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00022 #include "config.h"
00023 #include <ctype.h>
00024 #include <string.h>
00025 #include <math.h>
00026 #include <stdlib.h>
00027 #include <errno.h>
00028 #include <signal.h>
00029 #include <limits.h>
00030 #include <unistd.h>
00031 #include "libavformat/avformat.h"
00032 #include "libavdevice/avdevice.h"
00033 #include "libswscale/swscale.h"
00034 #include "libavutil/opt.h"
00035 #include "libavcodec/audioconvert.h"
00036 #include "libavutil/audioconvert.h"
00037 #include "libavutil/parseutils.h"
00038 #include "libavutil/samplefmt.h"
00039 #include "libavutil/colorspace.h"
00040 #include "libavutil/fifo.h"
00041 #include "libavutil/intreadwrite.h"
00042 #include "libavutil/dict.h"
00043 #include "libavutil/mathematics.h"
00044 #include "libavutil/pixdesc.h"
00045 #include "libavutil/avstring.h"
00046 #include "libavutil/libm.h"
00047 #include "libavformat/os_support.h"
00048 
00049 #include "libavformat/ffm.h" 
00050 
00051 #if CONFIG_AVFILTER
00052 # include "libavfilter/avcodec.h"
00053 # include "libavfilter/avfilter.h"
00054 # include "libavfilter/avfiltergraph.h"
00055 # include "libavfilter/buffersink.h"
00056 # include "libavfilter/vsrc_buffer.h"
00057 #endif
00058 
00059 #if HAVE_SYS_RESOURCE_H
00060 #include <sys/types.h>
00061 #include <sys/time.h>
00062 #include <sys/resource.h>
00063 #elif HAVE_GETPROCESSTIMES
00064 #include <windows.h>
00065 #endif
00066 #if HAVE_GETPROCESSMEMORYINFO
00067 #include <windows.h>
00068 #include <psapi.h>
00069 #endif
00070 
00071 #if HAVE_SYS_SELECT_H
00072 #include <sys/select.h>
00073 #endif
00074 
00075 #if HAVE_TERMIOS_H
00076 #include <fcntl.h>
00077 #include <sys/ioctl.h>
00078 #include <sys/time.h>
00079 #include <termios.h>
00080 #elif HAVE_KBHIT
00081 #include <conio.h>
00082 #endif
00083 #include <time.h>
00084 
00085 #include "cmdutils.h"
00086 
00087 #include "libavutil/avassert.h"
00088 
00089 const char program_name[] = "avconv";
00090 const int program_birth_year = 2000;
00091 
00092 
00093 typedef struct StreamMap {
00094     int disabled;           
00095     int file_index;
00096     int stream_index;
00097     int sync_file_index;
00098     int sync_stream_index;
00099 } StreamMap;
00100 
00104 typedef struct MetadataMap {
00105     int  file;      
00106     char type;      
00107     int  index;     
00108 } MetadataMap;
00109 
00110 static const OptionDef options[];
00111 
00112 #define MAX_STREAMS 1024    
00113 
00114 static int frame_bits_per_raw_sample = 0;
00115 static int video_discard = 0;
00116 static int same_quant = 0;
00117 static int do_deinterlace = 0;
00118 static int intra_dc_precision = 8;
00119 static int qp_hist = 0;
00120 
00121 static int file_overwrite = 0;
00122 static int no_file_overwrite = 0;
00123 static int do_benchmark = 0;
00124 static int do_hex_dump = 0;
00125 static int do_pkt_dump = 0;
00126 static int do_pass = 0;
00127 static const char *pass_logfilename_prefix;
00128 static int video_sync_method= -1;
00129 static int audio_sync_method= 0;
00130 static float audio_drift_threshold= 0.1;
00131 static int copy_ts= 0;
00132 static int copy_tb = 1;
00133 static int opt_shortest = 0;
00134 static char *vstats_filename;
00135 static FILE *vstats_file;
00136 
00137 static int audio_volume = 256;
00138 
00139 static int exit_on_error = 0;
00140 static int using_stdin = 0;
00141 static int run_as_daemon  = 0;
00142 static int q_pressed = 0;
00143 static int64_t video_size = 0;
00144 static int64_t audio_size = 0;
00145 static int64_t extra_size = 0;
00146 static int nb_frames_dup = 0;
00147 static int nb_frames_drop = 0;
00148 static int input_sync;
00149 
00150 static float dts_delta_threshold = 10;
00151 
00152 static int print_stats = 1;
00153 
00154 static uint8_t *audio_buf;
00155 static uint8_t *audio_out;
00156 static unsigned int allocated_audio_out_size, allocated_audio_buf_size;
00157 
00158 #define DEFAULT_PASS_LOGFILENAME_PREFIX "av2pass"
00159 
00160 typedef struct InputStream {
00161     int file_index;
00162     AVStream *st;
00163     int discard;             
00164     int decoding_needed;     
00165     AVCodec *dec;
00166     AVFrame *decoded_frame;
00167     AVFrame *filtered_frame;
00168 
00169     int64_t       start;     
00170     int64_t       next_pts;  
00171 
00172     int64_t       pts;       
00173     double ts_scale;
00174     int is_start;            
00175     int showed_multi_packet_warning;
00176     AVDictionary *opts;
00177 } InputStream;
00178 
00179 typedef struct InputFile {
00180     AVFormatContext *ctx;
00181     int eof_reached;      
00182     int ist_index;        
00183     int buffer_size;      
00184     int64_t ts_offset;
00185     int nb_streams;       
00186 
00187     int rate_emu;
00188 } InputFile;
00189 
00190 typedef struct OutputStream {
00191     int file_index;          
00192     int index;               
00193     int source_index;        
00194     AVStream *st;            
00195     int encoding_needed;     
00196     int frame_number;
00197     
00198 
00199     
00200     struct InputStream *sync_ist; 
00201     int64_t sync_opts;        
00202     AVBitStreamFilterContext *bitstream_filters;
