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/*
 * FFmpeg main
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 * Copyright (c) 2000-2003 Fabrice Bellard
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 *
 * This file is part of FFmpeg.
 *
 * FFmpeg 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 2.1 of the License, or (at your option) any later version.
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 *
 * FFmpeg is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * Lesser General Public License for more details.
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 *
 * You should have received a copy of the GNU Lesser General Public
 * License along with FFmpeg; if not, write to the Free Software
 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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 */
#define _XOPEN_SOURCE 600
#include "config.h"
#include <ctype.h>
#include <string.h>
#include <math.h>
#include <stdlib.h>
#include <errno.h>
#include <signal.h>
#include <limits.h>
#include "libavformat/avformat.h"
#include "libavdevice/avdevice.h"
#include "libswscale/swscale.h"
#include "libavcodec/opt.h"
#include "libavcodec/audioconvert.h"
#include "libavutil/audioconvert.h"
#include "libavutil/parseutils.h"
#include "libavutil/samplefmt.h"
#include "libavutil/colorspace.h"
#include "libavutil/fifo.h"
#include "libavutil/intreadwrite.h"
#include "libavutil/avstring.h"
#include "libavutil/libm.h"
#include "libavformat/os_support.h"
#if CONFIG_AVFILTER
# include "libavfilter/avfilter.h"
# include "libavfilter/avfiltergraph.h"
# include "libavfilter/vsrc_buffer.h"
#endif

#if HAVE_SYS_RESOURCE_H
#include <sys/resource.h>
#elif HAVE_GETPROCESSTIMES
#include <windows.h>
#endif
#if HAVE_GETPROCESSMEMORYINFO
#include <windows.h>
#include <psapi.h>
#endif
#if HAVE_SYS_SELECT_H
#include <sys/select.h>
#endif

#if HAVE_TERMIOS_H
#include <fcntl.h>
#include <sys/ioctl.h>
#include <sys/time.h>
#include <termios.h>
#elif HAVE_KBHIT
#include <conio.h>
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#endif
#include <time.h>
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#include "cmdutils.h"

#include "libavutil/avassert.h"
const int program_birth_year = 2000;
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/* select an input stream for an output stream */
typedef struct AVStreamMap {
    int file_index;
    int stream_index;
    int sync_file_index;
    int sync_stream_index;
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} AVStreamMap;

/**
 * select an input file for an output file
 */
    int  file;      //< file index
    char type;      //< type of metadata to copy -- (g)lobal, (s)tream, (c)hapter or (p)rogram
    int  index;     //< stream/chapter/program number
typedef struct AVChapterMap {
    int in_file;
    int out_file;
} AVChapterMap;

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#if !FF_API_MAX_STREAMS
#define MAX_STREAMS 1024    /* arbitrary sanity check value */
#endif
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static const char *last_asked_format = NULL;
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static AVFormatContext *input_files[MAX_FILES];
static int64_t input_files_ts_offset[MAX_FILES];
static double *input_files_ts_scale[MAX_FILES] = {NULL};
static AVCodec **input_codecs = NULL;
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static int nb_input_files = 0;
static int nb_input_codecs = 0;
static int nb_input_files_ts_scale[MAX_FILES] = {0};
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static AVFormatContext *output_files[MAX_FILES];
static AVCodec **output_codecs = NULL;
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static int nb_output_files = 0;
static int nb_output_codecs = 0;
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static AVStreamMap *stream_maps = NULL;
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static int nb_stream_maps;

/* first item specifies output metadata, second is input */
static AVMetaDataMap (*meta_data_maps)[2] = NULL;
static int metadata_global_autocopy   = 1;
static int metadata_streams_autocopy  = 1;
static int metadata_chapters_autocopy = 1;
static AVChapterMap *chapter_maps = NULL;
static int nb_chapter_maps;

