mpeg12.c 56.3 KB
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/*
 * MPEG1 encoder / MPEG2 decoder
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 * Copyright (c) 2000,2001 Fabrice Bellard.
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 *
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 * This library is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 * License as published by the Free Software Foundation; either
 * version 2 of the License, or (at your option) any later version.
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 *
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 * This library is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * Lesser General Public License for more details.
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 *
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 * You should have received a copy of the GNU Lesser General Public
 * License along with this library; if not, write to the Free Software
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
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 */
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//#define DEBUG
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#include "avcodec.h"
#include "dsputil.h"
#include "mpegvideo.h"

#include "mpeg12data.h"

/* Start codes. */
#define SEQ_END_CODE		0x000001b7
#define SEQ_START_CODE		0x000001b3
#define GOP_START_CODE		0x000001b8
#define PICTURE_START_CODE	0x00000100
#define SLICE_MIN_START_CODE	0x00000101
#define SLICE_MAX_START_CODE	0x000001af
#define EXT_START_CODE		0x000001b5
#define USER_START_CODE		0x000001b2

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#define DC_VLC_BITS 9
#define MV_VLC_BITS 9
#define MBINCR_VLC_BITS 9
#define MB_PAT_VLC_BITS 9
#define MB_PTYPE_VLC_BITS 6
#define MB_BTYPE_VLC_BITS 6
#define TEX_VLC_BITS 9

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static void mpeg1_encode_block(MpegEncContext *s, 
                         DCTELEM *block, 
                         int component);
static void mpeg1_encode_motion(MpegEncContext *s, int val);
static void mpeg1_skip_picture(MpegEncContext *s, int pict_num);
static int mpeg1_decode_block(MpegEncContext *s, 
                              DCTELEM *block, 
                              int n);
static int mpeg2_decode_block_non_intra(MpegEncContext *s, 
                                        DCTELEM *block, 
                                        int n);
static int mpeg2_decode_block_intra(MpegEncContext *s, 
                                    DCTELEM *block, 
                                    int n);
static int mpeg_decode_motion(MpegEncContext *s, int fcode, int pred);

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static UINT16 mv_penalty[MAX_FCODE+1][MAX_MV*2+1];
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static UINT8 fcode_tab[MAX_MV*2+1];

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static void init_2d_vlc_rl(RLTable *rl)
{
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    int i;
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    init_vlc(&rl->vlc, TEX_VLC_BITS, rl->n + 2, 
             &rl->table_vlc[0][1], 4, 2,
             &rl->table_vlc[0][0], 4, 2);

    
    rl->rl_vlc[0]= av_malloc(rl->vlc.table_size*sizeof(RL_VLC_ELEM));
    for(i=0; i<rl->vlc.table_size; i++){
        int code= rl->vlc.table[i][0];
        int len = rl->vlc.table[i][1];
        int level, run;
    
        if(len==0){ // illegal code
            run= 65;
            level= MAX_LEVEL;
        }else if(len<0){ //more bits needed
            run= 0;
            level= code;
        }else{
            if(code==rl->n){ //esc
                run= 65;
                level= 0;
            }else if(code==rl->n+1){ //eob
                run= 192;
                level= 1;
            }else{
                run=   rl->table_run  [code] + 1;
                level= rl->table_level[code];
            }
        }
        rl->rl_vlc[0][i].len= len;
        rl->rl_vlc[0][i].level= level;
        rl->rl_vlc[0][i].run= run;
    }
}


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static void put_header(MpegEncContext *s, int header)
{
    align_put_bits(&s->pb);
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    put_bits(&s->pb, 16, header>>16);
    put_bits(&s->pb, 16, header&0xFFFF);
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}

/* put sequence header if needed */
static void mpeg1_encode_sequence_header(MpegEncContext *s)
{
        unsigned int vbv_buffer_size;
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        unsigned int fps, v;
        int n;
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        UINT64 time_code;
        
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        if (s->picture_in_gop_number == 0) {
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            /* mpeg1 header repeated every gop */
            put_header(s, SEQ_START_CODE);
            
            /* search closest frame rate */
            {
                int i, dmin, d;
                s->frame_rate_index = 0;
                dmin = 0x7fffffff;
                for(i=1;i<9;i++) {
                    d = abs(s->frame_rate - frame_rate_tab[i]);
                    if (d < dmin) {
                        dmin = d;
                        s->frame_rate_index = i;
                    }
                }
            }
 
            put_bits(&s->pb, 12, s->width);
            put_bits(&s->pb, 12, s->height);
            put_bits(&s->pb, 4, 1); /* 1/1 aspect ratio */
            put_bits(&s->pb, 4, s->frame_rate_index);
            v = s->bit_rate / 400;
            if (v > 0x3ffff)
                v = 0x3ffff;
            put_bits(&s->pb, 18, v);
            put_bits(&s->pb, 1, 1); /* marker */
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            if(s->avctx->rc_buffer_size)
                vbv_buffer_size = s->avctx->rc_buffer_size;
            else
                /* VBV calculation: Scaled so that a VCD has the proper VBV size of 40 kilobytes */
                vbv_buffer_size = (( 20 * s->bit_rate) / (1151929 / 2)) * 8 * 1024;	 
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            put_bits(&s->pb, 10, (vbv_buffer_size + 16383) / 16384); 
            put_bits(&s->pb, 1, 1); /* constrained parameter flag */
            put_bits(&s->pb, 1, 0); /* no custom intra matrix */
            put_bits(&s->pb, 1, 0); /* no custom non intra matrix */

            put_header(s, GOP_START_CODE);
            put_bits(&s->pb, 1, 0); /* do drop frame */
            /* time code : we must convert from the real frame rate to a
               fake mpeg frame rate in case of low frame rate */
            fps = frame_rate_tab[s->frame_rate_index];
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            time_code = (INT64)s->fake_picture_number * FRAME_RATE_BASE;
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            s->gop_picture_number = s->fake_picture_number;
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            put_bits(&s->pb, 5, (UINT32)((time_code / (fps * 3600)) % 24));
            put_bits(&s->pb, 6, (UINT32)((time_code / (fps * 60)) % 60));
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            put_bits(&s->pb, 1, 1);
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            put_bits(&s->pb, 6, (UINT32)((time_code / fps) % 60));
            put_bits(&s->pb, 6, (UINT32)((time_code % fps) / FRAME_RATE_BASE));
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            put_bits(&s->pb, 1, 1); /* closed gop */
            put_bits(&s->pb, 1, 0); /* broken link */
        }

        if (s->frame_rate < (24 * FRAME_RATE_BASE) && s->picture_number > 0) {
            /* insert empty P pictures to slow down to the desired
               frame rate. Each fake pictures takes about 20 bytes */
            fps = frame_rate_tab[s->frame_rate_index];
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            n = (((INT64)s->picture_number * fps) / s->frame_rate) - 1;
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            while (s->fake_picture_number < n) {
                mpeg1_skip_picture(s, s->fake_picture_number - 
                                   s->gop_picture_number); 
                s->fake_picture_number++;
            }

        }
}


/* insert a fake P picture */
static void mpeg1_skip_picture(MpegEncContext *s, int pict_num)
{
    unsigned int mb_incr;

    /* mpeg1 picture header */
    put_header(s, PICTURE_START_CODE);
    /* temporal reference */
    put_bits(&s->pb, 10, pict_num & 0x3ff); 
    
    put_bits(&s->pb, 3, P_TYPE);
    put_bits(&s->pb, 16, 0xffff); /* non constant bit rate */
    
    put_bits(&s->pb, 1, 1); /* integer coordinates */
    put_bits(&s->pb, 3, 1); /* forward_f_code */
    
    put_bits(&s->pb, 1, 0); /* extra bit picture */
    
    /* only one slice */
    put_header(s, SLICE_MIN_START_CODE);
    put_bits(&s->pb, 5, 1); /* quantizer scale */
    put_bits(&s->pb, 1, 0); /* slice extra information */
    
    mb_incr = 1;
    put_bits(&s->pb, mbAddrIncrTable[mb_incr - 1][1], 
             mbAddrIncrTable[mb_incr - 1][0]);
    
    /* empty macroblock */
    put_bits(&s->pb, 3, 1); /* motion only */
    
    /* zero motion x & y */
    put_bits(&s->pb, 1, 1); 
    put_bits(&s->pb, 1, 1); 

