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3e59b60f06
* modules/packetizer/mpegvideo.c: get aspect ratio for MPEG2 video streams (still needs to be done for MPEG1). * modules/codec/libmpeg2.c: use p_dec->fmt_in.video.i_aspect if available. * modules/stream_out/transcode.c, modules/codec/ffmpeg/encoder.c: respect aspect ratio during transcoding.
509 lines
14 KiB
C
509 lines
14 KiB
C
/*****************************************************************************
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* vlc_block_helper.h: Helper functions for data blocks management.
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*****************************************************************************
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* Copyright (C) 2003 VideoLAN
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* $Id: vlc_block_helper.h,v 1.7 2003/12/07 12:11:13 gbazin Exp $
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*
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* Authors: Gildas Bazin <gbazin@netcourrier.com>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program 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
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111, USA.
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*****************************************************************************/
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#ifndef _VLC_BLOCK_HELPER_H
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#define _VLC_BLOCK_HELPER_H 1
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typedef struct block_bytestream_t
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{
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block_t *p_chain;
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block_t *p_block;
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int i_offset;
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} block_bytestream_t;
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#define block_BytestreamInit( a ) __block_BytestreamInit( VLC_OBJECT(a) )
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/*****************************************************************************
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* block_bytestream_t management
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*****************************************************************************/
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static inline block_bytestream_t __block_BytestreamInit( vlc_object_t *p_obj )
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{
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block_bytestream_t bytestream;
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bytestream.i_offset = 0;
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bytestream.p_chain = bytestream.p_block = NULL;
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return bytestream;
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}
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static inline void block_BytestreamRelease( block_bytestream_t *p_bytestream )
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{
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while( p_bytestream->p_chain )
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{
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block_t *p_next;
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p_next = p_bytestream->p_chain->p_next;
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p_bytestream->p_chain->pf_release( p_bytestream->p_chain );
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p_bytestream->p_chain = p_next;
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}
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p_bytestream->i_offset = 0;
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p_bytestream->p_chain = p_bytestream->p_block = NULL;
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}
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static inline void block_BytestreamFlush( block_bytestream_t *p_bytestream )
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{
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while( p_bytestream->p_chain != p_bytestream->p_block )
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{
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block_t *p_next;
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p_next = p_bytestream->p_chain->p_next;
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p_bytestream->p_chain->pf_release( p_bytestream->p_chain );
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p_bytestream->p_chain = p_next;
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}
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while( p_bytestream->p_block &&
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(p_bytestream->p_block->i_buffer - p_bytestream->i_offset) == 0 )
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{
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block_t *p_next;
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p_next = p_bytestream->p_chain->p_next;
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p_bytestream->p_chain->pf_release( p_bytestream->p_chain );
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p_bytestream->p_chain = p_bytestream->p_block = p_next;
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p_bytestream->i_offset = 0;
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}
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}
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static inline void block_BytestreamPush( block_bytestream_t *p_bytestream,
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block_t *p_block )
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{
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block_ChainAppend( &p_bytestream->p_chain, p_block );
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if( !p_bytestream->p_block ) p_bytestream->p_block = p_block;
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}
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static inline block_t *block_BytestreamPop( block_bytestream_t *p_bytestream )
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{
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block_t *p_block;
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block_BytestreamFlush( p_bytestream );
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p_block = p_bytestream->p_block;
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if( p_block == NULL )
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{
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return NULL;
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}
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else if( !p_block->p_next )
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{
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p_block->p_buffer += p_bytestream->i_offset;
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p_block->i_buffer -= p_bytestream->i_offset;
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p_bytestream->i_offset = 0;
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p_bytestream->p_chain = p_bytestream->p_block = NULL;
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return p_block;
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}
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while( p_block->p_next && p_block->p_next->p_next )
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p_block = p_block->p_next;
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{
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block_t *p_block_old = p_block;
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p_block = p_block->p_next;
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p_block_old->p_next = NULL;
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}
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return p_block;
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}
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static inline int block_SkipByte( block_bytestream_t *p_bytestream )
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{
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/* Most common case first */
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if( p_bytestream->p_block->i_buffer - p_bytestream->i_offset )
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{
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p_bytestream->i_offset++;
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return VLC_SUCCESS;
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}
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else
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{
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block_t *p_block;
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/* Less common case which is also slower */
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for( p_block = p_bytestream->p_block->p_next;
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p_block != NULL; p_block = p_block->p_next )
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{
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if( p_block->i_buffer )
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{
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p_bytestream->i_offset = 1;
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p_bytestream->p_block = p_block;
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return VLC_SUCCESS;
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}
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}
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}