/* indexed by output file stream index */
static int *streamid_map = NULL;
static int nb_streamid_map = 0;
static int frame_width  = 0;
static int frame_height = 0;
static float frame_aspect_ratio = 0;
static int frame_aspect_ratio_override = 0;
static enum PixelFormat frame_pix_fmt = PIX_FMT_NONE;
static int frame_bits_per_raw_sample = 0;
static enum AVSampleFormat audio_sample_fmt = AV_SAMPLE_FMT_NONE;
static int max_frames[4] = {INT_MAX, INT_MAX, INT_MAX, INT_MAX};
static AVRational frame_rate;
static uint16_t *intra_matrix = NULL;
static uint16_t *inter_matrix = NULL;
static const char *video_rc_override_string=NULL;
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static int video_disable = 0;
static int video_discard = 0;
static char *video_codec_name = NULL;
static unsigned int video_codec_tag = 0;
static char *video_language = NULL;
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static int same_quality = 0;
static int do_deinterlace = 0;
static int top_field_first = -1;
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static int intra_dc_precision = 8;
static int loop_input = 0;
static int loop_output = AVFMT_NOOUTPUTLOOP;
static int qp_hist = 0;
#if CONFIG_AVFILTER
static char *vfilters = NULL;
#else
static unsigned int sws_flags = SWS_BICUBIC;
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static int intra_only = 0;
static int audio_sample_rate = 44100;
static int64_t channel_layout = 0;
#define QSCALE_NONE -99999
static float audio_qscale = QSCALE_NONE;
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static int audio_disable = 0;
static int audio_channels = 1;
static char  *audio_codec_name = NULL;
static unsigned int audio_codec_tag = 0;
static int subtitle_disable = 0;
static char *subtitle_codec_name = NULL;
static char *subtitle_language = NULL;
static unsigned int subtitle_codec_tag = 0;
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static float mux_preload= 0.5;
static float mux_max_delay= 0.7;
static int64_t recording_time = INT64_MAX;
static int64_t start_time = 0;
static int64_t recording_timestamp = 0;
static int64_t input_ts_offset = 0;
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static int file_overwrite = 0;
static AVMetadata *metadata;
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static int do_benchmark = 0;
static int do_hex_dump = 0;
static int do_pass = 0;
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static char *pass_logfilename_prefix = NULL;
static int audio_stream_copy = 0;
static int video_stream_copy = 0;
static int video_sync_method= -1;
static int audio_sync_method= 0;
static float audio_drift_threshold= 0.1;
static int copy_ts= 0;
static int opt_shortest = 0;
static char *vstats_filename;
static FILE *vstats_file;
static int copy_initial_nonkeyframes = 0;
static char *video_standard;
static int thread_count= 1;
static int64_t video_size = 0;
static int64_t audio_size = 0;
static int64_t extra_size = 0;
static int nb_frames_dup = 0;
static int nb_frames_drop = 0;
static uint64_t limit_filesize = 0;
static char *forced_key_frames = NULL;
static float dts_delta_threshold = 10;
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static int64_t timer_start;
static uint8_t *audio_buf;
static uint8_t *audio_out;
static unsigned int allocated_audio_out_size, allocated_audio_buf_size;
static AVBitStreamFilterContext *video_bitstream_filters=NULL;
static AVBitStreamFilterContext *audio_bitstream_filters=NULL;
static AVBitStreamFilterContext *subtitle_bitstream_filters=NULL;
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#define DEFAULT_PASS_LOGFILENAME_PREFIX "ffmpeg2pass"
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typedef struct AVOutputStream {
    int file_index;          /* file index */
    int index;               /* stream index in the output file */
    int source_index;        /* AVInputStream index */
    AVStream *st;            /* stream in the output file */
    int encoding_needed;     /* true if encoding needed for this stream */
    int frame_number;
    /* input pts and corresponding output pts
       for A/V sync */
    //double sync_ipts;        /* dts from the AVPacket of the demuxer in second units */
    struct AVInputStream *sync_ist; /* input stream to sync against */
    int64_t sync_opts;       /* output frame counter, could be changed to some true timestamp */ //FIXME look at frame_number
    AVBitStreamFilterContext *bitstream_filters;
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    /* video only */
    AVFrame pict_tmp;      /* temporary image for resampling */
    struct SwsContext *img_resample_ctx; /* for image resampling */
    int resample_height;
    int resample_width;
    /* full frame size of first frame */
    int original_height;
    int original_width;

    /* forced key frames */
    int64_t *forced_kf_pts;
    int forced_kf_count;
    int forced_kf_index;