    /* output a number of empty slice */
    mb_incr = s->mb_width * s->mb_height - 1;
    while (mb_incr > 33) {
        put_bits(&s->pb, 11, 0x008);
        mb_incr -= 33;
    }
    put_bits(&s->pb, mbAddrIncrTable[mb_incr - 1][1], 
             mbAddrIncrTable[mb_incr - 1][0]);
    
    /* empty macroblock */
    put_bits(&s->pb, 3, 1); /* motion only */
    
    /* zero motion x & y */
    put_bits(&s->pb, 1, 1); 
    put_bits(&s->pb, 1, 1); 
}

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static void common_init(MpegEncContext *s)
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{
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    s->y_dc_scale_table=
    s->c_dc_scale_table= ff_mpeg1_dc_scale_table;
}
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void mpeg1_encode_picture_header(MpegEncContext *s, int picture_number)
{
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    mpeg1_encode_sequence_header(s);

    /* mpeg1 picture header */
    put_header(s, PICTURE_START_CODE);
    /* temporal reference */
    put_bits(&s->pb, 10, (s->fake_picture_number - 
                          s->gop_picture_number) & 0x3ff); 
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    s->fake_picture_number++;
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    put_bits(&s->pb, 3, s->pict_type);
    put_bits(&s->pb, 16, 0xffff); /* non constant bit rate */
    
    if (s->pict_type == P_TYPE) {
        put_bits(&s->pb, 1, 0); /* half pel coordinates */
        put_bits(&s->pb, 3, s->f_code); /* forward_f_code */
    }
    
    put_bits(&s->pb, 1, 0); /* extra bit picture */
    
    /* only one slice */
    put_header(s, SLICE_MIN_START_CODE);
    put_bits(&s->pb, 5, s->qscale); /* quantizer scale */
    put_bits(&s->pb, 1, 0); /* slice extra information */
}

void mpeg1_encode_mb(MpegEncContext *s,
                     DCTELEM block[6][64],
                     int motion_x, int motion_y)
{
    int mb_incr, i, cbp, mb_x, mb_y;

    mb_x = s->mb_x;
    mb_y = s->mb_y;

    /* compute cbp */
    cbp = 0;
    for(i=0;i<6;i++) {
        if (s->block_last_index[i] >= 0)
            cbp |= 1 << (5 - i);
    }

    /* skip macroblock, except if first or last macroblock of a slice */
    if ((cbp | motion_x | motion_y) == 0 &&
        (!((mb_x | mb_y) == 0 ||
           (mb_x == s->mb_width - 1 && mb_y == s->mb_height - 1)))) {
        s->mb_incr++;
    } else {
        /* output mb incr */
        mb_incr = s->mb_incr;

        while (mb_incr > 33) {
            put_bits(&s->pb, 11, 0x008);
            mb_incr -= 33;
        }
        put_bits(&s->pb, mbAddrIncrTable[mb_incr - 1][1], 
                 mbAddrIncrTable[mb_incr - 1][0]);
        
        if (s->pict_type == I_TYPE) {
            put_bits(&s->pb, 1, 1); /* macroblock_type : macroblock_quant = 0 */
        } else {
            if (s->mb_intra) {
                put_bits(&s->pb, 5, 0x03);
            } else {
                if (cbp != 0) {
                    if (motion_x == 0 && motion_y == 0) {
                        put_bits(&s->pb, 2, 1); /* macroblock_pattern only */
                        put_bits(&s->pb, mbPatTable[cbp - 1][1], mbPatTable[cbp - 1][0]);
                    } else {
                        put_bits(&s->pb, 1, 1); /* motion + cbp */
                        mpeg1_encode_motion(s, motion_x - s->last_mv[0][0][0]); 
                        mpeg1_encode_motion(s, motion_y - s->last_mv[0][0][1]); 
                        put_bits(&s->pb, mbPatTable[cbp - 1][1], mbPatTable[cbp - 1][0]);
                    }
                } else {
                    put_bits(&s->pb, 3, 1); /* motion only */
                    mpeg1_encode_motion(s, motion_x - s->last_mv[0][0][0]); 
                    mpeg1_encode_motion(s, motion_y - s->last_mv[0][0][1]); 
                }
            }
        }
        for(i=0;i<6;i++) {
            if (cbp & (1 << (5 - i))) {
                mpeg1_encode_block(s, block[i], i);
            }
        }
        s->mb_incr = 1;
    }
    s->last_mv[0][0][0] = motion_x;
    s->last_mv[0][0][1] = motion_y;
}

static void mpeg1_encode_motion(MpegEncContext *s, int val)
{
    int code, bit_size, l, m, bits, range, sign;

    if (val == 0) {
        /* zero vector */
        code = 0;
        put_bits(&s->pb,
                 mbMotionVectorTable[0][1], 
                 mbMotionVectorTable[0][0]); 
    } else {
        bit_size = s->f_code - 1;
        range = 1 << bit_size;
        /* modulo encoding */
        l = 16 * range;
        m = 2 * l;
        if (val < -l) {
            val += m;
        } else if (val >= l) {
            val -= m;
        }

        if (val >= 0) {
            val--;
            code = (val >> bit_size) + 1;
            bits = val & (range - 1);
            sign = 0;
        } else {
            val = -val;
            val--;
            code = (val >> bit_size) + 1;
            bits = val & (range - 1);
            sign = 1;
        }
        put_bits(&s->pb,
                 mbMotionVectorTable[code][1], 
                 mbMotionVectorTable[code][0]); 
        put_bits(&s->pb, 1, sign);
        if (bit_size > 0) {
            put_bits(&s->pb, bit_size, bits);
        }
    }
}

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void ff_mpeg1_encode_init(MpegEncContext *s)
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{
    static int done=0;
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    common_init(s);

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    if(!done){
        int f_code;
        int mv;
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	int i;
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        done=1;
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        init_rl(&rl_mpeg1);
	
	for(i=0; i<64; i++)
	{
		mpeg1_max_level[0][i]= rl_mpeg1.max_level[0][i];
		mpeg1_index_run[0][i]= rl_mpeg1.index_run[0][i];
	}

	/* build unified dc encoding tables */
	for(i=-255; i<256; i++)
	{
		int adiff, index;
		int bits, code;
		int diff=i;

		adiff = ABS(diff);
		if(diff<0) diff--;
		index = vlc_dc_table[adiff];

		bits= vlc_dc_lum_bits[index] + index;
		code= (vlc_dc_lum_code[index]<<index) + (diff & ((1 << index) - 1));
		mpeg1_lum_dc_uni[i+255]= bits + (code<<8);
		
		bits= vlc_dc_chroma_bits[index] + index;
		code= (vlc_dc_chroma_code[index]<<index) + (diff & ((1 << index) - 1));
		mpeg1_chr_dc_uni[i+255]= bits + (code<<8);
	}

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        for(f_code=1; f_code<=MAX_FCODE; f_code++){
            for(mv=-MAX_MV; mv<=MAX_MV; mv++){
                int len;

                if(mv==0) len= mbMotionVectorTable[0][1];
                else{
                    int val, bit_size, range, code;

                    bit_size = s->f_code - 1;
                    range = 1 << bit_size;

                    val=mv;
                    if (val < 0) 
                        val = -val;
                    val--;
                    code = (val >> bit_size) + 1;
                    if(code<17){
                        len= mbMotionVectorTable[code][1] + 1 + bit_size;
                    }else{
                        len= mbMotionVectorTable[16][1] + 2 + bit_size;
                    }
                }

                mv_penalty[f_code][mv+MAX_MV]= len;
            }
        }
        

        for(f_code=MAX_FCODE; f_code>0; f_code--){
            for(mv=-(8<<f_code); mv<(8<<f_code); mv++){
                fcode_tab[mv+MAX_MV]= f_code;
            }
        }
    }
    s->mv_penalty= mv_penalty;
    s->fcode_tab= fcode_tab;
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    s->min_qcoeff=-255;
    s->max_qcoeff= 255;
    s->intra_quant_bias= 3<<(QUANT_BIAS_SHIFT-3); //(a + x*3/8)/x
    s->inter_quant_bias= 0;
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}
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static inline void encode_dc(MpegEncContext *s, int diff, int component)
{
    if (component == 0) {
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        put_bits(
	    &s->pb, 
	    mpeg1_lum_dc_uni[diff+255]&0xFF,
	    mpeg1_lum_dc_uni[diff+255]>>8);
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    } else {
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        put_bits(
            &s->pb, 
	    mpeg1_chr_dc_uni[diff+255]&0xFF,
	    mpeg1_chr_dc_uni[diff+255]>>8);
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    }
}

static void mpeg1_encode_block(MpegEncContext *s, 
                               DCTELEM *block, 
                               int n)
{
    int alevel, level, last_non_zero, dc, diff, i, j, run, last_index, sign;
    int code, component;
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//    RLTable *rl = &rl_mpeg1;
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    last_index = s->block_last_index[n];

