Merge "manpages: italicize option parameters"
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man/cwebp.1
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man/cwebp.1
@ -1,5 +1,5 @@
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.\" Hey, EMACS: -*- nroff -*-
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.TH CWEBP 1 "January 11, 2013"
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.TH CWEBP 1 "February 01, 2013"
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.SH NAME
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cwebp \- compress an image file to a WebP file
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.SH SYNOPSIS
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@ -16,7 +16,7 @@ Input format can be either PNG, JPEG, TIFF or raw Y'CbCr samples.
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.SH OPTIONS
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The basic options are:
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.TP
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.B \-o string
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.BI \-o " string
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Specify the name of the output WebP file. If omitted, \fBcwebp\fP will
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perform compression but only report statistics.
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.TP
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@ -29,7 +29,7 @@ A summary of all the possible options.
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.B \-version
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Print the version number (as major.minor.revision) and exit.
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.TP
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.B \-q float
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.BI \-q " float
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Specify the compression factor for RGB channels between 0 and 100. The default
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is 75.
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.br
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@ -40,19 +40,19 @@ In case of lossless compression (specified by the \-lossless option), a small
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factor enables faster compression speed, but produces a larger file. Maximum
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compression is achieved by using a value of 100.
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.TP
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.B \-alpha_q int
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.BI \-alpha_q " int
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Specify the compression factor for alpha compression between 0 and 100.
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Lossless compression of alpha is achieved using a value of 100, while the lower
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values result in a lossy compression. The default is 100.
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.TP
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.B \-f int
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.BI \-f " int
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Specify the strength of the deblocking filter, between 0 (no filtering)
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and 100 (maximum filtering). A value of 0 will turn off any filtering.
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Higher value will increase the strength of the filtering process applied
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after decoding the picture. The higher the value the smoother the picture will
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appear. Typical values are usually in the range of 20 to 50.
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.TP
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.B \-preset string
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.BI \-preset " string
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Specify a set of pre-defined parameters to suit a particular type of
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source material. Possible values are: \fBdefault\fP, \fBphoto\fP,
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\fBpicture\fP, \fBdrawing\fP, \fBicon\fP, \fBtext\fP. Since
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@ -60,14 +60,14 @@ source material. Possible values are: \fBdefault\fP, \fBphoto\fP,
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\fB\-q\fP one), this option should preferably appear first in the
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order of the arguments.
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.TP
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.B \-sns int
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.BI \-sns " int
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Specify the amplitude of the spatial noise shaping. Spatial noise shaping
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(or \fBsns\fP for short) refers to a general collection of built-in algorithms
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used to decide which area of the picture should use relatively less bits,
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and where else to better transfer these bits. The possible range goes from
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0 (algorithm is off) to 100 (the maximal effect). The default value is 80.
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.TP
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.B \-m int
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.BI \-m " int
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Specify the compression method to use. This parameter controls the
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trade off between encoding speed and the compressed file size and quality.
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Possible values range from 0 to 6. Default value is 4.
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@ -83,7 +83,7 @@ the filtering strength to reach a well-balanced quality.
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.SH ADDITIONAL OPTIONS
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More advanced options are:
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.TP
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.B \-sharpness int
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.BI \-sharpness " int
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Specify the sharpness of the filtering (if used).
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Range is 0 (sharpest) to 7 (least sharp). Default is 0.
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.TP
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@ -91,11 +91,11 @@ Range is 0 (sharpest) to 7 (least sharp). Default is 0.
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Use a stronger filtering than the default one (if filtering is being
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used thanks to the \fB\-f\fP option). Strong filtering is off by default.
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.TP
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.B \-segments int
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.BI \-segments " int
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Change the number of partitions to use during the segmentation of the
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sns algorithm. Segments should be in range 1 to 4. Default value is 4.
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.TP
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.B \-partition_limit int
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.BI \-partition_limit " int
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Degrade quality by limiting the number of bits used by some macroblocks.
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Range is 0 (no degradation, the default) to 100 (full degradation).
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Useful values are usually around 30-70 for moderately large images.
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@ -114,39 +114,39 @@ If using \fB-partition_limit\fP is not enough to meet the 512k constraint, one
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should use less segments in order to save more header bits per macroblock.
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See the \fB-segments\fP option.
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.TP
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.B \-size int
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.BI \-size " int
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Specify a target size (in bytes) to try and reach for the compressed output.
