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(function() {
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var debug = false;
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var root = this;
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var EXIF = function(obj) {
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if (obj instanceof EXIF) return obj;
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if (!(this instanceof EXIF)) return new EXIF(obj);
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this.EXIFwrapped = obj;
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};
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if (typeof exports !== 'undefined') {
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if (typeof module !== 'undefined' && module.exports) {
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exports = module.exports = EXIF;
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}
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exports.EXIF = EXIF;
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} else {
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root.EXIF = EXIF;
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}
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var ExifTags = EXIF.Tags = {
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// version tags
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0x9000 : "ExifVersion", // EXIF version
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0xA000 : "FlashpixVersion", // Flashpix format version
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// colorspace tags
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0xA001 : "ColorSpace", // Color space information tag
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// image configuration
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0xA002 : "PixelXDimension", // Valid width of meaningful image
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0xA003 : "PixelYDimension", // Valid height of meaningful image
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0x9101 : "ComponentsConfiguration", // Information about channels
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0x9102 : "CompressedBitsPerPixel", // Compressed bits per pixel
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// user information
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0x927C : "MakerNote", // Any desired information written by the manufacturer
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0x9286 : "UserComment", // Comments by user
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// related file
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0xA004 : "RelatedSoundFile", // Name of related sound file
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// date and time
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0x9003 : "DateTimeOriginal", // Date and time when the original image was generated
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0x9004 : "DateTimeDigitized", // Date and time when the image was stored digitally
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0x9290 : "SubsecTime", // Fractions of seconds for DateTime
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0x9291 : "SubsecTimeOriginal", // Fractions of seconds for DateTimeOriginal
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0x9292 : "SubsecTimeDigitized", // Fractions of seconds for DateTimeDigitized
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// picture-taking conditions
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0x829A : "ExposureTime", // Exposure time (in seconds)
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0x829D : "FNumber", // F number
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0x8822 : "ExposureProgram", // Exposure program
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0x8824 : "SpectralSensitivity", // Spectral sensitivity
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0x8827 : "ISOSpeedRatings", // ISO speed rating
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0x8828 : "OECF", // Optoelectric conversion factor
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0x9201 : "ShutterSpeedValue", // Shutter speed
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0x9202 : "ApertureValue", // Lens aperture
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0x9203 : "BrightnessValue", // Value of brightness
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0x9204 : "ExposureBias", // Exposure bias
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0x9205 : "MaxApertureValue", // Smallest F number of lens
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0x9206 : "SubjectDistance", // Distance to subject in meters
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0x9207 : "MeteringMode", // Metering mode
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0x9208 : "LightSource", // Kind of light source
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0x9209 : "Flash", // Flash status
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0x9214 : "SubjectArea", // Location and area of main subject
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0x920A : "FocalLength", // Focal length of the lens in mm
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0xA20B : "FlashEnergy", // Strobe energy in BCPS