    /* DC coef */
    if (s->mb_intra) {
        component = (n <= 3 ? 0 : n - 4 + 1);
        dc = block[0]; /* overflow is impossible */
        diff = dc - s->last_dc[component];
        encode_dc(s, diff, component);
        s->last_dc[component] = dc;
        i = 1;
    } else {
        /* encode the first coefficient : needs to be done here because
           it is handled slightly differently */
        level = block[0];
        if (abs(level) == 1) {
                code = ((UINT32)level >> 31); /* the sign bit */
                put_bits(&s->pb, 2, code | 0x02);
                i = 1;
        } else {
            i = 0;
            last_non_zero = -1;
            goto next_coef;
        }
    }

    /* now quantify & encode AC coefs */
    last_non_zero = i - 1;
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    for(;i<=last_index;i++) {
        j = zigzag_direct[i];
        level = block[j];
    next_coef:
#if 0
        if (level != 0)
            dprintf("level[%d]=%d\n", i, level);
#endif            
        /* encode using VLC */
        if (level != 0) {
            run = i - last_non_zero - 1;
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#ifdef ARCH_X86
            asm volatile(
		"movl %2, %1		\n\t"
		"movl %1, %0		\n\t"
		"addl %1, %1		\n\t"
		"sbbl %1, %1		\n\t"
		"xorl %1, %0		\n\t"
		"subl %1, %0		\n\t"
		"andl $1, %1		\n\t"
		: "=&r" (alevel), "=&r" (sign)
		: "g" (level)
	    );
#else
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            sign = 0;
            alevel = level;
            if (alevel < 0) {
		sign = 1;
                alevel = -alevel;
	    }
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#endif
//            code = get_rl_index(rl, 0, run, alevel);
            if (alevel > mpeg1_max_level[0][run])
                code= 111; /*rl->n*/
            else
                code= mpeg1_index_run[0][run] + alevel - 1;

            if (code < 111 /* rl->n */) {
	    	/* store the vlc & sign at once */
                put_bits(&s->pb, mpeg1_vlc[code][1]+1, (mpeg1_vlc[code][0]<<1) + sign);
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            } else {
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		/* escape seems to be pretty rare <5% so i dont optimize it */
                put_bits(&s->pb, mpeg1_vlc[111/*rl->n*/][1], mpeg1_vlc[111/*rl->n*/][0]);
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                /* escape: only clip in this case */
                put_bits(&s->pb, 6, run);
                if (alevel < 128) {
                    put_bits(&s->pb, 8, level & 0xff);
                } else {
                    if (level < 0) {
                        put_bits(&s->pb, 16, 0x8001 + level + 255);
                    } else {
                        put_bits(&s->pb, 16, level & 0xffff);
                    }
                }
            }
            last_non_zero = i;
        }
    }
    /* end of block */
    put_bits(&s->pb, 2, 0x2);
}

/******************************************/
/* decoding */

static VLC dc_lum_vlc;
static VLC dc_chroma_vlc;
static VLC mv_vlc;
static VLC mbincr_vlc;
static VLC mb_ptype_vlc;
static VLC mb_btype_vlc;
static VLC mb_pat_vlc;

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static void init_vlcs(MpegEncContext *s)
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{
    static int done = 0;

    if (!done) {
592
        done = 1;
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        init_vlc(&dc_lum_vlc, DC_VLC_BITS, 12, 
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                 vlc_dc_lum_bits, 1, 1,
                 vlc_dc_lum_code, 2, 2);
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        init_vlc(&dc_chroma_vlc,  DC_VLC_BITS, 12, 
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                 vlc_dc_chroma_bits, 1, 1,
                 vlc_dc_chroma_code, 2, 2);
600
        init_vlc(&mv_vlc, MV_VLC_BITS, 17, 
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                 &mbMotionVectorTable[0][1], 2, 1,
                 &mbMotionVectorTable[0][0], 2, 1);
603
        init_vlc(&mbincr_vlc, MBINCR_VLC_BITS, 35, 
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                 &mbAddrIncrTable[0][1], 2, 1,
                 &mbAddrIncrTable[0][0], 2, 1);
606
        init_vlc(&mb_pat_vlc, MB_PAT_VLC_BITS, 63, 
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                 &mbPatTable[0][1], 2, 1,
                 &mbPatTable[0][0], 2, 1);
        
610
        init_vlc(&mb_ptype_vlc, MB_PTYPE_VLC_BITS, 32, 
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                 &table_mb_ptype[0][1], 2, 1,
                 &table_mb_ptype[0][0], 2, 1);
613
        init_vlc(&mb_btype_vlc, MB_BTYPE_VLC_BITS, 32, 
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                 &table_mb_btype[0][1], 2, 1,
                 &table_mb_btype[0][0], 2, 1);
        init_rl(&rl_mpeg1);
        init_rl(&rl_mpeg2);
618 619 620

        init_2d_vlc_rl(&rl_mpeg1);
        init_2d_vlc_rl(&rl_mpeg2);
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    }
}

static inline int get_dmv(MpegEncContext *s)
{
626 627
    if(get_bits1(&s->gb)) 
        return 1 - (get_bits1(&s->gb) << 1);
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    else
        return 0;
}

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static inline int get_qscale(MpegEncContext *s)
{
    int qscale;
    if (s->mpeg2) {
        if (s->q_scale_type) {
            qscale = non_linear_qscale[get_bits(&s->gb, 5)];
        } else {
            qscale = get_bits(&s->gb, 5) << 1;
        }
    } else {
        /* for mpeg1, we use the generic unquant code */
        qscale = get_bits(&s->gb, 5);
    }
    return qscale;
}

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/* motion type (for mpeg2) */
#define MT_FIELD 1
#define MT_FRAME 2
#define MT_16X8  2
#define MT_DMV   3

static int mpeg_decode_mb(MpegEncContext *s,
                          DCTELEM block[6][64])
{
    int i, j, k, cbp, val, code, mb_type, motion_type;
    
    /* skip mb handling */
    if (s->mb_incr == 0) {
        /* read again increment */
        s->mb_incr = 1;
        for(;;) {
664
            code = get_vlc2(&s->gb, mbincr_vlc.table, MBINCR_VLC_BITS, 2);
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            if (code < 0)
                return 1; /* error = end of slice */
            if (code >= 33) {
                if (code == 33) {
                    s->mb_incr += 33;
                }
                /* otherwise, stuffing, nothing to do */
            } else {
                s->mb_incr += code;
                break;
            }
        }
    }
678 679 680 681 682 683
    if(s->mb_x==-1 /* first MB in a slice */ && s->mb_incr>1){
        s->mb_x+= (s->mb_incr - 1) % s->mb_width;
        s->mb_y+= (s->mb_incr - 1) / s->mb_width;
        s->mb_incr= 1;
    }