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    /* audio only */
    int audio_resample;
    ReSampleContext *resample; /* for audio resampling */
    int resample_sample_fmt;
    int resample_channels;
    int resample_sample_rate;
    int reformat_pair;
    AVAudioConvert *reformat_ctx;
    AVFifoBuffer *fifo;     /* for compression: one audio fifo per codec */

#if CONFIG_AVFILTER
    AVFilterContext *output_video_filter;
    AVFilterContext *input_video_filter;
    AVFilterBufferRef *picref;
    char *avfilter;
    AVFilterGraph *graph;
#endif
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} AVOutputStream;

static AVOutputStream **output_streams_for_file[MAX_FILES] = { NULL };
static int nb_output_streams_for_file[MAX_FILES] = { 0 };

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typedef struct AVInputStream {
    int file_index;
    int index;
    AVStream *st;
    int discard;             /* true if stream data should be discarded */
    int decoding_needed;     /* true if the packets must be decoded in 'raw_fifo' */
    int64_t sample_index;      /* current sample */

    int64_t       start;     /* time when read started */
    int64_t       next_pts;  /* synthetic pts for cases where pkt.pts
                                is not defined */
    int64_t       pts;       /* current pts */
    int is_start;            /* is 1 at the start and after a discontinuity */
    int is_past_recording_time;
#if CONFIG_AVFILTER
    AVFrame *filter_frame;
    int has_filter_frame;
#endif
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} AVInputStream;

typedef struct AVInputFile {
    int eof_reached;      /* true if eof reached */
    int ist_index;        /* index of first stream in ist_table */
    int buffer_size;      /* current total buffer size */
    int nb_streams;       /* nb streams we are aware of */
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} AVInputFile;

#if HAVE_TERMIOS_H

/* init terminal so that we can grab keys */
static struct termios oldtty;
#endif

#if CONFIG_AVFILTER

static int configure_filters(AVInputStream *ist, AVOutputStream *ost)
{
    AVFilterContext *last_filter, *filter;
    /** filter graph containing all filters including input & output */
    AVCodecContext *codec = ost->st->codec;
    AVCodecContext *icodec = ist->st->codec;
    FFSinkContext ffsink_ctx = { .pix_fmt = codec->pix_fmt };
    AVRational sample_aspect_ratio;
    char args[255];
    ost->graph = avfilter_graph_alloc();
    if (ist->st->sample_aspect_ratio.num){
        sample_aspect_ratio = ist->st->sample_aspect_ratio;
    }else
        sample_aspect_ratio = ist->st->codec->sample_aspect_ratio;

    snprintf(args, 255, "%d:%d:%d:%d:%d:%d:%d", ist->st->codec->width,
             ist->st->codec->height, ist->st->codec->pix_fmt, 1, AV_TIME_BASE,
             sample_aspect_ratio.num, sample_aspect_ratio.den);

    ret = avfilter_graph_create_filter(&ost->input_video_filter, avfilter_get_by_name("buffer"),
                                       "src", args, NULL, ost->graph);
    if (ret < 0)
    ret = avfilter_graph_create_filter(&ost->output_video_filter, &ffsink,
                                       "out", NULL, &ffsink_ctx, ost->graph);
    if (ret < 0)
    last_filter = ost->input_video_filter;
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    if (codec->width  != icodec->width || codec->height != icodec->height) {
        snprintf(args, 255, "%d:%d:flags=0x%X",
                 codec->width,
                 codec->height,
                 (int)av_get_int(sws_opts, "sws_flags", NULL));
        if ((ret = avfilter_graph_create_filter(&filter, avfilter_get_by_name("scale"),
                                                NULL, args, NULL, ost->graph)) < 0)
            return ret;
        if ((ret = avfilter_link(last_filter, 0, filter, 0)) < 0)
            return ret;
    snprintf(args, sizeof(args), "flags=0x%X", (int)av_get_int(sws_opts, "sws_flags", NULL));
    ost->graph->scale_sws_opts = av_strdup(args);
        AVFilterInOut *outputs = av_malloc(sizeof(AVFilterInOut));
        AVFilterInOut *inputs  = av_malloc(sizeof(AVFilterInOut));

        outputs->name    = av_strdup("in");
        outputs->pad_idx = 0;
        outputs->next    = NULL;

