void)
ColorImageAC::RealRed(void)
ColorImageAC::RealGreen(void)
ColorImageAC::RealBlue(void)
ColorImageAC::Rgb(void)
ColorImageAC::RealRgb(void)
ColorImageAC::Yuv(void)
ColorImageAC::RealYuv(void)
RealYUVImageC::ACopy(void) const
RealYUVImageC::AnotherImage(void) const
RealYUVImageC::Y(void) const
RealYUVImageC::Red(void) const
RealYUVImageC::Green(void) const
RealYUVImageC::Blue(void) const
RealYUVImageC::RealY(DoubleImageC &) const
RealYUVImageC::RealY(void) const
RealYUVImageC::RealRed(void) const
RealYUVImageC::RealGreen(void) const
RealYUVImageC::RealBlue(void) const
RealYUVImageC::RealYuv(void) const
RealYUVImageC::RealRgb(void) const
RealYUVImageC::Yuv(void) const
RealYUVImageC::Rgb(void) const
RealYUVImageC::Copy(void) const
RealYUVImageC::ReduceAverage(void) const
RealYUVImageC::ReduceSample(void) const
RealYUVImageC::Rotate(const Point2dC &,RealT,YUVPointC)
RealYUVImageC::Palette(void)
RealYUVImageC::operator/=(const RealT)
RealYUVImageC::operator+=(const RealYUVImageC &)
RealYUVImageC::operator+=(const YUVImageC &)
RealYUVImageC::operator/=(const RealYUVImageC &)
RealYUVImageC::RGBChromaticityDiagram(const IndexT) const
RealYUVImageC::XYZChromaticityDiagram(const IndexT) const
RealYUVImageC::ScaleToYUVImage(const YUVPointC &,const YUVPointC &) const
RealYUVImageC::ExMeCo(void) const
RealYUVImageC::SaveAs(ImageOStreamC &,ImageFileFormatT)
ImageC::Copy(void) const
ImageC::Copy(const ImageC &)
ImageC::Copy(const ImageRectangleC &,const PixelC &)
ImageC::ACopy(void) const
ImageC::AnotherImage(void) const
ImageC::operator=(const ImageC &)
ImageC::ReflectUp(const ImageRectangleC &)
ImageC::ReflectDown(const ImageRectangleC &)
ImageC::ReflectLeft(const ImageRectangleC &)
ImageC::ReflectRight(const ImageRectangleC &)
ImageC::ReflectFrom(const ImageRectangleC &)
ImageC::Rotate90(const ImageC &)
ImageC::Rotate180(const ImageC &)
ImageC::Rotate270(const ImageC &)
ImageC::Rotate(const Point2dC &,RealT,PValueT) const
ImageC::Rotate(const ImageC &,const Point2dC &,RealT,PValueT)
ImageC::ShiftRowIndexes(const IndexT)
ImageC::ShiftColIndexes(const IndexT)
ImageC::Subsample(IntT) const
ImageC::SetOrigin(const PixelC &)
ImageC::Fill(PValueT)
ImageC::Frame(PValueT)
ImageC::Frame(PValueT,const ImageRectangleC &)
ImageC::Pad(const ImageRectangleC &) const
ImageC::IsValid(void) const
ImageC::operator[](IndexT) const
ImageC::operator[](IndexT)
ImageC::operator[](const Index2dC &)
ImageC::operator[](const Index2dC &) const
ImageC::operator[](const PixelC &)
ImageC::operator[](const PixelC &) const
ImageC::CRow(PixelIndexT) const
ImageC::Row(PixelIndexT)
ImageC::Save(ostream &,BooleanT) const
ImageC::Load(istream &,BooleanT)
ImageC::StartAddress(void) const
ImageC::Buffer(void)
ImageC::Buffer(void) const
BaseImageC::Rectangle(void) const
BaseImageC::Origin(void) const
BaseImageC::End(void) const
BaseImageC::ImageFileInfo(void) const
BaseImageC::BaseImage(void) const
BaseImageC::BaseImage(void)
BaseImageC::SetRowSubRange(const IndexT,const IndexT)
BaseImageC::SetColSubRange(const IndexT,const IndexT)
BaseImageC::SetSubRange(const ImageRectangleC &)
BaseImageC::SetFullRectangle(void)
BaseImageC::SetImageFileInfo(ImageFileInfoC *)
BaseImageC::IsEmpty(void) const
BaseImageC::ErrDifferentSize(const BaseImageC &,char *) const
BaseImageC::Rnum(void) const
BaseImageC::Cnum(void) const
BaseImageC::TRow(void) const
BaseImageC::LCol(void) const
BaseImageC::BRow(void) const
BaseImageC::RCol(void) const
BaseImageC::Area(void) const
BaseImageC::Count(void) const
BaseImageC::AllocatedRect(void) const
BaseImageC::IsBlock(void) const
ImageAC::ACopy(void) const
ImageAC::AnotherImage(void) const
ImageAC::Rectangle(void) const
ImageAC::ShiftRowIndexes(const IndexT)
ImageAC::ShiftColIndexes(const IndexT)
ImageAC::SetRowSubRange(const IndexT,const IndexT)
ImageAC::SetColSubRange(const IndexT,const IndexT)
ImageAC::ImageFileInfo(void) const
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Comments:
The class RealYUVImageCnvC performes a conversion between two color
images using different representations. One of the representations
is byte YUV image.