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    if (++s->mb_x >= s->mb_width) {
        s->mb_x = 0;
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        if (s->mb_y >= (s->mb_height - 1)){
            fprintf(stderr, "slice too long\n");
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            return -1;
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        }
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        s->mb_y++;
    }
    dprintf("decode_mb: x=%d y=%d\n", s->mb_x, s->mb_y);

    if (--s->mb_incr != 0) {
        /* skip mb */
        s->mb_intra = 0;
        for(i=0;i<6;i++)
            s->block_last_index[i] = -1;
        s->mv_type = MV_TYPE_16X16;
        if (s->pict_type == P_TYPE) {
            /* if P type, zero motion vector is implied */
            s->mv_dir = MV_DIR_FORWARD;
            s->mv[0][0][0] = s->mv[0][0][1] = 0;
            s->last_mv[0][0][0] = s->last_mv[0][0][1] = 0;
705
            s->last_mv[0][1][0] = s->last_mv[0][1][1] = 0;
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        } else {
            /* if B type, reuse previous vectors and directions */
            s->mv[0][0][0] = s->last_mv[0][0][0];
            s->mv[0][0][1] = s->last_mv[0][0][1];
            s->mv[1][0][0] = s->last_mv[1][0][0];
            s->mv[1][0][1] = s->last_mv[1][0][1];
        }
713
        s->mb_skiped = 1;
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        return 0;
    }

    switch(s->pict_type) {
    default:
    case I_TYPE:
720 721
        if (get_bits1(&s->gb) == 0) {
            if (get_bits1(&s->gb) == 0)
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                return -1;
            mb_type = MB_QUANT | MB_INTRA;
        } else {
            mb_type = MB_INTRA;
        }
        break;
    case P_TYPE:
729
        mb_type = get_vlc2(&s->gb, mb_ptype_vlc.table, MB_PTYPE_VLC_BITS, 1);
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        if (mb_type < 0){
            fprintf(stderr, "invalid mb type in P Frame at %d %d\n", s->mb_x, s->mb_y);
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            return -1;
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        }
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        break;
    case B_TYPE:
736
        mb_type = get_vlc2(&s->gb, mb_btype_vlc.table, MB_BTYPE_VLC_BITS, 1);
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        if (mb_type < 0){
            fprintf(stderr, "invalid mb type in B Frame at %d %d\n", s->mb_x, s->mb_y);
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            return -1;
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        }
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        break;
    }
    dprintf("mb_type=%x\n", mb_type);
    motion_type = 0; /* avoid warning */
    if (mb_type & (MB_FOR|MB_BACK)) {
        /* get additionnal motion vector type */
        if (s->picture_structure == PICT_FRAME && s->frame_pred_frame_dct) 
            motion_type = MT_FRAME;
        else
            motion_type = get_bits(&s->gb, 2);
    }
    /* compute dct type */
    if (s->picture_structure == PICT_FRAME && 
        !s->frame_pred_frame_dct &&
        (mb_type & (MB_PAT | MB_INTRA))) {
756
        s->interlaced_dct = get_bits1(&s->gb);
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#ifdef DEBUG
        if (s->interlaced_dct)
            printf("interlaced_dct\n");
#endif
    } else {
        s->interlaced_dct = 0; /* frame based */
    }

    if (mb_type & MB_QUANT) {
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        s->qscale = get_qscale(s);
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    }
    if (mb_type & MB_INTRA) {
        if (s->concealment_motion_vectors) {
            /* just parse them */
            if (s->picture_structure != PICT_FRAME) 
772
                skip_bits1(&s->gb); /* field select */
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            mpeg_decode_motion(s, s->mpeg_f_code[0][0], 0);
            mpeg_decode_motion(s, s->mpeg_f_code[0][1], 0);
        }
        s->mb_intra = 1;
        cbp = 0x3f;
        memset(s->last_mv, 0, sizeof(s->last_mv)); /* reset mv prediction */
    } else {
        s->mb_intra = 0;
        cbp = 0;
    }
    /* special case of implicit zero motion vector */
    if (s->pict_type == P_TYPE && !(mb_type & MB_FOR)) {
        s->mv_dir = MV_DIR_FORWARD;
        s->mv_type = MV_TYPE_16X16;
        s->last_mv[0][0][0] = 0;
        s->last_mv[0][0][1] = 0;
789 790
        s->last_mv[0][1][0] = 0;
        s->last_mv[0][1][1] = 0;
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        s->mv[0][0][0] = 0;
        s->mv[0][0][1] = 0;
    } else if (mb_type & (MB_FOR | MB_BACK)) {
        /* motion vectors */
        s->mv_dir = 0;
        for(i=0;i<2;i++) {
            if (mb_type & (MB_FOR >> i)) {
                s->mv_dir |= (MV_DIR_FORWARD >> i);
799
                dprintf("motion_type=%d\n", motion_type);
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                switch(motion_type) {
                case MT_FRAME: /* or MT_16X8 */
                    if (s->picture_structure == PICT_FRAME) {
                        /* MT_FRAME */
                        s->mv_type = MV_TYPE_16X16;
                        for(k=0;k<2;k++) {
                            val = mpeg_decode_motion(s, s->mpeg_f_code[i][k], 
                                                     s->last_mv[i][0][k]);
                            s->last_mv[i][0][k] = val;
                            s->last_mv[i][1][k] = val;
                            /* full_pel: only for mpeg1 */
                            if (s->full_pel[i])
                                val = val << 1;
                            s->mv[i][0][k] = val;
                            dprintf("mv%d: %d\n", k, val);
                        }
                    } else {
                        /* MT_16X8 */
                        s->mv_type = MV_TYPE_16X8;
                        for(j=0;j<2;j++) {
820
                            s->field_select[i][j] = get_bits1(&s->gb);
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                            for(k=0;k<2;k++) {
                                val = mpeg_decode_motion(s, s->mpeg_f_code[i][k],
                                                         s->last_mv[i][j][k]);
                                s->last_mv[i][j][k] = val;
                                s->mv[i][j][k] = val;
                            }
                        }
                    }
                    break;
                case MT_FIELD:
                    if (s->picture_structure == PICT_FRAME) {
                        s->mv_type = MV_TYPE_FIELD;
                        for(j=0;j<2;j++) {
834
                            s->field_select[i][j] = get_bits1(&s->gb);
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                            val = mpeg_decode_motion(s, s->mpeg_f_code[i][0],
                                                     s->last_mv[i][j][0]);
                            s->last_mv[i][j][0] = val;
                            s->mv[i][j][0] = val;
                            dprintf("fmx=%d\n", val);
                            val = mpeg_decode_motion(s, s->mpeg_f_code[i][1],
                                                     s->last_mv[i][j][1] >> 1);
                            s->last_mv[i][j][1] = val << 1;
                            s->mv[i][j][1] = val;
                            dprintf("fmy=%d\n", val);
                        }
                    } else {
                        s->mv_type = MV_TYPE_16X16;
848
                        s->field_select[i][0] = get_bits1(&s->gb);
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                        for(k=0;k<2;k++) {
                            val = mpeg_decode_motion(s, s->mpeg_f_code[i][k],
                                                     s->last_mv[i][0][k]);
                            s->last_mv[i][0][k] = val;
                            s->last_mv[i][1][k] = val;
                            s->mv[i][0][k] = val;
                        }
                    }
                    break;
                case MT_DMV:
                    {
                        int dmx, dmy, mx, my, m;

                        mx = mpeg_decode_motion(s, s->mpeg_f_code[i][0], 
                                                s->last_mv[i][0][0]);
                        s->last_mv[i][0][0] = mx;
                        s->last_mv[i][1][0] = mx;
                        dmx = get_dmv(s);
                        my = mpeg_decode_motion(s, s->mpeg_f_code[i][1], 
                                                s->last_mv[i][0][1] >> 1);
                        dmy = get_dmv(s);
                        s->mv_type = MV_TYPE_DMV;
                        /* XXX: totally broken */
                        if (s->picture_structure == PICT_FRAME) {
                            s->last_mv[i][0][1] = my << 1;
                            s->last_mv[i][1][1] = my << 1;