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Compressor will make several pass of partial encoding in order to get as
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close as possible to this target.
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.TP
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.B \-psnr float
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.BI \-psnr " float
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Specify a target PSNR (in dB) to try and reach for the compressed output.
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Compressor will make several pass of partial encoding in order to get as
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close as possible to this target.
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.TP
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.B \-pass int
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.BI \-pass " int
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Set a maximum number of passes to use during the dichotomy used by
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options \fB\-size\fP or \fB\-psnr\fP. Maximum value is 10.
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.TP
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.B \-crop x_position y_position width height
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.BI \-crop " x_position y_position width height
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Crop the source to a rectangle with top-left corner at coordinates
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(\fBx_position\fP, \fBy_position\fP) and size \fBwidth\fP x \fBheight\fP.
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This cropping area must be fully contained within the source rectangle.
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.TP
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.B \-s width height
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.BI \-s " width height
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Specify that the input file actually consists of raw Y'CbCr samples following
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the ITU-R BT.601 recommendation, in 4:2:0 linear format.
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The luma plane has size \fBwidth\fP x \fBheight\fP.
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.TP
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.B \-map int
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.BI \-map " int
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Output additional ASCII-map of encoding information. Possible map values
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range from 1 to 6. This is only meant to help debugging.
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.TP
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.B \-pre int
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.BI \-pre " int
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Specify a pre-processing filter. This option is a placeholder
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and has currently no effect.
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.TP
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.B \-alpha_filter string
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.BI \-alpha_filter " string
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Specify the predictive filtering method for the alpha plane. One of 'none',
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\&'fast' or 'best', in increasing complexity and slowness order. Default is
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\&'fast'. Internally, alpha filtering is performed using four possible
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@ -154,7 +154,7 @@ predictions (none, horizontal, vertical, gradient). The 'best' mode will try
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each mode in turn and pick the one which gives the smaller size. The 'fast'
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mode will just try to form an a-priori guess without testing all modes.
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.TP
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.B \-alpha_method int
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.BI \-alpha_method " int
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Specify the algorithm used for alpha compression: 0 or 1. Algorithm 0 denotes
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no compression, 1 uses WebP lossless format for compression. The default is 1.
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.TP
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@ -168,11 +168,11 @@ Using this option will discard the alpha channel.
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.B \-lossless
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Encode the image without any loss.
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.TP
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.B \-hint string
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.BI \-hint " string
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Specify the hint about input image type. Possible values are:
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\fBphoto\fP, \fBpicture\fP or \fBgraph\fP.
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.TP
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.B \-metadata string
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.BI \-metadata " string
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A comma separated list of metadata to copy from the input to the output if
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present.
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Valid values: \fBall\fP, \fBnone\fP, \fBexif\fP, \fBiccp\fP, \fBxmp\fP.
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@ -1,5 +1,5 @@
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.\" Hey, EMACS: -*- nroff -*-
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.TH DWEBP 1 "January 28, 2013"
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.TH DWEBP 1 "February 01, 2013"
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.SH NAME
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dwebp \- decompress a WebP file to an image file
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.SH SYNOPSIS
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@ -21,7 +21,7 @@ Print usage summary.
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.B \-version
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Print the version number (as major.minor.revision) and exit.
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.TP
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.B \-o string
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.BI \-o " string
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Specify the name of the output file (as PNG format by default).
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.TP
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.B \-pam
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@ -53,7 +53,7 @@ but will make the decoding faster.
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.B \-mt
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Use multi-threading for decoding, if possible.
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.TP
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.B \-crop x_position y_position width height
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.BI \-crop " x_position y_position width height
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Crop the decoded picture to a rectangle with top-left corner at coordinates
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(\fBx_position\fP, \fBy_position\fP) and size \fBwidth\fP x \fBheight\fP.
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This cropping area must be fully contained within the source rectangle.
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@ -61,7 +61,7 @@ The top-left corner will be snapped to even coordinates if needed.
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This option is meant to reduce the memory needed for cropping large images.
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Note: the cropping is applied \fIbefore\fP any scaling.
