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                    ist->decoding_needed = 1;
                    ost->encoding_needed = 1;
    
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                    if (codec->width == icodec->width &&
    
                        codec->height == icodec->height &&
                        frame_topBand == 0 &&
                        frame_bottomBand == 0 &&
                        frame_leftBand == 0 &&
                        frame_rightBand == 0)
                    {
                        ost->video_resample = 0;
                        ost->video_crop = 0;
                    } else if ((codec->width == icodec->width -
                                    (frame_leftBand + frame_rightBand)) &&
                            (codec->height == icodec->height -
                                    (frame_topBand  + frame_bottomBand)))
                    {
    
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                        ost->video_resample = 0;
    
                        ost->video_crop = 1;
                        ost->topBand = frame_topBand;
                        ost->leftBand = frame_leftBand;
    
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                    } else {
    
                        uint8_t *buf;
    
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                        ost->video_resample = 1;
    
                        ost->video_crop = 0; // cropping is handled as part of resample
    
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                        buf = av_malloc((codec->width * codec->height * 3) / 2);
    
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                        if (!buf)
                            goto fail;
                        ost->pict_tmp.data[0] = buf;
                        ost->pict_tmp.data[1] = ost->pict_tmp.data[0] + (codec->width * codec->height);
                        ost->pict_tmp.data[2] = ost->pict_tmp.data[1] + (codec->width * codec->height) / 4;
                        ost->pict_tmp.linesize[0] = codec->width;
                        ost->pict_tmp.linesize[1] = codec->width / 2;
                        ost->pict_tmp.linesize[2] = codec->width / 2;
    
    
                        ost->img_resample_ctx = img_resample_full_init( 
    
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                                          ost->st->codec.width, ost->st->codec.height,
    
                                          ist->st->codec.width, ist->st->codec.height,
                                          frame_topBand, frame_bottomBand,
                                          frame_leftBand, frame_rightBand);
    
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                    }
                    ost->encoding_needed = 1;
                    ist->decoding_needed = 1;
    
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                }
    
                /* two pass mode */
                if (ost->encoding_needed && 
                    (codec->flags & (CODEC_FLAG_PASS1 | CODEC_FLAG_PASS2))) {
                    char logfilename[1024];
                    FILE *f;
                    int size;
                    char *logbuffer;
                    
                    snprintf(logfilename, sizeof(logfilename), "%s-%d.log", 
                             pass_logfilename ? 
                             pass_logfilename : DEFAULT_PASS_LOGFILENAME, i);
                    if (codec->flags & CODEC_FLAG_PASS1) {
                        f = fopen(logfilename, "w");
                        if (!f) {
                            perror(logfilename);
                            exit(1);
                        }
                        ost->logfile = f;
                    } else {
                        /* read the log file */
                        f = fopen(logfilename, "r");
                        if (!f) {
                            perror(logfilename);
                            exit(1);
                        }
                        fseek(f, 0, SEEK_END);
                        size = ftell(f);
                        fseek(f, 0, SEEK_SET);
                        logbuffer = av_malloc(size + 1);
                        if (!logbuffer) {
                            fprintf(stderr, "Could not allocate log buffer\n");
                            exit(1);
                        }
                        fread(logbuffer, 1, size, f);
                        fclose(f);
                        logbuffer[size] = '\0';
                        codec->stats_in = logbuffer;
    
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        }
    
    
        /* dump the file output parameters - cannot be done before in case
           of stream copy */
        for(i=0;i<nb_output_files;i++) {
            dump_format(output_files[i], i, output_files[i]->filename, 1);
        }
    
        /* dump the stream mapping */
        fprintf(stderr, "Stream mapping:\n");
        for(i=0;i<nb_ostreams;i++) {
            ost = ost_table[i];
            fprintf(stderr, "  Stream #%d.%d -> #%d.%d\n",
                    ist_table[ost->source_index]->file_index,
                    ist_table[ost->source_index]->index,
                    ost->file_index, 
                    ost->index);
        }
    