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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static inline int block_PeekByte( block_bytestream_t *p_bytestream,
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uint8_t *p_data )
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{
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/* Most common case first */
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if( p_bytestream->p_block->i_buffer - p_bytestream->i_offset )
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{
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*p_data = p_bytestream->p_block->p_buffer[p_bytestream->i_offset];
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return VLC_SUCCESS;
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}
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else
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{
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block_t *p_block;
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/* Less common case which is also slower */
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for( p_block = p_bytestream->p_block->p_next;
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p_block != NULL; p_block = p_block->p_next )
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{
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if( p_block->i_buffer )
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{
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*p_data = p_block->p_buffer[0];
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return VLC_SUCCESS;
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}
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}
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}
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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static inline int block_GetByte( block_bytestream_t *p_bytestream,
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uint8_t *p_data )
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{
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/* Most common case first */
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if( p_bytestream->p_block->i_buffer - p_bytestream->i_offset )
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{
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*p_data = p_bytestream->p_block->p_buffer[p_bytestream->i_offset];
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p_bytestream->i_offset++;
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return VLC_SUCCESS;
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}
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else
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{
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block_t *p_block;
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/* Less common case which is also slower */
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for( p_block = p_bytestream->p_block->p_next;
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p_block != NULL; p_block = p_block->p_next )
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{
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if( p_block->i_buffer )
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{
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*p_data = p_block->p_buffer[0];
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p_bytestream->i_offset = 1;
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p_bytestream->p_block = p_block;
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return VLC_SUCCESS;
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}
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}
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}
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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static inline int block_WaitBytes( block_bytestream_t *p_bytestream,
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int i_data )
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{
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block_t *p_block;
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int i_offset, i_copy, i_size;
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/* Check we have that much data */
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i_offset = p_bytestream->i_offset;
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i_size = i_data;
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i_copy = 0;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_size, p_block->i_buffer - i_offset );
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i_size -= i_copy;
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i_offset = 0;
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if( !i_size ) break;
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}
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if( i_size )
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{
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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return VLC_SUCCESS;
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}
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static inline int block_SkipBytes( block_bytestream_t *p_bytestream,
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int i_data )
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{
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block_t *p_block;
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int i_offset, i_copy;
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/* Check we have that much data */
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i_offset = p_bytestream->i_offset;
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i_copy = 0;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_data, p_block->i_buffer - i_offset );
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i_data -= i_copy;
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if( !i_data ) break;
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i_offset = 0;
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}
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if( i_data )
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{
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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p_bytestream->p_block = p_block;
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p_bytestream->i_offset = i_offset + i_copy;
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return VLC_SUCCESS;
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}
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static inline int block_PeekBytes( block_bytestream_t *p_bytestream,
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uint8_t *p_data, int i_data )
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{
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block_t *p_block;
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int i_offset, i_copy, i_size;
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/* Check we have that much data */
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i_offset = p_bytestream->i_offset;
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i_size = i_data;
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i_copy = 0;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_size, p_block->i_buffer - i_offset );
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i_size -= i_copy;
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i_offset = 0;
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if( !i_size ) break;
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}
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if( i_size )
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{
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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/* Copy the data */
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i_offset = p_bytestream->i_offset;
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i_size = i_data;
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i_copy = 0;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_size, p_block->i_buffer - i_offset );
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i_size -= i_copy;
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if( i_copy )
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{
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memcpy( p_data, p_block->p_buffer + i_offset, i_copy );
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p_data += i_copy;
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}
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i_offset = 0;
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if( !i_size ) break;
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}
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return VLC_SUCCESS;
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}
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static inline int block_GetBytes( block_bytestream_t *p_bytestream,
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uint8_t *p_data, int i_data )
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{
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block_t *p_block;
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int i_offset, i_copy, i_size;
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/* Check we have that much data */
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i_offset = p_bytestream->i_offset;
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i_size = i_data;
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i_copy = 0;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_size, p_block->i_buffer - i_offset );
