/usr/include/mjpegtools/mpeg2enc/picture.hh is in libmjpegtools-dev 1:2.1.0+debian-5.
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/* This is free software; you can redistribute it
* and/or modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2 of
* the License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
* 02111-1307, USA.
*
*/
#ifndef _PICTURE_HH
#define _PICTURE_HH
#include "mjpeg_types.h"
#include "encoderparams.hh"
#include "synchrolib.h"
#include "macroblock.hh"
#include <vector>
#include "mpeg2syntaxcodes.h"
using namespace std;
/* Transformed per-picture data */
typedef int MotionVecPred[2][2][2];
typedef int DC_DctPred[3];
class CodingPredictors
{
public:
void Reset_DC_DCT_Pred()
{
int cc;
for (cc=0; cc<3; cc++)
dc_dct_pred[cc] = 0;
}
void Reset_MV_Pred()
{
int *base=&PMV[0][0][0];
int v;
for( v = 0; v < 2*2*2; ++v)
base[v]=0;
}
DC_DctPred dc_dct_pred;
MotionVecPred PMV;
MacroBlock *prev_mb;
};
class RateCtl;
class Quantizer;
class StreamState;
class ElemStrmWriter;
class MPEG2CodingBuf;
class ImagePlanes;
class Picture : public CodingPredictors
{
public:
Picture( EncoderParams &_encparams,
ElemStrmWriter &writer,
Quantizer &_quantizer );
~Picture();
void QuantiseAndCode(RateCtl &ratecontrol);
void MotionSubSampledLum();
void ITransform();
void IQuantize();
void CalcSNR();
void Stats();
void Reconstruct();
void CommitCoding();
void DiscardCoding();
void SetFrameParams( const StreamState &ss, int field );
// Metrics used for stearing the encoding
inline double Complexity() const { return Xhi; }
void SetComplexity( double _Xhi ) { Xhi = _Xhi; }
int EncodedSize() const;
double IntraCodedBlocks() const; // Proportion of Macroblocks coded Intra
void PutHeaders(); // Picture/Gop/Sequence headers
void PutTrailers( int padding ); // Stuff after picture but before next picture
void PutHeader();
double ActivityBestMotionComp();
double VarSumBestMotionComp();
double VarSumBestFwdMotionComp();
double MinVarBestMotionComp();
//
//
inline bool Legal( const MotionVector &mv ) const
{
return mv[Dim::X] >= -sxf && mv[Dim::X] < sxf
&& mv[Dim::Y] >= -syf && mv[Dim::Y] < syf;
}
inline bool InRangeFrameMVRef( const Coord &crd ) const
{
return crd.x >= 0 && crd.x <= (encparams.enc_width-16)*2
&& crd.y >= 0 && crd.y <= (encparams.enc_height-16)*2;
}
inline bool InRangeFieldMVRef( const Coord &crd ) const
{
return crd.x >= 0 && crd.x <= (encparams.enc_width-16)*2
&& crd.y >= 0 && crd.y <= (encparams.enc_height/2-16)*2;
}
inline bool FinalFieldOfRefFrame() const
{
return pict_type != B_TYPE && finalfield;
}
protected:
void SetFieldParams(int field);
void PutSliceHdr( int slice_mb_y, int mquant );
void PutMVs( MotionEst &me, bool back );
void PutDCTBlocks( MacroBlock &mb, int mb_type );
void PutCodingExt();
bool SkippableMotionMode( MotionEst &cur_mb_mm, MotionEst &prev_mb_mm);
public:
/***************
*
* Data areas allocated at construction
*
**************/
EncoderParams &encparams;
Quantizer &quantizer;
MPEG2CodingBuf *coding;
/* 8*8 block data, raw (unquantised) and quantised, and (eventually but
not yet inverse quantised */
DCTblock *blocks;
DCTblock *qblocks;
/* Macroblocks of picture */
vector<MacroBlock> mbinfo;
/***************
*
* Data update as picture is re-used for different images in streams
*
**************/
int decode; // Number of frame in stream
int present; // Number of frame in playback order
// == Number of frame in input stream
bool last_picture; // Last Picture of a stream
bool finalfield; // Last field of a frame
/* multiple-reader/single-writer channels Synchronisation
sync only: no data is "read"/"written"
*/
Picture *fwd_ref_frame;
Picture *bwd_ref_frame; // 0 if Not B_TYPE
/* picture encoding source data */
ImagePlanes *fwd_org, *bwd_org; // Original Images of fwd and bwd
// reference pictures
ImagePlanes *fwd_rec, *bwd_rec; // Reconstructed Images for fwd and
// bwd references pictures
ImagePlanes *org_img, *rec_img; // Images for current pict: orginal
// and reconstructed. Reconstructed
// 0 for B planes except when debugging
ImagePlanes *pred;
int sxf, syf, sxb, syb; /* MC search limits. */
bool secondfield; /* Second field of field frame */
bool ipflag; /* P pict in IP frame (FIELD pics only)*/
/* picture structure (header) data */
int temp_ref; /* temporal reference */
PICTURE_CODING frame_type; /* picture coding type for frame (I, P or B) */
int gop_decode; /* Frame number in gop (decode order) */
int bgrp_decode; /* Frame number in 'B group' (decode order) */
PICTURE_CODING pict_type; /* picture coding type for current field (I, P or B) */
int vbv_delay; /* video buffering verifier delay (1/90000 seconds) */
int forw_hor_f_code, forw_vert_f_code;
int back_hor_f_code, back_vert_f_code; /* motion vector ranges */
int dc_prec; /* DC coefficient prec for intra blocks */
PICTURE_STRUCT pict_struct; /* picture structure (frame, top / bottom) */
int topfirst; /* display top field first */
bool frame_pred_dct; /* Use only frame prediction... */
int intravlc; /* Intra VLC format */
int q_scale_type; /* Quantiser scale... */
bool altscan; /* Alternate scan pattern selected */
const uint8_t *scan_pattern; /* The scan pattern itself */
bool repeatfirst; /* repeat first field after second field */
bool prog_frame; /* progressive frame */
int unit_coeff_threshold; // Unit coefficient density weight
// below which zeroing should be applied.
int unit_coeff_first; // First coefficient for zeroing purposes...
// either 1 or 0.
/* Information for GOP start frames */
bool gop_start; /* GOP Start picture */
bool closed_gop; /* GOP is closed */
int nb; /* B frames in GOP */
int np; /* P frames in GOP */
bool new_seq; /* GOP starts new sequence */
bool end_seq; /* Frame ends sequence */
double Xhi; /* Complexity ... product of bits needed to code and
quantisation */
/* Rate control statistics */
double AQ; // Mean actual quantisation of encoding (if any)
double ABQ; // Mean base quantisation of encoding (if any)
/* Statistics... */
int pad;
//int split;
double SQ;
double avg_act;
double sum_avg_act;
};
/*
* Local variables:
* c-file-style: "stroustrup"
* tab-width: 4
* indent-tabs-mode: nil
* End:
*/
#endif
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