mirror of https://github.com/mpv-player/mpv
559 lines
24 KiB
ReStructuredText
559 lines
24 KiB
ReStructuredText
VIDEO FILTERS
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=============
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Video filters allow you to modify the video stream and its properties. The
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syntax is:
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``--vf=<filter1[=parameter1:parameter2:...],filter2,...>``
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Setup a chain of video filters. This consists on the filter name, and an
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option list of parameters after ``=``. The parameters are separated by
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``:`` (not ``,``, as that starts a new filter entry).
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Before the filter name, a label can be specified with ``@name:``, where
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name is an arbitrary user-given name, which identifies the filter. This
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is only needed if you want to toggle the filter at runtime.
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A ``!`` before the filter name means the filter is enabled by default. It
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will be skipped on filter creation. This is also useful for runtime filter
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toggling.
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See the ``vf`` command (and ``toggle`` sub-command) for further explanations
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and examples.
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The general filter entry syntax is:
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``["@"<label-name>":"] ["!"] <filter-name> [ "=" <filter-parameter-list> ]``
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or for the special "toggle" syntax (see ``vf`` command):
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``"@"<label-name>``
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and the ``filter-parameter-list``:
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``<filter-parameter> | <filter-parameter> "," <filter-parameter-list>``
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and ``filter-parameter``:
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``( <param-name> "=" <param-value> ) | <param-value>``
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``param-value`` can further be quoted in ``[`` / ``]`` in case the value
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contains characters like ``,`` or ``=``. This is used in particular with
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the ``lavfi`` filter, which uses a very similar syntax as mpv (MPlayer
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historically) to specify filters and their parameters.
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You can also set defaults for each filter. The defaults are applied before the
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normal filter parameters.
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``--vf-defaults=<filter1[=parameter1:parameter2:...],filter2,...>``
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Set defaults for each filter.
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.. note::
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To get a full list of available video filters, see ``--vf=help`` and
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http://ffmpeg.org/ffmpeg-filters.html .
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Also, keep in mind that most actual filters are available via the ``lavfi``
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wrapper, which gives you access to most of libavfilter's filters. This
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includes all filters that have been ported from MPlayer to libavfilter.
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Most builtin filters are deprecated in some ways, unless they're only available
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in mpv (such as filters which deal with mpv specifics, or which are
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implemented in mpv only).
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If a filter is not builtin, the ``lavfi-bridge`` will be automatically
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tried. This bridge does not support help output, and does not verify
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parameters before the filter is actually used. Although the mpv syntax
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is rather similar to libavfilter's, it's not the same. (Which means not
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everything accepted by vf_lavfi's ``graph`` option will be accepted by
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``--vf``.)
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You can also prefix the filter name with ``lavfi-`` to force the wrapper.
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This is helpful if the filter name collides with a deprecated mpv builtin
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filter. For example ``--vf=lavfi-scale=args`` would use libavfilter's
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``scale`` filter over mpv's deprecated builtin one.
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Video filters are managed in lists. There are a few commands to manage the
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filter list.
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``--vf-add=<filter1[,filter2,...]>``
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Appends the filters given as arguments to the filter list.
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``--vf-pre=<filter1[,filter2,...]>``
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Prepends the filters given as arguments to the filter list.
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``--vf-del=<index1[,index2,...]>``
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Deletes the filters at the given indexes. Index numbers start at 0,
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negative numbers address the end of the list (-1 is the last).
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``--vf-clr``
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Completely empties the filter list.
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With filters that support it, you can access parameters by their name.
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``--vf=<filter>=help``
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Prints the parameter names and parameter value ranges for a particular
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filter.
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``--vf=<filter=named_parameter1=value1[:named_parameter2=value2:...]>``
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Sets a named parameter to the given value. Use on and off or yes and no to
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set flag parameters.
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Available mpv-only filters are:
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``format=fmt=<value>:colormatrix=<value>:...``
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Restricts the color space for the next filter without doing any conversion.
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Use together with the scale filter for a real conversion.
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.. note::
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For a list of available formats, see ``format=fmt=help``.
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``<fmt>``
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Format name, e.g. rgb15, bgr24, 420p, etc. (default: don't change).
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``<outfmt>``
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Format name that should be substituted for the output. If they do not
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have the same bytes per pixel and chroma subsampling, it will fail.
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``<colormatrix>``
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Controls the YUV to RGB color space conversion when playing video. There
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are various standards. Normally, BT.601 should be used for SD video, and
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BT.709 for HD video. (This is done by default.) Using incorrect color space
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results in slightly under or over saturated and shifted colors.