        inputs->name    = av_strdup("out");
        inputs->filter_ctx = ost->output_video_filter;
        inputs->pad_idx = 0;
        inputs->next    = NULL;

        if ((ret = avfilter_graph_parse(ost->graph, ost->avfilter, inputs, outputs, NULL)) < 0)
        av_freep(&ost->avfilter);
        if ((ret = avfilter_link(last_filter, 0, ost->output_video_filter, 0)) < 0)
    if ((ret = avfilter_graph_config(ost->graph, NULL)) < 0)
    codec->width  = ost->output_video_filter->inputs[0]->w;
    codec->height = ost->output_video_filter->inputs[0]->h;
    codec->sample_aspect_ratio = ost->st->sample_aspect_ratio =
        ost->output_video_filter->inputs[0]->sample_aspect_ratio;

    return 0;
}
#endif /* CONFIG_AVFILTER */

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static void term_exit(void)
{
    av_log(NULL, AV_LOG_QUIET, "");
#if HAVE_TERMIOS_H
    tcsetattr (0, TCSANOW, &oldtty);
#endif
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static volatile int received_sigterm = 0;

static void
sigterm_handler(int sig)
{
    received_sigterm = sig;
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static void term_init(void)
{
#if HAVE_TERMIOS_H
    struct termios tty;

    tcgetattr (0, &tty);
    oldtty = tty;
    atexit(term_exit);

    tty.c_iflag &= ~(IGNBRK|BRKINT|PARMRK|ISTRIP
                          |INLCR|IGNCR|ICRNL|IXON);
    tty.c_oflag |= OPOST;
    tty.c_lflag &= ~(ECHO|ECHONL|ICANON|IEXTEN);
    tty.c_cflag &= ~(CSIZE|PARENB);
    tty.c_cflag |= CS8;
    tty.c_cc[VMIN] = 1;
    tty.c_cc[VTIME] = 0;

    tcsetattr (0, TCSANOW, &tty);
    signal(SIGQUIT, sigterm_handler); /* Quit (POSIX).  */
#endif

    signal(SIGINT , sigterm_handler); /* Interrupt (ANSI).  */
    signal(SIGTERM, sigterm_handler); /* Termination (ANSI).  */
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#ifdef SIGXCPU
    signal(SIGXCPU, sigterm_handler);
#endif
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}

/* read a key without blocking */
static int read_key(void)
{
#if HAVE_TERMIOS_H
    int n = 1;
    unsigned char ch;
    struct timeval tv;
    fd_set rfds;

    FD_ZERO(&rfds);
    FD_SET(0, &rfds);
    tv.tv_sec = 0;
    tv.tv_usec = 0;
    n = select(1, &rfds, NULL, NULL, &tv);
    if (n > 0) {
        n = read(0, &ch, 1);
        if (n == 1)
            return ch;

        return n;
    }
#elif HAVE_KBHIT
    if(kbhit())
        return(getch());
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    return -1;
}

    q_pressed += read_key() == 'q';
    return q_pressed > 1;
static int ffmpeg_exit(int ret)
{
    int i;

    /* close files */
    for(i=0;i<nb_output_files;i++) {
        AVFormatContext *s = output_files[i];
        if (!(s->oformat->flags & AVFMT_NOFILE) && s->pb)
        avformat_free_context(s);
        av_free(output_streams_for_file[i]);
    for(i=0;i<nb_input_files;i++) {
        av_close_input_file(input_files[i]);
        av_free(input_files_ts_scale[i]);
    }

    av_free(intra_matrix);
    av_free(inter_matrix);

    if (vstats_file)
        fclose(vstats_file);
    av_free(vstats_filename);

    av_free(streamid_map);
    av_free(input_codecs);
    av_free(output_codecs);
    av_free(stream_maps);
    av_free(meta_data_maps);

    av_free(video_codec_name);
    av_free(audio_codec_name);
    av_free(subtitle_codec_name);

    av_free(video_standard);

    av_free(audio_buf);
    av_free(audio_out);
    allocated_audio_buf_size= allocated_audio_out_size= 0;
#if CONFIG_AVFILTER
    avfilter_uninit();
#endif

    if (received_sigterm) {
        fprintf(stderr,
            "Received signal %d: terminating.\n",
            (int) received_sigterm);
        exit (255);
    }

