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Same rationale as the previous commits.
487 lines
25 KiB
C++
487 lines
25 KiB
C++
/********************************************************************
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* *
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* THIS FILE IS PART OF THE OggTheora SOFTWARE CODEC SOURCE CODE. *
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* USE, DISTRIBUTION AND REPRODUCTION OF THIS LIBRARY SOURCE IS *
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* GOVERNED BY A BSD-STYLE SOURCE LICENSE INCLUDED WITH THIS SOURCE *
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* IN 'COPYING'. PLEASE READ THESE TERMS BEFORE DISTRIBUTING. *
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* *
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* THE Theora SOURCE CODE IS COPYRIGHT (C) 2002-2009 *
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* by the Xiph.Org Foundation http://www.xiph.org/ *
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* *
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********************************************************************
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function:
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last mod: $Id: theora.h,v 1.8 2004/03/15 22:17:32 derf Exp $
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********************************************************************/
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/**\file
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* The <tt>libtheoraenc</tt> C encoding API.*/
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#if !defined(_O_THEORA_THEORAENC_H_)
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# define _O_THEORA_THEORAENC_H_ (1)
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# include <stddef.h>
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# include <ogg/ogg.h>
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# include "codec.h"
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#if defined(__cplusplus)
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extern "C" {
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#endif
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/**\name th_encode_ctl() codes
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* \anchor encctlcodes
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* These are the available request codes for th_encode_ctl().
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* By convention, these are even, to distinguish them from the
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* \ref decctlcodes "decoder control codes".
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* Keep any experimental or vendor-specific values above \c 0x8000.*/
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/*@{*/
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/**Sets the Huffman tables to use.
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* The tables are copied, not stored by reference, so they can be freed after
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* this call.
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* <tt>NULL</tt> may be specified to revert to the default tables.
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*
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* \param[in] _buf <tt>#th_huff_code[#TH_NHUFFMAN_TABLES][#TH_NDCT_TOKENS]</tt>
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* \retval TH_EFAULT \a _enc_ctx is <tt>NULL</tt>.
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* \retval TH_EINVAL Encoding has already begun or one or more of the given
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* tables is not full or prefix-free, \a _buf is
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* <tt>NULL</tt> and \a _buf_sz is not zero, or \a _buf is
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* non-<tt>NULL</tt> and \a _buf_sz is not
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* <tt>sizeof(#th_huff_code)*#TH_NHUFFMAN_TABLES*#TH_NDCT_TOKENS</tt>.
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* \retval TH_EIMPL Not supported by this implementation.*/
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#define TH_ENCCTL_SET_HUFFMAN_CODES (0)
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/**Sets the quantization parameters to use.
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* The parameters are copied, not stored by reference, so they can be freed
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* after this call.
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* <tt>NULL</tt> may be specified to revert to the default parameters.
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*
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* \param[in] _buf #th_quant_info
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* \retval TH_EFAULT \a _enc_ctx is <tt>NULL</tt>.
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* \retval TH_EINVAL Encoding has already begun, \a _buf is
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* <tt>NULL</tt> and \a _buf_sz is not zero,
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* or \a _buf is non-<tt>NULL</tt> and
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* \a _buf_sz is not <tt>sizeof(#th_quant_info)</tt>.
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* \retval TH_EIMPL Not supported by this implementation.*/
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#define TH_ENCCTL_SET_QUANT_PARAMS (2)
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/**Sets the maximum distance between key frames.
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* This can be changed during an encode, but will be bounded by
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* <tt>1<<th_info#keyframe_granule_shift</tt>.
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* If it is set before encoding begins, th_info#keyframe_granule_shift will
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* be enlarged appropriately.
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*
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* \param[in] _buf <tt>ogg_uint32_t</tt>: The maximum distance between key
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* frames.
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* \param[out] _buf <tt>ogg_uint32_t</tt>: The actual maximum distance set.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(ogg_uint32_t)</tt>.