    
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        /* open each encoder */
        for(i=0;i<nb_ostreams;i++) {
            ost = ost_table[i];
            if (ost->encoding_needed) {
                AVCodec *codec;
                codec = avcodec_find_encoder(ost->st->codec.codec_id);
                if (!codec) {
                    fprintf(stderr, "Unsupported codec for output stream #%d.%d\n", 
                            ost->file_index, ost->index);
                    exit(1);
                }
                if (avcodec_open(&ost->st->codec, codec) < 0) {
                    fprintf(stderr, "Error while opening codec for stream #%d.%d - maybe incorrect parameters such as bit_rate, rate, width or height\n", 
                            ost->file_index, ost->index);
                    exit(1);
                }
            }
        }
    
        /* open each decoder */
        for(i=0;i<nb_istreams;i++) {
            ist = ist_table[i];
            if (ist->decoding_needed) {
                AVCodec *codec;
                codec = avcodec_find_decoder(ist->st->codec.codec_id);
                if (!codec) {
    
                    fprintf(stderr, "Unsupported codec (id=%d) for input stream #%d.%d\n", 
                            ist->st->codec.codec_id, ist->file_index, ist->index);
    
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                    exit(1);
                }
                if (avcodec_open(&ist->st->codec, codec) < 0) {
                    fprintf(stderr, "Error while opening codec for input stream #%d.%d\n", 
                            ist->file_index, ist->index);
                    exit(1);
                }
    
                //if (ist->st->codec.codec_type == CODEC_TYPE_VIDEO)
                //    ist->st->codec.flags |= CODEC_FLAG_REPEAT_FIELD;
    
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            }
        }
    
        /* init pts */
        for(i=0;i<nb_istreams;i++) {
            ist = ist_table[i];
    
    	is = input_files[ist->file_index];
    
            ist->pts = 0;
    
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        }
        
        /* compute buffer size max (should use a complete heuristic) */
        for(i=0;i<nb_input_files;i++) {
            file_table[i].buffer_size_max = 2048;
        }
    
        /* open files and write file headers */
        for(i=0;i<nb_output_files;i++) {
            os = output_files[i];
    
            if (av_write_header(os) < 0) {
    
                fprintf(stderr, "Could not write header for output file #%d (incorrect codec paramters ?)\n", i);
                ret = -EINVAL;
                goto fail;
            }
    
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        }
    
    
        if ( !using_stdin )
            fprintf(stderr, "Press [q] to stop encoding\n");
    
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            int file_index, ist_index;
            AVPacket pkt;
    
            uint8_t *ptr;
    
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            int len;
    
            uint8_t *data_buf;
    
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            int data_size, got_picture;
            AVPicture picture;
            short samples[AVCODEC_MAX_AUDIO_FRAME_SIZE / 2];
    
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        redo:
    
                /* read_key() returns 0 on EOF */
                key = read_key();
                if (key == 'q')
                    break;
            }
    
            /* select the stream that we must read now by looking at the
               smallest output pts */
    
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            file_index = -1;
    
            pts_min = 1e10;
            for(i=0;i<nb_ostreams;i++) {
                double pts;
                ost = ost_table[i];
                os = output_files[ost->file_index];
                ist = ist_table[ost->source_index];
                pts = (double)ost->st->pts.val * os->pts_num / os->pts_den;
                if (!file_table[ist->file_index].eof_reached && 
                    pts < pts_min) {
                    pts_min = pts;
    
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                    file_index = ist->file_index;
                }
            }
            /* if none, if is finished */
    
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                break;
    
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            /* finish if recording time exhausted */
    
            if (recording_time > 0 && pts_min >= (recording_time / 1000000.0))
    
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                break;
    
            /* read a frame from it and output it in the fifo */
    
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            is = input_files[file_index];
    
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                file_table[file_index].eof_reached = 1;
                continue;
            }
    
            if (!pkt.size) {
                stream_no_data = is;
            } else {
                stream_no_data = 0;
            }
    
            if (do_pkt_dump) {
                av_pkt_dump(stdout, &pkt, do_hex_dump);
    
            /* the following test is needed in case new streams appear
               dynamically in stream : we ignore them */
            if (pkt.stream_index >= file_table[file_index].nb_streams)
    
                goto discard_packet;
    
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            ist_index = file_table[file_index].ist_index + pkt.stream_index;
            ist = ist_table[ist_index];
    
            if (ist->discard)
                goto discard_packet;
    
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            //fprintf(stderr,"read #%d.%d size=%d\n", ist->file_index, ist->index, pkt.size);
    
            
            if (pkt.pts != AV_NOPTS_VALUE) {
                ist->pts = pkt.pts;
            } else {
                ist->pts = ist->next_pts;
            }
    