00203     AVCodec *enc;
00204     int64_t max_frames;
00205 
00206     
00207     int video_resample;
00208     AVFrame resample_frame;              
00209     struct SwsContext *img_resample_ctx; 
00210     int resample_height;
00211     int resample_width;
00212     int resample_pix_fmt;
00213     AVRational frame_rate;
00214     int force_fps;
00215     int top_field_first;
00216 
00217     float frame_aspect_ratio;
00218 
00219     
00220     int64_t *forced_kf_pts;
00221     int forced_kf_count;
00222     int forced_kf_index;
00223 
00224     
00225     int audio_resample;
00226     ReSampleContext *resample; 
00227     int resample_sample_fmt;
00228     int resample_channels;
00229     int resample_sample_rate;
00230     int reformat_pair;
00231     AVAudioConvert *reformat_ctx;
00232     AVFifoBuffer *fifo;     
00233     FILE *logfile;
00234 
00235 #if CONFIG_AVFILTER
00236     AVFilterContext *output_video_filter;
00237     AVFilterContext *input_video_filter;
00238     AVFilterBufferRef *picref;
00239     char *avfilter;
00240     AVFilterGraph *graph;
00241 #endif
00242 
00243     int64_t sws_flags;
00244     AVDictionary *opts;
00245     int is_past_recording_time;
00246     int stream_copy;
00247     const char *attachment_filename;
00248     int copy_initial_nonkeyframes;
00249 } OutputStream;
00250 
00251 #if HAVE_TERMIOS_H
00252 
00253 
00254 static struct termios oldtty;
00255 #endif
00256 
00257 typedef struct OutputFile {
00258     AVFormatContext *ctx;
00259     AVDictionary *opts;
00260     int ost_index;       
00261     int64_t recording_time; 
00262     int64_t start_time;     
00263     uint64_t limit_filesize;
00264 } OutputFile;
00265 
00266 static InputStream *input_streams = NULL;
00267 static int         nb_input_streams = 0;
00268 static InputFile   *input_files   = NULL;
00269 static int         nb_input_files   = 0;
00270 
00271 static OutputStream *output_streams = NULL;
00272 static int        nb_output_streams = 0;
00273 static OutputFile   *output_files   = NULL;
00274 static int        nb_output_files   = 0;
00275 
00276 typedef struct OptionsContext {
00277     
00278     int64_t start_time;
00279     const char *format;
00280 
00281     SpecifierOpt *codec_names;
00282     int        nb_codec_names;
00283     SpecifierOpt *audio_channels;
00284     int        nb_audio_channels;
00285     SpecifierOpt *audio_sample_rate;
00286     int        nb_audio_sample_rate;
00287     SpecifierOpt *frame_rates;
00288     int        nb_frame_rates;
00289     SpecifierOpt *frame_sizes;
00290     int        nb_frame_sizes;
00291     SpecifierOpt *frame_pix_fmts;
00292     int        nb_frame_pix_fmts;
00293 
00294     
00295     int64_t input_ts_offset;
00296     int rate_emu;
00297 
00298     SpecifierOpt *ts_scale;
00299     int        nb_ts_scale;
00300     SpecifierOpt *dump_attachment;
00301     int        nb_dump_attachment;
00302 
00303     
00304     StreamMap *stream_maps;
00305     int     nb_stream_maps;
00306     
00307     MetadataMap (*meta_data_maps)[2];
00308     int nb_meta_data_maps;
00309     int metadata_global_manual;
00310     int metadata_streams_manual;
00311     int metadata_chapters_manual;
00312     const char **attachments;
00313     int       nb_attachments;
00314 
00315     int chapters_input_file;
00316 
00317     int64_t recording_time;
00318     uint64_t limit_filesize;
00319     float mux_preload;
00320     float mux_max_delay;
00321 
00322     int video_disable;
00323     int audio_disable;
00324     int subtitle_disable;
00325     int data_disable;
00326 
00327     
00328     int   *streamid_map;
00329     int nb_streamid_map;
00330 
00331     SpecifierOpt *metadata;
00332     int        nb_metadata;
00333     SpecifierOpt *max_frames;
00334     int        nb_max_frames;
00335     SpecifierOpt *bitstream_filters;
00336     int        nb_bitstream_filters;
00337     SpecifierOpt *codec_tags;
00338     int        nb_codec_tags;
00339     SpecifierOpt *sample_fmts;
00340     int        nb_sample_fmts;
00341     SpecifierOpt *qscale;
00342     int        nb_qscale;
00343     SpecifierOpt *forced_key_frames;
00344     int        nb_forced_key_frames;
00345     SpecifierOpt *force_fps;
00346     int        nb_force_fps;
00347     SpecifierOpt *frame_aspect_ratios;
00348     int        nb_frame_aspect_ratios;
00349     SpecifierOpt *rc_overrides;
00350     int        nb_rc_overrides;
00351     SpecifierOpt *intra_matrices;
00352     int        nb_intra_matrices;
00353     SpecifierOpt *inter_matrices;
00354     int        nb_inter_matrices;
00355     SpecifierOpt *top_field_first;
00356     int        nb_top_field_first;
00357     SpecifierOpt *presets;
00358     int        nb_presets;
00359     SpecifierOpt *copy_initial_nonkeyframes;
00360     int        nb_copy_initial_nonkeyframes;
00361 #if CONFIG_AVFILTER
00362     SpecifierOpt *filters;
00363     int        nb_filters;
00364 #endif
00365 } OptionsContext;
00366 
00367 #define MATCH_PER_STREAM_OPT(name, type, outvar, fmtctx, st)\
00368 {\
00369     int i, ret;\
00370     for (i = 0; i < o->nb_ ## name; i++) {\
00371         char *spec = o->name[i].specifier;\
00372         if ((ret = check_stream_specifier(fmtctx, st, spec)) > 0)\
