The setpts filter does not signal to the rest of the filtergraph that the stream is CFR. Just generate the timestamps manually instead.
		
			
				
	
	
		
			510 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			510 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * This file is part of Libav.
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 *
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 * Libav is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU Lesser General Public
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 * License as published by the Free Software Foundation; either
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 * version 2.1 of the License, or (at your option) any later version.
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 *
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 * Libav 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
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 * 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
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 * License along with Libav; if not, write to the Free Software
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 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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 */
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#ifndef AVCONV_H
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#define AVCONV_H
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#include "config.h"
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#include <stdint.h>
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#include <stdio.h>
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#if HAVE_PTHREADS
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#include <pthread.h>
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#endif
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#include "cmdutils.h"
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#include "libavformat/avformat.h"
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#include "libavformat/avio.h"
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#include "libavcodec/avcodec.h"
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#include "libavfilter/avfilter.h"
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#include "libavutil/avutil.h"
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#include "libavutil/dict.h"
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#include "libavutil/fifo.h"
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#include "libavutil/pixfmt.h"
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#include "libavutil/rational.h"
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#define VSYNC_AUTO       -1
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#define VSYNC_PASSTHROUGH 0
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#define VSYNC_CFR         1
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#define VSYNC_VFR         2
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enum HWAccelID {
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    HWACCEL_NONE = 0,
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    HWACCEL_AUTO,
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    HWACCEL_VDPAU,
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    HWACCEL_DXVA2,
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    HWACCEL_VDA,
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    HWACCEL_QSV,
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    HWACCEL_VAAPI,
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};
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typedef struct HWAccel {
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    const char *name;
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    int (*init)(AVCodecContext *s);
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    enum HWAccelID id;
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    enum AVPixelFormat pix_fmt;
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} HWAccel;
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/* select an input stream for an output stream */
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typedef struct StreamMap {
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    int disabled;           /* 1 is this mapping is disabled by a negative map */
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    int file_index;
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    int stream_index;
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    int sync_file_index;
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    int sync_stream_index;
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    char *linklabel;       /* name of an output link, for mapping lavfi outputs */
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} StreamMap;
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/* select an input file for an output file */
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typedef struct MetadataMap {
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    int  file;      // file index
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    char type;      // type of metadata to copy -- (g)lobal, (s)tream, (c)hapter or (p)rogram
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    int  index;     // stream/chapter/program number
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} MetadataMap;
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typedef struct OptionsContext {
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    OptionGroup *g;
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    /* input/output options */
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    int64_t start_time;
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    const char *format;
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    SpecifierOpt *codec_names;
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    int        nb_codec_names;
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    SpecifierOpt *audio_channels;
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    int        nb_audio_channels;
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    SpecifierOpt *audio_sample_rate;
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    int        nb_audio_sample_rate;
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    SpecifierOpt *frame_rates;
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    int        nb_frame_rates;
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    SpecifierOpt *frame_sizes;
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    int        nb_frame_sizes;
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    SpecifierOpt *frame_pix_fmts;
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    int        nb_frame_pix_fmts;
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    /* input options */
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    int64_t input_ts_offset;
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    int loop;
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    int rate_emu;
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    int accurate_seek;
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    SpecifierOpt *ts_scale;
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    int        nb_ts_scale;
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    SpecifierOpt *dump_attachment;
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    int        nb_dump_attachment;
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    SpecifierOpt *hwaccels;
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    int        nb_hwaccels;
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    SpecifierOpt *hwaccel_devices;
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    int        nb_hwaccel_devices;
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    SpecifierOpt *hwaccel_output_formats;
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    int        nb_hwaccel_output_formats;
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    SpecifierOpt *autorotate;
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    int        nb_autorotate;
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    /* output options */
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    StreamMap *stream_maps;
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    int     nb_stream_maps;
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    /* first item specifies output metadata, second is input */
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    MetadataMap (*meta_data_maps)[2];
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    int nb_meta_data_maps;
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    int metadata_global_manual;
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    int metadata_streams_manual;
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    int metadata_chapters_manual;
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    const char **attachments;
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    int       nb_attachments;
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    int chapters_input_file;
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    int64_t recording_time;
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    uint64_t limit_filesize;
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    float mux_preload;
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    float mux_max_delay;
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    int shortest;
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    int video_disable;
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    int audio_disable;
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    int subtitle_disable;
