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/*M///////////////////////////////////////////////////////////////////////////////////////
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//
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//  IMPORTANT: READ BEFORE DOWNLOADING, COPYING, INSTALLING OR USING.
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//  If you do not agree to this license, do not download, install,
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//  copy or use the software.
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//
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//                          License Agreement
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//                For Open Source Computer Vision Library
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//
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// Copyright (C) 2000-2008, Intel Corporation, all rights reserved.
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// Copyright (C) 2009, Willow Garage Inc., all rights reserved.
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// Third party copyrights are property of their respective owners.
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//M*/
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#ifndef OPENCV_IMGCODECS_HPP
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#define OPENCV_IMGCODECS_HPP
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#include "opencv2/core.hpp"
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/**
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  @defgroup imgcodecs Image file reading and writing
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  @{
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    @defgroup imgcodecs_flags Flags used for image file reading and writing
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    @defgroup imgcodecs_ios iOS glue
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    @defgroup imgcodecs_macosx MacOS(OSX) glue
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  @}
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*/
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//////////////////////////////// image codec ////////////////////////////////
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namespace cv
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{
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//! @addtogroup imgcodecs
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//! @{
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//! @addtogroup imgcodecs_flags
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//! @{
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//! Imread flags
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//! @note IMREAD_COLOR_BGR (IMREAD_COLOR) and IMREAD_COLOR_RGB can not be set at the same time.
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enum ImreadModes {
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       IMREAD_UNCHANGED            = -1, //!< If set, return the loaded image as is (with alpha channel, otherwise it gets cropped). Ignore EXIF orientation.
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       IMREAD_GRAYSCALE            = 0,  //!< If set, always convert image to the single channel grayscale image (codec internal conversion).
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       IMREAD_COLOR_BGR            = 1,  //!< If set, always convert image to the 3 channel BGR color image.
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       IMREAD_COLOR                = 1,  //!< Same as IMREAD_COLOR_BGR.
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       IMREAD_ANYDEPTH             = 2,  //!< If set, return 16-bit/32-bit image when the input has the corresponding depth, otherwise convert it to 8-bit.
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       IMREAD_ANYCOLOR             = 4,  //!< If set, the image is read in any possible color format.
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       IMREAD_LOAD_GDAL            = 8,  //!< If set, use the gdal driver for loading the image.
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       IMREAD_REDUCED_GRAYSCALE_2  = 16, //!< If set, always convert image to the single channel grayscale image and the image size reduced 1/2.
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       IMREAD_REDUCED_COLOR_2      = 17, //!< If set, always convert image to the 3 channel BGR color image and the image size reduced 1/2.
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       IMREAD_REDUCED_GRAYSCALE_4  = 32, //!< If set, always convert image to the single channel grayscale image and the image size reduced 1/4.
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       IMREAD_REDUCED_COLOR_4      = 33, //!< If set, always convert image to the 3 channel BGR color image and the image size reduced 1/4.
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       IMREAD_REDUCED_GRAYSCALE_8  = 64, //!< If set, always convert image to the single channel grayscale image and the image size reduced 1/8.
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       IMREAD_REDUCED_COLOR_8      = 65, //!< If set, always convert image to the 3 channel BGR color image and the image size reduced 1/8.
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       IMREAD_IGNORE_ORIENTATION   = 128, //!< If set, do not rotate the image according to EXIF's orientation flag.
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       IMREAD_COLOR_RGB            = 256, //!< If set, always convert image to the 3 channel RGB color image.
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     };
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//! Imwrite flags
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enum ImwriteFlags {
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       IMWRITE_JPEG_QUALITY        = 1,  //!< For JPEG, it can be a quality from 0 to 100 (the higher is the better). Default value is 95.
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       IMWRITE_JPEG_PROGRESSIVE    = 2,  //!< Enable JPEG features, 0 or 1, default is False.
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       IMWRITE_JPEG_OPTIMIZE       = 3,  //!< Enable JPEG features, 0 or 1, default is False.
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       IMWRITE_JPEG_RST_INTERVAL   = 4,  //!< JPEG restart interval, 0 - 65535, default is 0 - no restart.
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       IMWRITE_JPEG_LUMA_QUALITY   = 5,  //!< Separate luma quality level, 0 - 100, default is -1 - don't use. If JPEG_LIB_VERSION < 70, Not supported.
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       IMWRITE_JPEG_CHROMA_QUALITY = 6,  //!< Separate chroma quality level, 0 - 100, default is -1 - don't use. If JPEG_LIB_VERSION < 70, Not supported.
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       IMWRITE_JPEG_SAMPLING_FACTOR = 7, //!< For JPEG, set sampling factor. See cv::ImwriteJPEGSamplingFactorParams.
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       IMWRITE_PNG_COMPRESSION     = 16, //!< For PNG, it can be the compression level from 0 to 9. A higher value means a smaller size and longer compression time. If specified, strategy is changed to IMWRITE_PNG_STRATEGY_DEFAULT (Z_DEFAULT_STRATEGY). Default value is 1 (best speed setting).
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       IMWRITE_PNG_STRATEGY        = 17, //!< One of cv::ImwritePNGFlags, default is IMWRITE_PNG_STRATEGY_RLE.
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       IMWRITE_PNG_BILEVEL         = 18, //!< Binary level PNG, 0 or 1, default is 0.
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       IMWRITE_PNG_FILTER          = 19, //!< One of cv::ImwritePNGFilterFlags, default is IMWRITE_PNG_FILTER_SUB.
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       IMWRITE_PXM_BINARY          = 32, //!< For PPM, PGM, or PBM, it can be a binary format flag, 0 or 1. Default value is 1.
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       IMWRITE_EXR_TYPE            = (3 << 4) + 0 /* 48 */, //!< override EXR storage type (FLOAT (FP32) is default)
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       IMWRITE_EXR_COMPRESSION     = (3 << 4) + 1 /* 49 */, //!< override EXR compression type (ZIP_COMPRESSION = 3 is default)
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       IMWRITE_EXR_DWA_COMPRESSION_LEVEL = (3 << 4) + 2 /* 50 */, //!< override EXR DWA compression level (45 is default)
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       IMWRITE_WEBP_QUALITY        = 64, //!< For WEBP, it can be a quality from 1 to 100 (the higher is the better). By default (without any parameter) and for quality above 100 the lossless compression is used.