00373             outvar = o->name[i].u.type;\
00374         else if (ret < 0)\
00375             exit_program(1);\
00376     }\
00377 }
00378 
00379 static void reset_options(OptionsContext *o)
00380 {
00381     const OptionDef *po = options;
00382 
00383     
00384     while (po->name) {
00385         void *dst = (uint8_t*)o + po->u.off;
00386 
00387         if (po->flags & OPT_SPEC) {
00388             SpecifierOpt **so = dst;
00389             int i, *count = (int*)(so + 1);
00390             for (i = 0; i < *count; i++) {
00391                 av_freep(&(*so)[i].specifier);
00392                 if (po->flags & OPT_STRING)
00393                     av_freep(&(*so)[i].u.str);
00394             }
00395             av_freep(so);
00396             *count = 0;
00397         } else if (po->flags & OPT_OFFSET && po->flags & OPT_STRING)
00398             av_freep(dst);
00399         po++;
00400     }
00401 
00402     av_freep(&o->stream_maps);
00403     av_freep(&o->meta_data_maps);
00404     av_freep(&o->streamid_map);
00405 
00406     memset(o, 0, sizeof(*o));
00407 
00408     o->mux_max_delay  = 0.7;
00409     o->recording_time = INT64_MAX;
00410     o->limit_filesize = UINT64_MAX;
00411     o->chapters_input_file = INT_MAX;
00412 
00413     uninit_opts();
00414     init_opts();
00415 }
00416 
00417 #if CONFIG_AVFILTER
00418 
00419 static int configure_video_filters(InputStream *ist, OutputStream *ost)
00420 {
00421     AVFilterContext *last_filter, *filter;
00423     AVCodecContext *codec = ost->st->codec;
00424     AVCodecContext *icodec = ist->st->codec;
00425     enum PixelFormat pix_fmts[] = { codec->pix_fmt, PIX_FMT_NONE };
00426     AVBufferSinkParams *buffersink_params = av_buffersink_params_alloc();
00427     AVRational sample_aspect_ratio;
00428     char args[255];
00429     int ret;
00430 
00431     ost->graph = avfilter_graph_alloc();
00432 
00433     if (ist->st->sample_aspect_ratio.num){
00434         sample_aspect_ratio = ist->st->sample_aspect_ratio;
00435     }else
00436         sample_aspect_ratio = ist->st->codec->sample_aspect_ratio;
00437 
00438     snprintf(args, 255, "%d:%d:%d:%d:%d:%d:%d", ist->st->codec->width,
00439              ist->st->codec->height, ist->st->codec->pix_fmt, 1, AV_TIME_BASE,
00440              sample_aspect_ratio.num, sample_aspect_ratio.den);
00441 
00442     ret = avfilter_graph_create_filter(&ost->input_video_filter, avfilter_get_by_name("buffer"),
00443                                        "src", args, NULL, ost->graph);
00444     if (ret < 0)
00445         return ret;
00446 #if FF_API_OLD_VSINK_API
00447     ret = avfilter_graph_create_filter(&ost->output_video_filter, avfilter_get_by_name("buffersink"),
00448                                        "out", NULL, pix_fmts, ost->graph);
00449 #else
00450     buffersink_params->pixel_fmts = pix_fmts;
00451     ret = avfilter_graph_create_filter(&ost->output_video_filter, avfilter_get_by_name("buffersink"),
00452                                        "out", NULL, buffersink_params, ost->graph);
00453 #endif
00454     av_freep(&buffersink_params);
00455     if (ret < 0)
00456         return ret;
00457     last_filter = ost->input_video_filter;
00458 
00459     if (codec->width  != icodec->width || codec->height != icodec->height) {
00460         snprintf(args, 255, "%d:%d:flags=0x%X",
00461                  codec->width,
00462                  codec->height,
00463                  (unsigned)ost->sws_flags);
00464         if ((ret = avfilter_graph_create_filter(&filter, avfilter_get_by_name("scale"),
00465                                                 NULL, args, NULL, ost->graph)) < 0)
00466             return ret;
00467         if ((ret = avfilter_link(last_filter, 0, filter, 0)) < 0)
00468             return ret;
00469         last_filter = filter;
00470     }
00471 
00472     snprintf(args, sizeof(args), "flags=0x%X", (unsigned)ost->sws_flags);
00473     ost->graph->scale_sws_opts = av_strdup(args);
00474 
00475     if (ost->avfilter) {
00476         AVFilterInOut *outputs = avfilter_inout_alloc();
00477         AVFilterInOut *inputs  = avfilter_inout_alloc();
00478 
00479         outputs->name    = av_strdup("in");
00480         outputs->filter_ctx = last_filter;
00481         outputs->pad_idx = 0;
00482         outputs->next    = NULL;
00483 
00484         inputs->name    = av_strdup("out");
00485         inputs->filter_ctx = ost->output_video_filter;
00486         inputs->pad_idx = 0;
00487         inputs->next    = NULL;
00488 
00489         if ((ret = avfilter_graph_parse(ost->graph, ost->avfilter, &inputs, &outputs, NULL)) < 0)
00490             return ret;
00491         av_freep(&ost->avfilter);
00492     } else {
00493         if ((ret = avfilter_link(last_filter, 0, ost->output_video_filter, 0)) < 0)
00494             return ret;
00495     }
00496 
00497     if ((ret = avfilter_graph_config(ost->graph, NULL)) < 0)
00498         return ret;
00499 
00500     codec->width  = ost->output_video_filter->inputs[0]->w;
00501     codec->height = ost->output_video_filter->inputs[0]->h;
00502     codec->sample_aspect_ratio = ost->st->sample_aspect_ratio =
00503         ost->frame_aspect_ratio ? 