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* \retval TH_EIMPL Not supported by this implementation.*/
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#define TH_ENCCTL_SET_KEYFRAME_FREQUENCY_FORCE (4)
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/**Disables any encoder features that would prevent lossless transcoding back
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* to VP3.
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* This primarily means disabling block-adaptive quantization and always coding
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* all four luma blocks in a macro block when 4MV is used.
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* It also includes using the VP3 quantization tables and Huffman codes; if you
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* set them explicitly after calling this function, the resulting stream will
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* not be VP3-compatible.
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* If you enable VP3-compatibility when encoding 4:2:2 or 4:4:4 source
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* material, or when using a picture region smaller than the full frame (e.g.
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* a non-multiple-of-16 width or height), then non-VP3 bitstream features will
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* still be disabled, but the stream will still not be VP3-compatible, as VP3
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* was not capable of encoding such formats.
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* If you call this after encoding has already begun, then the quantization
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* tables and codebooks cannot be changed, but the frame-level features will
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* be enabled or disabled as requested.
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*
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* \param[in] _buf <tt>int</tt>: a non-zero value to enable VP3 compatibility,
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* or 0 to disable it (the default).
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* \param[out] _buf <tt>int</tt>: 1 if all bitstream features required for
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* VP3-compatibility could be set, and 0 otherwise.
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* The latter will be returned if the pixel format is not
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* 4:2:0, the picture region is smaller than the full frame,
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* or if encoding has begun, preventing the quantization
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* tables and codebooks from being set.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(int)</tt>.
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* \retval TH_EIMPL Not supported by this implementation.*/
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#define TH_ENCCTL_SET_VP3_COMPATIBLE (10)
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/**Gets the maximum speed level.
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* Higher speed levels favor quicker encoding over better quality per bit.
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* Depending on the encoding mode, and the internal algorithms used, quality
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* may actually improve, but in this case bitrate will also likely increase.
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* In any case, overall rate/distortion performance will probably decrease.
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* The maximum value, and the meaning of each value, may change depending on
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* the current encoding mode (VBR vs. constant quality, etc.).
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*
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* \param[out] _buf <tt>int</tt>: The maximum encoding speed level.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(int)</tt>.
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* \retval TH_EIMPL Not supported by this implementation in the current
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* encoding mode.*/
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#define TH_ENCCTL_GET_SPLEVEL_MAX (12)
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/**Sets the speed level.
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* The current speed level may be retrieved using #TH_ENCCTL_GET_SPLEVEL.
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*
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* \param[in] _buf <tt>int</tt>: The new encoding speed level.
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* 0 is slowest, larger values use less CPU.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(int)</tt>, or the
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* encoding speed level is out of bounds.
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* The maximum encoding speed level may be
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* implementation- and encoding mode-specific, and can be
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* obtained via #TH_ENCCTL_GET_SPLEVEL_MAX.
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* \retval TH_EIMPL Not supported by this implementation in the current
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* encoding mode.*/
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#define TH_ENCCTL_SET_SPLEVEL (14)
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/**Gets the current speed level.
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* The default speed level may vary according to encoder implementation, but if
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* this control code is not supported (it returns #TH_EIMPL), the default may
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* be assumed to be the slowest available speed (0).
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* The maximum encoding speed level may be implementation- and encoding
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* mode-specific, and can be obtained via #TH_ENCCTL_GET_SPLEVEL_MAX.
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*
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* \param[out] _buf <tt>int</tt>: The current encoding speed level.
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* 0 is slowest, larger values use less CPU.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(int)</tt>.
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* \retval TH_EIMPL Not supported by this implementation in the current
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* encoding mode.*/
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#define TH_ENCCTL_GET_SPLEVEL (16)
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/**Sets the number of duplicates of the next frame to produce.
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* Although libtheora can encode duplicate frames very cheaply, it costs some
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* amount of CPU to detect them, and a run of duplicates cannot span a
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* keyframe boundary.
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* This control code tells the encoder to produce the specified number of extra
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* duplicates of the next frame.
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* This allows the encoder to make smarter keyframe placement decisions and
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* rate control decisions, and reduces CPU usage as well, when compared to
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* just submitting the same frame for encoding multiple times.