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These options are not always supported. Different video outputs provide
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varying degrees of support. The ``gpu`` and ``vdpau`` video output
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drivers usually offer full support. The ``xv`` output can set the color
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space if the system video driver supports it, but not input and output
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levels. The ``scale`` video filter can configure color space and input
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levels, but only if the output format is RGB (if the video output driver
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supports RGB output, you can force this with ``-vf scale,format=rgba``).
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If this option is set to ``auto`` (which is the default), the video's
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color space flag will be used. If that flag is unset, the color space
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will be selected automatically. This is done using a simple heuristic that
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attempts to distinguish SD and HD video. If the video is larger than
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1279x576 pixels, BT.709 (HD) will be used; otherwise BT.601 (SD) is
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selected.
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Available color spaces are:
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:auto: automatic selection (default)
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:bt.601: ITU-R BT.601 (SD)
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:bt.709: ITU-R BT.709 (HD)
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:bt.2020-ncl: ITU-R BT.2020 non-constant luminance system
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:bt.2020-cl: ITU-R BT.2020 constant luminance system
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:smpte-240m: SMPTE-240M
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``<colorlevels>``
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YUV color levels used with YUV to RGB conversion. This option is only
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necessary when playing broken files which do not follow standard color
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levels or which are flagged wrong. If the video does not specify its
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color range, it is assumed to be limited range.
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The same limitations as with ``<colormatrix>`` apply.
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Available color ranges are:
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:auto: automatic selection (normally limited range) (default)
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:limited: limited range (16-235 for luma, 16-240 for chroma)
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:full: full range (0-255 for both luma and chroma)
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``<primaries>``
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RGB primaries the source file was encoded with. Normally this should be set
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in the file header, but when playing broken or mistagged files this can be
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used to override the setting.
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This option only affects video output drivers that perform color
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management, for example ``gpu`` with the ``target-prim`` or
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``icc-profile`` suboptions set.
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If this option is set to ``auto`` (which is the default), the video's
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primaries flag will be used. If that flag is unset, the color space will
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be selected automatically, using the following heuristics: If the
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``<colormatrix>`` is set or determined as BT.2020 or BT.709, the
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corresponding primaries are used. Otherwise, if the video height is
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exactly 576 (PAL), BT.601-625 is used. If it's exactly 480 or 486 (NTSC),
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BT.601-525 is used. If the video resolution is anything else, BT.709 is
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used.
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Available primaries are:
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:auto: automatic selection (default)
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:bt.601-525: ITU-R BT.601 (SD) 525-line systems (NTSC, SMPTE-C)
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:bt.601-625: ITU-R BT.601 (SD) 625-line systems (PAL, SECAM)
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:bt.709: ITU-R BT.709 (HD) (same primaries as sRGB)
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:bt.2020: ITU-R BT.2020 (UHD)
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:apple: Apple RGB
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:adobe: Adobe RGB (1998)
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:prophoto: ProPhoto RGB (ROMM)
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:cie1931: CIE 1931 RGB
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:dci-p3: DCI-P3 (Digital Cinema)
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:v-gamut: Panasonic V-Gamut primaries
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``<gamma>``
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Gamma function the source file was encoded with. Normally this should be set
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in the file header, but when playing broken or mistagged files this can be
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used to override the setting.
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This option only affects video output drivers that perform color management.
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If this option is set to ``auto`` (which is the default), the gamma will
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be set to BT.1886 for YCbCr content, sRGB for RGB content and Linear for
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XYZ content.
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Available gamma functions are:
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:auto: automatic selection (default)
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:bt.1886: ITU-R BT.1886 (EOTF corresponding to BT.601/BT.709/BT.2020)
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:srgb: IEC 61966-2-4 (sRGB)
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:linear: Linear light
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:gamma1.8: Pure power curve (gamma 1.8)
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:gamma2.2: Pure power curve (gamma 2.2)
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:gamma2.8: Pure power curve (gamma 2.8)
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:prophoto: ProPhoto RGB (ROMM) curve
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:pq: ITU-R BT.2100 PQ (Perceptual quantizer) curve
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:hlg: ITU-R BT.2100 HLG (Hybrid Log-gamma) curve
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:v-log: Panasonic V-Log transfer curve
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:s-log1: Sony S-Log1 transfer curve
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:s-log2: Sony S-Log2 transfer curve
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``<sig-peak>``
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Reference peak illumination for the video file, relative to the
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signal's reference white level. This is mostly interesting for HDR, but
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it can also be used tone map SDR content to simulate a different
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exposure. Normally inferred from tags such as MaxCLL or mastering
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metadata.