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0xA20C : "SpatialFrequencyResponse", //
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0xA20E : "FocalPlaneXResolution", // Number of pixels in width direction per FocalPlaneResolutionUnit
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0xA20F : "FocalPlaneYResolution", // Number of pixels in height direction per FocalPlaneResolutionUnit
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0xA210 : "FocalPlaneResolutionUnit", // Unit for measuring FocalPlaneXResolution and FocalPlaneYResolution
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0xA214 : "SubjectLocation", // Location of subject in image
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0xA215 : "ExposureIndex", // Exposure index selected on camera
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0xA217 : "SensingMethod", // Image sensor type
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0xA300 : "FileSource", // Image source (3 == DSC)
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0xA301 : "SceneType", // Scene type (1 == directly photographed)
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0xA302 : "CFAPattern", // Color filter array geometric pattern
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0xA401 : "CustomRendered", // Special processing
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0xA402 : "ExposureMode", // Exposure mode
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0xA403 : "WhiteBalance", // 1 = auto white balance, 2 = manual
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0xA404 : "DigitalZoomRation", // Digital zoom ratio
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0xA405 : "FocalLengthIn35mmFilm", // Equivalent foacl length assuming 35mm film camera (in mm)
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0xA406 : "SceneCaptureType", // Type of scene
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0xA407 : "GainControl", // Degree of overall image gain adjustment
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0xA408 : "Contrast", // Direction of contrast processing applied by camera
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0xA409 : "Saturation", // Direction of saturation processing applied by camera
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0xA40A : "Sharpness", // Direction of sharpness processing applied by camera
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0xA40B : "DeviceSettingDescription", //
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0xA40C : "SubjectDistanceRange", // Distance to subject
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// other tags
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0xA005 : "InteroperabilityIFDPointer",
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0xA420 : "ImageUniqueID" // Identifier assigned uniquely to each image
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};
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var TiffTags = EXIF.TiffTags = {
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0x0100 : "ImageWidth",
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0x0101 : "ImageHeight",
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0x8769 : "ExifIFDPointer",
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0x8825 : "GPSInfoIFDPointer",
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0xA005 : "InteroperabilityIFDPointer",
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0x0102 : "BitsPerSample",
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0x0103 : "Compression",
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0x0106 : "PhotometricInterpretation",
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0x0112 : "Orientation",
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0x0115 : "SamplesPerPixel",
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0x011C : "PlanarConfiguration",
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0x0212 : "YCbCrSubSampling",
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0x0213 : "YCbCrPositioning",
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0x011A : "XResolution",
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0x011B : "YResolution",
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0x0128 : "ResolutionUnit",
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0x0111 : "StripOffsets",
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0x0116 : "RowsPerStrip",
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0x0117 : "StripByteCounts",
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0x0201 : "JPEGInterchangeFormat",
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0x0202 : "JPEGInterchangeFormatLength",
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0x012D : "TransferFunction",
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0x013E : "WhitePoint",
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0x013F : "PrimaryChromaticities",
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0x0211 : "YCbCrCoefficients",
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0x0214 : "ReferenceBlackWhite",
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0x0132 : "DateTime",
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0x010E : "ImageDescription",
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0x010F : "Make",
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0x0110 : "Model",