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       IMWRITE_HDR_COMPRESSION     = (5 << 4) + 0 /* 80 */, //!< specify HDR compression
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       IMWRITE_PAM_TUPLETYPE       = 128,//!< For PAM, sets the TUPLETYPE field to the corresponding string value that is defined for the format
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       IMWRITE_TIFF_RESUNIT        = 256,//!< For TIFF, use to specify which DPI resolution unit to set; see libtiff documentation for valid values
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       IMWRITE_TIFF_XDPI           = 257,//!< For TIFF, use to specify the X direction DPI
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       IMWRITE_TIFF_YDPI           = 258,//!< For TIFF, use to specify the Y direction DPI
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       IMWRITE_TIFF_COMPRESSION    = 259,//!< For TIFF, use to specify the image compression scheme. See cv::ImwriteTiffCompressionFlags. Note, for images whose depth is CV_32F, only libtiff's SGILOG compression scheme is used. For other supported depths, the compression scheme can be specified by this flag; LZW compression is the default.
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       IMWRITE_TIFF_ROWSPERSTRIP   = 278,//!< For TIFF, use to specify the number of rows per strip.
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       IMWRITE_TIFF_PREDICTOR      = 317,//!< For TIFF, use to specify predictor. See cv::ImwriteTiffPredictorFlags.
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       IMWRITE_JPEG2000_COMPRESSION_X1000 = 272,//!< For JPEG2000, use to specify the target compression rate (multiplied by 1000). The value can be from 0 to 1000. Default is 1000.
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       IMWRITE_AVIF_QUALITY        = 512,//!< For AVIF, it can be a quality between 0 and 100 (the higher the better). Default is 95.
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       IMWRITE_AVIF_DEPTH          = 513,//!< For AVIF, it can be 8, 10 or 12. If >8, it is stored/read as CV_32F. Default is 8.
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       IMWRITE_AVIF_SPEED          = 514,//!< For AVIF, it is between 0 (slowest) and (fastest). Default is 9.
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       IMWRITE_JPEGXL_QUALITY      = 640,//!< For JPEG XL, it can be a quality from 0 to 100 (the higher is the better). Default value is 95. If set, distance parameter is re-calicurated from quality level automatically. This parameter request libjxl v0.10 or later.
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       IMWRITE_JPEGXL_EFFORT       = 641,//!< For JPEG XL, encoder effort/speed level without affecting decoding speed; it is between 1 (fastest) and 10 (slowest). Default is 7.
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       IMWRITE_JPEGXL_DISTANCE     = 642,//!< For JPEG XL, distance level for lossy compression: target max butteraugli distance, lower = higher quality, 0 = lossless; range: 0 .. 25. Default is 1.
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       IMWRITE_JPEGXL_DECODING_SPEED = 643,//!< For JPEG XL, decoding speed tier for the provided options; minimum is 0 (slowest to decode, best quality/density), and maximum is 4 (fastest to decode, at the cost of some quality/density). Default is 0.
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       IMWRITE_GIF_LOOP            = 1024, //!< Not functional since 4.12.0. Replaced by cv::Animation::loop_count.
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       IMWRITE_GIF_SPEED           = 1025, //!< Not functional since 4.12.0. Replaced by cv::Animation::durations.
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       IMWRITE_GIF_QUALITY         = 1026, //!< For GIF, it can be a quality from 1 to 8. Default is 2. See cv::ImwriteGifCompressionFlags.
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       IMWRITE_GIF_DITHER          = 1027, //!< For GIF, it can be a quality from -1(most dither) to 3(no dither). Default is 0.
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       IMWRITE_GIF_TRANSPARENCY    = 1028, //!< For GIF, the alpha channel lower than this will be set to transparent. Default is 1.
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       IMWRITE_GIF_COLORTABLE      = 1029  //!< For GIF, 0 means global color table is used, 1 means local color table is used. Default is 0.
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};
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enum ImwriteJPEGSamplingFactorParams {
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       IMWRITE_JPEG_SAMPLING_FACTOR_411 = 0x411111, //!< 4x1,1x1,1x1
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       IMWRITE_JPEG_SAMPLING_FACTOR_420 = 0x221111, //!< 2x2,1x1,1x1(Default)
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       IMWRITE_JPEG_SAMPLING_FACTOR_422 = 0x211111, //!< 2x1,1x1,1x1
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       IMWRITE_JPEG_SAMPLING_FACTOR_440 = 0x121111, //!< 1x2,1x1,1x1
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       IMWRITE_JPEG_SAMPLING_FACTOR_444 = 0x111111  //!< 1x1,1x1,1x1(No subsampling)
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     };
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enum ImwriteTiffCompressionFlags {
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        IMWRITE_TIFF_COMPRESSION_NONE = 1,            //!< dump mode
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        IMWRITE_TIFF_COMPRESSION_CCITTRLE = 2,        //!< CCITT modified Huffman RLE
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        IMWRITE_TIFF_COMPRESSION_CCITTFAX3 = 3,       //!< CCITT Group 3 fax encoding
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        IMWRITE_TIFF_COMPRESSION_CCITT_T4 = 3,        //!< CCITT T.4 (TIFF 6 name)
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        IMWRITE_TIFF_COMPRESSION_CCITTFAX4 = 4,       //!< CCITT Group 4 fax encoding
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        IMWRITE_TIFF_COMPRESSION_CCITT_T6 = 4,        //!< CCITT T.6 (TIFF 6 name)
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        IMWRITE_TIFF_COMPRESSION_LZW = 5,             //!< Lempel-Ziv  & Welch
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        IMWRITE_TIFF_COMPRESSION_OJPEG = 6,           //!< !6.0 JPEG
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        IMWRITE_TIFF_COMPRESSION_JPEG = 7,            //!< %JPEG DCT compression
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        IMWRITE_TIFF_COMPRESSION_T85 = 9,             //!< !TIFF/FX T.85 JBIG compression
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        IMWRITE_TIFF_COMPRESSION_T43 = 10,            //!< !TIFF/FX T.43 colour by layered JBIG compression