    exit(ret); /* not all OS-es handle main() return value */
    return ret;
}

/* similar to ff_dynarray_add() and av_fast_realloc() */
static void *grow_array(void *array, int elem_size, int *size, int new_size)
{
    if (new_size >= INT_MAX / elem_size) {
        fprintf(stderr, "Array too big.\n");
        ffmpeg_exit(1);
    }
    if (*size < new_size) {
        uint8_t *tmp = av_realloc(array, new_size*elem_size);
        if (!tmp) {
            fprintf(stderr, "Could not alloc buffer.\n");
            ffmpeg_exit(1);
        }
        memset(tmp + *size*elem_size, 0, (new_size-*size) * elem_size);
        *size = new_size;
        return tmp;
    }
    return array;
static void choose_sample_fmt(AVStream *st, AVCodec *codec)
{
    if(codec && codec->sample_fmts){
        const enum AVSampleFormat *p= codec->sample_fmts;
        for(; *p!=-1; p++){
            if(*p == st->codec->sample_fmt)
                break;
        }
        if (*p == -1) {
            av_log(NULL, AV_LOG_WARNING,
                   "Incompatible sample format '%s' for codec '%s', auto-selecting format '%s'\n",
                   av_get_sample_fmt_name(st->codec->sample_fmt),
                   codec->name,
                   av_get_sample_fmt_name(codec->sample_fmts[0]));
            st->codec->sample_fmt = codec->sample_fmts[0];
static void choose_sample_rate(AVStream *st, AVCodec *codec)
{
    if(codec && codec->supported_samplerates){
        const int *p= codec->supported_samplerates;
        int best=0;
        int best_dist=INT_MAX;
        for(; *p; p++){
            int dist= abs(st->codec->sample_rate - *p);
            if(dist < best_dist){
                best_dist= dist;
                best= *p;
            }
        }
        if(best_dist){
            av_log(st->codec, AV_LOG_WARNING, "Requested sampling rate unsupported using closest supported (%d)\n", best);
        }
static void choose_pixel_fmt(AVStream *st, AVCodec *codec)
{
    if(codec && codec->pix_fmts){
        const enum PixelFormat *p= codec->pix_fmts;
        if(st->codec->strict_std_compliance <= FF_COMPLIANCE_UNOFFICIAL){
            if(st->codec->codec_id==CODEC_ID_MJPEG){
                p= (const enum PixelFormat[]){PIX_FMT_YUVJ420P, PIX_FMT_YUVJ422P, PIX_FMT_YUV420P, PIX_FMT_YUV422P, PIX_FMT_NONE};
            }else if(st->codec->codec_id==CODEC_ID_LJPEG){
                p= (const enum PixelFormat[]){PIX_FMT_YUVJ420P, PIX_FMT_YUVJ422P, PIX_FMT_YUVJ444P, PIX_FMT_YUV420P, PIX_FMT_YUV422P, PIX_FMT_YUV444P, PIX_FMT_BGRA, PIX_FMT_NONE};
            }
        }
        for(; *p!=-1; p++){
            if(*p == st->codec->pix_fmt)
                break;
        }
            if(st->codec->pix_fmt != PIX_FMT_NONE)
            av_log(NULL, AV_LOG_WARNING,
                   "Incompatible pixel format '%s' for codec '%s', auto-selecting format '%s'\n",
                   av_pix_fmt_descriptors[st->codec->pix_fmt].name,
                   codec->name,
                   av_pix_fmt_descriptors[codec->pix_fmts[0]].name);
            st->codec->pix_fmt = codec->pix_fmts[0];
static AVOutputStream *new_output_stream(AVFormatContext *oc, int file_idx)
{
    int idx = oc->nb_streams - 1;
    AVOutputStream *ost;

    output_streams_for_file[file_idx] =
        grow_array(output_streams_for_file[file_idx],
                   sizeof(*output_streams_for_file[file_idx]),
                   &nb_output_streams_for_file[file_idx],
                   oc->nb_streams);
    ost = output_streams_for_file[file_idx][idx] =
        av_mallocz(sizeof(AVOutputStream));
    if (!ost) {
        fprintf(stderr, "Could not alloc output stream\n");
        ffmpeg_exit(1);
    }
    ost->file_index = file_idx;
    ost->index = idx;
    return ost;
}