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0x0131 : "Software",
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0x013B : "Artist",
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0x8298 : "Copyright"
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};
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var GPSTags = EXIF.GPSTags = {
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0x0000 : "GPSVersionID",
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0x0001 : "GPSLatitudeRef",
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0x0002 : "GPSLatitude",
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0x0003 : "GPSLongitudeRef",
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0x0004 : "GPSLongitude",
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0x0005 : "GPSAltitudeRef",
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0x0006 : "GPSAltitude",
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0x0007 : "GPSTimeStamp",
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0x0008 : "GPSSatellites",
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0x0009 : "GPSStatus",
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0x000A : "GPSMeasureMode",
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0x000B : "GPSDOP",
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0x000C : "GPSSpeedRef",
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0x000D : "GPSSpeed",
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0x000E : "GPSTrackRef",
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0x000F : "GPSTrack",
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0x0010 : "GPSImgDirectionRef",
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0x0011 : "GPSImgDirection",
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0x0012 : "GPSMapDatum",
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0x0013 : "GPSDestLatitudeRef",
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0x0014 : "GPSDestLatitude",
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0x0015 : "GPSDestLongitudeRef",
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0x0016 : "GPSDestLongitude",
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0x0017 : "GPSDestBearingRef",
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0x0018 : "GPSDestBearing",
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0x0019 : "GPSDestDistanceRef",
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0x001A : "GPSDestDistance",
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0x001B : "GPSProcessingMethod",
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0x001C : "GPSAreaInformation",
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0x001D : "GPSDateStamp",
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0x001E : "GPSDifferential"
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};
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var StringValues = EXIF.StringValues = {
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ExposureProgram : {
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0 : "Not defined",
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1 : "Manual",
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2 : "Normal program",
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3 : "Aperture priority",
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4 : "Shutter priority",
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5 : "Creative program",
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6 : "Action program",
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7 : "Portrait mode",
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8 : "Landscape mode"
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},
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MeteringMode : {
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0 : "Unknown",
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1 : "Average",
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2 : "CenterWeightedAverage",
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3 : "Spot",
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4 : "MultiSpot",
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5 : "Pattern",
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6 : "Partial",
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255 : "Other"
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},
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LightSource : {
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0 : "Unknown",
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1 : "Daylight",
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2 : "Fluorescent",
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3 : "Tungsten (incandescent light)",
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4 : "Flash",
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9 : "Fine weather",
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10 : "Cloudy weather",
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11 : "Shade",
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12 : "Daylight fluorescent (D 5700 - 7100K)",
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13 : "Day white fluorescent (N 4600 - 5400K)",
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14 : "Cool white fluorescent (W 3900 - 4500K)",