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        IMWRITE_TIFF_COMPRESSION_NEXT = 32766,        //!< NeXT 2-bit RLE
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        IMWRITE_TIFF_COMPRESSION_CCITTRLEW = 32771,   //!< #1 w/ word alignment
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        IMWRITE_TIFF_COMPRESSION_PACKBITS = 32773,    //!< Macintosh RLE
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        IMWRITE_TIFF_COMPRESSION_THUNDERSCAN = 32809, //!< ThunderScan RLE
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        IMWRITE_TIFF_COMPRESSION_IT8CTPAD = 32895,    //!< IT8 CT w/padding
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        IMWRITE_TIFF_COMPRESSION_IT8LW = 32896,       //!< IT8 Linework RLE
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        IMWRITE_TIFF_COMPRESSION_IT8MP = 32897,       //!< IT8 Monochrome picture
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        IMWRITE_TIFF_COMPRESSION_IT8BL = 32898,       //!< IT8 Binary line art
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        IMWRITE_TIFF_COMPRESSION_PIXARFILM = 32908,   //!< Pixar companded 10bit LZW
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        IMWRITE_TIFF_COMPRESSION_PIXARLOG = 32909,    //!< Pixar companded 11bit ZIP
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        IMWRITE_TIFF_COMPRESSION_DEFLATE = 32946,     //!< Deflate compression, legacy tag
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        IMWRITE_TIFF_COMPRESSION_ADOBE_DEFLATE = 8,   //!< Deflate compression, as recognized by Adobe
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        IMWRITE_TIFF_COMPRESSION_DCS = 32947,         //!< Kodak DCS encoding
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        IMWRITE_TIFF_COMPRESSION_JBIG = 34661,        //!< ISO JBIG
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        IMWRITE_TIFF_COMPRESSION_SGILOG = 34676,      //!< SGI Log Luminance RLE
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        IMWRITE_TIFF_COMPRESSION_SGILOG24 = 34677,    //!< SGI Log 24-bit packed
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        IMWRITE_TIFF_COMPRESSION_JP2000 = 34712,      //!< Leadtools JPEG2000
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        IMWRITE_TIFF_COMPRESSION_LERC = 34887,        //!< ESRI Lerc codec: https://github.com/Esri/lerc
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        IMWRITE_TIFF_COMPRESSION_LZMA = 34925,        //!< LZMA2
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        IMWRITE_TIFF_COMPRESSION_ZSTD = 50000,        //!< ZSTD: WARNING not registered in Adobe-maintained registry
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        IMWRITE_TIFF_COMPRESSION_WEBP = 50001,        //!< WEBP: WARNING not registered in Adobe-maintained registry
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        IMWRITE_TIFF_COMPRESSION_JXL = 50002          //!< JPEGXL: WARNING not registered in Adobe-maintained registry
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};
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enum ImwriteTiffPredictorFlags {
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        IMWRITE_TIFF_PREDICTOR_NONE = 1,              //!< no prediction scheme used
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        IMWRITE_TIFF_PREDICTOR_HORIZONTAL = 2,        //!< horizontal differencing
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        IMWRITE_TIFF_PREDICTOR_FLOATINGPOINT = 3      //!< floating point predictor
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};
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enum ImwriteEXRTypeFlags {
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       /*IMWRITE_EXR_TYPE_UNIT = 0, //!< not supported */
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       IMWRITE_EXR_TYPE_HALF   = 1, //!< store as HALF (FP16)
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       IMWRITE_EXR_TYPE_FLOAT  = 2  //!< store as FP32 (default)
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     };
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enum ImwriteEXRCompressionFlags {
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       IMWRITE_EXR_COMPRESSION_NO    = 0, //!< no compression
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       IMWRITE_EXR_COMPRESSION_RLE   = 1, //!< run length encoding
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       IMWRITE_EXR_COMPRESSION_ZIPS  = 2, //!< zlib compression, one scan line at a time
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       IMWRITE_EXR_COMPRESSION_ZIP   = 3, //!< zlib compression, in blocks of 16 scan lines
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       IMWRITE_EXR_COMPRESSION_PIZ   = 4, //!< piz-based wavelet compression
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       IMWRITE_EXR_COMPRESSION_PXR24 = 5, //!< lossy 24-bit float compression
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       IMWRITE_EXR_COMPRESSION_B44   = 6, //!< lossy 4-by-4 pixel block compression, fixed compression rate
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       IMWRITE_EXR_COMPRESSION_B44A  = 7, //!< lossy 4-by-4 pixel block compression, flat fields are compressed more
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       IMWRITE_EXR_COMPRESSION_DWAA  = 8, //!< lossy DCT based compression, in blocks of 32 scanlines. More efficient for partial buffer access. Supported since OpenEXR 2.2.0.
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       IMWRITE_EXR_COMPRESSION_DWAB  = 9, //!< lossy DCT based compression, in blocks of 256 scanlines. More efficient space wise and faster to decode full frames than DWAA_COMPRESSION. Supported since OpenEXR 2.2.0.
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     };
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//! Imwrite PNG specific flags used to tune the compression algorithm.
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/** These flags will be modify the way of PNG image compression and will be passed to the underlying zlib processing stage.
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-   The effect of IMWRITE_PNG_STRATEGY_FILTERED is to force more Huffman coding and less string matching; it is somewhat intermediate between IMWRITE_PNG_STRATEGY_DEFAULT and IMWRITE_PNG_STRATEGY_HUFFMAN_ONLY.
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-   IMWRITE_PNG_STRATEGY_RLE is designed to be almost as fast as IMWRITE_PNG_STRATEGY_HUFFMAN_ONLY, but give better compression for PNG image data.
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-   The strategy parameter only affects the compression ratio but not the correctness of the compressed output even if it is not set appropriately.