00504         av_d2q(ost->frame_aspect_ratio*codec->height/codec->width, 255) :
00505         ost->output_video_filter->inputs[0]->sample_aspect_ratio;
00506 
00507     return 0;
00508 }
00509 #endif 
00510 
00511 static void term_exit(void)
00512 {
00513     av_log(NULL, AV_LOG_QUIET, "%s", "");
00514 #if HAVE_TERMIOS_H
00515     if(!run_as_daemon)
00516         tcsetattr (0, TCSANOW, &oldtty);
00517 #endif
00518 }
00519 
00520 static volatile int received_sigterm = 0;
00521 
00522 static void
00523 sigterm_handler(int sig)
00524 {
00525     received_sigterm = sig;
00526     q_pressed++;
00527     term_exit();
00528 }
00529 
00530 static void term_init(void)
00531 {
00532 #if HAVE_TERMIOS_H
00533     if(!run_as_daemon){
00534     struct termios tty;
00535 
00536     tcgetattr (0, &tty);
00537     oldtty = tty;
00538     atexit(term_exit);
00539 
00540     tty.c_iflag &= ~(IGNBRK|BRKINT|PARMRK|ISTRIP
00541                           |INLCR|IGNCR|ICRNL|IXON);
00542     tty.c_oflag |= OPOST;
00543     tty.c_lflag &= ~(ECHO|ECHONL|ICANON|IEXTEN);
00544     tty.c_cflag &= ~(CSIZE|PARENB);
00545     tty.c_cflag |= CS8;
00546     tty.c_cc[VMIN] = 1;
00547     tty.c_cc[VTIME] = 0;
00548 
00549     tcsetattr (0, TCSANOW, &tty);
00550     signal(SIGQUIT, sigterm_handler); 
00551     }
00552 #endif
00553 
00554     signal(SIGINT , sigterm_handler); 
00555     signal(SIGTERM, sigterm_handler); 
00556 #ifdef SIGXCPU
00557     signal(SIGXCPU, sigterm_handler);
00558 #endif
00559 }
00560 
00561 
00562 static int read_key(void)
00563 {
00564 #if HAVE_TERMIOS_H
00565     int n = 1;
00566     unsigned char ch;
00567     struct timeval tv;
00568     fd_set rfds;
00569 
00570     if(run_as_daemon)
00571         return -1;
00572 
00573     FD_ZERO(&rfds);
00574     FD_SET(0, &rfds);
00575     tv.tv_sec = 0;
00576     tv.tv_usec = 0;
00577     n = select(1, &rfds, NULL, NULL, &tv);
00578     if (n > 0) {
00579         n = read(0, &ch, 1);
00580         if (n == 1)
00581             return ch;
00582 
00583         return n;
00584     }
00585 #elif HAVE_KBHIT
00586     if(kbhit())
00587         return(getch());
00588 #endif
00589     return -1;
00590 }
00591 
00592 static int decode_interrupt_cb(void *ctx)
00593 {
00594     q_pressed += read_key() == 'q';
00595     return q_pressed > 1;
00596 }
00597 
00598 static const AVIOInterruptCB int_cb = { decode_interrupt_cb, NULL };
00599 
00600 void exit_program(int ret)
00601 {
00602     int i;
00603 
00604     
00605     for(i=0;i<nb_output_files;i++) {
00606         AVFormatContext *s = output_files[i].ctx;
00607         if (!(s->oformat->flags & AVFMT_NOFILE) && s->pb)
00608             avio_close(s->pb);
00609         avformat_free_context(s);
00610         av_dict_free(&output_files[i].opts);
00611     }
00612     for(i=0;i<nb_input_files;i++) {
00613         av_close_input_file(input_files[i].ctx);
00614     }
00615     for (i = 0; i < nb_input_streams; i++) {
00616         av_freep(&input_streams[i].decoded_frame);
00617         av_freep(&input_streams[i].filtered_frame);
00618         av_dict_free(&input_streams[i].opts);
00619     }
00620 
00621     if (vstats_file)
00622         fclose(vstats_file);
00623     av_free(vstats_filename);
00624 
00625     av_freep(&input_streams);
00626     av_freep(&input_files);
00627     av_freep(&output_streams);
00628     av_freep(&output_files);
00629 
00630     uninit_opts();
00631     av_free(audio_buf);
00632     av_free(audio_out);
00633     allocated_audio_buf_size= allocated_audio_out_size= 0;
00634 
00635 #if CONFIG_AVFILTER
00636     avfilter_uninit();
00637 #endif
00638     avformat_network_deinit();
00639 
00640     if (received_sigterm) {
00641         av_log(NULL, AV_LOG_INFO, "Received signal %d: terminating.\n",
00642                (int) received_sigterm);
00643         exit (255);
00644     }
00645 
00646     exit(ret);
00647 }
00648 
00649 static void assert_avoptions(AVDictionary *m)
00650 {
00651     AVDictionaryEntry *t;
00652     if ((t = av_dict_get(m, "", NULL, AV_DICT_IGNORE_SUFFIX))) {
00653         av_log(NULL, AV_LOG_FATAL, "Option %s not found.\n", t->key);
00654         exit_program(1);
00655     }
00656 }
00657 
00658 static void assert_codec_experimental(AVCodecContext *c, int encoder)
00659 {
00660     const char *codec_string = encoder ? "encoder" : "decoder";
00661     AVCodec *codec;
00662     if (c->codec->capabilities & CODEC_CAP_EXPERIMENTAL &&
00663         c->strict_std_compliance > FF_COMPLIANCE_EXPERIMENTAL) {
00664         av_log(NULL, AV_LOG_FATAL, "%s '%s' is experimental and might produce bad "
00665                 "results.\nAdd '-strict experimental' if you want to use it.\n",
00666                 codec_string, c->codec->name);
00667         codec = encoder ? avcodec_find_encoder(c->codec->id) : avcodec_find_decoder(c->codec->id);