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15 : "White fluorescent (WW 3200 - 3700K)",
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17 : "Standard light A",
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18 : "Standard light B",
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19 : "Standard light C",
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20 : "D55",
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21 : "D65",
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22 : "D75",
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23 : "D50",
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24 : "ISO studio tungsten",
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255 : "Other"
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},
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Flash : {
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0x0000 : "Flash did not fire",
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0x0001 : "Flash fired",
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0x0005 : "Strobe return light not detected",
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0x0007 : "Strobe return light detected",
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0x0009 : "Flash fired, compulsory flash mode",
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0x000D : "Flash fired, compulsory flash mode, return light not detected",
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0x000F : "Flash fired, compulsory flash mode, return light detected",
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0x0010 : "Flash did not fire, compulsory flash mode",
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0x0018 : "Flash did not fire, auto mode",
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0x0019 : "Flash fired, auto mode",
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0x001D : "Flash fired, auto mode, return light not detected",
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0x001F : "Flash fired, auto mode, return light detected",
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0x0020 : "No flash function",
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0x0041 : "Flash fired, red-eye reduction mode",
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0x0045 : "Flash fired, red-eye reduction mode, return light not detected",
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0x0047 : "Flash fired, red-eye reduction mode, return light detected",
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0x0049 : "Flash fired, compulsory flash mode, red-eye reduction mode",
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0x004D : "Flash fired, compulsory flash mode, red-eye reduction mode, return light not detected",
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0x004F : "Flash fired, compulsory flash mode, red-eye reduction mode, return light detected",
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0x0059 : "Flash fired, auto mode, red-eye reduction mode",
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0x005D : "Flash fired, auto mode, return light not detected, red-eye reduction mode",
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0x005F : "Flash fired, auto mode, return light detected, red-eye reduction mode"
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},
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SensingMethod : {
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1 : "Not defined",
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2 : "One-chip color area sensor",
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3 : "Two-chip color area sensor",
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4 : "Three-chip color area sensor",
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5 : "Color sequential area sensor",
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7 : "Trilinear sensor",
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8 : "Color sequential linear sensor"
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},
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SceneCaptureType : {
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0 : "Standard",
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1 : "Landscape",
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2 : "Portrait",
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3 : "Night scene"
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},
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SceneType : {
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1 : "Directly photographed"
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},
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CustomRendered : {
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0 : "Normal process",
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1 : "Custom process"
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},
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WhiteBalance : {
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0 : "Auto white balance",
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1 : "Manual white balance"
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},
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GainControl : {
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0 : "None",
