/* Copyright 1999-2021 ImageMagick Studio LLC, a non-profit organization dedicated to making software imaging solutions freely available. You may not use this file except in compliance with the License. You may obtain a copy of the License at https://imagemagick.org/script/license.php Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License. MagickCore image color methods. */ #ifndef MAGICKCORE_COLOR_PRIVATE_H #define MAGICKCORE_COLOR_PRIVATE_H #include "magick/image.h" #include "magick/image-private.h" #include "magick/color.h" #include "magick/colorspace-private.h" #include "magick/exception-private.h" #include "magick/pixel-accessor.h" #if defined(__cplusplus) || defined(c_plusplus) extern "C" { #endif extern MagickPrivate MagickBooleanType IsIntensitySimilar(const Image *,const PixelPacket *,const PixelPacket *); static inline double GetFuzzyColorDistance(const Image *p,const Image *q) { double fuzz; fuzz=(double) MagickMax(MagickMax(p->fuzz,q->fuzz),(MagickRealType) MagickSQ1_2); return(fuzz*fuzz); } static inline MagickBooleanType IsColorEqual(const PixelPacket *p, const PixelPacket *q) { MagickRealType blue, green, red; red=(MagickRealType) p->red; green=(MagickRealType) p->green; blue=(MagickRealType) p->blue; if ((AbsolutePixelValue(red-q->red) < MagickEpsilon) && (AbsolutePixelValue(green-q->green) < MagickEpsilon) && (AbsolutePixelValue(blue-q->blue) < MagickEpsilon)) return(MagickTrue); return(MagickFalse); } static inline MagickBooleanType IsMagickColorEqual(const MagickPixelPacket *p, const MagickPixelPacket *q) { MagickRealType alpha, beta; alpha=p->matte == MagickFalse ? OpaqueOpacity : p->opacity; beta=q->matte == MagickFalse ? OpaqueOpacity : q->opacity; if (AbsolutePixelValue(alpha-beta) >= MagickEpsilon) return(MagickFalse); if ((AbsolutePixelValue(alpha-TransparentOpacity) < MagickEpsilon) || (AbsolutePixelValue(beta-TransparentOpacity) < MagickEpsilon)) return(MagickTrue); /* no color component if pixel is transparent */ if (AbsolutePixelValue(p->red-q->red) >= MagickEpsilon) return(MagickFalse); if (AbsolutePixelValue(p->green-q->green) >= MagickEpsilon) return(MagickFalse); if (AbsolutePixelValue(p->blue-q->blue) >= MagickEpsilon) return(MagickFalse); if (p->colorspace == CMYKColorspace) { if (AbsolutePixelValue(p->index-q->index) >= MagickEpsilon) return(MagickFalse); } return(MagickTrue); } static inline MagickBooleanType IsMagickGray(const MagickPixelPacket *pixel) { if (IssRGBCompatibleColorspace(pixel->colorspace) == MagickFalse) return(MagickFalse); if ((AbsolutePixelValue(pixel->red-pixel->green) < MagickEpsilon) && (AbsolutePixelValue(pixel->green-pixel->blue) < MagickEpsilon)) return(MagickTrue); return(MagickFalse); } static inline MagickRealType MagickPixelIntensity( const MagickPixelPacket *pixel) { if (IsGrayColorspace(pixel->colorspace) != MagickFalse) return(pixel->red); return(0.212656*pixel->red+0.715158*pixel->green+0.072186*pixel->blue); } static inline Quantum MagickPixelIntensityToQuantum( const MagickPixelPacket *pixel) { if (IsGrayColorspace(pixel->colorspace) != MagickFalse) return(ClampToQuantum(pixel->red)); return(ClampToQuantum(0.212656*pixel->red+0.715158*pixel->green+ 0.072186*pixel->blue)); } static inline MagickRealType MagickPixelLuma(const MagickPixelPacket *pixel) { MagickRealType blue, green, red; if (IsGrayColorspace(pixel->colorspace) != MagickFalse) return(pixel->red); if (pixel->colorspace == sRGBColorspace) return(0.212656*pixel->red+0.715158*pixel->green+0.072186*pixel->blue); red=EncodePixelGamma(pixel->red); green=EncodePixelGamma(pixel->green); blue=EncodePixelGamma(pixel->blue); return(0.212656*red+0.715158*green+0.072186*blue); } static inline MagickRealType MagickPixelLuminance( const MagickPixelPacket *pixel) { MagickRealType blue, green, red; if (IsGrayColorspace(pixel->colorspace) != MagickFalse) return(pixel->red); if (pixel->colorspace != sRGBColorspace) return(0.212656*pixel->red+0.715158*pixel->green+0.072186*pixel->blue); red=DecodePixelGamma(pixel->red); green=DecodePixelGamma(pixel->green); blue=DecodePixelGamma(pixel->blue); return(0.212656*red+0.715158*green+0.072186*blue); } #if defined(__cplusplus) || defined(c_plusplus) } #endif #endif