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            len = pkt.size;
            ptr = pkt.data;
    
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            while (len > 0) {
    
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                data_buf = NULL; /* fail safe */
                data_size = 0;
                if (ist->decoding_needed) {
                    switch(ist->st->codec.codec_type) {
                    case CODEC_TYPE_AUDIO:
    
                        /* XXX: could avoid copy if PCM 16 bits with same
                           endianness as CPU */
                        ret = avcodec_decode_audio(&ist->st->codec, samples, &data_size,
                                                   ptr, len);
                        if (ret < 0)
                            goto fail_decode;
    
                        /* Some bug in mpeg audio decoder gives */
                        /* data_size < 0, it seems they are overflows */
                        if (data_size <= 0) {
    
                            /* no audio frame */
                            continue;
    
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                        }
    
                        data_buf = (uint8_t *)samples;
    
                        ist->next_pts += ((int64_t)AV_TIME_BASE * data_size) / 
                            (2 * ist->st->codec.channels);
    
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                        break;
                    case CODEC_TYPE_VIDEO:
    
                            AVFrame big_picture;
    
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                            data_size = (ist->st->codec.width * ist->st->codec.height * 3) / 2;
                            ret = avcodec_decode_video(&ist->st->codec, 
    
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                                                       &big_picture, &got_picture, ptr, len);
                            picture= *(AVPicture*)&big_picture;
                            ist->st->quality= big_picture.quality;
    
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                            if (ret < 0) {
                            fail_decode:
                                fprintf(stderr, "Error while decoding stream #%d.%d\n",
                                        ist->file_index, ist->index);
                                av_free_packet(&pkt);
                                goto redo;
                            }
    
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                            if (!got_picture) {
    
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                                /* no picture yet */
    
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                            }
    
                            if (ist->st->codec.frame_rate_base != 0) {
                                ist->next_pts += ((int64_t)AV_TIME_BASE * 
                                    ist->st->codec.frame_rate_base) /
                                    ist->st->codec.frame_rate;
                            }
                            len = 0;
    
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                        }
                        break;
                    default:
                        goto fail_decode;
                    }
                } else {
                    data_buf = ptr;
                    data_size = len;
                    ret = len;
    
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                }
    
    
                if (ist->st->codec.codec_type == CODEC_TYPE_VIDEO) {
                    pre_process_video_frame(ist, &picture, &buffer_to_free);
                }
    
    
                /* frame rate emulation */
                if (ist->st->codec.rate_emu) {
    
                    int64_t pts = av_rescale((int64_t) ist->frame * ist->st->codec.frame_rate_base, 1000000, ist->st->codec.frame_rate);
    
                    int64_t now = av_gettime() - ist->start;
                    if (pts > now)
                        usleep(pts - now);
    
                    ist->frame++;
                }
    
    
    #if 0
                /* mpeg PTS deordering : if it is a P or I frame, the PTS
                   is the one of the next displayed one */
                /* XXX: add mpeg4 too ? */
                if (ist->st->codec.codec_id == CODEC_ID_MPEG1VIDEO) {
                    if (ist->st->codec.pict_type != B_TYPE) {
    
                        int64_t tmp;
    
                        tmp = ist->last_ip_pts;
                        ist->last_ip_pts  = ist->frac_pts.val;
                        ist->frac_pts.val = tmp;
                    }
                }
    #endif
    
                /* if output time reached then transcode raw format, 
    
    	       encode packets and output them */
    
                if (start_time == 0 || ist->pts >= start_time)
                    for(i=0;i<nb_ostreams;i++) {
                        int frame_size;
    
                        ost = ost_table[i];
                        if (ost->source_index == ist_index) {
                            os = output_files[ost->file_index];
    
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                            printf("%d: got pts=%0.3f %0.3f\n", i, 
                                   (double)pkt.pts / AV_TIME_BASE, 
                                   ((double)ist->pts / AV_TIME_BASE) - 
                                   ((double)ost->st->pts.val * os->pts_num / os->pts_den));
    
                            /* set the input output pts pairs */
                            ost->sync_ipts = (double)ist->pts / AV_TIME_BASE;
                            /* XXX: take into account the various fifos,
                               in particular for audio */
                            ost->sync_opts = ost->st->pts.val;
                            //printf("ipts=%lld sync_ipts=%f sync_opts=%lld pts.val=%lld pkt.pts=%lld\n", ist->pts, ost->sync_ipts, ost->sync_opts, ost->st->pts.val, pkt.pts); 
    