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1 : "Low gain up",
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2 : "High gain up",
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3 : "Low gain down",
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4 : "High gain down"
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},
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Contrast : {
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0 : "Normal",
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1 : "Soft",
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2 : "Hard"
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},
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Saturation : {
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0 : "Normal",
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1 : "Low saturation",
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2 : "High saturation"
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},
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Sharpness : {
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0 : "Normal",
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1 : "Soft",
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2 : "Hard"
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},
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SubjectDistanceRange : {
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0 : "Unknown",
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1 : "Macro",
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2 : "Close view",
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3 : "Distant view"
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},
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FileSource : {
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3 : "DSC"
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},
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Components : {
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0 : "",
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1 : "Y",
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2 : "Cb",
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3 : "Cr",
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4 : "R",
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5 : "G",
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6 : "B"
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}
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};
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function addEvent(element, event, handler) {
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if (element.addEventListener) {
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element.addEventListener(event, handler, false);
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} else if (element.attachEvent) {
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element.attachEvent("on" + event, handler);
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}
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}
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function imageHasData(img) {
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return !!(img.exifdata);
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}
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function base64ToArrayBuffer(base64, contentType) {
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contentType = contentType || base64.match(/^data\:([^\;]+)\;base64,/mi)[1] || ''; // e.g. 'data:image/jpeg;base64,...' => 'image/jpeg'
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base64 = base64.replace(/^data\:([^\;]+)\;base64,/gmi, '');
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var binary = atob(base64);
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var len = binary.length;
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var buffer = new ArrayBuffer(len);
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var view = new Uint8Array(buffer);
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for (var i = 0; i < len; i++) {
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view[i] = binary.charCodeAt(i);
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}
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return buffer;
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}
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function objectURLToBlob(url, callback) {
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var http = new XMLHttpRequest();
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http.open("GET", url, true);
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http.responseType = "blob";
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http.onload = function(e) {
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if (this.status == 200 || this.status === 0) {
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callback(this.response);
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}
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};
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http.send();
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}
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function getImageData(img, callback) {
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function handleBinaryFile(binFile) {