Parent Classes:
Methods:
- RealYUVImageCnvC()
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Creates a dummy image.
- RealYUVImageCnvC(const RealYUVImageCnvC & im)
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Creates another handler of the image 'im'.
- RealYUVImageCnvC(const RealYUVImageC & im)
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Creates another handler of the image 'im' that is possible to
convert into another image.
- RealYUVImageCnvC(ColorImageAC * im)
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Creates a YUV intensity image from the general color image 'im'
using the conversion RealY().
- ~RealYUVImageCnvC()
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Desctructor.
Image conversions.
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- const ColorImageAC * ColorImageA() const
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Returns this image as an constant general color image.
- ColorImageAC * ColorImageA()
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Returns this image as an general color image.
- ByteImageCnvC Y()
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Returns the intensity byte image.
- ByteImageCnvC Red()
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Returns the intensity byte image of the red component.
- ByteImageCnvC Green()
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Returns the intensity byte image of the green component.
- ByteImageCnvC Blue()
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Returns the intensity byte image of the blue component.
- DoubleImageCnvC RealY()
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Returns the intensity double image.
- DoubleImageCnvC RealRed()
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Returns the intensity double image of the red component.
- DoubleImageCnvC RealGreen()
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Returns the intensity double image of the green component.
- DoubleImageCnvC RealBlue()
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Returns the intensity double image of the blue component.
- RGBImageCnvC Rgb()
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Returns the image of byte RGB values.
- RealRGBImageCnvC RealRgb()
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Returns the image of real RGB values.
- YUVImageCnvC Yuv()
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Returns the image of byte YUV values.
- RealYUVImageCnvC RealYuv()
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Returns the image of real YUV values.
- const ColorImageAC & operator=(const ColorImageAC & im)
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Assigment.
- ByteImageCnvC Y()
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Returns the intensity byte image.
- ByteImageCnvC Red()
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Returns the intensity byte image of the red component.
- ByteImageCnvC Green()
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Returns the intensity byte image of the green component.
- ByteImageCnvC Blue()
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Returns the intensity byte image of the blue component.
- DoubleImageCnvC RealY()
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Returns the intensity double image.
- DoubleImageCnvC RealRed()
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Returns the intensity double image of the red component.
- DoubleImageCnvC RealGreen()
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Returns the intensity double image of the green component.
- DoubleImageCnvC RealBlue()
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Returns the intensity double image of the blue component.
- RGBImageCnvC Rgb()
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Returns the image of byte RGB values.
- RealRGBImageCnvC RealRgb()
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Returns the image of real RGB values.
- YUVImageCnvC Yuv()
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Returns the image of byte YUV values.
