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doc: Document hwupload, hwdownload and hwmap filters
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@ -1657,6 +1657,104 @@ A floating point number which specifies chroma temporal strength. It defaults to
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@var{luma_tmp}*@var{chroma_spatial}/@var{luma_spatial}.
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@end table
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@section hwdownload
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Download hardware frames to system memory.
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The input must be in hardware frames, and the output a non-hardware format.
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Not all formats will be supported on the output - it may be necessary to insert
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an additional @option{format} filter immediately following in the graph to get
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the output in a supported format.
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@section hwmap
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Map hardware frames to system memory or to another device.
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This filter has several different modes of operation; which one is used depends
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on the input and output formats:
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@itemize
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@item
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Hardware frame input, normal frame output
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Map the input frames to system memory and pass them to the output. If the
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original hardware frame is later required (for example, after overlaying
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something else on part of it), the @option{hwmap} filter can be used again
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in the next mode to retrieve it.
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@item
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Normal frame input, hardware frame output
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If the input is actually a software-mapped hardware frame, then unmap it -
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that is, return the original hardware frame.
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Otherwise, a device must be provided. Create new hardware surfaces on that
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device for the output, then map them back to the software format at the input
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and give those frames to the preceding filter. This will then act like the
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@option{hwupload} filter, but may be able to avoid an additional copy when
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the input is already in a compatible format.
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@item
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Hardware frame input and output
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A device must be supplied for the output, either directly or with the
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@option{derive_device} option. The input and output devices must be of
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different types and compatible - the exact meaning of this is
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system-dependent, but typically it means that they must refer to the same
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underlying hardware context (for example, refer to the same graphics card).
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If the input frames were originally created on the output device, then unmap
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to retrieve the original frames.
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Otherwise, map the frames to the output device - create new hardware frames
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on the output corresponding to the frames on the input.
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@end itemize
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The following additional parameters are accepted:
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@table @option
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@item mode
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Set the frame mapping mode. Some combination of:
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@table @var
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@item read
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The mapped frame should be readable.
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@item write
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The mapped frame should be writeable.
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@item overwrite
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The mapping will always overwrite the entire frame.
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This may improve performance in some cases, as the original contents of the
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frame need not be loaded.
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@item direct
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The mapping must not involve any copying.
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Indirect mappings to copies of frames are created in some cases where either
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direct mapping is not possible or it would have unexpected properties.
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Setting this flag ensures that the mapping is direct and will fail if that is
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not possible.
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@end table
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Defaults to @var{read+write} if not specified.
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@item derive_device @var{type}
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Rather than using the device supplied at initialisation, instead derive a new
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device of type @var{type} from the device the input frames exist on.
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@item reverse
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In a hardware to hardware mapping, map in reverse - create frames in the sink
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and map them back to the source. This may be necessary in some cases where
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a mapping in one direction is required but only the opposite direction is
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supported by the devices being used.
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This option is dangerous - it may break the preceding filter in undefined
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ways if there are any additional constraints on that filter's output.
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Do not use it without fully understanding the implications of its use.
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@end table
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@section hwupload
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Upload system memory frames to hardware surfaces.
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The device to upload to must be supplied when the filter is initialised. If
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using avconv, select the appropriate device with the @option{-filter_hw_device}
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option.
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@section hwupload_cuda
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Upload system memory frames to a CUDA device.
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