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var data = findEXIFinJPEG(binFile);
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var iptcdata = findIPTCinJPEG(binFile);
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img.exifdata = data || {};
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img.iptcdata = iptcdata || {};
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if (callback) {
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callback.call(img);
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}
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}
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if (img.src) {
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if (/^data\:/i.test(img.src)) { // Data URI
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var arrayBuffer = base64ToArrayBuffer(img.src);
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358
|
handleBinaryFile(arrayBuffer);
|
|
359
|
|
|
360
|
} else if (/^blob\:/i.test(img.src)) { // Object URL
|
|
361
|
var fileReader = new FileReader();
|
|
362
|
fileReader.onload = function(e) {
|
|
363
|
handleBinaryFile(e.target.result);
|
|
364
|
};
|
|
365
|
objectURLToBlob(img.src, function (blob) {
|
|
366
|
fileReader.readAsArrayBuffer(blob);
|
|
367
|
});
|
|
368
|
} else {
|
|
369
|
var http = new XMLHttpRequest();
|
|
370
|
http.onload = function() {
|
|
371
|
if (this.status == 200 || this.status === 0) {
|
|
372
|
handleBinaryFile(http.response);
|
|
373
|
} else {
|
|
374
|
throw "Could not load image";
|
|
375
|
}
|
|
376
|
http = null;
|
|
377
|
};
|
|
378
|
http.open("GET", img.src, true);
|
|
379
|
http.responseType = "arraybuffer";
|
|
380
|
http.send(null);
|
|
381
|
}
|
|
382
|
} else if (window.FileReader && (img instanceof window.Blob || img instanceof window.File)) {
|
|
383
|
var fileReader = new FileReader();
|
|
384
|
fileReader.onload = function(e) {
|
|
385
|
if (debug) console.log("Got file of length " + e.target.result.byteLength);
|
|
386
|
handleBinaryFile(e.target.result);
|
|
387
|
};
|
|
388
|
|
|
389
|
fileReader.readAsArrayBuffer(img);
|
|
390
|
}
|
|
391
|
}
|
|
392
|
|
|
393
|
function findEXIFinJPEG(file) {
|
|
394
|
var dataView = new DataView(file);
|
|
395
|
|
|
396
|
if (debug) console.log("Got file of length " + file.byteLength);
|
|
397
|
if ((dataView.getUint8(0) != 0xFF) || (dataView.getUint8(1) != 0xD8)) {
|
|
398
|
if (debug) console.log("Not a valid JPEG");
|
|
399
|
return false; // not a valid jpeg
|
|
400
|
}
|
|
401
|
|
|
402
|
var offset = 2,
|
|
403
|
length = file.byteLength,
|
|
404
|
marker;
|
|
405
|
|
|
406
|
while (offset < length) {
|
|
407
|
if (dataView.getUint8(offset) != 0xFF) {
|
|
408
|
if (debug) console.log("Not a valid marker at offset " + offset + ", found: " + dataView.getUint8(offset));
|
|
409
|
return false; // not a valid marker, something is wrong
|
|
410
|
}
|
|
411
|
|
|
412
|
marker = dataView.getUint8(offset + 1);
|
|
413
|
if (debug) console.log(marker);
|
|
414
|
|
|
415
|
// we could implement handling for other markers here,
|
|
416
|
// but we're only looking for 0xFFE1 for EXIF data
|
|
417
|
|
|
418
|
if (marker == 225) {
|
|
419
|
if (debug) console.log("Found 0xFFE1 marker");
|
|
420
|
|
|
421
|
return readEXIFData(dataView, offset + 4, dataView.getUint16(offset + 2) - 2);
|
|
422
|
|
|
423
|
// offset += 2 + file.getShortAt(offset+2, true);
|
|
424
|
|
|
425
|
} else {
|
|
426
|
offset += 2 + dataView.getUint16(offset+2);
|
|
427
|
}
|
|
428
|
|
|
429
|
}
|
|
430
|
|
|
431
|
}
|
|
432
|
|
|
433
|
function findIPTCinJPEG(file) {
|
|
434
|
var dataView = new DataView(file);
|
|
435
|
|
|
436
|
if (debug) console.log("Got file of length " + file.byteLength);
|
|
437
|
if ((dataView.getUint8(0) != 0xFF) || (dataView.getUint8(1) != 0xD8)) {
|
|
438
|
if (debug) console.log("Not a valid JPEG");
|
|
439
|
return false; // not a valid jpeg
|
|
440
|
}
|
|
441
|
|
|
442
|
var offset = 2,
|
|
443
|
length = file.byteLength;
|
|
444
|
|
|
445
|
|
|
446
|
var isFieldSegmentStart = function(dataView, offset){
|
|
447
|
return (
|
|
448
|
dataView.getUint8(offset) === 0x38 &&
|
|
449
|
dataView.getUint8(offset+1) === 0x42 &&
|
|
450
|
dataView.getUint8(offset+2) === 0x49 &&
|
|
451
|
dataView.getUint8(offset+3) === 0x4D &&
|
|
452
|
dataView.getUint8(offset+4) === 0x04 &&
|
|
453
|
dataView.getUint8(offset+5) === 0x04
|
|
454
|
);
|
|
455
|
};
|
|
456
|
|
|
457
|
while (offset < length) {
|
|
458
|
|
|
459
|
if ( isFieldSegmentStart(dataView, offset )){
|
|
460
|
|
|
461
|
// Get the length of the name header (which is padded to an even number of bytes)
|
|
462
|
var nameHeaderLength = dataView.getUint8(offset+7);
|
|
463
|
if(nameHeaderLength % 2 !== 0) nameHeaderLength += 1;
|
|
464
|
// Check for pre photoshop 6 format
|
|
465
|
if(nameHeaderLength === 0) {
|
|
466
|
// Always 4
|
|
467
|
nameHeaderLength = 4;
|
|
468
|
}
|
|
469
|
|
|
470
|
var startOffset = offset + 8 + nameHeaderLength;
|
|
471
|
var sectionLength = dataView.getUint16(offset + 6 + nameHeaderLength);
|
|
472
|
|
|
473
|
return readIPTCData(file, startOffset, sectionLength);
|
|
474
|
|
|
475
|
break;
|
|
476
|
|
|
477
|
}
|
|
478
|
|
|
479
|
|
|
480
|
// Not the marker, continue searching
|
|
481
|
offset++;
|
|
482
|
|
|
483
|
}
|
|
484
|
|
|
485
|
}
|
|
486
|
var IptcFieldMap = {
|
|
487
|
0x78 : 'caption',
|
|
488
|
0x6E : 'credit',
|
|
489
|