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* This setting only applies to the next frame submitted for encoding.
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* You MUST call th_encode_packetout() repeatedly until it returns 0, or the
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* extra duplicate frames will be lost.
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*
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* \param[in] _buf <tt>int</tt>: The number of duplicates to produce.
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* If this is negative or zero, no duplicates will be produced.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(int)</tt>, or the
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* number of duplicates is greater than or equal to the
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* maximum keyframe interval.
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* In the latter case, NO duplicate frames will be produced.
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* You must ensure that the maximum keyframe interval is set
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* larger than the maximum number of duplicates you will
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* ever wish to insert prior to encoding.
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* \retval TH_EIMPL Not supported by this implementation in the current
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* encoding mode.*/
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#define TH_ENCCTL_SET_DUP_COUNT (18)
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/**Modifies the default bitrate management behavior.
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* Use to allow or disallow frame dropping, and to enable or disable capping
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* bit reservoir overflows and underflows.
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* See \ref encctlcodes "the list of available flags".
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* The flags are set by default to
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* <tt>#TH_RATECTL_DROP_FRAMES|#TH_RATECTL_CAP_OVERFLOW</tt>.
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*
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* \param[in] _buf <tt>int</tt>: Any combination of
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* \ref ratectlflags "the available flags":
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* - #TH_RATECTL_DROP_FRAMES: Enable frame dropping.
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* - #TH_RATECTL_CAP_OVERFLOW: Don't bank excess bits for later
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* use.
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* - #TH_RATECTL_CAP_UNDERFLOW: Don't try to make up shortfalls
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* later.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(int)</tt> or rate control
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* is not enabled.
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* \retval TH_EIMPL Not supported by this implementation in the current
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* encoding mode.*/
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#define TH_ENCCTL_SET_RATE_FLAGS (20)
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/**Sets the size of the bitrate management bit reservoir as a function
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* of number of frames.
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* The reservoir size affects how quickly bitrate management reacts to
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* instantaneous changes in the video complexity.
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* Larger reservoirs react more slowly, and provide better overall quality, but
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* require more buffering by a client, adding more latency to live streams.
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* By default, libtheora sets the reservoir to the maximum distance between
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* keyframes, subject to a minimum and maximum limit.
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* This call may be used to increase or decrease the reservoir, increasing or
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* decreasing the allowed temporary variance in bitrate.
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* An implementation may impose some limits on the size of a reservoir it can
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* handle, in which case the actual reservoir size may not be exactly what was
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* requested.
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* The actual value set will be returned.
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*
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* \param[in] _buf <tt>int</tt>: Requested size of the reservoir measured in
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* frames.
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* \param[out] _buf <tt>int</tt>: The actual size of the reservoir set.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(int)</tt>, or rate control
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* is not enabled. The buffer has an implementation
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* defined minimum and maximum size and the value in _buf
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* will be adjusted to match the actual value set.
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* \retval TH_EIMPL Not supported by this implementation in the current
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* encoding mode.*/
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#define TH_ENCCTL_SET_RATE_BUFFER (22)
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/**Enable pass 1 of two-pass encoding mode and retrieve the first pass metrics.
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* Pass 1 mode must be enabled before the first frame is encoded, and a target
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* bitrate must have already been specified to the encoder.
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* Although this does not have to be the exact rate that will be used in the
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* second pass, closer values may produce better results.
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* The first call returns the size of the two-pass header data, along with some
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* placeholder content, and sets the encoder into pass 1 mode implicitly.
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* This call sets the encoder to pass 1 mode implicitly.
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* Then, a subsequent call must be made after each call to
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* th_encode_ycbcr_in() to retrieve the metrics for that frame.
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* An additional, final call must be made to retrieve the summary data,
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* containing such information as the total number of frames, etc.
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* This must be stored in place of the placeholder data that was returned
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* in the first call, before the frame metrics data.
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* All of this data must be presented back to the encoder during pass 2 using
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* #TH_ENCCTL_2PASS_IN.