                            if (ost->encoding_needed) {
                                switch(ost->st->codec.codec_type) {
                                case CODEC_TYPE_AUDIO:
                                    do_audio_out(os, ost, ist, data_buf, data_size);
                                    break;
                                case CODEC_TYPE_VIDEO:
                                    /* find an audio stream for synchro */
                                    {
                                        int i;
                                        AVOutputStream *audio_sync, *ost1;
                                        audio_sync = NULL;
                                        for(i=0;i<nb_ostreams;i++) {
                                            ost1 = ost_table[i];
                                            if (ost1->file_index == ost->file_index &&
                                                ost1->st->codec.codec_type == CODEC_TYPE_AUDIO) {
                                                audio_sync = ost1;
                                                break;
                                            }
    
                                        do_video_out(os, ost, ist, &picture, &frame_size, audio_sync);
                                        if (do_vstats && frame_size)
                                            do_video_stats(os, ost, frame_size);
                                    }
                                    break;
                                default:
                                    av_abort();
    
                                /* no reencoding needed : output the packet directly */
                                /* force the input stream PTS */
    
                                memset(&avframe, 0, sizeof(AVFrame));
                                ost->st->codec.coded_frame= &avframe;
                                avframe.key_frame = pkt.flags & PKT_FLAG_KEY; 
    
                                av_write_frame(os, ost->index, data_buf, data_size);
                                ost->st->codec.frame_number++;
                                ost->frame_number++;
                            }
    
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                        }
                    }
    
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            }
    
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            av_free_packet(&pkt);
            
    
            /* dump report by using the output first video and audio streams */
            print_report(output_files, ost_table, nb_ostreams, 0);
    
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        }
    
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        /* dump report by using the first video and audio streams */
    
        print_report(output_files, ost_table, nb_ostreams, 1);
    
    
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        /* close each encoder */
        for(i=0;i<nb_ostreams;i++) {
            ost = ost_table[i];
            if (ost->encoding_needed) {
    
                av_freep(&ost->st->codec.stats_in);
    
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                avcodec_close(&ost->st->codec);
            }
        }
        
        /* close each decoder */
        for(i=0;i<nb_istreams;i++) {
            ist = ist_table[i];
            if (ist->decoding_needed) {
                avcodec_close(&ist->st->codec);
            }
        }
        
    
        /* write the trailer if needed and close file */
        for(i=0;i<nb_output_files;i++) {
            os = output_files[i];
    
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        }
        /* finished ! */
        
        ret = 0;
     fail1:
    
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        av_free(file_table);
    
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        if (ist_table) {
            for(i=0;i<nb_istreams;i++) {
                ist = ist_table[i];
    
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                av_free(ist);
    
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            }
    
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            av_free(ist_table);
    
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        }
        if (ost_table) {
            for(i=0;i<nb_ostreams;i++) {
                ost = ost_table[i];
                if (ost) {
    
                    if (ost->logfile) {
                        fclose(ost->logfile);
                        ost->logfile = NULL;
                    }
    
                    fifo_free(&ost->fifo); /* works even if fifo is not
                                              initialized but set to zero */
    
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                    av_free(ost->pict_tmp.data[0]);
    
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                    if (ost->video_resample)
                        img_resample_close(ost->img_resample_ctx);
                    if (ost->audio_resample)
                        audio_resample_close(ost->resample);
    
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                    av_free(ost);
    
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                }
            }
    
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            av_free(ost_table);
    
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        }
        return ret;
     fail:
        ret = -ENOMEM;
        goto fail1;
    }
    
    #if 0
    int file_read(const char *filename)
    {
        URLContext *h;
        unsigned char buffer[1024];
        int len, i;
    
        if (url_open(&h, filename, O_RDONLY) < 0) {
            printf("could not open '%s'\n", filename);
            return -1;
        }
        for(;;) {
            len = url_read(h, buffer, sizeof(buffer));
            if (len <= 0)
                break;
            for(i=0;i<len;i++) putchar(buffer[i]);
        }
        url_close(h);
        return 0;
    }
    #endif
    
    
    static void opt_image_format(const char *arg)
    