0x19 : 'keywords',
|
|
490
|
0x37 : 'dateCreated',
|
|
491
|
0x50 : 'byline',
|
|
492
|
0x55 : 'bylineTitle',
|
|
493
|
0x7A : 'captionWriter',
|
|
494
|
0x69 : 'headline',
|
|
495
|
0x74 : 'copyright',
|
|
496
|
0x0F : 'category'
|
|
497
|
};
|
|
498
|
function readIPTCData(file, startOffset, sectionLength){
|
|
499
|
var dataView = new DataView(file);
|
|
500
|
var data = {};
|
|
501
|
var fieldValue, fieldName, dataSize, segmentType, segmentSize;
|
|
502
|
var segmentStartPos = startOffset;
|
|
503
|
while(segmentStartPos < startOffset+sectionLength) {
|
|
504
|
if(dataView.getUint8(segmentStartPos) === 0x1C && dataView.getUint8(segmentStartPos+1) === 0x02){
|
|
505
|
segmentType = dataView.getUint8(segmentStartPos+2);
|
|
506
|
if(segmentType in IptcFieldMap) {
|
|
507
|
dataSize = dataView.getInt16(segmentStartPos+3);
|
|
508
|
segmentSize = dataSize + 5;
|
|
509
|
fieldName = IptcFieldMap[segmentType];
|
|
510
|
fieldValue = getStringFromDB(dataView, segmentStartPos+5, dataSize);
|
|
511
|
// Check if we already stored a value with this name
|
|
512
|
if(data.hasOwnProperty(fieldName)) {
|
|
513
|
// Value already stored with this name, create multivalue field
|
|
514
|
if(data[fieldName] instanceof Array) {
|
|
515
|
data[fieldName].push(fieldValue);
|
|
516
|
}
|
|
517
|
else {
|
|
518
|
data[fieldName] = [data[fieldName], fieldValue];
|
|
519
|
}
|
|
520
|
}
|
|
521
|
else {
|
|
522
|
data[fieldName] = fieldValue;
|
|
523
|
}
|
|
524
|
}
|
|
525
|
|
|
526
|
}
|
|
527
|
segmentStartPos++;
|
|
528
|
}
|
|
529
|
return data;
|
|
530
|
}
|
|
531
|
|
|
532
|
|
|
533
|
|
|
534
|
function readTags(file, tiffStart, dirStart, strings, bigEnd) {
|
|
535
|
var entries = file.getUint16(dirStart, !bigEnd),
|
|
536
|
tags = {},
|
|
537
|
entryOffset, tag,
|
|
538
|
i;
|
|
539
|
|
|
540
|
for (i=0;i<entries;i++) {
|
|
541
|
entryOffset = dirStart + i*12 + 2;
|
|
542
|
tag = strings[file.getUint16(entryOffset, !bigEnd)];
|
|
543
|
if (!tag && debug) console.log("Unknown tag: " + file.getUint16(entryOffset, !bigEnd));
|
|
544
|
tags[tag] = readTagValue(file, entryOffset, tiffStart, dirStart, bigEnd);
|
|
545
|
}
|
|
546
|
return tags;
|
|
547
|
}
|
|
548
|
|
|
549
|
|
|
550
|
function readTagValue(file, entryOffset, tiffStart, dirStart, bigEnd) {
|
|
551
|
var type = file.getUint16(entryOffset+2, !bigEnd),
|
|
552
|
numValues = file.getUint32(entryOffset+4, !bigEnd),
|
|
553
|
valueOffset = file.getUint32(entryOffset+8, !bigEnd) + tiffStart,
|
|
554
|
offset,
|
|
555
|
vals, val, n,
|
|
556
|
numerator, denominator;
|
|
557
|
|
|
558
|
switch (type) {
|
|
559
|
case 1: // byte, 8-bit unsigned int
|
|
560
|
case 7: // undefined, 8-bit byte, value depending on field
|
|
561
|
if (numValues == 1) {
|
|
562
|
return file.getUint8(entryOffset + 8, !bigEnd);
|
|
563
|
} else {
|
|
564
|
offset = numValues > 4 ? valueOffset : (entryOffset + 8);
|
|
565
|
vals = [];
|
|
566
|
for (n=0;n<numValues;n++) {
|
|
567
|
vals[n] = file.getUint8(offset + n);
|
|
568
|
}
|
|
569
|
return vals;
|
|
570
|
}
|
|
571
|
|
|
572
|
case 2: // ascii, 8-bit byte
|
|
573
|
offset = numValues > 4 ? valueOffset : (entryOffset + 8);
|
|
574
|
return getStringFromDB(file, offset, numValues-1);
|
|
575
|
|
|
576
|
case 3: // short, 16 bit int
|
|
577
|
if (numValues == 1) {
|
|
578
|
return file.getUint16(entryOffset + 8, !bigEnd);
|
|
579
|
} else {
|
|
580
|
offset = numValues > 2 ? valueOffset : (entryOffset + 8);
|
|
581
|
vals = [];
|
|
582
|
for (n=0;n<numValues;n++) {
|
|
583
|
vals[n] = file.getUint16(offset + 2*n, !bigEnd);
|
|
584
|
}
|
|
585
|
return vals;
|
|
586
|
}
|
|
587
|
|
|
588
|
case 4: // long, 32 bit int
|
|
589
|
if (numValues == 1) {
|
|
590
|
return file.getUint32(entryOffset + 8, !bigEnd);
|
|
591
|
} else {
|
|
592
|
vals = [];
|
|
593
|
for (n=0;n<numValues;n++) {
|
|
594
|
vals[n] = file.getUint32(valueOffset + 4*n, !bigEnd);
|
|
595
|
}
|
|
596
|
return vals;
|
|
597
|
}
|
|
598
|
|
|
599
|
case 5: // rational = two long values, first is numerator, second is denominator
|
|
600
|
if (numValues == 1) {
|
|
601
|
numerator = file.getUint32(valueOffset, !bigEnd);
|
|
602
|
denominator = file.getUint32(valueOffset+4, !bigEnd);
|
|
603
|
val = new Number(numerator / denominator);
|
|
604
|
val.numerator = numerator;
|
|
605
|
val.denominator = denominator;
|
|
606
|
return val;
|
|
607
|
} else {
|
|
608
|
vals = [];
|
|
609
|
for (n=0;n<numValues;n++) {
|
|
610
|
numerator = file.getUint32(valueOffset + 8*n, !bigEnd);
|
|
611
|
denominator = file.getUint32(valueOffset+4 + 8*n, !bigEnd);
|
|
612
|
vals[n] = new Number(numerator / denominator);
|
|
613
|
vals[n].numerator = numerator;
|
|
614
|
vals[n].denominator = denominator;
|
|
615
|
}
|
|
616
|
return vals;
|
|
617
|
}
|
|
618
|
|
|
619
|
case 9: // slong, 32 bit signed int
|
|
620
|
if (numValues == 1) {
|
|
621
|
return file.getInt32(entryOffset + 8, !bigEnd);
|
|
622
|
} else {
|
|
623
|
vals = [];
|
|
624
|
for (n=0;n<numValues;n++) {
|
|
625
|
vals[n] = file.getInt32(valueOffset + 4*n, !bigEnd);
|
|
626
|
}
|
|
627
|
return vals;
|
|
628
|
}
|
|
629
|
|
|
630
|
case 10: // signed rational, two slongs, first is numerator, second is denominator
|
|
631
|
if (numValues == 1) {
|
|
632
|
return file.getInt32(valueOffset, !bigEnd) / file.getInt32(valueOffset+4, !bigEnd);
|
|
633
|
} else {
|
|
634
|
vals = [];
|
|
635
|
for (n=0;n<numValues;n++) {
|
|
636
|