- RealYUVImageCnvC RealYuv()
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Returns the image of real YUV values.
- ImageAC * ACopy() const
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A physical copy of this image.
- ImageAC * AnotherImage() const
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Creates a new empty image of the same type and size as this image is.
Conversions between color images.
---------------------------------
- ByteImageC Y() const
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Returns the byte grey level image of Y component.
- ByteImageC Red() const
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Returns the byte red component of the color image.
- ByteImageC Green() const
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Returns the byte green component of the color image.
- ByteImageC Blue() const
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Returns the byte blue component of the color image.
- DoubleImageC & RealY(DoubleImageC & image) const
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Copies the Y component into the 'image' and returns the result.
- DoubleImageC RealY() const
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Returns the grey level image of Y component.
- DoubleImageC RealRed() const
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Returns the red component of the color image.
- DoubleImageC RealGreen() const
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Returns the green component of the color image.
- DoubleImageC RealBlue() const
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Returns the blue component of the color image.
- RealYUVImageC RealYuv() const
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Creates a new handle for the image.
- RealRGBImageC RealRgb() const
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Converts value into the RGB values which are stored in the return
real RGB image.
- YUVImageC Yuv() const
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Converts the image into the image of colors in YUV space.
- RGBImageC Rgb() const
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Converts the image into the image of colors in byte RGB color space.
- RealYUVImageC Copy() const
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A physical copy of image.
- RealYUVImageC ReduceAverage() const
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Generates the new image which has half ranges of indexes.
The new pixel values are averages of old ones.
- RealYUVImageC ReduceSample() const
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Generates the new image which has half ranges of indexes.
The new pixel values are samples of old ones.
- RealYUVImageC Rotate(const Point2dC & center,RealT angle,YUVPointC background)
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Rotates the image around the 'center' about the 'angle'.
The values of the new image which are not defined have
value 'background'.
- RealYUVImageC & Palette()
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Color palette image.
- const RealYUVImageC & operator/=(const RealT alpha)
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Divides every color components by 'alpha' in each pixel.
- const RealYUVImageC & operator+=(const RealYUVImageC & image)
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Adds color components of the image to the related color components
in each pixel of this image.
- const RealYUVImageC & operator+=(const YUVImageC & image)
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Adds color components of the image to the related color components
in each pixel of this image.
- const RealYUVImageC & operator/=(const RealYUVImageC & image)
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Divides pixel by pixel and color component by color component
in each pixel.
- ByteImageC RGBChromaticityDiagram(const IndexT resolution) const
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Returns the chromaticity diagram with the specific 'resolution
using chromaticity derived from RGB values.
- ByteImageC XYZChromaticityDiagram(const IndexT resolution) const
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Returns the chromaticity diagram with the specific 'resolution
using chromaticity derived from XYZ values.
- YUVImageC ScaleToYUVImage(const YUVPointC & min,const YUVPointC & max) const
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Converts this image into the YUVImageC. The real YUV values
are linearly scaled that 'min' values are related to the BLACK value and
'max' values are related to the WHITE value. The result values
are cut.
- MinMaxMeanCovariance3dC ExMeCo() const
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Returns minima, maxima, mean values, and covariance matrix of
YUV value in the image.
- void SaveAs(ImageOStreamC & outS,ImageFileFormatT format = ARY_YUV_R8)
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Write the image into the output image stream. The format of the
data in the stream is determined by 'format'.
- ImageC<YUVPointC> Copy() const
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Creates another physical copy of this image.
- void Copy(const ImageC<YUVPointC> & image)
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Copies the contents of image "img" into this image.
- void Copy(const ImageRectangleC & rect,const PixelC & newOrigin)
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Copies the region of the image defined by rectangle "rect" into the region whose origin is "newOrigin".
- ImageAC * ACopy() const
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A physical copy of this image.
- ImageAC * AnotherImage() const
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Creates a new empty image of the same type and size as this image is.
- const ImageC<YUVPointC> & operator=(const ImageC<YUVPointC> & image)
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Assigment of a big object.