00668         if (!(codec->capabilities & CODEC_CAP_EXPERIMENTAL))
00669             av_log(NULL, AV_LOG_FATAL, "Or use the non experimental %s '%s'.\n",
00670                    codec_string, codec->name);
00671         exit_program(1);
00672     }
00673 }
00674 
00675 static void choose_sample_fmt(AVStream *st, AVCodec *codec)
00676 {
00677     if(codec && codec->sample_fmts){
00678         const enum AVSampleFormat *p= codec->sample_fmts;
00679         for(; *p!=-1; p++){
00680             if(*p == st->codec->sample_fmt)
00681                 break;
00682         }
00683         if (*p == -1) {
00684             if((codec->capabilities & CODEC_CAP_LOSSLESS) && av_get_sample_fmt_name(st->codec->sample_fmt) > av_get_sample_fmt_name(codec->sample_fmts[0]))
00685                 av_log(NULL, AV_LOG_ERROR, "Convertion will not be lossless'\n");
00686             if(av_get_sample_fmt_name(st->codec->sample_fmt))
00687             av_log(NULL, AV_LOG_WARNING,
00688                    "Incompatible sample format '%s' for codec '%s', auto-selecting format '%s'\n",
00689                    av_get_sample_fmt_name(st->codec->sample_fmt),
00690                    codec->name,
00691                    av_get_sample_fmt_name(codec->sample_fmts[0]));
00692             st->codec->sample_fmt = codec->sample_fmts[0];
00693         }
00694     }
00695 }
00696 
00697 static void choose_sample_rate(AVStream *st, AVCodec *codec)
00698 {
00699     if(codec && codec->supported_samplerates){
00700         const int *p= codec->supported_samplerates;
00701         int best=0;
00702         int best_dist=INT_MAX;
00703         for(; *p; p++){
00704             int dist= abs(st->codec->sample_rate - *p);
00705             if(dist < best_dist){
00706                 best_dist= dist;
00707                 best= *p;
00708             }
00709         }
00710         if(best_dist){
00711             av_log(st->codec, AV_LOG_WARNING, "Requested sampling rate unsupported using closest supported (%d)\n", best);
00712         }
00713         st->codec->sample_rate= best;
00714     }
00715 }
00716 
00717 static void choose_pixel_fmt(AVStream *st, AVCodec *codec)
00718 {
00719     if(codec && codec->pix_fmts){
00720         const enum PixelFormat *p= codec->pix_fmts;
00721         if(st->codec->strict_std_compliance <= FF_COMPLIANCE_UNOFFICIAL){
00722             if(st->codec->codec_id==CODEC_ID_MJPEG){
00723                 p= (const enum PixelFormat[]){PIX_FMT_YUVJ420P, PIX_FMT_YUVJ422P, PIX_FMT_YUV420P, PIX_FMT_YUV422P, PIX_FMT_NONE};
00724             }else if(st->codec->codec_id==CODEC_ID_LJPEG){
00725                 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};
00726             }
00727         }
00728         for (; *p != PIX_FMT_NONE; p++) {
00729             if(*p == st->codec->pix_fmt)
00730                 break;
00731         }
00732         if (*p == PIX_FMT_NONE) {
00733             if(st->codec->pix_fmt != PIX_FMT_NONE)
00734                 av_log(NULL, AV_LOG_WARNING,
00735                         "Incompatible pixel format '%s' for codec '%s', auto-selecting format '%s'\n",
00736                         av_pix_fmt_descriptors[st->codec->pix_fmt].name,
00737                         codec->name,
00738                         av_pix_fmt_descriptors[codec->pix_fmts[0]].name);
00739             st->codec->pix_fmt = codec->pix_fmts[0];
00740         }
00741     }
00742 }
00743 
00744 static double
00745 get_sync_ipts(const OutputStream *ost)
00746 {
00747     const InputStream *ist = ost->sync_ist;
00748     OutputFile *of = &output_files[ost->file_index];
00749     return (double)(ist->pts - of->start_time)/AV_TIME_BASE;
00750 }
00751 
00752 static void write_frame(AVFormatContext *s, AVPacket *pkt, AVCodecContext *avctx, AVBitStreamFilterContext *bsfc){
00753     int ret;
00754 
00755     while(bsfc){
00756         AVPacket new_pkt= *pkt;
00757         int a= av_bitstream_filter_filter(bsfc, avctx, NULL,
00758                                           &new_pkt.data, &new_pkt.size,
00759                                           pkt->data, pkt->size,
00760                                           pkt->flags & AV_PKT_FLAG_KEY);
00761         if(a>0){
00762             av_free_packet(pkt);
00763             new_pkt.destruct= av_destruct_packet;
00764         } else if(a<0){
00765             av_log(NULL, AV_LOG_ERROR, "%s failed for stream %d, codec %s",
00766                    bsfc->filter->name, pkt->stream_index,
00767                    avctx->codec ? avctx->codec->name : "copy");
00768             print_error("", a);
00769             if (exit_on_error)
00770                 exit_program(1);
00771         }
00772         *pkt= new_pkt;
00773 
00774         bsfc= bsfc->next;