                            m = s->top_field_first ? 1 : 3;
                            /* top -> top pred */
                            s->mv[i][0][0] = mx; 
                            s->mv[i][0][1] = my << 1;
                            s->mv[i][1][0] = ((mx * m + (mx > 0)) >> 1) + dmx;
                            s->mv[i][1][1] = ((my * m + (my > 0)) >> 1) + dmy - 1;
                            m = 4 - m;
                            s->mv[i][2][0] = mx;
                            s->mv[i][2][1] = my << 1;
                            s->mv[i][3][0] = ((mx * m + (mx > 0)) >> 1) + dmx;
                            s->mv[i][3][1] = ((my * m + (my > 0)) >> 1) + dmy + 1;
                        } else {
                            s->last_mv[i][0][1] = my;
                            s->last_mv[i][1][1] = my;
                            s->mv[i][0][0] = mx;
                            s->mv[i][0][1] = my;
                            s->mv[i][1][0] = ((mx + (mx > 0)) >> 1) + dmx;
                            s->mv[i][1][1] = ((my + (my > 0)) >> 1) + dmy - 1 
                                /* + 2 * cur_field */;
                        }
                    }
                    break;
                }
            }
        }
    }

    if ((mb_type & MB_INTRA) && s->concealment_motion_vectors) {
904
        skip_bits1(&s->gb); /* marker */
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    }
    
    if (mb_type & MB_PAT) {
908
        cbp = get_vlc2(&s->gb, mb_pat_vlc.table, MB_PAT_VLC_BITS, 1);
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        if (cbp < 0){
            fprintf(stderr, "invalid cbp at %d %d\n", s->mb_x, s->mb_y);
F
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            return -1;
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        }
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        cbp++;
    }
    dprintf("cbp=%x\n", cbp);

    if (s->mpeg2) {
        if (s->mb_intra) {
            for(i=0;i<6;i++) {
                if (cbp & (1 << (5 - i))) {
                    if (mpeg2_decode_block_intra(s, block[i], i) < 0)
                        return -1;
923 924
                } else {
                    s->block_last_index[i] = -1;
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                }
            }
        } else {
            for(i=0;i<6;i++) {
                if (cbp & (1 << (5 - i))) {
                    if (mpeg2_decode_block_non_intra(s, block[i], i) < 0)
                        return -1;
932 933
                } else {
                    s->block_last_index[i] = -1;
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                }
            }
        }
    } else {
        for(i=0;i<6;i++) {
            if (cbp & (1 << (5 - i))) {
                if (mpeg1_decode_block(s, block[i], i) < 0)
                    return -1;
942 943
            } else {
                s->block_last_index[i] = -1;
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            }
        }
    }
    return 0;
}

/* as h263, but only 17 codes */
static int mpeg_decode_motion(MpegEncContext *s, int fcode, int pred)
{
    int code, sign, val, m, l, shift;

955
    code = get_vlc2(&s->gb, mv_vlc.table, MV_VLC_BITS, 2);
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    if (code < 0) {
        return 0xffff;
    }
    if (code == 0) {
        return pred;
    }
962
    sign = get_bits1(&s->gb);
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    shift = fcode - 1;
    val = (code - 1) << shift;
    if (shift > 0)
        val |= get_bits(&s->gb, shift);
    val++;
    if (sign)
        val = -val;
    val += pred;
    
    /* modulo decoding */
    l = (1 << shift) * 16;
    m = 2 * l;
    if (val < -l) {
        val += m;
    } else if (val >= l) {
        val -= m;
    }
    return val;
}

static inline int decode_dc(MpegEncContext *s, int component)
{
    int code, diff;

    if (component == 0) {
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        code = get_vlc2(&s->gb, dc_lum_vlc.table, DC_VLC_BITS, 2);
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    } else {
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        code = get_vlc2(&s->gb, dc_chroma_vlc.table, DC_VLC_BITS, 2);
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    }
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    if (code < 0){
        fprintf(stderr, "invalid dc code at %d %d\n", s->mb_x, s->mb_y);
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        return 0xffff;
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    }
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    if (code == 0) {
        diff = 0;
    } else {
        diff = get_bits(&s->gb, code);
        if ((diff & (1 << (code - 1))) == 0) 
            diff = (-1 << code) | (diff + 1);
    }
    return diff;
}

static int mpeg1_decode_block(MpegEncContext *s, 
                               DCTELEM *block, 
                               int n)
{
    int level, dc, diff, i, j, run;
    int code, component;
    RLTable *rl = &rl_mpeg1;

    if (s->mb_intra) {
        /* DC coef */
        component = (n <= 3 ? 0 : n - 4 + 1);
        diff = decode_dc(s, component);
        if (diff >= 0xffff)
            return -1;
        dc = s->last_dc[component];
        dc += diff;
        s->last_dc[component] = dc;
        block[0] = dc;
        dprintf("dc=%d diff=%d\n", dc, diff);
        i = 1;
    } else {
1027 1028
        int v;
        OPEN_READER(re, &s->gb);
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        i = 0;
        /* special case for the first coef. no need to add a second vlc table */
1031 1032
        UPDATE_CACHE(re, &s->gb);
        v= SHOW_UBITS(re, &s->gb, 2);
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        if (v & 2) {
            run = 0;
            level = 1 - ((v & 1) << 1);
1036 1037
            SKIP_BITS(re, &s->gb, 2);
            CLOSE_READER(re, &s->gb);
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            goto add_coef;
        }
1040
        CLOSE_READER(re, &s->gb);
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    }

    /* now quantify & encode AC coefs */
    for(;;) {
1045
        code = get_vlc2(&s->gb, rl->vlc.table, TEX_VLC_BITS, 2);
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        if (code < 0) {
            return -1;
        }
        if (code == 112) {
            break;
        } else if (code == 111) {
            /* escape */
            run = get_bits(&s->gb, 6);
            level = get_bits(&s->gb, 8);
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            level= (level + ((-1)<<7)) ^ ((-1)<<7); //sign extension
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            if (level == -128) {
                level = get_bits(&s->gb, 8) - 256;
            } else if (level == 0) {
                level = get_bits(&s->gb, 8);
            }
        } else {
            run = rl->table_run[code];
            level = rl->table_level[code];
1064
            if (get_bits1(&s->gb))
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                level = -level;
        }
        i += run;
        if (i >= 64)
            return -1;
    add_coef:
        dprintf("%d: run=%d level=%d\n", n, run, level);
	j = zigzag_direct[i];
        block[j] = level;
        i++;
    }
1076
    s->block_last_index[n] = i-1;
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    return 0;
}

/* Also does unquantization here, since I will never support mpeg2
   encoding */
static int mpeg2_decode_block_non_intra(MpegEncContext *s, 
                                        DCTELEM *block, 
                                        int n)
{
    int level, i, j, run;
    int code;
    RLTable *rl = &rl_mpeg1;
    const UINT8 *scan_table;
    const UINT16 *matrix;
    int mismatch;

    if (s->alternate_scan)
        scan_table = ff_alternate_vertical_scan;
    else
        scan_table = zigzag_direct;
    mismatch = 1;

    {
1100 1101
        int v;
        OPEN_READER(re, &s->gb);
F
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1102
        i = 0;
1103
        if (n < 4)
1104
            matrix = s->inter_matrix;
F
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1105
        else
1106
            matrix = s->chroma_inter_matrix;
1107

F
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1108
        /* special case for the first coef. no need to add a second vlc table */
1109 1110
        UPDATE_CACHE(re, &s->gb);
        v= SHOW_UBITS(re, &s->gb, 2);
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1111 1112 1113
        if (v & 2) {
            run = 0;
            level = 1 - ((v & 1) << 1);
1114 1115
            SKIP_BITS(re, &s->gb, 2);
            CLOSE_READER(re, &s->gb);
F
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1116 1117
            goto add_coef;
        }
1118
        CLOSE_READER(re, &s->gb);
F
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1119 1120 1121 1122
    }

    /* now quantify & encode AC coefs */
    for(;;) {
1123
        code = get_vlc2(&s->gb, rl->vlc.table, TEX_VLC_BITS, 2);
M
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1124 1125
        if (code < 0){
            fprintf(stderr, "invalid ac code at %d %d\n", s->mb_x, s->mb_y);
F
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1126
            return -1;
M
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1127
        }
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1128 1129 1130 1131 1132 1133
        if (code == 112) {
            break;
        } else if (code == 111) {
            /* escape */
            run = get_bits(&s->gb, 6);
            level = get_bits(&s->gb, 12);
M
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1134
            level= (level + ((-1)<<11)) ^ ((-1)<<11); //sign extension
F
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1135 1136 1137
        } else {
            run = rl->table_run[code];
            level = rl->table_level[code];
1138
            if (get_bits1(&s->gb))
F
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1139 1140 1141
                level = -level;
        }
        i += run;
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1142 1143
        if (i >= 64){
            fprintf(stderr, "run too long at %d %d\n", s->mb_x, s->mb_y);
F
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1144
            return -1;
M
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1145
        }
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1146 1147 1148
    add_coef:
	j = scan_table[i];
        dprintf("%d: run=%d level=%d\n", n, run, level);
1149 1150 1151 1152 1153 1154 1155
        /* XXX: optimize */
        if (level > 0) {
            level = ((level * 2 + 1) * s->qscale * matrix[j]) >> 5;
        } else {
            level = ((-level * 2 + 1) * s->qscale * matrix[j]) >> 5;
            level = -level;
        }
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1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192
        /* XXX: is it really necessary to saturate since the encoder
           knows whats going on ? */
        mismatch ^= level;
        block[j] = level;
        i++;
    }
    block[63] ^= (mismatch & 1);
    s->block_last_index[n] = i;
    return 0;
}

static int mpeg2_decode_block_intra(MpegEncContext *s, 
                                    DCTELEM *block, 
                                    int n)
{
    int level, dc, diff, i, j, run;
    int code, component;
    RLTable *rl;
    const UINT8 *scan_table;
    const UINT16 *matrix;
    int mismatch;

    if (s->alternate_scan)
        scan_table = ff_alternate_vertical_scan;
    else
        scan_table = zigzag_direct;