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-   IMWRITE_PNG_STRATEGY_FIXED prevents the use of dynamic Huffman codes, allowing for a simpler decoder for special applications.
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*/
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enum ImwritePNGFlags {
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       IMWRITE_PNG_STRATEGY_DEFAULT      = 0, //!< Use this value for normal data.
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       IMWRITE_PNG_STRATEGY_FILTERED     = 1, //!< Use this value for data produced by a filter (or predictor).Filtered data consists mostly of small values with a somewhat random distribution. In this case, the compression algorithm is tuned to compress them better.
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       IMWRITE_PNG_STRATEGY_HUFFMAN_ONLY = 2, //!< Use this value to force Huffman encoding only (no string match).
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       IMWRITE_PNG_STRATEGY_RLE          = 3, //!< Use this value to limit match distances to one (run-length encoding).
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       IMWRITE_PNG_STRATEGY_FIXED        = 4  //!< Using this value prevents the use of dynamic Huffman codes, allowing for a simpler decoder for special applications.
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     };
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//! Imwrite PNG specific values for IMWRITE_PNG_FILTER parameter key
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enum ImwritePNGFilterFlags {
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       IMWRITE_PNG_FILTER_NONE           = 8,   //!< Applies no filter to the PNG image (useful when you want to save the raw pixel data without any compression filter).
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       IMWRITE_PNG_FILTER_SUB            = 16,  //!< Applies the "sub" filter, which calculates the difference between the current byte and the previous byte in the row.
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       IMWRITE_PNG_FILTER_UP             = 32,  //!< applies the "up" filter, which calculates the difference between the current byte and the corresponding byte directly above it.
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       IMWRITE_PNG_FILTER_AVG            = 64,  //!< applies the "average" filter, which calculates the average of the byte to the left and the byte above.
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       IMWRITE_PNG_FILTER_PAETH          = 128, //!< applies the "Paeth" filter, a more complex filter that predicts the next pixel value based on neighboring pixels.
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       IMWRITE_PNG_FAST_FILTERS          = (IMWRITE_PNG_FILTER_NONE | IMWRITE_PNG_FILTER_SUB | IMWRITE_PNG_FILTER_UP), //!< This is a combination of IMWRITE_PNG_FILTER_NONE, IMWRITE_PNG_FILTER_SUB, and IMWRITE_PNG_FILTER_UP, typically used for faster compression.
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       IMWRITE_PNG_ALL_FILTERS           = (IMWRITE_PNG_FAST_FILTERS | IMWRITE_PNG_FILTER_AVG | IMWRITE_PNG_FILTER_PAETH) //!< This combines all available filters (NONE, SUB, UP, AVG, and PAETH), which will attempt to apply all of them for the best possible compression.
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     };
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//! Imwrite PAM specific tupletype flags used to define the 'TUPLETYPE' field of a PAM file.
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enum ImwritePAMFlags {
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       IMWRITE_PAM_FORMAT_NULL            = 0,
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       IMWRITE_PAM_FORMAT_BLACKANDWHITE   = 1,
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       IMWRITE_PAM_FORMAT_GRAYSCALE       = 2,
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       IMWRITE_PAM_FORMAT_GRAYSCALE_ALPHA = 3,
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       IMWRITE_PAM_FORMAT_RGB             = 4,
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       IMWRITE_PAM_FORMAT_RGB_ALPHA       = 5
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     };
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//! Imwrite HDR specific values for IMWRITE_HDR_COMPRESSION parameter key
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enum ImwriteHDRCompressionFlags {
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    IMWRITE_HDR_COMPRESSION_NONE = 0,
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    IMWRITE_HDR_COMPRESSION_RLE = 1
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};
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//! Imwrite GIF specific values for IMWRITE_GIF_QUALITY parameter key, if larger than 3, then its related to the size of the color table.
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enum ImwriteGIFCompressionFlags {
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    IMWRITE_GIF_FAST_NO_DITHER       = 1,
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    IMWRITE_GIF_FAST_FLOYD_DITHER    = 2,
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    IMWRITE_GIF_COLORTABLE_SIZE_8    = 3,
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    IMWRITE_GIF_COLORTABLE_SIZE_16   = 4,
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    IMWRITE_GIF_COLORTABLE_SIZE_32   = 5,
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    IMWRITE_GIF_COLORTABLE_SIZE_64   = 6,
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    IMWRITE_GIF_COLORTABLE_SIZE_128  = 7,
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    IMWRITE_GIF_COLORTABLE_SIZE_256  = 8
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};
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//! @} imgcodecs_flags
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/** @brief Represents an animation with multiple frames.
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The `Animation` struct is designed to store and manage data for animated sequences such as those from animated formats (e.g., GIF, AVIF, APNG, WebP).
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It provides support for looping, background color settings, frame timing, and frame storage.
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*/
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struct CV_EXPORTS_W_SIMPLE Animation
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{
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    //! Number of times the animation should loop. 0 means infinite looping.
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    /*! @note At some file format, when N is set, whether it is displayed N or N+1 times depends on the implementation of the user application. This loop times behaviour has not been documented clearly.
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     *  - (GIF) See https://issues.chromium.org/issues/40459899
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     *    And animated GIF with loop is extended with the Netscape Application Block(NAB), which it not a part of GIF89a specification. See https://en.wikipedia.org/wiki/GIF#Animated_GIF .
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     *  - (WebP) See https://issues.chromium.org/issues/41276895
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     */
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    CV_PROP_RW int loop_count;
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    //! Background color of the animation in BGRA format.
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    CV_PROP_RW Scalar bgcolor;
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    //! Duration for each frame in milliseconds.
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    /*! @note (GIF) Due to file format limitation
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     *  - Durations must be multiples of 10 milliseconds. Any provided value will be rounded down to the nearest 10ms (e.g., 88ms → 80ms).
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     *  - 0ms(or smaller than expected in user application) duration may cause undefined behavior, e.g. it is handled with default duration.
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     *  - Over 65535 * 10 milliseconds duration is not supported.
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     */
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    CV_PROP_RW std::vector<int> durations;
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    //! Vector of frames, where each Mat represents a single frame.