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The default of 0.0 will default to the source's nominal peak luminance.
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``<light>``
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Light type of the scene. This is mostly correctly inferred based on the
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gamma function, but it can be useful to override this when viewing raw
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camera footage (e.g. V-Log), which is normally scene-referred instead
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of display-referred.
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Available light types are:
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:auto: Automatic selection (default)
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:display: Display-referred light (most content)
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:hlg: Scene-referred using the HLG OOTF (e.g. HLG content)
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:709-1886: Scene-referred using the BT709+BT1886 interaction
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:gamma1.2: Scene-referred using a pure power OOTF (gamma=1.2)
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``<stereo-in>``
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Set the stereo mode the video is assumed to be encoded in. Takes the
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same values as the ``--video-stereo-mode`` option.
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``<stereo-out>``
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Set the stereo mode the video should be displayed as. Takes the
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same values as the ``--video-stereo-mode`` option.
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``<rotate>``
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Set the rotation the video is assumed to be encoded with in degrees.
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The special value ``-1`` uses the input format.
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``<dw>``, ``<dh>``
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Set the display size. Note that setting the display size such that
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the video is scaled in both directions instead of just changing the
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aspect ratio is an implementation detail, and might change later.
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``<dar>``
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Set the display aspect ratio of the video frame. This is a float,
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but values such as ``[16:9]`` can be passed too (``[...]`` for quoting
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to prevent the option parser from interpreting the ``:`` character).
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``<spherical-type>``
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Type of the spherical projection:
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:auto: As indicated by the file (default)
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:none: Normal video
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:equirect: Equirectangular
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:unknown: Unknown projection
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``<spherical-yaw>``, ``<spherical-pitch>``, ``<spherical-roll>``
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Reference angle in degree, if spherical video is used.
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``lavfi=graph[:sws-flags[:o=opts]]``
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Filter video using FFmpeg's libavfilter.
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``<graph>``
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The libavfilter graph string. The filter must have a single video input
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pad and a single video output pad.
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See `<https://ffmpeg.org/ffmpeg-filters.html>`_ for syntax and available
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filters.
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.. warning::
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If you want to use the full filter syntax with this option, you have
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to quote the filter graph in order to prevent mpv's syntax and the
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filter graph syntax from clashing. To prevent a quoting and escaping
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mess, consider using ``--lavfi-complex`` if you know which video
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track you want to use from the input file. (There is only one video
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track for nearly all video files anyway.)
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.. admonition:: Examples
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``--vf=lavfi=[gradfun=20:30,vflip]``
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``gradfun`` filter with nonsense parameters, followed by a
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``vflip`` filter. (This demonstrates how libavfilter takes a
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graph and not just a single filter.) The filter graph string is
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quoted with ``[`` and ``]``. This requires no additional quoting
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or escaping with some shells (like bash), while others (like
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zsh) require additional ``"`` quotes around the option string.
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``'--vf=lavfi="gradfun=20:30,vflip"'``
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Same as before, but uses quoting that should be safe with all
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shells. The outer ``'`` quotes make sure that the shell does not
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remove the ``"`` quotes needed by mpv.
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``'--vf=lavfi=graph="gradfun=radius=30:strength=20,vflip"'``
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Same as before, but uses named parameters for everything.
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``<sws-flags>``
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If libavfilter inserts filters for pixel format conversion, this
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option gives the flags which should be passed to libswscale. This
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option is numeric and takes a bit-wise combination of ``SWS_`` flags.
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See ``http://git.videolan.org/?p=ffmpeg.git;a=blob;f=libswscale/swscale.h``.
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``<o>``
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Set AVFilterGraph options. These should be documented by FFmpeg.
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.. admonition:: Example
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``'--vf=lavfi=yadif:o="threads=2,thread_type=slice"'``
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forces a specific threading configuration.
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``sub=[=bottom-margin:top-margin]``
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Moves subtitle rendering to an arbitrary point in the filter chain, or force
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subtitle rendering in the video filter as opposed to using video output OSD
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support.
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``<bottom-margin>``
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Adds a black band at the bottom of the frame. The SSA/ASS renderer can
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place subtitles there (with ``--sub-use-margins``).
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``<top-margin>``
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Black band on the top for toptitles (with ``--sub-use-margins``).
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.. admonition:: Examples
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``--vf=sub,eq``
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Moves sub rendering before the eq filter. This will put both
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subtitle colors and video under the influence of the video equalizer
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settings.