    /* DC coef */
    component = (n <= 3 ? 0 : n - 4 + 1);
    diff = decode_dc(s, component);
    if (diff >= 0xffff)
        return -1;
    dc = s->last_dc[component];
    dc += diff;
    s->last_dc[component] = dc;
    block[0] = dc << (3 - s->intra_dc_precision);
    dprintf("dc=%d\n", block[0]);
1193
    mismatch = block[0] ^ 1;
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1194 1195 1196 1197 1198 1199 1200 1201 1202
    i = 1;
    if (s->intra_vlc_format)
        rl = &rl_mpeg2;
    else
        rl = &rl_mpeg1;
    if (n < 4) 
        matrix = s->intra_matrix;
    else
        matrix = s->chroma_intra_matrix;
1203

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    /* now quantify & encode AC coefs */
    for(;;) {
1206
        code = get_vlc2(&s->gb, rl->vlc.table, TEX_VLC_BITS, 2);
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        if (code < 0){
            fprintf(stderr, "invalid ac code at %d %d\n", s->mb_x, s->mb_y);
F
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1209
            return -1;
M
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1210
        }
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1211 1212 1213 1214 1215 1216
        if (code == 112) {
            break;
        } else if (code == 111) {
            /* escape */
            run = get_bits(&s->gb, 6);
            level = get_bits(&s->gb, 12);
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1217
            level= (level + ((-1)<<11)) ^ ((-1)<<11); //sign extension
F
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1218 1219 1220
        } else {
            run = rl->table_run[code];
            level = rl->table_level[code];
1221
            if (get_bits1(&s->gb))
F
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1222 1223 1224
                level = -level;
        }
        i += run;
M
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1225 1226
        if (i >= 64){
            fprintf(stderr, "run too long at %d %d\n", s->mb_x, s->mb_y);
F
Fabrice Bellard 已提交
1227
            return -1;
M
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1228
        }
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1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253
	j = scan_table[i];
        dprintf("%d: run=%d level=%d\n", n, run, level);
        level = (level * s->qscale * matrix[j]) / 16;
        /* XXX: is it really necessary to saturate since the encoder
           knows whats going on ? */
        mismatch ^= level;
        block[j] = level;
        i++;
    }
    block[63] ^= (mismatch & 1);
    s->block_last_index[n] = i;
    return 0;
}

/* compressed picture size */
#define PICTURE_BUFFER_SIZE 100000

typedef struct Mpeg1Context {
    MpegEncContext mpeg_enc_ctx;
    UINT32 header_state;
    int start_code; /* current start code */
    UINT8 buffer[PICTURE_BUFFER_SIZE]; 
    UINT8 *buf_ptr;
    int buffer_size;
    int mpeg_enc_ctx_allocated; /* true if decoding context allocated */
1254
    int repeat_field; /* true if we must repeat the field */
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} Mpeg1Context;

static int mpeg_decode_init(AVCodecContext *avctx)
{
    Mpeg1Context *s = avctx->priv_data;
1260
    
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    s->mpeg_enc_ctx.flags= avctx->flags;
1262
    common_init(&s->mpeg_enc_ctx);
1263
    init_vlcs(&s->mpeg_enc_ctx);
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    s->header_state = 0xff;
    s->mpeg_enc_ctx_allocated = 0;
    s->buffer_size = PICTURE_BUFFER_SIZE;
    s->start_code = -1;
    s->buf_ptr = s->buffer;
    s->mpeg_enc_ctx.picture_number = 0;
1271
    s->repeat_field = 0;
1272
    s->mpeg_enc_ctx.codec_id= avctx->codec->id;
1273
    avctx->mbskip_table= s->mpeg_enc_ctx.mbskip_table;
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    return 0;
}

/* return the 8 bit start code value and update the search
   state. Return -1 if no start code found */
static int find_start_code(UINT8 **pbuf_ptr, UINT8 *buf_end, 
                           UINT32 *header_state)
{
    UINT8 *buf_ptr;
    unsigned int state, v;
    int val;

    state = *header_state;
    buf_ptr = *pbuf_ptr;
    while (buf_ptr < buf_end) {
        v = *buf_ptr++;
        if (state == 0x000001) {
            state = ((state << 8) | v) & 0xffffff;
            val = state;
            goto found;
        }
        state = ((state << 8) | v) & 0xffffff;
    }
    val = -1;
 found:
    *pbuf_ptr = buf_ptr;
    *header_state = state;
    return val;
}

static int mpeg1_decode_picture(AVCodecContext *avctx, 
                                UINT8 *buf, int buf_size)
{
    Mpeg1Context *s1 = avctx->priv_data;
    MpegEncContext *s = &s1->mpeg_enc_ctx;
    int ref, f_code;

    init_get_bits(&s->gb, buf, buf_size);

    ref = get_bits(&s->gb, 10); /* temporal ref */
    s->pict_type = get_bits(&s->gb, 3);
1315
    dprintf("pict_type=%d number=%d\n", s->pict_type, s->picture_number);
1316
    skip_bits(&s->gb, 16);
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    if (s->pict_type == P_TYPE || s->pict_type == B_TYPE) {
1318
        s->full_pel[0] = get_bits1(&s->gb);
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        f_code = get_bits(&s->gb, 3);
        if (f_code == 0)
            return -1;
        s->mpeg_f_code[0][0] = f_code;
        s->mpeg_f_code[0][1] = f_code;
    }
    if (s->pict_type == B_TYPE) {
1326
        s->full_pel[1] = get_bits1(&s->gb);
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        f_code = get_bits(&s->gb, 3);
        if (f_code == 0)
            return -1;
        s->mpeg_f_code[1][0] = f_code;
        s->mpeg_f_code[1][1] = f_code;
    }
    s->y_dc_scale = 8;
    s->c_dc_scale = 8;
    s->first_slice = 1;
    return 0;
}

static void mpeg_decode_sequence_extension(MpegEncContext *s)
{
    int horiz_size_ext, vert_size_ext;
    int bit_rate_ext, vbv_buf_ext, low_delay;
    int frame_rate_ext_n, frame_rate_ext_d;

1345
    skip_bits(&s->gb, 8); /* profil and level */
1346
    s->progressive_sequence = get_bits1(&s->gb); /* progressive_sequence */
1347
    skip_bits(&s->gb, 2); /* chroma_format */
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    horiz_size_ext = get_bits(&s->gb, 2);
    vert_size_ext = get_bits(&s->gb, 2);
    s->width |= (horiz_size_ext << 12);
    s->height |= (vert_size_ext << 12);
    bit_rate_ext = get_bits(&s->gb, 12);  /* XXX: handle it */
    s->bit_rate = ((s->bit_rate / 400) | (bit_rate_ext << 12)) * 400;
1354
    skip_bits1(&s->gb); /* marker */
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    vbv_buf_ext = get_bits(&s->gb, 8);
1356
    low_delay = get_bits1(&s->gb);
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    frame_rate_ext_n = get_bits(&s->gb, 2);
    frame_rate_ext_d = get_bits(&s->gb, 5);
    if (frame_rate_ext_d >= 1)
        s->frame_rate = (s->frame_rate * frame_rate_ext_n) / frame_rate_ext_d;
    dprintf("sequence extension\n");
    s->mpeg2 = 1;
1363
    s->avctx->sub_id = 2; /* indicates mpeg2 found */
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}

static void mpeg_decode_quant_matrix_extension(MpegEncContext *s)
{
1368
    int i, v, j;
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1370 1371
    dprintf("matrix extension\n");