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    CV_PROP_RW std::vector<Mat> frames;
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    /** @brief Constructs an Animation object with optional loop count and background color.
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    @param loopCount An integer representing the number of times the animation should loop:
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    - `0` (default) indicates infinite looping, meaning the animation will replay continuously.
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    - Positive values denote finite repeat counts, allowing the animation to play a limited number of times.
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    - If a negative value or a value beyond the maximum of `0xffff` (65535) is provided, it is reset to `0`
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    (infinite looping) to maintain valid bounds.
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    @param bgColor A `Scalar` object representing the background color in BGR format:
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    - Defaults to `Scalar()`, indicating an empty color (usually transparent if supported).
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    - This background color provides a solid fill behind frames that have transparency, ensuring a consistent display appearance.
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    */
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    CV_WRAP Animation(int loopCount = 0, Scalar bgColor = Scalar());
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};
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/** @brief Loads an image from a file.
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@anchor imread
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The `imread` function loads an image from the specified file and returns OpenCV matrix. If the image cannot be
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read (because of a missing file, improper permissions, or unsupported/invalid format), the function
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returns an empty matrix.
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Currently, the following file formats are supported:
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-   Windows bitmaps - \*.bmp, \*.dib (always supported)
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-   GIF files - \*.gif (always supported)
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-   JPEG files - \*.jpeg, \*.jpg, \*.jpe (see the *Note* section)
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-   JPEG 2000 files - \*.jp2 (see the *Note* section)
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-   Portable Network Graphics - \*.png (see the *Note* section)
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-   WebP - \*.webp (see the *Note* section)
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-   AVIF - \*.avif (see the *Note* section)
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-   Portable image format - \*.pbm, \*.pgm, \*.ppm, \*.pxm, \*.pnm (always supported)
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-   PFM files - \*.pfm (see the *Note* section)
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-   Sun rasters - \*.sr, \*.ras (always supported)
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-   TIFF files - \*.tiff, \*.tif (see the *Note* section)
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-   OpenEXR Image files - \*.exr (see the *Note* section)
318
-   Radiance HDR - \*.hdr, \*.pic (always supported)
319
-   Raster and Vector geospatial data supported by GDAL (see the *Note* section)
320
321
@note
322
-   The function determines the type of an image by its content, not by the file extension.
323
-   In the case of color images, the decoded images will have the channels stored in **B G R** order.
324
-   When using IMREAD_GRAYSCALE, the codec's internal grayscale conversion will be used, if available.
325
    Results may differ from the output of cvtColor().
326
-   On Microsoft Windows\* and Mac OS\*, the codecs shipped with OpenCV (libjpeg, libpng, libtiff,
327
    and libjasper) are used by default. So, OpenCV can always read JPEGs, PNGs, and TIFFs. On Mac OS,
328
    there is also an option to use native Mac OS image readers. However, beware that currently these
329
    native image loaders give images with different pixel values because of the color management embedded
330
    into Mac OS.
331
-   On Linux\*, BSD flavors, and other Unix-like open-source operating systems, OpenCV looks for
332
    codecs supplied with the OS. Ensure the relevant packages are installed (including development
333
    files, such as "libjpeg-dev" in Debian\* and Ubuntu\*) to get codec support, or turn
334
    on the OPENCV_BUILD_3RDPARTY_LIBS flag in CMake.
335
-   If the *WITH_GDAL* flag is set to true in CMake and @ref IMREAD_LOAD_GDAL is used to load the image,
336
    the [GDAL](http://www.gdal.org) driver will be used to decode the image, supporting
337
    [Raster](http://www.gdal.org/formats_list.html) and [Vector](http://www.gdal.org/ogr_formats.html) formats.
338
-   If EXIF information is embedded in the image file, the EXIF orientation will be taken into account,
339
    and thus the image will be rotated accordingly unless the flags @ref IMREAD_IGNORE_ORIENTATION
340
    or @ref IMREAD_UNCHANGED are passed.
341
-   Use the IMREAD_UNCHANGED flag to preserve the floating-point values from PFM images.
342
-   By default, the number of pixels must be less than 2^30. This limit can be changed by setting
343
    the environment variable `OPENCV_IO_MAX_IMAGE_PIXELS`. See @ref tutorial_env_reference.
344
345
@param filename Name of the file to be loaded.
346
@param flags Flag that can take values of `cv::ImreadModes`.
347
*/
348
CV_EXPORTS_W Mat imread( const String& filename, int flags = IMREAD_COLOR_BGR );
349
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/** @brief Loads an image from a file.
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This is an overloaded member function, provided for convenience. It differs from the above function only in what argument(s) it accepts and the return value.
353
@param filename Name of file to be loaded.
354
@param dst object in which the image will be loaded.
355
@param flags Flag that can take values of cv::ImreadModes
356
@note
357
The image passing through the img parameter can be pre-allocated. The memory is reused if the shape and the type match with the load image.
358
 */
359
CV_EXPORTS_W void imread( const String& filename, OutputArray dst, int flags = IMREAD_COLOR_BGR );
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/** @brief Loads a multi-page image from a file.
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The function imreadmulti loads a multi-page image from the specified file into a vector of Mat objects.
364
@param filename Name of file to be loaded.
365
@param mats A vector of Mat objects holding each page.
366
@param flags Flag that can take values of cv::ImreadModes, default with cv::IMREAD_ANYCOLOR.
367
@sa cv::imread
368
*/
369
CV_EXPORTS_W bool imreadmulti(const String& filename, CV_OUT std::vector<Mat>& mats, int flags = IMREAD_ANYCOLOR);
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/** @brief Loads images of a multi-page image from a file.
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The function imreadmulti loads a specified range from a multi-page image from the specified file into a vector of Mat objects.
374
@param filename Name of file to be loaded.
375
@param mats A vector of Mat objects holding each page.
376
@param start Start index of the image to load
377
@param count Count number of images to load
378
@param flags Flag that can take values of cv::ImreadModes, default with cv::IMREAD_ANYCOLOR.