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*
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* \param[out] <tt>char *</tt>_buf: Returns a pointer to internal storage
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* containing the two pass metrics data.
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* This storage is only valid until the next call, or until the
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* encoder context is freed, and must be copied by the
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* application.
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* \retval >=0 The number of bytes of metric data available in the
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* returned buffer.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL \a _buf_sz is not <tt>sizeof(char *)</tt>, no target
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* bitrate has been set, or the first call was made after
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* the first frame was submitted for encoding.
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* \retval TH_EIMPL Not supported by this implementation.*/
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#define TH_ENCCTL_2PASS_OUT (24)
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/**Submits two-pass encoding metric data collected the first encoding pass to
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* the second pass.
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* The first call must be made before the first frame is encoded, and a target
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* bitrate must have already been specified to the encoder.
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* It sets the encoder to pass 2 mode implicitly; this cannot be disabled.
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* The encoder may require reading data from some or all of the frames in
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* advance, depending on, e.g., the reservoir size used in the second pass.
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* You must call this function repeatedly before each frame to provide data
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* until either a) it fails to consume all of the data presented or b) all of
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* the pass 1 data has been consumed.
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* In the first case, you must save the remaining data to be presented after
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* the next frame.
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* You can call this function with a NULL argument to get an upper bound on
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* the number of bytes that will be required before the next frame.
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*
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* When pass 2 is first enabled, the default bit reservoir is set to the entire
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* file; this gives maximum flexibility but can lead to very high peak rates.
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* You can subsequently set it to another value with #TH_ENCCTL_SET_RATE_BUFFER
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* (e.g., to set it to the keyframe interval for non-live streaming), however,
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* you may then need to provide more data before the next frame.
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*
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* \param[in] _buf <tt>char[]</tt>: A buffer containing the data returned by
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* #TH_ENCCTL_2PASS_OUT in pass 1.
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* You may pass <tt>NULL</tt> for \a _buf to return an upper
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* bound on the number of additional bytes needed before the
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* next frame.
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* The summary data returned at the end of pass 1 must be at
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* the head of the buffer on the first call with a
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* non-<tt>NULL</tt> \a _buf, and the placeholder data
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* returned at the start of pass 1 should be omitted.
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* After each call you should advance this buffer by the number
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* of bytes consumed.
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* \retval >0 The number of bytes of metric data required/consumed.
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* \retval 0 No more data is required before the next frame.
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* \retval TH_EFAULT \a _enc_ctx is <tt>NULL</tt>.
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* \retval TH_EINVAL No target bitrate has been set, or the first call was
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* made after the first frame was submitted for
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* encoding.
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* \retval TH_ENOTFORMAT The data did not appear to be pass 1 from a compatible
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* implementation of this library.
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* \retval TH_EBADHEADER The data was invalid; this may be returned when
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* attempting to read an aborted pass 1 file that still
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* has the placeholder data in place of the summary
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* data.
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* \retval TH_EIMPL Not supported by this implementation.*/
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#define TH_ENCCTL_2PASS_IN (26)
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/**Sets the current encoding quality.
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* This is only valid so long as no bitrate has been specified, either through
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* the #th_info struct used to initialize the encoder or through
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* #TH_ENCCTL_SET_BITRATE (this restriction may be relaxed in a future
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* version).
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* If it is set before the headers are emitted, the target quality encoded in
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* them will be updated.
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*
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* \param[in] _buf <tt>int</tt>: The new target quality, in the range 0...63,
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* inclusive.
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* \retval 0 Success.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL A target bitrate has already been specified, or the
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* quality index was not in the range 0...63.
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* \retval TH_EIMPL Not supported by this implementation.*/
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#define TH_ENCCTL_SET_QUALITY (28)
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/**Sets the current encoding bitrate.
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* Once a bitrate is set, the encoder must use a rate-controlled mode for all
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* future frames (this restriction may be relaxed in a future version).
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* If it is set before the headers are emitted, the target bitrate encoded in
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* them will be updated.