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``vapoursynth=file:buffered-frames:concurrent-frames``
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Loads a VapourSynth filter script. This is intended for streamed
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processing: mpv actually provides a source filter, instead of using a
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native VapourSynth video source. The mpv source will answer frame
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requests only within a small window of frames (the size of this window
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is controlled with the ``buffered-frames`` parameter), and requests outside
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of that will return errors. As such, you can't use the full power of
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VapourSynth, but you can use certain filters.
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If you just want to play video generated by a VapourSynth (i.e. using
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a native VapourSynth video source), it's better to use ``vspipe`` and a
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FIFO to feed the video to mpv. The same applies if the filter script
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requires random frame access (see ``buffered-frames`` parameter).
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This filter is experimental. If it turns out that it works well and is
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used, it will be ported to libavfilter. Otherwise, it will be just removed.
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``file``
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Filename of the script source. Currently, this is always a python
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script. The variable ``video_in`` is set to the mpv video source,
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and it is expected that the script reads video from it. (Otherwise,
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mpv will decode no video, and the video packet queue will overflow,
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eventually leading to audio being stopped.) The script is also
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expected to pass through timestamps using the ``_DurationNum`` and
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``_DurationDen`` frame properties.
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.. admonition:: Example:
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::
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import vapoursynth as vs
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core = vs.get_core()
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core.std.AddBorders(video_in, 10, 10, 20, 20).set_output()
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.. warning::
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The script will be reloaded on every seek. This is done to reset
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the filter properly on discontinuities.
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``buffered-frames``
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Maximum number of decoded video frames that should be buffered before
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the filter (default: 4). This specifies the maximum number of frames
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the script can request in reverse direction.
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E.g. if ``buffered-frames=5``, and the script just requested frame 15,
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it can still request frame 10, but frame 9 is not available anymore.
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If it requests frame 30, mpv will decode 15 more frames, and keep only
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frames 25-30.
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The actual number of buffered frames also depends on the value of the
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``concurrent-frames`` option. Currently, both option values are
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multiplied to get the final buffer size.
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(Normally, VapourSynth source filters must provide random access, but
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mpv was made for playback, and does not provide frame-exact random
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access. The way this video filter works is a compromise to make simple
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filters work anyway.)
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``concurrent-frames``
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Number of frames that should be requested in parallel. The
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level of concurrency depends on the filter and how quickly mpv can
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decode video to feed the filter. This value should probably be
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proportional to the number of cores on your machine. Most time,
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making it higher than the number of cores can actually make it
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slower.
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By default, this uses the special value ``auto``, which sets the option
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to the number of detected logical CPU cores.
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The following variables are defined by mpv:
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``video_in``
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The mpv video source as vapoursynth clip. Note that this has no length
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set, which confuses many filters. Using ``Trim`` on the clip with a
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high dummy length can turn it into a finite clip.
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``video_in_dw``, ``video_in_dh``
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Display size of the video. Can be different from video size if the
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video does not use square pixels (e.g. DVD).
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``container_fps``
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FPS value as reported by file headers. This value can be wrong or
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completely broken (e.g. 0 or NaN). Even if the value is correct,
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if another filter changes the real FPS (by dropping or inserting
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frames), the value of this variable might not be useful. Note that
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the ``--fps`` command line option overrides this value.
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Useful for some filters which insist on having a FPS.
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``display_fps``
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Refresh rate of the current display. Note that this value can be 0.
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``vapoursynth-lazy``
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The same as ``vapoursynth``, but doesn't load Python scripts. Instead, a
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custom backend using Lua and the raw VapourSynth API is used. The syntax
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is completely different, and absolutely no convenience features are
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provided. There's no type checking either, and you can trigger crashes.
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.. admonition:: Example:
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::
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video_out = invoke("morpho", "Open", {clip = video_in})
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The special variable ``video_in`` is the mpv video source, while the
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special variable ``video_out`` is used to read video from. The 1st argument
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is the plugin (queried with ``getPluginByNs``), the 2nd is the filter name,
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and the 3rd argument is a table with the arguments. Positional arguments
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are not supported. The types must match exactly. Since Lua is terrible and
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can't distinguish integers and floats, integer arguments must be prefixed
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with ``i_``, in which case the prefix is removed and the argument is cast
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to an integer. Should the argument's name start with ``i_``, you're out of
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luck.
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Clips (VSNodeRef) are passed as light userdata, so trying to pass any
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other userdata type will result in hard crashes.