379
@sa cv::imread
380
*/
381
CV_EXPORTS_W bool imreadmulti(const String& filename, CV_OUT std::vector<Mat>& mats, int start, int count, int flags = IMREAD_ANYCOLOR);
382
383
/** @example samples/cpp/tutorial_code/imgcodecs/animations.cpp
384
An example to show usage of cv::imreadanimation and cv::imwriteanimation functions.
385
Check @ref tutorial_animations "the corresponding tutorial" for more details
386
*/
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/** @brief Loads frames from an animated image file into an Animation structure.
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The function imreadanimation loads frames from an animated image file (e.g., GIF, AVIF, APNG, WEBP) into the provided Animation struct.
391
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@param filename A string containing the path to the file.
393
@param animation A reference to an Animation structure where the loaded frames will be stored. It should be initialized before the function is called.
394
@param start The index of the first frame to load. This is optional and defaults to 0.
395
@param count The number of frames to load. This is optional and defaults to 32767.
396
397
@return Returns true if the file was successfully loaded and frames were extracted; returns false otherwise.
398
*/
399
CV_EXPORTS_W bool imreadanimation(const String& filename, CV_OUT Animation& animation, int start = 0, int count = INT16_MAX);
400
401
/** @brief Loads frames from an animated image buffer into an Animation structure.
402
403
The function imdecodeanimation loads frames from an animated image buffer (e.g., GIF, AVIF, APNG, WEBP) into the provided Animation struct.
404
405
@param buf A reference to an InputArray containing the image buffer.
406
@param animation A reference to an Animation structure where the loaded frames will be stored. It should be initialized before the function is called.
407
@param start The index of the first frame to load. This is optional and defaults to 0.
408
@param count The number of frames to load. This is optional and defaults to 32767.
409
410
@return Returns true if the buffer was successfully loaded and frames were extracted; returns false otherwise.
411
*/
412
CV_EXPORTS_W bool imdecodeanimation(InputArray buf, CV_OUT Animation& animation, int start = 0, int count = INT16_MAX);
413
414
/** @brief Saves an Animation to a specified file.
415
416
The function imwriteanimation saves the provided Animation data to the specified file in an animated format.
417
Supported formats depend on the implementation and may include formats like GIF, AVIF, APNG, or WEBP.
418
419
@param filename The name of the file where the animation will be saved. The file extension determines the format.
420
@param animation A constant reference to an Animation struct containing the frames and metadata to be saved.
421
@param params Optional format-specific parameters encoded as pairs (paramId_1, paramValue_1, paramId_2, paramValue_2, ...).
422
These parameters are used to specify additional options for the encoding process. Refer to `cv::ImwriteFlags` for details on possible parameters.
423
424
@return Returns true if the animation was successfully saved; returns false otherwise.
425
*/
426
CV_EXPORTS_W bool imwriteanimation(const String& filename, const Animation& animation, const std::vector<int>& params = std::vector<int>());
427
428
/** @brief Encodes an Animation to a memory buffer.
429
430
The function imencodeanimation encodes the provided Animation data into a memory
431
buffer in an animated format. Supported formats depend on the implementation and
432
may include formats like GIF, AVIF, APNG, or WEBP.
433
434
@param ext The file extension that determines the format of the encoded data.
435
@param animation A constant reference to an Animation struct containing the
436
frames and metadata to be encoded.
437
@param buf A reference to a vector of unsigned chars where the encoded data will
438
be stored.
439
@param params Optional format-specific parameters encoded as pairs (paramId_1,
440
paramValue_1, paramId_2, paramValue_2, ...). These parameters are used to
441
specify additional options for the encoding process. Refer to `cv::ImwriteFlags`
442
for details on possible parameters.
443
444
@return Returns true if the animation was successfully encoded; returns false otherwise.
445
*/
446
CV_EXPORTS_W bool imencodeanimation(const String& ext, const Animation& animation, CV_OUT std::vector<uchar>& buf, const std::vector<int>& params = std::vector<int>());
447
448
/** @brief Returns the number of images inside the given file
449
450
The function imcount returns the number of pages in a multi-page image (e.g. TIFF), the number of frames in an animation (e.g. AVIF), and 1 otherwise.
451
If the image cannot be decoded, 0 is returned.
452
@param filename Name of file to be loaded.
453
@param flags Flag that can take values of cv::ImreadModes, default with cv::IMREAD_ANYCOLOR.
454
@todo when cv::IMREAD_LOAD_GDAL flag used the return value will be 0 or 1 because OpenCV's GDAL decoder doesn't support multi-page reading yet.
455
*/
456
CV_EXPORTS_W size_t imcount(const String& filename, int flags = IMREAD_ANYCOLOR);
457
458
/** @brief Saves an image to a specified file.
459
460
The function imwrite saves the image to the specified file. The image format is chosen based on the
461
filename extension (see cv::imread for the list of extensions). In general, only 8-bit unsigned (CV_8U)
462
single-channel or 3-channel (with 'BGR' channel order) images
463
can be saved using this function, with these exceptions:
464
465
- With OpenEXR encoder, only 32-bit float (CV_32F) images can be saved.
466
  - 8-bit unsigned (CV_8U) images are not supported.
467
- With Radiance HDR encoder, non 64-bit float (CV_64F) images can be saved.
468
  - All images will be converted to 32-bit float (CV_32F).
469
- With JPEG 2000 encoder, 8-bit unsigned (CV_8U) and 16-bit unsigned (CV_16U) images can be saved.
470
- With JPEG XL encoder, 8-bit unsigned (CV_8U), 16-bit unsigned (CV_16U) and 32-bit float(CV_32F) images can be saved.
471
  - JPEG XL images with an alpha channel can be saved using this function.
472
    To achieve this, create an 8-bit 4-channel (CV_8UC4) / 16-bit 4-channel (CV_16UC4) / 32-bit float 4-channel (CV_32FC4) BGRA image, ensuring the alpha channel is the last component.
473
    Fully transparent pixels should have an alpha value of 0, while fully opaque pixels should have an alpha value of 255/65535/1.0.
474
- With PAM encoder, 8-bit unsigned (CV_8U) and 16-bit unsigned (CV_16U) images can be saved.