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* Due to the buffer delay, the exact bitrate of each section of the encode is
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* not guaranteed.
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* The encoder may have already used more bits than allowed for the frames it
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* has encoded, expecting to make them up in future frames, or it may have
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* used fewer, holding the excess in reserve.
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* The exact transition between the two bitrates is not well-defined by this
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* API, but may be affected by flags set with #TH_ENCCTL_SET_RATE_FLAGS.
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* After a number of frames equal to the buffer delay, one may expect further
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* output to average at the target bitrate.
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*
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* \param[in] _buf <tt>long</tt>: The new target bitrate, in bits per second.
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* \retval 0 Success.
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* \retval TH_EFAULT \a _enc_ctx or \a _buf is <tt>NULL</tt>.
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* \retval TH_EINVAL The target bitrate was not positive.
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* \retval TH_EIMPL Not supported by this implementation.*/
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#define TH_ENCCTL_SET_BITRATE (30)
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/*@}*/
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/**\name TH_ENCCTL_SET_RATE_FLAGS flags
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* \anchor ratectlflags
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* These are the flags available for use with #TH_ENCCTL_SET_RATE_FLAGS.*/
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/*@{*/
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/**Drop frames to keep within bitrate buffer constraints.
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* This can have a severe impact on quality, but is the only way to ensure that
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* bitrate targets are met at low rates during sudden bursts of activity.*/
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#define TH_RATECTL_DROP_FRAMES (0x1)
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/**Ignore bitrate buffer overflows.
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* If the encoder uses so few bits that the reservoir of available bits
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* overflows, ignore the excess.
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* The encoder will not try to use these extra bits in future frames.
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* At high rates this may cause the result to be undersized, but allows a
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* client to play the stream using a finite buffer; it should normally be
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* enabled.*/
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#define TH_RATECTL_CAP_OVERFLOW (0x2)
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/**Ignore bitrate buffer underflows.
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* If the encoder uses so many bits that the reservoir of available bits
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* underflows, ignore the deficit.
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* The encoder will not try to make up these extra bits in future frames.
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* At low rates this may cause the result to be oversized; it should normally
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* be disabled.*/
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#define TH_RATECTL_CAP_UNDERFLOW (0x4)
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/*@}*/
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/**The quantization parameters used by VP3.*/
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extern const th_quant_info TH_VP31_QUANT_INFO;
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/**The Huffman tables used by VP3.*/
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extern const th_huff_code
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TH_VP31_HUFF_CODES[TH_NHUFFMAN_TABLES][TH_NDCT_TOKENS];
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/**\name Encoder state
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The following data structure is opaque, and its contents are not publicly
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defined by this API.
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Referring to its internals directly is unsupported, and may break without
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warning.*/
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/*@{*/
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/**The encoder context.*/
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typedef struct th_enc_ctx th_enc_ctx;
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/*@}*/
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/**\defgroup encfuncs Functions for Encoding*/
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/*@{*/
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/**\name Functions for encoding
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* You must link to <tt>libtheoraenc</tt> and <tt>libtheoradec</tt>
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* if you use any of the functions in this section.
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*
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* The functions are listed in the order they are used in a typical encode.
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* The basic steps are:
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* - Fill in a #th_info structure with details on the format of the video you
|
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* wish to encode.
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* - Allocate a #th_enc_ctx handle with th_encode_alloc().
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* - Perform any additional encoder configuration required with
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* th_encode_ctl().
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* - Repeatedly call th_encode_flushheader() to retrieve all the header
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* packets.
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* - For each uncompressed frame:
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* - Submit the uncompressed frame via th_encode_ycbcr_in()
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* - Repeatedly call th_encode_packetout() to retrieve any video data packets
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* that are ready.
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* - Call th_encode_free() to release all encoder memory.*/
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/*@{*/
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/**Allocates an encoder instance.
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* \param _info A #th_info struct filled with the desired encoding parameters.
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* \return The initialized #th_enc_ctx handle.
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* \retval NULL If the encoding parameters were invalid.*/
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extern th_enc_ctx *th_encode_alloc(const th_info *_info);
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/**Encoder control function.