00775     }
00776 
00777     ret= av_interleaved_write_frame(s, pkt);
00778     if(ret < 0){
00779         print_error("av_interleaved_write_frame()", ret);
00780         exit_program(1);
00781     }
00782 }
00783 
00784 static void generate_silence(uint8_t* buf, enum AVSampleFormat sample_fmt, size_t size)
00785 {
00786     int fill_char = 0x00;
00787     if (sample_fmt == AV_SAMPLE_FMT_U8)
00788         fill_char = 0x80;
00789     memset(buf, fill_char, size);
00790 }
00791 
00792 static void do_audio_out(AVFormatContext *s, OutputStream *ost,
00793                          InputStream *ist, AVFrame *decoded_frame)
00794 {
00795     uint8_t *buftmp;
00796     int64_t audio_out_size, audio_buf_size;
00797 
00798     int size_out, frame_bytes, ret, resample_changed;
00799     AVCodecContext *enc= ost->st->codec;
00800     AVCodecContext *dec= ist->st->codec;
00801     int osize = av_get_bytes_per_sample(enc->sample_fmt);
00802     int isize = av_get_bytes_per_sample(dec->sample_fmt);
00803     const int coded_bps = av_get_bits_per_sample(enc->codec->id);
00804     uint8_t *buf = decoded_frame->data[0];
00805     int size     = decoded_frame->nb_samples * dec->channels * isize;
00806     int64_t allocated_for_size = size;
00807 
00808 need_realloc:
00809     audio_buf_size= (allocated_for_size + isize*dec->channels - 1) / (isize*dec->channels);
00810     audio_buf_size= (audio_buf_size*enc->sample_rate + dec->sample_rate) / dec->sample_rate;
00811     audio_buf_size= audio_buf_size*2 + 10000; 
00812     audio_buf_size= FFMAX(audio_buf_size, enc->frame_size);
00813     audio_buf_size*= osize*enc->channels;
00814 
00815     audio_out_size= FFMAX(audio_buf_size, enc->frame_size * osize * enc->channels);
00816     if(coded_bps > 8*osize)
00817         audio_out_size= audio_out_size * coded_bps / (8*osize);
00818     audio_out_size += FF_MIN_BUFFER_SIZE;
00819 
00820     if(audio_out_size > INT_MAX || audio_buf_size > INT_MAX){
00821         av_log(NULL, AV_LOG_FATAL, "Buffer sizes too large\n");
00822         exit_program(1);
00823     }
00824 
00825     av_fast_malloc(&audio_buf, &allocated_audio_buf_size, audio_buf_size);
00826     av_fast_malloc(&audio_out, &allocated_audio_out_size, audio_out_size);
00827     if (!audio_buf || !audio_out){
00828         av_log(NULL, AV_LOG_FATAL, "Out of memory in do_audio_out\n");
00829         exit_program(1);
00830     }
00831 
00832     if (enc->channels != dec->channels)
00833         ost->audio_resample = 1;
00834 
00835     resample_changed = ost->resample_sample_fmt  != dec->sample_fmt ||
00836                        ost->resample_channels    != dec->channels   ||
00837                        ost->resample_sample_rate != dec->sample_rate;
00838 
00839     if ((ost->audio_resample && !ost->resample) || resample_changed) {
00840         if (resample_changed) {
00841             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",
00842                    ist->file_index, ist->st->index,
00843                    ost->resample_sample_rate, av_get_sample_fmt_name(ost->resample_sample_fmt), ost->resample_channels,
00844                    dec->sample_rate, av_get_sample_fmt_name(dec->sample_fmt), dec->channels);
00845             ost->resample_sample_fmt  = dec->sample_fmt;
00846             ost->resample_channels    = dec->channels;
00847             ost->resample_sample_rate = dec->sample_rate;
00848             if (ost->resample)
00849                 audio_resample_close(ost->resample);
00850         }
00851         
00852         if (audio_sync_method <= 1 &&
00853             ost->resample_sample_fmt  == enc->sample_fmt &&
00854             ost->resample_channels    == enc->channels   &&
00855             ost->resample_sample_rate == enc->sample_rate) {
00856             ost->resample = NULL;
00857             ost->audio_resample = 0;
00858         } else {
00859             if (dec->sample_fmt != AV_SAMPLE_FMT_S16)
00860                 av_log(NULL, AV_LOG_WARNING, "Using s16 intermediate sample format for resampling\n");
00861             ost->resample = av_audio_resample_init(enc->channels,    dec->channels,
00862                                                    enc->sample_rate, dec->sample_rate,
00863                                                    enc->sample_fmt,  dec->sample_fmt,
00864                                                    16, 10, 0, 0.8);
00865             if (!ost->resample) {
00866                 av_log(NULL, AV_LOG_FATAL, "Can not resample %d channels @ %d Hz to %d channels @ %d Hz\n",
00867                        dec->channels, dec->sample_rate,
00868                        enc->channels, enc->sample_rate);
00869                 exit_program(1);
00870             }
00871         }
00872     }
00873 
00874 #define MAKE_SFMT_PAIR(a,b) ((a)+AV_SAMPLE_FMT_NB*(b))