475
- With PNG encoder, 8-bit unsigned (CV_8U) and 16-bit unsigned (CV_16U) images can be saved.
476
  - PNG images with an alpha channel can be saved using this function.
477
    To achieve this, create an 8-bit 4-channel (CV_8UC4) / 16-bit 4-channel (CV_16UC4) BGRA image, ensuring the alpha channel is the last component.
478
    Fully transparent pixels should have an alpha value of 0, while fully opaque pixels should have an alpha value of 255/65535(see the code sample below).
479
- With PGM/PPM encoder, 8-bit unsigned (CV_8U) and 16-bit unsigned (CV_16U) images can be saved.
480
- With TIFF encoder, 8-bit unsigned (CV_8U), 8-bit signed (CV_8S),
481
                     16-bit unsigned (CV_16U), 16-bit signed (CV_16S),
482
                     32-bit signed (CV_32S),
483
                     32-bit float (CV_32F) and 64-bit float (CV_64F) images can be saved.
484
  - Multiple images (vector of Mat) can be saved in TIFF format (see the code sample below).
485
  - 32-bit float 3-channel (CV_32FC3) TIFF images will be saved
486
    using the LogLuv high dynamic range encoding (4 bytes per pixel)
487
- With GIF encoder, 8-bit unsigned (CV_8U) images can be saved.
488
  - GIF images with an alpha channel can be saved using this function.
489
    To achieve this, create an 8-bit 4-channel (CV_8UC4) BGRA image, ensuring the alpha channel is the last component.
490
    Fully transparent pixels should have an alpha value of 0, while fully opaque pixels should have an alpha value of 255.
491
  - 8-bit single-channel images (CV_8UC1) are not supported due to GIF's limitation to indexed color formats.
492
493
If the image format is not supported, the image will be converted to 8-bit unsigned (CV_8U) and saved that way.
494
495
If the format, depth or channel order is different, use
496
Mat::convertTo and cv::cvtColor to convert it before saving. Or, use the universal FileStorage I/O
497
functions to save the image to XML or YAML format.
498
499
The sample below shows how to create a BGRA image, how to set custom compression parameters and save it to a PNG file.
500
It also demonstrates how to save multiple images in a TIFF file:
501
@include snippets/imgcodecs_imwrite.cpp
502
@param filename Name of the file.
503
@param img (Mat or vector of Mat) Image or Images to be saved.
504
@param params Format-specific parameters encoded as pairs (paramId_1, paramValue_1, paramId_2, paramValue_2, ... .) see cv::ImwriteFlags
505
*/
506
CV_EXPORTS_W bool imwrite( const String& filename, InputArray img,
507
              const std::vector<int>& params = std::vector<int>());
508
509
//! @brief multi-image overload for bindings
510
CV_WRAP static inline
511
bool imwritemulti(const String& filename, InputArrayOfArrays img,
512
                  const std::vector<int>& params = std::vector<int>())
513
0
{
514
0
    return imwrite(filename, img, params);
515
0
}
Unexecuted instantiation: generateusergallerycollage_fuzzer.cc:cv::imwritemulti(std::__1::basic_string<char, std::__1::char_traits<char>, std::__1::allocator<char> > const&, cv::_InputArray const&, std::__1::vector<int, std::__1::allocator<int> > const&)
Unexecuted instantiation: imread_fuzzer.cc:cv::imwritemulti(std::__1::basic_string<char, std::__1::char_traits<char>, std::__1::allocator<char> > const&, cv::_InputArray const&, std::__1::vector<int, std::__1::allocator<int> > const&)
Unexecuted instantiation: imdecode_fuzzer.cc:cv::imwritemulti(std::__1::basic_string<char, std::__1::char_traits<char>, std::__1::allocator<char> > const&, cv::_InputArray const&, std::__1::vector<int, std::__1::allocator<int> > const&)
Unexecuted instantiation: filestorage_read_string_fuzzer.cc:cv::imwritemulti(std::__1::basic_string<char, std::__1::char_traits<char>, std::__1::allocator<char> > const&, cv::_InputArray const&, std::__1::vector<int, std::__1::allocator<int> > const&)
Unexecuted instantiation: filestorage_read_file_fuzzer.cc:cv::imwritemulti(std::__1::basic_string<char, std::__1::char_traits<char>, std::__1::allocator<char> > const&, cv::_InputArray const&, std::__1::vector<int, std::__1::allocator<int> > const&)
Unexecuted instantiation: core_fuzzer.cc:cv::imwritemulti(std::__1::basic_string<char, std::__1::char_traits<char>, std::__1::allocator<char> > const&, cv::_InputArray const&, std::__1::vector<int, std::__1::allocator<int> > const&)
Unexecuted instantiation: imencode_fuzzer.cc:cv::imwritemulti(std::__1::basic_string<char, std::__1::char_traits<char>, std::__1::allocator<char> > const&, cv::_InputArray const&, std::__1::vector<int, std::__1::allocator<int> > const&)
Unexecuted instantiation: filestorage_read_filename_fuzzer.cc:cv::imwritemulti(std::__1::basic_string<char, std::__1::char_traits<char>, std::__1::allocator<char> > const&, cv::_InputArray const&, std::__1::vector<int, std::__1::allocator<int> > const&)
516
517
/** @brief Reads an image from a buffer in memory.
518
519
The function imdecode reads an image from the specified buffer in the memory. If the buffer is too short or
520
contains invalid data, the function returns an empty matrix ( Mat::data==NULL ).
521
522
See cv::imread for the list of supported formats and flags description.
523
524
@note In the case of color images, the decoded images will have the channels stored in **B G R** order.
525
@param buf Input array or vector of bytes.
526
@param flags The same flags as in cv::imread, see cv::ImreadModes.
527
*/
528
CV_EXPORTS_W Mat imdecode( InputArray buf, int flags );
529
530
/** @overload
531
@param buf Input array or vector of bytes.
532
@param flags The same flags as in cv::imread, see cv::ImreadModes.