static int read_ffserver_streams(AVFormatContext *s, const char *filename)
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{
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    AVFormatContext *ic;
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    err = av_open_input_file(&ic, filename, NULL, FFM_PACKET_SIZE, NULL);
    if (err < 0)
        return err;
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    /* copy stream format */
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    for(i=0;i<ic->nb_streams;i++) {
        AVStream *st;
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        // FIXME: a more elegant solution is needed
        st = av_mallocz(sizeof(AVStream));
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        memcpy(st, ic->streams[i], sizeof(AVStream));
        if (!st->codec) {
            print_error(filename, AVERROR(ENOMEM));
            ffmpeg_exit(1);
        avcodec_copy_context(st->codec, ic->streams[i]->codec);
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        s->streams[i] = st;
        codec = avcodec_find_encoder(st->codec->codec_id);
        if (st->codec->codec_type == AVMEDIA_TYPE_AUDIO) {
            if (audio_stream_copy) {
                st->stream_copy = 1;
            } else
                choose_sample_fmt(st, codec);
        } else if (st->codec->codec_type == AVMEDIA_TYPE_VIDEO) {
            if (video_stream_copy) {
                st->stream_copy = 1;
            } else
                choose_pixel_fmt(st, codec);
        }
        if(st->codec->flags & CODEC_FLAG_BITEXACT)
            nopts = 1;

        new_output_stream(s, nb_output_files);
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    }

    if (!nopts)
        s->timestamp = av_gettime();

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    av_close_input_file(ic);
    return 0;
}

static double
get_sync_ipts(const AVOutputStream *ost)
{
    const AVInputStream *ist = ost->sync_ist;
    return (double)(ist->pts - start_time)/AV_TIME_BASE;
static void write_frame(AVFormatContext *s, AVPacket *pkt, AVCodecContext *avctx, AVBitStreamFilterContext *bsfc){
    while(bsfc){
        AVPacket new_pkt= *pkt;
        int a= av_bitstream_filter_filter(bsfc, avctx, NULL,
                                          &new_pkt.data, &new_pkt.size,
                                          pkt->data, pkt->size,
                                          pkt->flags & AV_PKT_FLAG_KEY);
            av_free_packet(pkt);
            new_pkt.destruct= av_destruct_packet;
        } else if(a<0){
            fprintf(stderr, "%s failed for stream %d, codec %s",
                    bsfc->filter->name, pkt->stream_index,
                    avctx->codec ? avctx->codec->name : "copy");
            print_error("", a);
                ffmpeg_exit(1);
    ret= av_interleaved_write_frame(s, pkt);
    if(ret < 0){
        print_error("av_interleaved_write_frame()", ret);
        ffmpeg_exit(1);
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static void do_audio_out(AVFormatContext *s,
                         AVOutputStream *ost,
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                         AVInputStream *ist,
                         unsigned char *buf, int size)
{
    uint8_t *buftmp;
    int64_t allocated_for_size= size;
    int size_out, frame_bytes, ret, resample_changed;
    AVCodecContext *dec= ist->st->codec;
    int osize= av_get_bits_per_sample_fmt(enc->sample_fmt)/8;
    int isize= av_get_bits_per_sample_fmt(dec->sample_fmt)/8;
    const int coded_bps = av_get_bits_per_sample(enc->codec->id);

need_realloc:
    audio_buf_size= (allocated_for_size + isize*dec->channels - 1) / (isize*dec->channels);
    audio_buf_size= (audio_buf_size*enc->sample_rate + dec->sample_rate) / dec->sample_rate;
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    audio_buf_size= audio_buf_size*2 + 10000; //safety factors for the deprecated resampling API
    audio_buf_size= FFMAX(audio_buf_size, enc->frame_size);
    audio_buf_size*= osize*enc->channels;

    audio_out_size= FFMAX(audio_buf_size, enc->frame_size * osize * enc->channels);
    if(coded_bps > 8*osize)
        audio_out_size= audio_out_size * coded_bps / (8*osize);
    audio_out_size += FF_MIN_BUFFER_SIZE;