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.TP
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.B \-scale width height
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.BI \-scale " width height
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Rescale the decoded picture to dimension \fBwidth\fP x \fBheight\fP. This
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option is mostly intended to reducing the memory needed to decode large images,
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when only a small version is needed (thumbnail, preview, etc.). Note: scaling
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.\" Hey, EMACS: -*- nroff -*-
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.TH GIF2WEBP 1 "November 15, 2012"
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.TH GIF2WEBP 1 "February 01, 2013"
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.SH NAME
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gif2webp \- Convert a GIF image to WebP
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.SH SYNOPSIS
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@ -15,7 +15,7 @@ command.
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.SH OPTIONS
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The basic options are:
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.TP
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.B \-o string
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.BI \-o " string
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Specify the name of the output WebP file. If omitted, \fBgif2webp\fP will
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perform conversion but only report statistics.
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.TP
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@ -28,7 +28,7 @@ Print the version number (as major.minor.revision) and exit.
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.B \-lossy
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Encode the image using lossy compression.
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.TP
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.B \-q float
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.BI \-q " float
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Specify the compression factor for RGB channels between 0 and 100. The default
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is 75.
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.br
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@ -40,7 +40,7 @@ In case of lossy compression (specified by the \-lossy option), a small factor
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produces a smaller file with lower quality. Best quality is achieved by using a
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value of 100.
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.TP
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.B \-m int
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.BI \-m " int
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Specify the compression method to use. This parameter controls the
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trade off between encoding speed and the compressed file size and quality.
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Possible values range from 0 to 6. Default value is 4.
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@ -49,7 +49,7 @@ additional encoding possibilities and decide on the quality gain.
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Lower value can result is faster processing time at the expense of
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larger file size and lower compression quality.
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.TP
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.B \-f int
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.BI \-f " int
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For lossy encoding only (specified by the \-lossy option). Specify the strength
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of the deblocking filter, between 0 (no filtering) and 100 (maximum filtering).
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A value of 0 will turn off any filtering. Higher value will increase the
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.\" Hey, EMACS: -*- nroff -*-
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.TH WEBPMUX 1 "October 23, 2012"
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.TH WEBPMUX 1 "February 01, 2013"
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.SH NAME
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webpmux \- command line tool to create WebP Mux/container file.
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.SH SYNOPSIS
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@ -62,25 +62,25 @@ Get EXIF metadata.
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.B xmp
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Get XMP metadata.
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.TP
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.B frgm n
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.BI frgm " n
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Get nth fragment.
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.TP
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.B frame n
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.BI frame " n
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Get nth frame.
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.SS SET_OPTIONS (\-set)
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.TP
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.B icc file.icc
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.BI icc " file.icc
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Set ICC profile.
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.P
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Where: 'file.icc' contains the ICC profile to be set.
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.TP
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.B exif file.exif
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.BI exif " file.exif
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Set EXIF metadata.
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.P
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Where: 'file.exif' contains the EXIF metadata to be set.
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.TP
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.B xmp file.xmp
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.BI xmp " file.xmp
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Set XMP metadata.
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.P
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Where: 'file.xmp' contains the XMP metadata to be set.
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@ -98,13 +98,13 @@ Strip XMP metadata.
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.SS FRAGMENT_OPTIONS (\-frgm)
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.TP
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.B file_i +xi+yi
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.I file_i +xi+yi
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Where: 'file_i' is the i'th fragment (WebP format) and 'xi','yi' specify the
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image offset for this fragment.
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.SS FRAME_OPTIONS (\-frame)
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.TP
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.B file_i +di[+xi+yi[+mi]]
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.I file_i +di[+xi+yi[+mi]]
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Where: 'file_i' is the i'th frame (WebP format), 'xi','yi' specify the image
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offset for this frame, 'di' is the pause duration before next frame and 'mi' is
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the dispose method for this frame (0 for NONE or 1 for BACKGROUND).
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@ -112,11 +112,11 @@ the dispose method for this frame (0 for NONE or 1 for BACKGROUND).
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Additionally, if 'mi' is ommitted then'xi' and 'yi' can be omitted and will
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default to +0+0.
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.TP
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.B \-loop n
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.BI \-loop " n
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Loop the frames n number of times. 0 indicates the frames should loop forever.
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Valid range is 0 to 65535 [Default: 0 (infinite)].
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.TP
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.B \-bgcolor A,R,G,B
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.BI \-bgcolor " A,R,G,B
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Background color of the canvas.
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.br
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where: 'A', 'R', 'G' and 'B' are integers in the range 0 to 255 specifying the
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