    {
        AVImageFormat *f;
        
        for(f = first_image_format; f != NULL; f = f->next) {
            if (!strcmp(arg, f->name))
                break;
        }
        if (!f) {
            fprintf(stderr, "Unknown image format: '%s'\n", arg);
            exit(1);
        }
        image_format = f;
    }
    
    
    static void opt_format(const char *arg)
    
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    {
    
        /* compatibility stuff for pgmyuv */
        if (!strcmp(arg, "pgmyuv")) {
            opt_image_format(arg);
            arg = "image";
        }
    
    
        file_iformat = av_find_input_format(arg);
        file_oformat = guess_format(arg, NULL, NULL);
        if (!file_iformat && !file_oformat) {
            fprintf(stderr, "Unknown input or output format: %s\n", arg);
    
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            exit(1);
        }
    }
    
    
    static void opt_video_bitrate(const char *arg)
    
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    {
        video_bit_rate = atoi(arg) * 1000;
    }
    
    
    static void opt_video_bitrate_tolerance(const char *arg)
    
    {
        video_bit_rate_tolerance = atoi(arg) * 1000;
    }
    
    
    static void opt_video_bitrate_max(const char *arg)
    
    {
        video_rc_max_rate = atoi(arg) * 1000;
    }
    
    
    static void opt_video_bitrate_min(const char *arg)
    
    {
        video_rc_min_rate = atoi(arg) * 1000;
    }
    
    
    static void opt_video_buffer_size(const char *arg)
    
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    {
        video_rc_buffer_size = atoi(arg) * 1000;
    }
    
    
    static void opt_video_rc_eq(char *arg)
    
    {
        video_rc_eq = arg;
    }
    
    
    static void opt_video_rc_override_string(char *arg)
    
    static void opt_workaround_bugs(const char *arg)
    
    static void opt_dct_algo(const char *arg)
    
    static void opt_idct_algo(const char *arg)
    
    static void opt_error_resilience(const char *arg)
    
    {
        error_resilience = atoi(arg);
    }
    
    
    static void opt_error_concealment(const char *arg)
    
    static void opt_debug(const char *arg)
    
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    {
        debug = atoi(arg);
    }
    
    static void opt_verbose(const char *arg)
    {
        verbose = atoi(arg);
    }
    
    
    static void opt_frame_rate(const char *arg)
    
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    {
    
        if (parse_frame_rate(&frame_rate, &frame_rate_base, arg) < 0) {
            fprintf(stderr, "Incorrect frame rate\n");
    	exit(1);
        }
    
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    }
    
    
    static void opt_frame_crop_top(const char *arg)
    
    {
        frame_topBand = atoi(arg); 
        if (frame_topBand < 0) {
            fprintf(stderr, "Incorrect top crop size\n");
            exit(1);
        }
        if ((frame_topBand % 2) != 0) {
            fprintf(stderr, "Top crop size must be a multiple of 2\n");
            exit(1);
        }
        if ((frame_topBand) >= frame_height){
        	fprintf(stderr, "Vertical crop dimensions are outside the range of the original image.\nRemember to crop first and scale second.\n");
            exit(1);
        }
        frame_height -= frame_topBand;
    }
    
    
    static void opt_frame_crop_bottom(const char *arg)
    
    {
        frame_bottomBand = atoi(arg);
        if (frame_bottomBand < 0) {
            fprintf(stderr, "Incorrect bottom crop size\n");
            exit(1);
        }
        if ((frame_bottomBand % 2) != 0) {
            fprintf(stderr, "Bottom crop size must be a multiple of 2\n");
            exit(1);        
        }
        if ((frame_bottomBand) >= frame_height){
        	fprintf(stderr, "Vertical crop dimensions are outside the range of the original image.\nRemember to crop first and scale second.\n");
            exit(1);
        }
        frame_height -= frame_bottomBand;
    }
    
    
    static void opt_frame_crop_left(const char *arg)
    
    {
        frame_leftBand = atoi(arg);
        if (frame_leftBand < 0) {
            fprintf(stderr, "Incorrect left crop size\n");
            exit(1);
        }
        if ((frame_leftBand % 2) != 0) {
            fprintf(stderr, "Left crop size must be a multiple of 2\n");
            exit(1);
        }
        if ((frame_leftBand) >= frame_width){
        	fprintf(stderr, "Horizontal crop dimensions are outside the range of the original image.\nRemember to crop first and scale second.\n");
            exit(1);
        }
        frame_width -= frame_leftBand;
    }
    
    
    static void opt_frame_crop_right(const char *arg)
    