00875     if (!ost->audio_resample && dec->sample_fmt!=enc->sample_fmt &&
00876         MAKE_SFMT_PAIR(enc->sample_fmt,dec->sample_fmt)!=ost->reformat_pair) {
00877         if (ost->reformat_ctx)
00878             av_audio_convert_free(ost->reformat_ctx);
00879         ost->reformat_ctx = av_audio_convert_alloc(enc->sample_fmt, 1,
00880                                                    dec->sample_fmt, 1, NULL, 0);
00881         if (!ost->reformat_ctx) {
00882             av_log(NULL, AV_LOG_FATAL, "Cannot convert %s sample format to %s sample format\n",
00883                    av_get_sample_fmt_name(dec->sample_fmt),
00884                    av_get_sample_fmt_name(enc->sample_fmt));
00885             exit_program(1);
00886         }
00887         ost->reformat_pair=MAKE_SFMT_PAIR(enc->sample_fmt,dec->sample_fmt);
00888     }
00889 
00890     if(audio_sync_method){
00891         double delta = get_sync_ipts(ost) * enc->sample_rate - ost->sync_opts
00892                 - av_fifo_size(ost->fifo)/(enc->channels * osize);
00893         int idelta = delta * dec->sample_rate / enc->sample_rate;
00894         int byte_delta = idelta * isize * dec->channels;
00895 
00896         
00897         if(fabs(delta) > 50){
00898             if(ist->is_start || fabs(delta) > audio_drift_threshold*enc->sample_rate){
00899                 if(byte_delta < 0){
00900                     byte_delta= FFMAX(byte_delta, -size);
00901                     size += byte_delta;
00902                     buf  -= byte_delta;
00903                     av_log(NULL, AV_LOG_VERBOSE, "discarding %d audio samples\n",
00904                            -byte_delta / (isize * dec->channels));
00905                     if(!size)
00906                         return;
00907                     ist->is_start=0;
00908                 }else{
00909                     static uint8_t *input_tmp= NULL;
00910                     input_tmp= av_realloc(input_tmp, byte_delta + size);
00911 
00912                     if(byte_delta > allocated_for_size - size){
00913                         allocated_for_size= byte_delta + (int64_t)size;
00914                         goto need_realloc;
00915                     }
00916                     ist->is_start=0;
00917 
00918                     generate_silence(input_tmp, dec->sample_fmt, byte_delta);
00919                     memcpy(input_tmp + byte_delta, buf, size);
00920                     buf= input_tmp;
00921                     size += byte_delta;
00922                     av_log(NULL, AV_LOG_VERBOSE, "adding %d audio samples of silence\n", idelta);
00923                 }
00924             }else if(audio_sync_method>1){
00925                 int comp= av_clip(delta, -audio_sync_method, audio_sync_method);
00926                 av_assert0(ost->audio_resample);
00927                 av_log(NULL, AV_LOG_VERBOSE, "compensating audio timestamp drift:%f compensation:%d in:%d\n",
00928                        delta, comp, enc->sample_rate);
00929 
00930                 av_resample_compensate(*(struct AVResampleContext**)ost->resample, comp, enc->sample_rate);
00931             }
00932         }
00933     }else
00934         ost->sync_opts= lrintf(get_sync_ipts(ost) * enc->sample_rate)
00935                         - av_fifo_size(ost->fifo)/(enc->channels * osize); 
00936 
00937     if (ost->audio_resample) {
00938         buftmp = audio_buf;
00939         size_out = audio_resample(ost->resample,
00940                                   (short *)buftmp, (short *)buf,
00941                                   size / (dec->channels * isize));
00942         size_out = size_out * enc->channels * osize;
00943     } else {
00944         buftmp = buf;
00945         size_out = size;
00946     }
00947 
00948     if (!ost->audio_resample && dec->sample_fmt!=enc->sample_fmt) {
00949         const void *ibuf[6]= {buftmp};
00950         void *obuf[6]= {audio_buf};
00951         int istride[6]= {isize};
00952         int ostride[6]= {osize};
00953         int len= size_out/istride[0];
00954         if (av_audio_convert(ost->reformat_ctx, obuf, ostride, ibuf, istride, len)<0) {
00955             printf("av_audio_convert() failed\n");
00956             if (exit_on_error)
00957                 exit_program(1);
00958             return;
00959         }
00960         buftmp = audio_buf;
00961         size_out = len*osize;
00962     }
00963 
00964     
00965     if (enc->frame_size > 1) {
00966         
00967         if (av_fifo_realloc2(ost->fifo, av_fifo_size(ost->fifo) + size_out) < 0) {
00968             av_log(NULL, AV_LOG_FATAL, "av_fifo_realloc2() failed\n");
00969             exit_program(1);
00970         }
00971         av_fifo_generic_write(ost->fifo, buftmp, size_out, NULL);
00972 