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``vavpp``
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VA-AP-API video post processing. Works with ``--vo=vaapi`` and ``--vo=gpu``
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only. Currently deinterlaces. This filter is automatically inserted if
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deinterlacing is requested (either using the ``d`` key, by default mapped to
|
|
the command ``cycle deinterlace``, or the ``--deinterlace`` option).
|
|
|
|
``deint=<method>``
|
|
Select the deinterlacing algorithm.
|
|
|
|
no
|
|
Don't perform deinterlacing.
|
|
first-field
|
|
Show only first field.
|
|
bob
|
|
bob deinterlacing (default).
|
|
weave, motion-adaptive, motion-compensated
|
|
Advanced deinterlacing algorithms. Whether these actually work
|
|
depends on the GPU hardware, the GPU drivers, driver bugs, and
|
|
mpv bugs.
|
|
|
|
``<interlaced-only>``
|
|
:no: Deinterlace all frames.
|
|
:yes: Only deinterlace frames marked as interlaced (default).
|
|
|
|
``reversal-bug=<yes|no>``
|
|
:no: Use the API as it was interpreted by older Mesa drivers. While
|
|
this interpretation was more obvious and inuitive, it was
|
|
apparently wrong, and not shared by Intel driver developers.
|
|
:yes: Use Intel interpretation of surface forward and backwards
|
|
references (default). This is what Intel drivers and newer Mesa
|
|
drivers expect. Matters only for the advanced deinterlacing
|
|
algorithms.
|
|
|
|
``vdpaupp``
|
|
VDPAU video post processing. Works with ``--vo=vdpau`` and ``--vo=gpu``
|
|
only. This filter is automatically inserted if deinterlacing is requested
|
|
(either using the ``d`` key, by default mapped to the command
|
|
``cycle deinterlace``, or the ``--deinterlace`` option). When enabling
|
|
deinterlacing, it is always preferred over software deinterlacer filters
|
|
if the ``vdpau`` VO is used, and also if ``gpu`` is used and hardware
|
|
decoding was activated at least once (i.e. vdpau was loaded).
|
|
|
|
``sharpen=<-1-1>``
|
|
For positive values, apply a sharpening algorithm to the video, for
|
|
negative values a blurring algorithm (default: 0).
|
|
``denoise=<0-1>``
|
|
Apply a noise reduction algorithm to the video (default: 0; no noise
|
|
reduction).
|
|
``deint=<yes|no>``
|
|
Whether deinterlacing is enabled (default: no). If enabled, it will use
|
|
the mode selected with ``deint-mode``.
|
|
``deint-mode=<first-field|bob|temporal|temporal-spatial>``
|
|
Select deinterlacing mode (default: temporal).
|
|
|
|
Note that there's currently a mechanism that allows the ``vdpau`` VO to
|
|
change the ``deint-mode`` of auto-inserted ``vdpaupp`` filters. To avoid
|
|
confusion, it's recommended not to use the ``--vo=vdpau`` suboptions
|
|
related to filtering.
|
|
|
|
first-field
|
|
Show only first field.
|
|
bob
|
|
Bob deinterlacing.
|
|
temporal
|
|
Motion-adaptive temporal deinterlacing. May lead to A/V desync
|
|
with slow video hardware and/or high resolution.
|
|
temporal-spatial
|
|
Motion-adaptive temporal deinterlacing with edge-guided spatial
|
|
interpolation. Needs fast video hardware.
|
|
``chroma-deint``
|
|
Makes temporal deinterlacers operate both on luma and chroma (default).
|
|
Use no-chroma-deint to solely use luma and speed up advanced
|
|
deinterlacing. Useful with slow video memory.
|
|
``pullup``
|
|
Try to apply inverse telecine, needs motion adaptive temporal
|
|
deinterlacing.
|
|
``interlaced-only=<yes|no>``
|
|
If ``yes`` (default), only deinterlace frames marked as interlaced.
|
|
``hqscaling=<0-9>``
|
|
0
|
|
Use default VDPAU scaling (default).
|
|
1-9
|
|
Apply high quality VDPAU scaling (needs capable hardware).
|
|
|
|
``d3d11vpp``
|
|
Direct3D 11 video post processing. Currently requires D3D11 hardware
|
|
decoding for use.
|
|
|
|
``deint=<yes|no>``
|
|
Whether deinterlacing is enabled (default: no).
|
|
``interlaced-only=<yes|no>``
|
|
If ``yes`` (default), only deinterlace frames marked as interlaced.
|
|
``mode=<blend|bob|adaptive|mocomp|ivctc|none>``
|
|
Tries to select a video processor with the given processing capability.
|
|
If a video processor supports multiple capabilities, it is not clear
|
|
which algorithm is actually selected. ``none`` always falls back. On
|
|
most if not all hardware, this option will probably do nothing, because
|
|
a video processor usually supports all modes or none.
|