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|
* This is used to provide advanced control the encoding process.
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* \param _enc A #th_enc_ctx handle.
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|
* \param _req The control code to process.
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|
* See \ref encctlcodes "the list of available control codes"
|
|
* for details.
|
|
* \param _buf The parameters for this control code.
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* \param _buf_sz The size of the parameter buffer.*/
|
|
extern int th_encode_ctl(th_enc_ctx *_enc,int _req,void *_buf,size_t _buf_sz);
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|
/**Outputs the next header packet.
|
|
* This should be called repeatedly after encoder initialization until it
|
|
* returns 0 in order to get all of the header packets, in order, before
|
|
* encoding actual video data.
|
|
* \param _enc A #th_enc_ctx handle.
|
|
* \param _comments The metadata to place in the comment header, when it is
|
|
* encoded.
|
|
* \param _op An <tt>ogg_packet</tt> structure to fill.
|
|
* All of the elements of this structure will be set,
|
|
* including a pointer to the header data.
|
|
* The memory for the header data is owned by
|
|
* <tt>libtheoraenc</tt>, and may be invalidated when the
|
|
* next encoder function is called.
|
|
* \return A positive value indicates that a header packet was successfully
|
|
* produced.
|
|
* \retval 0 No packet was produced, and no more header packets remain.
|
|
* \retval TH_EFAULT \a _enc, \a _comments, or \a _op was <tt>NULL</tt>.*/
|
|
extern int th_encode_flushheader(th_enc_ctx *_enc,
|
|
th_comment *_comments,ogg_packet *_op);
|
|
/**Submits an uncompressed frame to the encoder.
|
|
* \param _enc A #th_enc_ctx handle.
|
|
* \param _ycbcr A buffer of Y'CbCr data to encode.
|
|
* \retval 0 Success.
|
|
* \retval TH_EFAULT \a _enc or \a _ycbcr is <tt>NULL</tt>.
|
|
* \retval TH_EINVAL The buffer size does not match the frame size the encoder
|
|
* was initialized with, or encoding has already
|
|
* completed.*/
|
|
extern int th_encode_ycbcr_in(th_enc_ctx *_enc,th_ycbcr_buffer _ycbcr);
|
|
/**Retrieves encoded video data packets.
|
|
* This should be called repeatedly after each frame is submitted to flush any
|
|
* encoded packets, until it returns 0.
|
|
* The encoder will not buffer these packets as subsequent frames are
|
|
* compressed, so a failure to do so will result in lost video data.
|
|
* \note Currently the encoder operates in a one-frame-in, one-packet-out
|
|
* manner.
|
|
* However, this may be changed in the future.
|
|
* \param _enc A #th_enc_ctx handle.
|
|
* \param _last Set this flag to a non-zero value if no more uncompressed
|
|
* frames will be submitted.
|
|
* This ensures that a proper EOS flag is set on the last packet.
|
|
* \param _op An <tt>ogg_packet</tt> structure to fill.
|
|
* All of the elements of this structure will be set, including a
|
|
* pointer to the video data.
|
|
* The memory for the video data is owned by
|
|
* <tt>libtheoraenc</tt>, and may be invalidated when the next
|
|
* encoder function is called.
|
|
* \return A positive value indicates that a video data packet was successfully
|
|
* produced.
|
|
* \retval 0 No packet was produced, and no more encoded video data
|
|
* remains.
|
|
* \retval TH_EFAULT \a _enc or \a _op was <tt>NULL</tt>.*/
|
|
extern int th_encode_packetout(th_enc_ctx *_enc,int _last,ogg_packet *_op);
|
|
/**Frees an allocated encoder instance.
|
|
* \param _enc A #th_enc_ctx handle.*/
|
|
extern void th_encode_free(th_enc_ctx *_enc);
|
|
/*@}*/
|
|
/*@}*/
|
|
|
|
|
|
|
|
#if defined(__cplusplus)
|
|
}
|
|
#endif
|
|
|
|
#endif
|