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    int data_disable;
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    /* indexed by output file stream index */
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    int   *streamid_map;
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    int nb_streamid_map;
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    SpecifierOpt *metadata;
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    int        nb_metadata;
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    SpecifierOpt *max_frames;
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    int        nb_max_frames;
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    SpecifierOpt *bitstream_filters;
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    int        nb_bitstream_filters;
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    SpecifierOpt *codec_tags;
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    int        nb_codec_tags;
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    SpecifierOpt *sample_fmts;
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    int        nb_sample_fmts;
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    SpecifierOpt *qscale;
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    int        nb_qscale;
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    SpecifierOpt *forced_key_frames;
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    int        nb_forced_key_frames;
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    SpecifierOpt *force_fps;
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    int        nb_force_fps;
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    SpecifierOpt *frame_aspect_ratios;
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    int        nb_frame_aspect_ratios;
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    SpecifierOpt *rc_overrides;
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    int        nb_rc_overrides;
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    SpecifierOpt *intra_matrices;
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    int        nb_intra_matrices;
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    SpecifierOpt *inter_matrices;
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    int        nb_inter_matrices;
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    SpecifierOpt *top_field_first;
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    int        nb_top_field_first;
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    SpecifierOpt *metadata_map;
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    int        nb_metadata_map;
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    SpecifierOpt *presets;
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    int        nb_presets;
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    SpecifierOpt *copy_initial_nonkeyframes;
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    int        nb_copy_initial_nonkeyframes;
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    SpecifierOpt *filters;
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    int        nb_filters;
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    SpecifierOpt *filter_scripts;
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    int        nb_filter_scripts;
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    SpecifierOpt *pass;
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    int        nb_pass;
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    SpecifierOpt *passlogfiles;
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    int        nb_passlogfiles;
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    SpecifierOpt *max_muxing_queue_size;
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    int        nb_max_muxing_queue_size;
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} OptionsContext;
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typedef struct InputFilter {
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    AVFilterContext    *filter;
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    struct InputStream *ist;
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    struct FilterGraph *graph;
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    uint8_t            *name;
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    AVFifoBuffer *frame_queue;
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    // parameters configured for this input
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    int format;
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    int width, height;
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    AVRational sample_aspect_ratio;
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    int sample_rate;
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    uint64_t channel_layout;
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    AVBufferRef *hw_frames_ctx;
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    int eof;
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} InputFilter;
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typedef struct OutputFilter {
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    AVFilterContext     *filter;
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    struct OutputStream *ost;
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    struct FilterGraph  *graph;
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    uint8_t             *name;
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    /* temporary storage until stream maps are processed */
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    AVFilterInOut       *out_tmp;
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    enum AVMediaType     type;
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    /* desired output stream properties */
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    int width, height;
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    AVRational frame_rate;
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    int format;
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    int sample_rate;
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    uint64_t channel_layout;
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    // those are only set if no format is specified and the encoder gives us multiple options
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    int *formats;
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    uint64_t *channel_layouts;
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    int *sample_rates;
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} OutputFilter;
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typedef struct FilterGraph {
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    int            index;
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    const char    *graph_desc;
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    AVFilterGraph *graph;
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    InputFilter   **inputs;
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    int          nb_inputs;
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    OutputFilter **outputs;
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    int         nb_outputs;
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} FilterGraph;
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typedef struct InputStream {
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    int file_index;
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    AVStream *st;
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    int discard;             /* true if stream data should be discarded */
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    int decoding_needed;     /* true if the packets must be decoded in 'raw_fifo' */
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    AVCodecContext *dec_ctx;
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    AVCodec *dec;
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    AVFrame *decoded_frame;
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    AVFrame *filter_frame; /* a ref of decoded_frame, to be sent to filters */
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    int64_t       start;     /* time when read started */
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    /* predicted dts of the next packet read for this stream or (when there are
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     * several frames in a packet) of the next frame in current packet */
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    int64_t       next_dts;
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    /* dts of the last packet read for this stream */
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    int64_t       last_dts;
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    int64_t min_pts; /* pts with the smallest value in a current stream */
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    int64_t max_pts; /* pts with the higher value in a current stream */
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    // when forcing constant input framerate through -r,
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    // this contains the pts that will be given to the next decoded frame
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    int64_t cfr_next_pts;
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    int64_t nb_samples; /* number of samples in the last decoded audio frame before looping */
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    PtsCorrectionContext pts_ctx;
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    double ts_scale;
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    AVDictionary *decoder_opts;