vals[n] = file.getInt32(valueOffset + 8*n, !bigEnd) / file.getInt32(valueOffset+4 + 8*n, !bigEnd);
|
|
637
|
}
|
|
638
|
return vals;
|
|
639
|
}
|
|
640
|
}
|
|
641
|
}
|
|
642
|
|
|
643
|
function getStringFromDB(buffer, start, length) {
|
|
644
|
var outstr = "";
|
|
645
|
for (n = start; n < start+length; n++) {
|
|
646
|
outstr += String.fromCharCode(buffer.getUint8(n));
|
|
647
|
}
|
|
648
|
return outstr;
|
|
649
|
}
|
|
650
|
|
|
651
|
function readEXIFData(file, start) {
|
|
652
|
if (getStringFromDB(file, start, 4) != "Exif") {
|
|
653
|
if (debug) console.log("Not valid EXIF data! " + getStringFromDB(file, start, 4));
|
|
654
|
return false;
|
|
655
|
}
|
|
656
|
|
|
657
|
var bigEnd,
|
|
658
|
tags, tag,
|
|
659
|
exifData, gpsData,
|
|
660
|
tiffOffset = start + 6;
|
|
661
|
|
|
662
|
// test for TIFF validity and endianness
|
|
663
|
if (file.getUint16(tiffOffset) == 0x4949) {
|
|
664
|
bigEnd = false;
|
|
665
|
} else if (file.getUint16(tiffOffset) == 0x4D4D) {
|
|
666
|
bigEnd = true;
|
|
667
|
} else {
|
|
668
|
if (debug) console.log("Not valid TIFF data! (no 0x4949 or 0x4D4D)");
|
|
669
|
return false;
|
|
670
|
}
|
|
671
|
|
|
672
|
if (file.getUint16(tiffOffset+2, !bigEnd) != 0x002A) {
|
|
673
|
if (debug) console.log("Not valid TIFF data! (no 0x002A)");
|
|
674
|
return false;
|
|
675
|
}
|
|
676
|
|
|
677
|
var firstIFDOffset = file.getUint32(tiffOffset+4, !bigEnd);
|
|
678
|
|
|
679
|
if (firstIFDOffset < 0x00000008) {
|
|
680
|
if (debug) console.log("Not valid TIFF data! (First offset less than 8)", file.getUint32(tiffOffset+4, !bigEnd));
|
|
681
|
return false;
|
|
682
|
}
|
|
683
|
|
|
684
|
tags = readTags(file, tiffOffset, tiffOffset + firstIFDOffset, TiffTags, bigEnd);
|
|
685
|
|
|
686
|
if (tags.ExifIFDPointer) {
|
|
687
|
exifData = readTags(file, tiffOffset, tiffOffset + tags.ExifIFDPointer, ExifTags, bigEnd);
|
|
688
|
for (tag in exifData) {
|
|
689
|
switch (tag) {
|
|
690
|
case "LightSource" :
|
|
691
|
case "Flash" :
|
|
692
|
case "MeteringMode" :
|
|
693
|
case "ExposureProgram" :
|
|
694
|
case "SensingMethod" :
|
|
695
|
case "SceneCaptureType" :
|
|
696
|
case "SceneType" :
|
|
697
|
case "CustomRendered" :
|
|
698
|
case "WhiteBalance" :
|
|
699
|
case "GainControl" :
|
|
700
|
case "Contrast" :
|
|
701
|
case "Saturation" :
|
|
702
|
case "Sharpness" :
|
|
703
|
case "SubjectDistanceRange" :
|
|
704
|
case "FileSource" :
|
|
705
|
exifData[tag] = StringValues[tag][exifData[tag]];
|
|
706
|
break;
|
|
707
|
|
|
708
|
case "ExifVersion" :
|
|
709
|
case "FlashpixVersion" :
|
|
710
|
exifData[tag] = String.fromCharCode(exifData[tag][0], exifData[tag][1], exifData[tag][2], exifData[tag][3]);
|
|
711
|
break;
|
|
712
|
|
|
713
|
case "ComponentsConfiguration" :
|
|
714
|
exifData[tag] =
|
|
715
|
StringValues.Components[exifData[tag][0]] +
|
|
716
|
StringValues.Components[exifData[tag][1]] +
|
|
717
|
StringValues.Components[exifData[tag][2]] +
|
|
718
|
StringValues.Components[exifData[tag][3]];
|
|
719
|
break;
|
|
720
|
}
|
|
721
|
tags[tag] = exifData[tag];
|
|
722
|
}
|
|
723
|
}
|
|
724
|
|
|
725
|
if (tags.GPSInfoIFDPointer) {
|
|
726
|
gpsData = readTags(file, tiffOffset, tiffOffset + tags.GPSInfoIFDPointer, GPSTags, bigEnd);
|
|
727
|
for (tag in gpsData) {
|
|
728
|
switch (tag) {
|
|
729
|
case "GPSVersionID" :
|
|
730
|
gpsData[tag] = gpsData[tag][0] +
|
|
731
|
"." + gpsData[tag][1] +
|
|
732
|
"." + gpsData[tag][2] +
|
|
733
|
"." + gpsData[tag][3];
|
|
734
|
break;
|
|
735
|
}
|
|
736
|
tags[tag] = gpsData[tag];
|
|
737
|
}
|
|
738
|
}
|
|
739
|
|
|
740
|
return tags;
|
|
741
|
}
|
|
742
|
|
|
743
|
EXIF.getData = function(img, callback) {
|
|
744
|
if ((img instanceof Image || img instanceof HTMLImageElement) && !img.complete) return false;
|
|
745
|
|
|
746
|
if (!imageHasData(img)) {
|
|
747
|
getImageData(img, callback);
|
|
748
|
} else {
|
|
749
|
if (callback) {
|
|
750
|
callback.call(img);
|
|
751
|
}
|
|
752
|
}
|
|
753
|
return true;
|
|
754
|
}
|
|
755
|
|
|
756
|
EXIF.getTag = function(img, tag) {
|
|
757
|
if (!imageHasData(img)) return;
|
|
758
|
return img.exifdata[tag];
|
|
759
|
}
|
|
760
|
|
|
761
|
EXIF.getAllTags = function(img) {
|
|
762
|
if (!imageHasData(img)) return {};
|
|
763
|
var a,
|
|
764
|
data = img.exifdata,
|
|
765
|
tags = {};
|
|
766
|
for (a in data) {
|
|
767
|
if (data.hasOwnProperty(a)) {
|
|
768
|
tags[a] = data[a];
|
|
769
|
}
|
|
770
|
}
|
|
771
|
return tags;
|
|
772
|
}
|
|
773
|
|
|
774
|
EXIF.pretty = function(img) {
|
|
775
|
if (!imageHasData(img)) return "";
|
|
776
|
var a,
|
|
777
|
data = img.exifdata,
|
|
778
|
strPretty = "";
|
|
779
|
for (a in data) {
|
|
780
|
if (data.hasOwnProperty(a)) {
|
|
781
|
if (typeof data[a] == "object") {
|
|
782
|
if (data[a] instanceof Number) {
|
|
783
|
strPretty += a + " : " + data[a] + " [" + data[a].numerator + "/" + data[a].denominator + "]\r\n";
|
|
784
|
} else {
|
|
785
|
strPretty += a + " : [" + data[a].length + " values]\r\n";
|
|
786
|
}
|
|
787
|
} else {
|
|
788
|
strPretty += a + " : " + data[a] + "\r\n";
|
|
789
|
}
|
|
790
|
}
|
|
791
|
}
|
|
792
|
return strPretty;
|
|
793
|
}
|
|
794
|
|
|
795
|
EXIF.readFromBinaryFile = function(file) {
|
|
796
|
return findEXIFinJPEG(file);
|
|
797
|
}
|
|
798
|
|
|
799
|
if (typeof define === 'function' && define.amd) {
|
|
800
|
define('exif-js', [], function() {
|
|
801
|
return EXIF;
|
|
802
|
});
|
|
803
|
}
|
|
804
|
}.call(this));
|
|
805
|
|