- void ReflectUp(const ImageRectangleC & rect)
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Mirrors the image rectangle along its top edge.
- void ReflectDown(const ImageRectangleC & rect)
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Mirrors the image rectangle along its bottom edge.
- void ReflectLeft(const ImageRectangleC & rect)
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Mirrors the image rectangle along its left edge.
- void ReflectRight(const ImageRectangleC & rect)
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Mirrors the image rectangle along its right edge.
- void ReflectFrom(const ImageRectangleC & rect)
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Mirrors the image rectangle "rect" along its sides to fill the whole image.
- void Rotate90(const ImageC<YUVPointC> & originalImage)
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The values of image "originalImage" rotated about PI/2 rad and shifted to have the original upper-left corner and are saved into this image.
- void Rotate180(const ImageC<YUVPointC> & originalImage)
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The values of image "originalImage" rotated about PI rad and shifted to have the original upper-left corner and are saved into this image.
- void Rotate270(const ImageC<YUVPointC> & originalImage)
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The values of image "originalImage" rotated about 3/2*PI rad and shifted to have the original upper-left corner and are saved into this image.
- ImageC<YUVPointC> Rotate(const Point2dC & center,RealT angle,YUVPointC background) const
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The values of this image are rotated about "angle" (in rad) and saved to the result image.
Note the AMMA convention that the 1st or "x" coordinate of Point2dC is
associated with the image row no., and the 2nd or "y" coordinate
with the image column no.
- void Rotate(const ImageC<YUVPointC> & originalImage,const Point2dC & center,RealT angle,YUVPointC background)
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The values of image "originalImage" rotated about "angle" rad are saved into this image.
Note the AMMA convention that the 1st or "x" coordinate of Point2dC is
associated with the image row no., and the 2nd or "y" coordinate
with the image column no.
- void ShiftRowIndexes(const IndexT offset)
-
Row indices of the items will be shifted by "offset".
There must be only one reference to this image.
For +ve "offset", the image is shifted down, or the coordinate
system is shifted up.
- void ShiftColIndexes(const IndexT offset)
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Column indices of the items will be shifted by "offset".
There must be only one reference to this image.
For +ve "offset", the image is shifted down, or the coordinate
system is shifted up.
- ImageC<YUVPointC> Subsample(IntT factor = 2) const
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returns an image subsampled by a factor of "factor"
- void SetOrigin(const PixelC & newOrigin)
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The image coordinates are changed so that the top left pixel will have coordinates of "newOrigin".
There must be only one reference to this image.
Grey level operations.
- ImageC<YUVPointC> & Fill(YUVPointC value)
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Fills the image with "value"
- ImageC<YUVPointC> & Frame(YUVPointC value)
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Fills a 1-pixel-wide border around the image with "value"
- ImageC<YUVPointC> & Frame(YUVPointC v,const ImageRectangleC & rect)
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Fills a 1-pixel-wide rectangle with "v";
the rectangle is the intersection of "this" with "rect".
- ImageC<YUVPointC> Pad(const ImageRectangleC & rect) const
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Creates a new image whose frame is from "rect", with pixels copied from "this".
Where the new image lies outside "this", it is padded out with the nearest
value from "this".
Logical conditions.
- BooleanT IsValid() const
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Returns FALSE if the image does not have a valid data area allocated
Access to pixels values.
- const RangeBufferAccessC<YUVPointC> operator[](IndexT r) const
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Access to the row of the row of pixels.
- RangeBufferAccessC<YUVPointC> operator[](IndexT r)
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Access to the row of the row of pixels.
- YUVPointC & operator[](const Index2dC & pxl)
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Returns the content of the pixel.
- const YUVPointC & operator[](const Index2dC & pxl) const
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Returns the content of the pixel.
- YUVPointC & operator[](const PixelC & pxl)
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Returns the content of the pixel.
- const YUVPointC & operator[](const PixelC & pxl) const
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Returns the content of the pixel.
- const YUVPointC * CRow(PixelIndexT row) const
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Access to the beginning of the row, eg. t
The returned pointer points to the first pixel of the "row".