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    AVRational framerate;               /* framerate forced with -r */
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    int autorotate;
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    /* decoded data from this stream goes into all those filters
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     * currently video and audio only */
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    InputFilter **filters;
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    int        nb_filters;
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    /* hwaccel options */
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    enum HWAccelID hwaccel_id;
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    char  *hwaccel_device;
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    enum AVPixelFormat hwaccel_output_format;
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    /* hwaccel context */
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    enum HWAccelID active_hwaccel_id;
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    void  *hwaccel_ctx;
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    void (*hwaccel_uninit)(AVCodecContext *s);
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    int  (*hwaccel_get_buffer)(AVCodecContext *s, AVFrame *frame, int flags);
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    int  (*hwaccel_retrieve_data)(AVCodecContext *s, AVFrame *frame);
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    enum AVPixelFormat hwaccel_pix_fmt;
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    enum AVPixelFormat hwaccel_retrieved_pix_fmt;
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    AVBufferRef *hw_frames_ctx;
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    /* stats */
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    // combined size of all the packets read
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    uint64_t data_size;
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    /* number of packets successfully read for this stream */
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    uint64_t nb_packets;
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    // number of frames/samples retrieved from the decoder
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    uint64_t frames_decoded;
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    uint64_t samples_decoded;
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} InputStream;
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typedef struct InputFile {
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    AVFormatContext *ctx;
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    int eof_reached;      /* true if eof reached */
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    int eagain;           /* true if last read attempt returned EAGAIN */
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    int ist_index;        /* index of first stream in ist_table */
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    int loop;             /* set number of times input stream should be looped */
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    int64_t duration;     /* actual duration of the longest stream in a file
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                             at the moment when looping happens */
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    AVRational time_base; /* time base of the duration */
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    int64_t ts_offset;
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    int64_t start_time;   /* user-specified start time in AV_TIME_BASE or AV_NOPTS_VALUE */
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    int64_t recording_time;
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    int nb_streams;       /* number of stream that avconv is aware of; may be different
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                             from ctx.nb_streams if new streams appear during av_read_frame() */
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    int rate_emu;
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    int accurate_seek;
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#if HAVE_PTHREADS
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    pthread_t thread;           /* thread reading from this file */
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    int finished;               /* the thread has exited */
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    int joined;                 /* the thread has been joined */
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    pthread_mutex_t fifo_lock;  /* lock for access to fifo */
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    pthread_cond_t  fifo_cond;  /* the main thread will signal on this cond after reading from fifo */
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    AVFifoBuffer *fifo;         /* demuxed packets are stored here; freed by the main thread */
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#endif
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} InputFile;
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typedef struct OutputStream {
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    int file_index;          /* file index */
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    int index;               /* stream index in the output file */
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    int source_index;        /* InputStream index */
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    AVStream *st;            /* stream in the output file */
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    int encoding_needed;     /* true if encoding needed for this stream */
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    int frame_number;
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    /* input pts and corresponding output pts
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       for A/V sync */
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    // double sync_ipts;        /* dts from the AVPacket of the demuxer in second units */
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    struct InputStream *sync_ist; /* input stream to sync against */
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    int64_t sync_opts;       /* output frame counter, could be changed to some true timestamp */ // FIXME look at frame_number
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    /* pts of the first frame encoded for this stream, used for limiting
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     * recording time */
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    int64_t first_pts;
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    /* dts of the last packet sent to the muxer */
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    int64_t last_mux_dts;
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    // the timebase of the packets sent to the muxer
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    AVRational mux_timebase;
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    int                    nb_bitstream_filters;
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    const AVBitStreamFilter **bitstream_filters;
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    AVBSFContext            **bsf_ctx;
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    AVCodecContext *enc_ctx;
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    AVCodec *enc;
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    int64_t max_frames;
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    AVFrame *filtered_frame;
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    void  *hwaccel_ctx;
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    /* video only */
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    AVRational frame_rate;
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    int force_fps;
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    int top_field_first;
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    float frame_aspect_ratio;
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    /* forced key frames */
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    int64_t *forced_kf_pts;
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    int forced_kf_count;
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    int forced_kf_index;
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    char *forced_keyframes;
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 | 
						|
    char *logfile_prefix;
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    FILE *logfile;
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						|
    OutputFilter *filter;
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    char *avfilter;
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 | 
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    int64_t sws_flags;
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						|
    AVDictionary *encoder_opts;
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    AVDictionary *resample_opts;
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    int finished;        /* no more packets should be written for this stream */
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    int stream_copy;
 | 
						|
 | 
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    // init_output_stream() has been called for this stream
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    // The encoder and the bistream filters have been initialized and the stream
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    // parameters are set in the AVStream.