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i_size -= i_copy;
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i_offset = 0;
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if( !i_size ) break;
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}
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if( i_size )
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{
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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/* Copy the data */
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i_offset = p_bytestream->i_offset;
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i_size = i_data;
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i_copy = 0;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_size, p_block->i_buffer - i_offset );
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i_size -= i_copy;
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if( i_copy )
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{
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memcpy( p_data, p_block->p_buffer + i_offset, i_copy );
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p_data += i_copy;
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}
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if( !i_size ) break;
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i_offset = 0;
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}
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/* No buffer given, just skip the data */
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p_bytestream->p_block = p_block;
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p_bytestream->i_offset = i_offset + i_copy;
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return VLC_SUCCESS;
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}
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static inline int block_PeekOffsetBytes( block_bytestream_t *p_bytestream,
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int i_peek_offset, uint8_t *p_data, int i_data )
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{
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block_t *p_block;
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int i_offset, i_copy, i_size;
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/* Check we have that much data */
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i_offset = p_bytestream->i_offset;
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i_size = i_data + i_peek_offset;
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i_copy = 0;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_size, p_block->i_buffer - i_offset );
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i_size -= i_copy;
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i_offset = 0;
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if( !i_size ) break;
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}
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if( i_size )
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{
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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/* Find the right place */
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i_offset = p_bytestream->i_offset;
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i_size = i_peek_offset;
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i_copy = 0;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_size, p_block->i_buffer - i_offset );
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i_size -= i_copy;
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if( !i_size ) break;
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i_offset = 0;
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}
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/* Copy the data */
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i_offset += i_copy;
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i_size = i_data;
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i_copy = 0;
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for( ; p_block != NULL; p_block = p_block->p_next )
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{
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i_copy = __MIN( i_size, p_block->i_buffer - i_offset );
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i_size -= i_copy;
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if( i_copy )
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{
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memcpy( p_data, p_block->p_buffer + i_offset, i_copy );
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p_data += i_copy;
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}
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i_offset = 0;
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if( !i_size ) break;
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}
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return VLC_SUCCESS;
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}
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static inline int block_FindStartcodeFromOffset(
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block_bytestream_t *p_bytestream, int *pi_offset,
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uint8_t *p_startcode, int i_startcode_length )
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{
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block_t *p_block, *p_block_backup = 0;
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int i_size, i_offset, i_offset_backup = 0;
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int i_caller_offset_backup = 0, i_match;
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/* Find the right place */
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i_size = *pi_offset + p_bytestream->i_offset;
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for( p_block = p_bytestream->p_block;
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p_block != NULL; p_block = p_block->p_next )
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{
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i_size -= p_block->i_buffer;
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if( i_size < 0 ) break;
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}
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if( i_size >= 0 )
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{
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/* Not enough data, bail out */
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return VLC_EGENERIC;
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}
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/* Begin the search.
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* We first look for an occurence of the 1st startcode byte and
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* if found, we do a more thorough check. */
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i_size = p_block->i_buffer + i_size;
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*pi_offset -= i_size;
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i_match = 0;
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for( ; p_block != NULL; p_block = p_block->p_next )
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{
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for( i_offset = i_size; i_offset < p_block->i_buffer; i_offset++ )
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{
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if( p_block->p_buffer[i_offset] == p_startcode[i_match] )
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{
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if( !i_match )
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{
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p_block_backup = p_block;
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i_offset_backup = i_offset;
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i_caller_offset_backup = *pi_offset;
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}
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if( i_match + 1 == i_startcode_length )
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{
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/* We have it */
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*pi_offset += i_offset - i_match;
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return VLC_SUCCESS;
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}
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i_match++;
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}
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else if ( i_match )
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{
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/* False positive */
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p_block = p_block_backup;
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i_offset = i_offset_backup;
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*pi_offset = i_caller_offset_backup;
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i_match = 0;
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}
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}
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i_size = 0;
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*pi_offset += i_offset;
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}
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*pi_offset -= i_match;
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return VLC_EGENERIC;
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}
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#endif /* VLC_BLOCK_HELPER_H */
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