1372
    if (get_bits1(&s->gb)) {
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        for(i=0;i<64;i++) {
            v = get_bits(&s->gb, 8);
1375
            j = zigzag_direct[i];
1376 1377
            s->intra_matrix[j] = v;
            s->chroma_intra_matrix[j] = v;
F
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1378 1379
        }
    }
1380
    if (get_bits1(&s->gb)) {
F
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1381 1382
        for(i=0;i<64;i++) {
            v = get_bits(&s->gb, 8);
1383
            j = zigzag_direct[i];
1384 1385
            s->inter_matrix[j] = v;
            s->chroma_inter_matrix[j] = v;
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1386 1387
        }
    }
1388
    if (get_bits1(&s->gb)) {
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        for(i=0;i<64;i++) {
            v = get_bits(&s->gb, 8);
1391
            j = zigzag_direct[i];
1392
            s->chroma_intra_matrix[j] = v;
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1393 1394
        }
    }
1395
    if (get_bits1(&s->gb)) {
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1396 1397
        for(i=0;i<64;i++) {
            v = get_bits(&s->gb, 8);
1398
            j = zigzag_direct[i];
1399
            s->chroma_inter_matrix[j] = v;
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        }
    }
}

static void mpeg_decode_picture_coding_extension(MpegEncContext *s)
{
    s->full_pel[0] = s->full_pel[1] = 0;
    s->mpeg_f_code[0][0] = get_bits(&s->gb, 4);
    s->mpeg_f_code[0][1] = get_bits(&s->gb, 4);
    s->mpeg_f_code[1][0] = get_bits(&s->gb, 4);
    s->mpeg_f_code[1][1] = get_bits(&s->gb, 4);
    s->intra_dc_precision = get_bits(&s->gb, 2);
    s->picture_structure = get_bits(&s->gb, 2);
1413 1414 1415 1416 1417 1418 1419 1420 1421
    s->top_field_first = get_bits1(&s->gb);
    s->frame_pred_frame_dct = get_bits1(&s->gb);
    s->concealment_motion_vectors = get_bits1(&s->gb);
    s->q_scale_type = get_bits1(&s->gb);
    s->intra_vlc_format = get_bits1(&s->gb);
    s->alternate_scan = get_bits1(&s->gb);
    s->repeat_first_field = get_bits1(&s->gb);
    s->chroma_420_type = get_bits1(&s->gb);
    s->progressive_frame = get_bits1(&s->gb);
F
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1422
    /* composite display not parsed */
1423
    dprintf("intra_dc_precision=%d\n", s->intra_dc_precision);
1424
    dprintf("picture_structure=%d\n", s->picture_structure);
1425 1426
    dprintf("top field first=%d\n", s->top_field_first);
    dprintf("repeat first field=%d\n", s->repeat_first_field);
F
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1427
    dprintf("conceal=%d\n", s->concealment_motion_vectors);
1428 1429
    dprintf("intra_vlc_format=%d\n", s->intra_vlc_format);
    dprintf("alternate_scan=%d\n", s->alternate_scan);
F
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1430
    dprintf("frame_pred_frame_dct=%d\n", s->frame_pred_frame_dct);
1431
    dprintf("progressive_frame=%d\n", s->progressive_frame);
F
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}

static void mpeg_decode_extension(AVCodecContext *avctx, 
                                  UINT8 *buf, int buf_size)
{
    Mpeg1Context *s1 = avctx->priv_data;
    MpegEncContext *s = &s1->mpeg_enc_ctx;
    int ext_type;

    init_get_bits(&s->gb, buf, buf_size);
    
    ext_type = get_bits(&s->gb, 4);
    switch(ext_type) {
    case 0x1:
        /* sequence ext */
        mpeg_decode_sequence_extension(s);
        break;
    case 0x3:
        /* quant matrix extension */
        mpeg_decode_quant_matrix_extension(s);
        break;
    case 0x8:
        /* picture extension */
        mpeg_decode_picture_coding_extension(s);
        break;
    }
}

/* return 1 if end of frame */
static int mpeg_decode_slice(AVCodecContext *avctx, 
                              AVPicture *pict,
                              int start_code,
                              UINT8 *buf, int buf_size)
{
    Mpeg1Context *s1 = avctx->priv_data;
    MpegEncContext *s = &s1->mpeg_enc_ctx;
    int ret;

    start_code = (start_code - 1) & 0xff;
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    if (start_code >= s->mb_height){
1472
        fprintf(stderr, "slice below image (%d >= %d)\n", start_code, s->mb_height);
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1473
        return -1;
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    }
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    s->last_dc[0] = 1 << (7 + s->intra_dc_precision);
    s->last_dc[1] = s->last_dc[0];
    s->last_dc[2] = s->last_dc[0];
    memset(s->last_mv, 0, sizeof(s->last_mv));
    s->mb_x = -1;
    s->mb_y = start_code;
    s->mb_incr = 0;
    /* start frame decoding */
    if (s->first_slice) {
        s->first_slice = 0;
1485
        MPV_frame_start(s, avctx);
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1486 1487 1488 1489
    }

    init_get_bits(&s->gb, buf, buf_size);

F
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1490
    s->qscale = get_qscale(s);
F
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1491
    /* extra slice info */
1492 1493
    while (get_bits1(&s->gb) != 0) {
        skip_bits(&s->gb, 8);
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1494 1495 1496
    }

    for(;;) {
1497
        clear_blocks(s->block[0]);
1498
        emms_c();
1499
        ret = mpeg_decode_mb(s, s->block);
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        dprintf("ret=%d\n", ret);
        if (ret < 0)
            return -1;
        if (ret == 1)
            break;
1505
        MPV_decode_mb(s, s->block);
F
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1506
    }
1507 1508
    emms_c();

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    /* end of slice reached */
    if (s->mb_x == (s->mb_width - 1) &&
        s->mb_y == (s->mb_height - 1)) {
        /* end of image */
        UINT8 **picture;

        MPV_frame_end(s);

        /* XXX: incorrect reported qscale for mpeg2 */
        if (s->pict_type == B_TYPE) {
            picture = s->current_picture;
            avctx->quality = s->qscale;
        } else {
            /* latency of 1 frame for I and P frames */
            /* XXX: use another variable than picture_number */
            if (s->picture_number == 0) {
                picture = NULL;
            } else {
                picture = s->last_picture;
                avctx->quality = s->last_qscale;
            }
            s->last_qscale = s->qscale;
            s->picture_number++;
        }
        if (picture) {
            pict->data[0] = picture[0];
            pict->data[1] = picture[1];
            pict->data[2] = picture[2];
            pict->linesize[0] = s->linesize;
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1538 1539
            pict->linesize[1] = s->uvlinesize;
            pict->linesize[2] = s->uvlinesize;
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1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553
            return 1;
        } else {
            return 0;
        }
    } else {
        return 0;
    }
}

static int mpeg1_decode_sequence(AVCodecContext *avctx, 
                                 UINT8 *buf, int buf_size)
{
    Mpeg1Context *s1 = avctx->priv_data;
    MpegEncContext *s = &s1->mpeg_enc_ctx;
1554
    int width, height, i, v, j;
1555

F
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1556 1557 1558 1559
    init_get_bits(&s->gb, buf, buf_size);

    width = get_bits(&s->gb, 12);
    height = get_bits(&s->gb, 12);
1560
    skip_bits(&s->gb, 4);
F
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1561 1562 1563 1564
    s->frame_rate_index = get_bits(&s->gb, 4);
    if (s->frame_rate_index == 0)
        return -1;
    s->bit_rate = get_bits(&s->gb, 18) * 400;
1565
    if (get_bits1(&s->gb) == 0) /* marker */
F
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1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578
        return -1;
    if (width <= 0 || height <= 0 ||
        (width % 2) != 0 || (height % 2) != 0)
        return -1;
    if (width != s->width ||
        height != s->height) {
        /* start new mpeg1 context decoding */
        s->out_format = FMT_MPEG1;
        if (s1->mpeg_enc_ctx_allocated) {
            MPV_common_end(s);
        }
        s->width = width;
        s->height = height;
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        avctx->has_b_frames= s->has_b_frames = 1;
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        s->avctx = avctx;
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        avctx->width = width;
        avctx->height = height;
1583 1584 1585 1586 1587 1588
        if (s->frame_rate_index >= 9) {
            /* at least give a valid frame rate (some old mpeg1 have this) */
            avctx->frame_rate = 25 * FRAME_RATE_BASE;
        } else {
            avctx->frame_rate = frame_rate_tab[s->frame_rate_index];
        }
1589
        s->frame_rate = avctx->frame_rate;
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        avctx->bit_rate = s->bit_rate;
        
        if (MPV_common_init(s) < 0)
            return -1;
        s1->mpeg_enc_ctx_allocated = 1;
    }