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    int initialized;
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 | 
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    const char *attachment_filename;
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						|
    int copy_initial_nonkeyframes;
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 | 
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    enum AVPixelFormat pix_fmts[2];
 | 
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 | 
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    AVCodecParserContext *parser;
 | 
						|
    AVCodecContext       *parser_avctx;
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 | 
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    /* stats */
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    // combined size of all the packets written
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    uint64_t data_size;
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    // number of packets send to the muxer
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						|
    uint64_t packets_written;
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						|
    // number of frames/samples sent to the encoder
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						|
    uint64_t frames_encoded;
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    uint64_t samples_encoded;
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 | 
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    /* packet quality factor */
 | 
						|
    int quality;
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 | 
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    int max_muxing_queue_size;
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 | 
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    /* the packets are buffered here until the muxer is ready to be initialized */
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    AVFifoBuffer *muxing_queue;
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} OutputStream;
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 | 
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typedef struct OutputFile {
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    AVFormatContext *ctx;
 | 
						|
    AVDictionary *opts;
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						|
    int ost_index;       /* index of the first stream in output_streams */
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						|
    int64_t recording_time; /* desired length of the resulting file in microseconds */
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						|
    int64_t start_time;     /* start time in microseconds */
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						|
    uint64_t limit_filesize;
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						|
 | 
						|
    int shortest;
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						|
 | 
						|
    int header_written;
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} OutputFile;
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 | 
						|
extern InputStream **input_streams;
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extern int        nb_input_streams;
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extern InputFile   **input_files;
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extern int        nb_input_files;
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 | 
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extern OutputStream **output_streams;
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extern int         nb_output_streams;
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extern OutputFile   **output_files;
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extern int         nb_output_files;
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extern FilterGraph **filtergraphs;
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extern int        nb_filtergraphs;
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extern char *vstats_filename;
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extern float audio_drift_threshold;
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extern float dts_delta_threshold;
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extern int audio_volume;
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extern int audio_sync_method;
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extern int video_sync_method;
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extern int do_benchmark;
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extern int do_deinterlace;
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extern int do_hex_dump;
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extern int do_pkt_dump;
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extern int copy_ts;
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extern int copy_tb;
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extern int exit_on_error;
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extern int print_stats;
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extern int qp_hist;
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extern const AVIOInterruptCB int_cb;
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extern const OptionDef options[];
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extern const HWAccel hwaccels[];
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extern int hwaccel_lax_profile_check;
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extern AVBufferRef *hw_device_ctx;
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void reset_options(OptionsContext *o);
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void show_usage(void);
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void opt_output_file(void *optctx, const char *filename);
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void assert_avoptions(AVDictionary *m);
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int guess_input_channel_layout(InputStream *ist);
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int configure_filtergraph(FilterGraph *fg);
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int configure_output_filter(FilterGraph *fg, OutputFilter *ofilter, AVFilterInOut *out);
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int ist_in_filtergraph(FilterGraph *fg, InputStream *ist);
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int filtergraph_is_simple(FilterGraph *fg);
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int init_simple_filtergraph(InputStream *ist, OutputStream *ost);
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int init_complex_filtergraph(FilterGraph *fg);
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int ifilter_parameters_from_frame(InputFilter *ifilter, const AVFrame *frame);
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int avconv_parse_options(int argc, char **argv);
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int vdpau_init(AVCodecContext *s);
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int dxva2_init(AVCodecContext *s);
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int vda_init(AVCodecContext *s);
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int qsv_init(AVCodecContext *s);
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int qsv_transcode_init(OutputStream *ost);
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int vaapi_decode_init(AVCodecContext *avctx);
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int vaapi_device_init(const char *device);
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#endif /* AVCONV_H */
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