    {
        frame_rightBand = atoi(arg);
        if (frame_rightBand < 0) {
            fprintf(stderr, "Incorrect right crop size\n");
            exit(1);
        }
        if ((frame_rightBand % 2) != 0) {
            fprintf(stderr, "Right crop size must be a multiple of 2\n");
            exit(1);        
        }
        if ((frame_rightBand) >= frame_width){
        	fprintf(stderr, "Horizontal crop dimensions are outside the range of the original image.\nRemember to crop first and scale second.\n");
            exit(1);
        }
        frame_width -= frame_rightBand;
    }
    
    
    static void opt_frame_size(const char *arg)
    
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    {
    
        if (parse_image_size(&frame_width, &frame_height, arg) < 0) {
    
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            fprintf(stderr, "Incorrect frame size\n");
            exit(1);
        }
        if ((frame_width % 2) != 0 || (frame_height % 2) != 0) {
            fprintf(stderr, "Frame size must be a multiple of 2\n");
            exit(1);
        }
    }
    
    
    static void opt_frame_pix_fmt(const char *arg)
    {
        frame_pix_fmt = avcodec_get_pix_fmt(arg);
    }
    
    
    static void opt_frame_aspect_ratio(const char *arg)
    {
        int x = 0, y = 0;
        double ar = 0;
        const char *p;
        
        p = strchr(arg, ':');
        if (p) {
            x = strtol(arg, (char **)&arg, 10);
    	if (arg == p)
    	    y = strtol(arg+1, (char **)&arg, 10);
    	if (x > 0 && y > 0)
    	    ar = (double)x / (double)y;
        } else
            ar = strtod(arg, (char **)&arg);
    
        if (!ar) {
            fprintf(stderr, "Incorrect aspect ratio specification.\n");
    	exit(1);
        }
        frame_aspect_ratio = ar;
    }
    
    
    static void opt_gop_size(const char *arg)
    
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    {
        gop_size = atoi(arg);
    }
    
    
    static void opt_b_frames(const char *arg)
    
    {
        b_frames = atoi(arg);
        if (b_frames > FF_MAX_B_FRAMES) {
            fprintf(stderr, "\nCannot have more than %d B frames, increase FF_MAX_B_FRAMES.\n", FF_MAX_B_FRAMES);
            exit(1);
        } else if (b_frames < 1) {
            fprintf(stderr, "\nNumber of B frames must be higher than 0\n");
            exit(1);
        }
    }
    
    
    static void opt_mb_decision(const char *arg)
    {
        mb_decision = atoi(arg);
    }
    
    
    static void opt_qscale(const char *arg)
    
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    {
    
        video_qscale = atof(arg);
        if (video_qscale < 0.01 ||
            video_qscale > 255) {
            fprintf(stderr, "qscale must be >= 0.01 and <= 255\n");
    
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            exit(1);
        }
    }
    
    
    static void opt_qmin(const char *arg)
    
    {
        video_qmin = atoi(arg);
        if (video_qmin < 0 ||
            video_qmin > 31) {
            fprintf(stderr, "qmin must be >= 1 and <= 31\n");
            exit(1);
        }
    }
    
    
    static void opt_qmax(const char *arg)
    
    {
        video_qmax = atoi(arg);
        if (video_qmax < 0 ||
            video_qmax > 31) {
            fprintf(stderr, "qmax must be >= 1 and <= 31\n");
            exit(1);
        }
    }
    
    
    static void opt_mb_qmin(const char *arg)
    
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    {
        video_mb_qmin = atoi(arg);
        if (video_mb_qmin < 0 ||
            video_mb_qmin > 31) {
            fprintf(stderr, "qmin must be >= 1 and <= 31\n");
            exit(1);
        }
    }
    
    
    static void opt_mb_qmax(const char *arg)
    
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    {
        video_mb_qmax = atoi(arg);
        if (video_mb_qmax < 0 ||
            video_mb_qmax > 31) {
            fprintf(stderr, "qmax must be >= 1 and <= 31\n");
            exit(1);
        }
    }
    
    
    static void opt_qdiff(const char *arg)
    