    if(audio_out_size > INT_MAX || audio_buf_size > INT_MAX){
        fprintf(stderr, "Buffer sizes too large\n");
        ffmpeg_exit(1);
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    av_fast_malloc(&audio_buf, &allocated_audio_buf_size, audio_buf_size);
    av_fast_malloc(&audio_out, &allocated_audio_out_size, audio_out_size);
    if (!audio_buf || !audio_out){
        fprintf(stderr, "Out of memory in do_audio_out\n");
        ffmpeg_exit(1);
    if (enc->channels != dec->channels)
        ost->audio_resample = 1;

    resample_changed = ost->resample_sample_fmt  != dec->sample_fmt ||
                       ost->resample_channels    != dec->channels   ||
                       ost->resample_sample_rate != dec->sample_rate;

    if ((ost->audio_resample && !ost->resample) || resample_changed) {
        if (resample_changed) {
            av_log(NULL, AV_LOG_INFO, "Input stream #%d.%d frame changed from rate:%d fmt:%s ch:%d to rate:%d fmt:%s ch:%d\n",
                   ist->file_index, ist->index,
                   ost->resample_sample_rate, av_get_sample_fmt_name(ost->resample_sample_fmt), ost->resample_channels,
                   dec->sample_rate, av_get_sample_fmt_name(dec->sample_fmt), dec->channels);
            ost->resample_sample_fmt  = dec->sample_fmt;
            ost->resample_channels    = dec->channels;
            ost->resample_sample_rate = dec->sample_rate;
            if (ost->resample)
                audio_resample_close(ost->resample);
        }
        /* if audio_sync_method is >1 the resampler is needed for audio drift compensation */
        if (audio_sync_method <= 1 &&
            ost->resample_sample_fmt  == enc->sample_fmt &&
            ost->resample_channels    == enc->channels   &&
            ost->resample_sample_rate == enc->sample_rate) {
            ost->resample = NULL;
            ost->audio_resample = 0;
        } else {
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            if (dec->sample_fmt != AV_SAMPLE_FMT_S16)
                fprintf(stderr, "Warning, using s16 intermediate sample format for resampling\n");
            ost->resample = av_audio_resample_init(enc->channels,    dec->channels,
                                                   enc->sample_rate, dec->sample_rate,
                                                   enc->sample_fmt,  dec->sample_fmt,
                                                   16, 10, 0, 0.8);
            if (!ost->resample) {
                fprintf(stderr, "Can not resample %d channels @ %d Hz to %d channels @ %d Hz\n",
                        dec->channels, dec->sample_rate,
                        enc->channels, enc->sample_rate);
                ffmpeg_exit(1);
            }
#define MAKE_SFMT_PAIR(a,b) ((a)+AV_SAMPLE_FMT_NB*(b))
    if (!ost->audio_resample && dec->sample_fmt!=enc->sample_fmt &&
        MAKE_SFMT_PAIR(enc->sample_fmt,dec->sample_fmt)!=ost->reformat_pair) {
        if (ost->reformat_ctx)
            av_audio_convert_free(ost->reformat_ctx);
        ost->reformat_ctx = av_audio_convert_alloc(enc->sample_fmt, 1,
                                                   dec->sample_fmt, 1, NULL, 0);
        if (!ost->reformat_ctx) {
            fprintf(stderr, "Cannot convert %s sample format to %s sample format\n",
                av_get_sample_fmt_name(dec->sample_fmt),
                av_get_sample_fmt_name(enc->sample_fmt));
            ffmpeg_exit(1);
        }
        ost->reformat_pair=MAKE_SFMT_PAIR(enc->sample_fmt,dec->sample_fmt);
    }

    if(audio_sync_method){
        double delta = get_sync_ipts(ost) * enc->sample_rate - ost->sync_opts
                - av_fifo_size(ost->fifo)/(enc->channels * 2);
        double idelta= delta*dec->sample_rate / enc->sample_rate;
        int byte_delta= ((int)idelta)*2*dec->channels;
        //FIXME resample delay
        if(fabs(delta) > 50){
            if(ist->is_start || fabs(delta) > audio_drift_threshold*enc->sample_rate){
                if(byte_delta < 0){
                    size += byte_delta;
                    buf  -= byte_delta;
                    if(verbose > 2)
                        fprintf(stderr, "discarding %d audio samples\n", (int)-delta);
                    if(!size)
                        return;
                    ist->is_start=0;
                }else{
                    static uint8_t *input_tmp= NULL;
                    input_tmp= av_realloc(input_tmp, byte_delta + size);