- YUVPointC * Row(PixelIndexT row)
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Access to the beginning of the constant "row"
I.e. the returned pointer points to the first pixel of "row".
- void Save(ostream & outS,BooleanT useHeader = TRUE) const
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Saves templated image to stream.
For byte images it will save them in either PGM or PPM binary format. For
other types it will save them in ascii if a suitable stream operator has
been written for the templated class.
NB. These treat images of ByteGreyValueT specialy, the image values
are read as numbers not as charactors.
- void Load(istream & outS,BooleanT useHeader = TRUE)
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Loads templated image type from ascii stream.
Should not be used for binary PGM/PPM files, but should work on most
templated types.
NB. These treat images of ByteGreyValueT specialy, the image values
are written as numbers not as charactors.
- YUVPointC ** StartAddress() const
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Returns the pointer to the table of pointers to image.
This being public is really only a hack!
EXPERTS ONLY!
- BufferRC<YUVPointC> & Buffer()
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Access buffer where data is stored.
- const BufferRC<YUVPointC> & Buffer() const
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Access buffer where data is stored.
- const ImageRectangleC & Rectangle() const
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Returns the image rectangle.
- const Index2dC & Origin() const
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Returns the upper-left pixel coordinates of the image rectangle.
- const Index2dC & End() const
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Returns the lower right pixel coordinates of the image rectangle.
- const ImageFileInfoC & ImageFileInfo() const
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Access to the origin.
- const BaseImageC & BaseImage() const
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access to the constant object
- BaseImageC & BaseImage()
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access to the object
Modification of the object
--------------------------
- void SetRowSubRange(const IndexT newMin,const IndexT newMax)
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The range of indexes of the array will be constrained
- void SetColSubRange(const IndexT newMin,const IndexT newMax)
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The range of indexes of the array will be constrained.
- void SetSubRange(const ImageRectangleC & range)
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Constrains the domain of the image.
- void SetFullRectangle()
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Sets the working rectangle to be allocated rectangle of the image.
- void SetImageFileInfo(ImageFileInfoC * newInfo)
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Sets a new image file information respecting the current size of the image.
- BooleanT IsEmpty() const
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Returns TRUE if the image has zero size
- void ErrDifferentSize(const BaseImageC & image,char * functionName) const
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Triggers an error event if this image has different size from `image'.
The functionName should be the name of the function that triggers
the error event.
- SizeT Rnum() const
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Returns number of rows.
- SizeT Cnum() const
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Returns number of columns.
- IndexT TRow() const
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Returns the top row index.
- IndexT LCol() const
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Returns the left side column index.
- IndexT BRow() const
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Returns the bottom row index.
- IndexT RCol() const
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Returns the right side column index.
- LongIntT Area() const
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Returns the area of the image rectangle expressed in number of indexs.
- UIntT Count() const
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Returns the number of refrences to this object.
NB. The following definition is now obsolete,
The value 0 means there is no other reference to this object.
- const ImageRectangleC & AllocatedRect() const
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Access allocated rectangle.
- BooleanT IsBlock() const
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Returns TRUE if the image is allocated as one block of memory.
- ImageAC * ACopy() const
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A physical copy of the image.
- ImageAC * AnotherImage() const
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Creates a new empty image of the same type and size as this image is.
- const ImageRectangleC & Rectangle() const
-
Returns the working image rectangle.
- void ShiftRowIndexes(const IndexT offset)
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all indexes of the items will be shift by 'offset'
- void ShiftColIndexes(const IndexT offset)
-
all indexes of the items will be shift by 'offset'
- void SetRowSubRange(const IndexT newMin,const IndexT newMax)
-
the range of indexes of the array will be constrained
- void SetColSubRange(const IndexT newMin,const IndexT newMax)
-
the range of indexes of the array will be constrained
- const ImageFileInfoC & ImageFileInfo() const
-
access to the const origin
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Programmer:Radek Marik, Documentation by CxxDoc: Tue Mar 20 10:48:08 2001
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