    {
        video_qdiff = atoi(arg);
        if (video_qdiff < 0 ||
            video_qdiff > 31) {
            fprintf(stderr, "qdiff must be >= 1 and <= 31\n");
            exit(1);
        }
    }
    
    
    static void opt_qblur(const char *arg)
    
    {
        video_qblur = atof(arg);
    }
    
    
    static void opt_qcomp(const char *arg)
    
    {
        video_qcomp = atof(arg);
    }
    
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    static void opt_rc_initial_cplx(const char *arg)
    
    {
        video_rc_initial_cplx = atof(arg);
    }
    
    static void opt_b_qfactor(const char *arg)
    
    static void opt_i_qfactor(const char *arg)
    
    static void opt_b_qoffset(const char *arg)
    
    static void opt_i_qoffset(const char *arg)
    
    static void opt_packet_size(const char *arg)
    
    static void opt_strict(const char *arg)
    
    {
        strict= atoi(arg);
    }
    
    
    static void opt_audio_bitrate(const char *arg)
    
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    {
        audio_bit_rate = atoi(arg) * 1000;
    }
    
    
    static void opt_audio_rate(const char *arg)
    
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    {
        audio_sample_rate = atoi(arg);
    }
    
    
    static void opt_audio_channels(const char *arg)
    
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    {
        audio_channels = atoi(arg);
    }
    
    
    static void opt_video_device(const char *arg)
    
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    {
    
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        video_device = av_strdup(arg);
    
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    }
    
    
    static void opt_video_channel(const char *arg)
    
    static void opt_video_standard(const char *arg)
    {
        video_standard = av_strdup(arg);
    }
    
    
    static void opt_audio_device(const char *arg)
    
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    {
    
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        audio_device = av_strdup(arg);
    
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    }
    
    
    static void opt_dv1394(const char *arg)
    
    {
        video_grab_format = "dv1394";
    
        audio_grab_format = NULL;
    
    static void opt_audio_codec(const char *arg)
    
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    {
        AVCodec *p;
    
    
        if (!strcmp(arg, "copy")) {
            audio_stream_copy = 1;
    
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        } else {
    
            p = first_avcodec;
            while (p) {
                if (!strcmp(p->name, arg) && p->type == CODEC_TYPE_AUDIO)
                    break;
                p = p->next;
            }
            if (p == NULL) {
                fprintf(stderr, "Unknown audio codec '%s'\n", arg);
                exit(1);
            } else {
                audio_codec_id = p->id;
            }
    
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        }
    }
    
    
    static void add_frame_hooker(const char *arg)
    
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        char *args = av_strdup(arg);
    
        argv[0] = strtok(args, " ");
        while (argc < 62 && (argv[++argc] = strtok(NULL, " "))) {
        }
    
        i = frame_hook_add(argc, argv);
    
        if (i != 0) {
            fprintf(stderr, "Failed to add video hook function: %s\n", arg);
            exit(1);
        }
    }
    
    
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    const char *motion_str[] = {
        "zero",
        "full",
        "log",
        "phods",
    
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        "epzs",
        "x1",
    
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        NULL,
    };
    
    
    static void opt_motion_estimation(const char *arg)
    
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    {
        const char **p;
        p = motion_str;
        for(;;) {
            if (!*p) {
                fprintf(stderr, "Unknown motion estimation method '%s'\n", arg);
                exit(1);
            }
            if (!strcmp(*p, arg))
                break;
            p++;
        }
    
        me_method = (p - motion_str) + 1;
    
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    }
    
    
    static void opt_video_codec(const char *arg)
    
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    {
        AVCodec *p;
    
    
        if (!strcmp(arg, "copy")) {
            video_stream_copy = 1;
    
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        } else {
    
            p = first_avcodec;
            while (p) {
                if (!strcmp(p->name, arg) && p->type == CODEC_TYPE_VIDEO)
                    break;
                p = p->next;
            }
            if (p == NULL) {
                fprintf(stderr, "Unknown video codec '%s'\n", arg);
                exit(1);
            } else {
                video_codec_id = p->id;
            }
    
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        }
    }
    
    
    static void opt_map(const char *arg)
    
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    {
        AVStreamMap *m;
        const char *p;
    
        p = arg;
        m = &stream_maps[nb_stream_maps++];
    
        m->file_index = strtol(arg, (char **)&p, 0);