1597 1598
    skip_bits(&s->gb, 10); /* vbv_buffer_size */
    skip_bits(&s->gb, 1);
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    /* get matrix */
1601
    if (get_bits1(&s->gb)) {
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        for(i=0;i<64;i++) {
            v = get_bits(&s->gb, 8);
1604
            j = zigzag_direct[i];
1605 1606
            s->intra_matrix[j] = v;
            s->chroma_intra_matrix[j] = v;
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        }
1608 1609 1610 1611 1612 1613
#ifdef DEBUG
        dprintf("intra matrix present\n");
        for(i=0;i<64;i++)
            dprintf(" %d", s->intra_matrix[zigzag_direct[i]]);
        printf("\n");
#endif
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    } else {
        for(i=0;i<64;i++) {
1616
            v = ff_mpeg1_default_intra_matrix[i];
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            s->intra_matrix[i] = v;
            s->chroma_intra_matrix[i] = v;
        }
    }
1621
    if (get_bits1(&s->gb)) {
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        for(i=0;i<64;i++) {
            v = get_bits(&s->gb, 8);
1624
            j = zigzag_direct[i];
1625 1626
            s->inter_matrix[j] = v;
            s->chroma_inter_matrix[j] = v;
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        }
1628 1629 1630
#ifdef DEBUG
        dprintf("non intra matrix present\n");
        for(i=0;i<64;i++)
1631
            dprintf(" %d", s->inter_matrix[zigzag_direct[i]]);
1632 1633
        printf("\n");
#endif
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    } else {
        for(i=0;i<64;i++) {
1636
            v = ff_mpeg1_default_non_intra_matrix[i];
1637 1638
            s->inter_matrix[i] = v;
            s->chroma_inter_matrix[i] = v;
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        }
    }

    /* we set mpeg2 parameters so that it emulates mpeg1 */
    s->progressive_sequence = 1;
    s->progressive_frame = 1;
    s->picture_structure = PICT_FRAME;
    s->frame_pred_frame_dct = 1;
    s->mpeg2 = 0;
1648
    avctx->sub_id = 1; /* indicates mpeg1 */
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    return 0;
}

/* handle buffering and image synchronisation */
static int mpeg_decode_frame(AVCodecContext *avctx, 
                             void *data, int *data_size,
                             UINT8 *buf, int buf_size)
{
    Mpeg1Context *s = avctx->priv_data;
    UINT8 *buf_end, *buf_ptr, *buf_start;
    int len, start_code_found, ret, code, start_code, input_size;
    AVPicture *picture = data;
1661 1662
    MpegEncContext *s2 = &s->mpeg_enc_ctx;
            
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    dprintf("fill_buffer\n");

    *data_size = 0;
1666

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    /* special case for last picture */
    if (buf_size == 0) {
        if (s2->picture_number > 0) {
            picture->data[0] = s2->next_picture[0];
            picture->data[1] = s2->next_picture[1];
            picture->data[2] = s2->next_picture[2];
            picture->linesize[0] = s2->linesize;
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            picture->linesize[1] = s2->uvlinesize;
            picture->linesize[2] = s2->uvlinesize;
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            *data_size = sizeof(AVPicture);
        }
        return 0;
    }

    buf_ptr = buf;
    buf_end = buf + buf_size;
1683 1684 1685

#if 0    
    if (s->repeat_field % 2 == 1) { 
1686 1687
        s->repeat_field++;
        //fprintf(stderr,"\nRepeating last frame: %d -> %d! pict: %d %d", avctx->frame_number-1, avctx->frame_number,
1688 1689 1690 1691 1692
        //        s2->picture_number, s->repeat_field);
        if (avctx->flags & CODEC_FLAG_REPEAT_FIELD) {
            *data_size = sizeof(AVPicture);
            goto the_end;
        }
1693
    }
1694
#endif
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    while (buf_ptr < buf_end) {
        buf_start = buf_ptr;
        /* find start next code */
        code = find_start_code(&buf_ptr, buf_end, &s->header_state);
        if (code >= 0) {
            start_code_found = 1;
        } else {
            start_code_found = 0;
        }
        /* copy to buffer */
        len = buf_ptr - buf_start;
        if (len + (s->buf_ptr - s->buffer) > s->buffer_size) {
            /* data too big : flush */
            s->buf_ptr = s->buffer;
            if (start_code_found)
                s->start_code = code;
        } else {
            memcpy(s->buf_ptr, buf_start, len);
            s->buf_ptr += len;
1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724
            if(   (s2->flags&CODEC_FLAG_NOT_TRUNCATED) && (!start_code_found) 
               && s->buf_ptr+4<s->buffer+s->buffer_size){
                start_code_found= 1;
                code= 0x1FF;
                s->header_state=0xFF;
                s->buf_ptr[0]=0;
                s->buf_ptr[1]=0;
                s->buf_ptr[2]=1;
                s->buf_ptr[3]=0xFF;
                s->buf_ptr+=4;
            }
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            if (start_code_found) {
                /* prepare data for next start code */
                input_size = s->buf_ptr - s->buffer;
                start_code = s->start_code;
                s->buf_ptr = s->buffer;
                s->start_code = code;
                switch(start_code) {
                case SEQ_START_CODE:
                    mpeg1_decode_sequence(avctx, s->buffer, 
                                          input_size);
                    break;
                            
                case PICTURE_START_CODE:
                    /* we have a complete image : we try to decompress it */
                    mpeg1_decode_picture(avctx, 
                                         s->buffer, input_size);
                    break;
                case EXT_START_CODE:
                    mpeg_decode_extension(avctx,
                                          s->buffer, input_size);
                    break;
                default:
                    if (start_code >= SLICE_MIN_START_CODE &&
                        start_code <= SLICE_MAX_START_CODE) {
                        ret = mpeg_decode_slice(avctx, picture,
                                                start_code, s->buffer, input_size);
                        if (ret == 1) {
                            /* got a picture: exit */
1753
                            /* first check if we must repeat the frame */
1754 1755
                            avctx->repeat_pict = 0;
#if 0
1756 1757
                            if (s2->progressive_frame && s2->repeat_first_field) {
                                //fprintf(stderr,"\nRepeat this frame: %d! pict: %d",avctx->frame_number,s2->picture_number);
1758 1759
                                //s2->repeat_first_field = 0;
                                //s2->progressive_frame = 0;
1760 1761
                                if (++s->repeat_field > 2)
                                    s->repeat_field = 0;
1762
                                avctx->repeat_pict = 1;
1763
                            }
1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774
#endif                      
                            if (s2->repeat_first_field) {
                                if (s2->progressive_sequence) {
                                    if (s2->top_field_first)
                                        avctx->repeat_pict = 4;
                                    else
                                        avctx->repeat_pict = 2;
                                } else if (s2->progressive_frame) {
                                    avctx->repeat_pict = 1;
                                }
                            }         
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                            *data_size = sizeof(AVPicture);
                            goto the_end;
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                        }else if(ret==-1){
                            printf("Error while decoding slice\n");
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                        }
                    }
                    break;
                }
            }
        }
    }
 the_end:
    return buf_ptr - buf;
}

static int mpeg_decode_end(AVCodecContext *avctx)
{
    Mpeg1Context *s = avctx->priv_data;

    if (s->mpeg_enc_ctx_allocated)
        MPV_common_end(&s->mpeg_enc_ctx);
    return 0;
}

AVCodec mpeg_decoder = {
    "mpegvideo",
    CODEC_TYPE_VIDEO,
    CODEC_ID_MPEG1VIDEO,
    sizeof(Mpeg1Context),
    mpeg_decode_init,
    NULL,
    mpeg_decode_end,
    mpeg_decode_frame,
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    CODEC_CAP_DR1,
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};