                    if(byte_delta > allocated_for_size - size){
                        allocated_for_size= byte_delta + (int64_t)size;
                        goto need_realloc;
                    }
                    ist->is_start=0;

                    memset(input_tmp, 0, byte_delta);
                    memcpy(input_tmp + byte_delta, buf, size);
                    buf= input_tmp;
                    size += byte_delta;
                    if(verbose > 2)
                        fprintf(stderr, "adding %d audio samples of silence\n", (int)delta);
                }
            }else if(audio_sync_method>1){
                int comp= av_clip(delta, -audio_sync_method, audio_sync_method);
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                av_assert0(ost->audio_resample);
                if(verbose > 2)
                    fprintf(stderr, "compensating audio timestamp drift:%f compensation:%d in:%d\n", delta, comp, enc->sample_rate);
//                fprintf(stderr, "drift:%f len:%d opts:%"PRId64" ipts:%"PRId64" fifo:%d\n", delta, -1, ost->sync_opts, (int64_t)(get_sync_ipts(ost) * enc->sample_rate), av_fifo_size(ost->fifo)/(ost->st->codec->channels * 2));
                av_resample_compensate(*(struct AVResampleContext**)ost->resample, comp, enc->sample_rate);
            }
        ost->sync_opts= lrintf(get_sync_ipts(ost) * enc->sample_rate)
                        - av_fifo_size(ost->fifo)/(enc->channels * 2); //FIXME wrong
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    if (ost->audio_resample) {
        buftmp = audio_buf;
        size_out = audio_resample(ost->resample,
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                                  (short *)buftmp, (short *)buf,
        size_out = size_out * enc->channels * osize;
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    } else {
        buftmp = buf;
        size_out = size;
    }

    if (!ost->audio_resample && dec->sample_fmt!=enc->sample_fmt) {
        const void *ibuf[6]= {buftmp};
        void *obuf[6]= {audio_buf};
        int istride[6]= {isize};
        int ostride[6]= {osize};
        int len= size_out/istride[0];
        if (av_audio_convert(ost->reformat_ctx, obuf, ostride, ibuf, istride, len)<0) {
            printf("av_audio_convert() failed\n");
                ffmpeg_exit(1);
        buftmp = audio_buf;
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    /* now encode as many frames as possible */
    if (enc->frame_size > 1) {
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        /* output resampled raw samples */
        if (av_fifo_realloc2(ost->fifo, av_fifo_size(ost->fifo) + size_out) < 0) {
            fprintf(stderr, "av_fifo_realloc2() failed\n");
            ffmpeg_exit(1);
        av_fifo_generic_write(ost->fifo, buftmp, size_out, NULL);
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        frame_bytes = enc->frame_size * osize * enc->channels;
        while (av_fifo_size(ost->fifo) >= frame_bytes) {
            AVPacket pkt;
            av_init_packet(&pkt);

            av_fifo_generic_read(ost->fifo, audio_buf, frame_bytes, NULL);
            //FIXME pass ost->sync_opts as AVFrame.pts in avcodec_encode_audio()

            ret = avcodec_encode_audio(enc, audio_out, audio_out_size,
            if (ret < 0) {
                fprintf(stderr, "Audio encoding failed\n");
                ffmpeg_exit(1);
            pkt.stream_index= ost->index;
            pkt.data= audio_out;
            pkt.size= ret;
            if(enc->coded_frame && enc->coded_frame->pts != AV_NOPTS_VALUE)
                pkt.pts= av_rescale_q(enc->coded_frame->pts, enc->time_base, ost->st->time_base);
            pkt.flags |= AV_PKT_FLAG_KEY;
            write_frame(s, &pkt, enc, ost->bitstream_filters);
            ost->sync_opts += enc->frame_size;
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        }
    } else {
        AVPacket pkt;
        av_init_packet(&pkt);
        ost->sync_opts += size_out / (osize * enc->channels);
        /* output a pcm frame */
        /* determine the size of the coded buffer */
        size_out /= osize;
        if (coded_bps)
        if(size_out > audio_out_size){
            fprintf(stderr, "Internal error, buffer size too small\n");