533
@param dst The optional output placeholder for the decoded matrix. It can save the image
534
reallocations when the function is called repeatedly for images of the same size. In case of decoder
535
failure the function returns empty cv::Mat object, but does not release user-provided dst buffer.
536
*/
537
CV_EXPORTS Mat imdecode( InputArray buf, int flags, Mat* dst);
538
539
/** @brief Reads a multi-page image from a buffer in memory.
540
541
The function imdecodemulti reads a multi-page image from the specified buffer in the memory. If the buffer is too short or
542
contains invalid data, the function returns false.
543
544
See cv::imreadmulti for the list of supported formats and flags description.
545
546
@note In the case of color images, the decoded images will have the channels stored in **B G R** order.
547
@param buf Input array or vector of bytes.
548
@param flags The same flags as in cv::imread, see cv::ImreadModes.
549
@param mats A vector of Mat objects holding each page, if more than one.
550
@param range A continuous selection of pages.
551
*/
552
CV_EXPORTS_W bool imdecodemulti(InputArray buf, int flags, CV_OUT std::vector<Mat>& mats, const cv::Range& range = Range::all());
553
554
/** @brief Encodes an image into a memory buffer.
555
556
The function imencode compresses the image and stores it in the memory buffer that is resized to fit the
557
result. See cv::imwrite for the list of supported formats and flags description.
558
559
@param ext File extension that defines the output format. Must include a leading period.
560
@param img Image to be compressed.
561
@param buf Output buffer resized to fit the compressed image.
562
@param params Format-specific parameters. See cv::imwrite and cv::ImwriteFlags.
563
*/
564
CV_EXPORTS_W bool imencode( const String& ext, InputArray img,
565
                            CV_OUT std::vector<uchar>& buf,
566
                            const std::vector<int>& params = std::vector<int>());
567
568
/** @brief Encodes array of images into a memory buffer.
569
570
The function is analog to cv::imencode for in-memory multi-page image compression.
571
See cv::imwrite for the list of supported formats and flags description.
572
573
@param ext File extension that defines the output format. Must include a leading period.
574
@param imgs Vector of images to be written.
575
@param buf Output buffer resized to fit the compressed data.
576
@param params Format-specific parameters. See cv::imwrite and cv::ImwriteFlags.
577
*/
578
CV_EXPORTS_W bool imencodemulti( const String& ext, InputArrayOfArrays imgs,
579
                                 CV_OUT std::vector<uchar>& buf,
580
                                 const std::vector<int>& params = std::vector<int>());
581
582
/** @brief Checks if the specified image file can be decoded by OpenCV.
583
584
The function haveImageReader checks if OpenCV is capable of reading the specified file.
585
This can be useful for verifying support for a given image format before attempting to load an image.
586
587
@param filename The name of the file to be checked.
588
@return true if an image reader for the specified file is available and the file can be opened, false otherwise.
589
590
@note The function checks the availability of image codecs that are either built into OpenCV or dynamically loaded.
591
It does not check for the actual existence of the file but rather the ability to read the specified file type.
592
If the file cannot be opened or the format is unsupported, the function will return false.
593
594
@sa cv::haveImageWriter, cv::imread, cv::imdecode
595
*/
596
CV_EXPORTS_W bool haveImageReader( const String& filename );
597
598
/** @brief Checks if the specified image file or specified file extension can be encoded by OpenCV.
599
600
The function haveImageWriter checks if OpenCV is capable of writing images with the specified file extension.
601
This can be useful for verifying support for a given image format before attempting to save an image.
602
603
@param filename The name of the file or the file extension (e.g., ".jpg", ".png").
604
It is recommended to provide the file extension rather than the full file name.
605
@return true if an image writer for the specified extension is available, false otherwise.
606
607
@note The function checks the availability of image codecs that are either built into OpenCV or dynamically loaded.
608
It does not check for the actual existence of the file but rather the ability to write files of the given type.
609
610
@sa cv::haveImageReader, cv::imwrite, cv::imencode
611
*/
612
CV_EXPORTS_W bool haveImageWriter( const String& filename );
613
614
/** @brief To read multi-page images on demand
615
616
The ImageCollection class provides iterator API to read multi-page images on demand. Create iterator
617
to the collection of the images and iterate over the collection. Decode the necessary page with operator*.
618
619
The performance of page decoding is O(1) if collection is increment sequentially. If the user wants to access random page,
620
then the time Complexity is O(n) because the collection has to be reinitialized every time in order to go to the correct page.
621
However, the intermediate pages are not decoded during the process, so typically it's quite fast.
622
This is required because multi-page codecs does not support going backwards.
623
After decoding the one page, it is stored inside the collection cache. Hence, trying to get Mat object from already decoded page is O(1).
624
If you need memory, you can use .releaseCache() method to release cached index.
625
The space complexity is O(n) if all pages are decoded into memory. The user is able to decode and release images on demand.
626
*/
627
class CV_EXPORTS ImageCollection {
628
public:
629
    struct CV_EXPORTS iterator {
630
        iterator(ImageCollection* col);
631
        iterator(ImageCollection* col, int end);
632
        Mat& operator*();
633
        Mat* operator->();
634
        iterator& operator++();
635
        iterator operator++(int);
636
0
        friend bool operator== (const iterator& a, const iterator& b) { return a.m_curr == b.m_curr; }
637
0
        friend bool operator!= (const iterator& a, const iterator& b) { return a.m_curr != b.m_curr; }
638
639
    private:
640
        ImageCollection* m_pCollection;
641
        int m_curr;
642
    };
643
644
    ImageCollection();
645
    ImageCollection(const String& filename, int flags);
646
    void init(const String& img, int flags);
647
    size_t size() const;
648
    const Mat& at(int index);
649
    const Mat& operator[](int index);
650
    void releaseCache(int index);
651
    iterator begin();
652
    iterator end();
653
654
    class Impl;
655
    Ptr<Impl> getImpl();
656
protected:
657
    Ptr<Impl> pImpl;
658
};
659
660
//! @} imgcodecs
661
662
} // cv
663
664
#endif //OPENCV_IMGCODECS_HPP