00973         frame_bytes = enc->frame_size * osize * enc->channels;
00974 
00975         while (av_fifo_size(ost->fifo) >= frame_bytes) {
00976             AVPacket pkt;
00977             av_init_packet(&pkt);
00978 
00979             av_fifo_generic_read(ost->fifo, audio_buf, frame_bytes, NULL);
00980 
00981             
00982 
00983             ret = avcodec_encode_audio(enc, audio_out, audio_out_size,
00984                                        (short *)audio_buf);
00985             if (ret < 0) {
00986                 av_log(NULL, AV_LOG_FATAL, "Audio encoding failed\n");
00987                 exit_program(1);
00988             }
00989             audio_size += ret;
00990             pkt.stream_index= ost->index;
00991             pkt.data= audio_out;
00992             pkt.size= ret;
00993             if(enc->coded_frame && enc->coded_frame->pts != AV_NOPTS_VALUE)
00994                 pkt.pts= av_rescale_q(enc->coded_frame->pts, enc->time_base, ost->st->time_base);
00995             pkt.flags |= AV_PKT_FLAG_KEY;
00996             write_frame(s, &pkt, enc, ost->bitstream_filters);
00997 
00998             ost->sync_opts += enc->frame_size;
00999         }
01000     } else {
01001         AVPacket pkt;
01002         av_init_packet(&pkt);
01003 
01004         ost->sync_opts += size_out / (osize * enc->channels);
01005 
01006         
01007         
01008         size_out /= osize;
01009         if (coded_bps)
01010             size_out = size_out*coded_bps/8;
01011 
01012         if(size_out > audio_out_size){
01013             av_log(NULL, AV_LOG_FATAL, "Internal error, buffer size too small\n");
01014             exit_program(1);
01015         }
01016 
01017         
01018         ret = avcodec_encode_audio(enc, audio_out, size_out,
01019                                    (short *)buftmp);
01020         if (ret < 0) {
01021             av_log(NULL, AV_LOG_FATAL, "Audio encoding failed\n");
01022             exit_program(1);
01023         }
01024         audio_size += ret;
01025         pkt.stream_index= ost->index;
01026         pkt.data= audio_out;
01027         pkt.size= ret;
01028         if(enc->coded_frame && enc->coded_frame->pts != AV_NOPTS_VALUE)
01029             pkt.pts= av_rescale_q(enc->coded_frame->pts, enc->time_base, ost->st->time_base);
01030         pkt.flags |= AV_PKT_FLAG_KEY;
01031         write_frame(s, &pkt, enc, ost->bitstream_filters);
01032     }
01033 }
01034 
01035 static void pre_process_video_frame(InputStream *ist, AVPicture *picture, void **bufp)
01036 {
01037     AVCodecContext *dec;
01038     AVPicture *picture2;
01039     AVPicture picture_tmp;
01040     uint8_t *buf = 0;
01041 
01042     dec = ist->st->codec;
01043 
01044     
01045     if (do_deinterlace) {
01046         int size;
01047 
01048         
01049         size = avpicture_get_size(dec->pix_fmt, dec->width, dec->height);
01050         buf = av_malloc(size);
01051         if (!buf)
01052             return;
01053 
01054         picture2 = &picture_tmp;
01055         avpicture_fill(picture2, buf, dec->pix_fmt, dec->width, dec->height);
01056 
01057         if(avpicture_deinterlace(picture2, picture,
01058                                  dec->pix_fmt, dec->width, dec->height) < 0) {
01059             
01060             av_log(NULL, AV_LOG_WARNING, "Deinterlacing failed\n");
01061             av_free(buf);
01062             buf = NULL;
01063             picture2 = picture;
01064         }
01065     } else {
01066         picture2 = picture;
01067     }
01068 
01069     if (picture != picture2)
01070         *picture = *picture2;
01071     *bufp = buf;
01072 }
01073 
01074 static void do_subtitle_out(AVFormatContext *s,
01075                             OutputStream *ost,
01076                             InputStream *ist,
01077                             AVSubtitle *sub,
01078                             int64_t pts)
01079 {
01080     static uint8_t *subtitle_out = NULL;
01081     int subtitle_out_max_size = 1024 * 1024;
01082     int subtitle_out_size, nb, i;
01083     AVCodecContext *enc;
01084     AVPacket pkt;
01085 
01086     if (pts == AV_NOPTS_VALUE) {
01087         av_log(NULL, AV_LOG_ERROR, "Subtitle packets must have a pts\n");
01088         if (exit_on_error)
01089             exit_program(1);
01090         return;
01091     }
01092 
01093     enc = ost->st->codec;
01094 
01095     if (!subtitle_out) {
01096         subtitle_out = av_malloc(subtitle_out_max_size);
01097     }
01098 
01099     
01100 
01101     
01102     if (enc->codec_id == CODEC_ID_DVB_SUBTITLE)
01103         nb = 2;
01104     else
01105         nb = 1;
01106 
01107     for(i = 0; i < nb; i++) {
01108         sub->pts = av_rescale_q(pts, ist->st->time_base, AV_TIME_BASE_Q);
01109         
01110         sub->pts              += av_rescale_q(sub->start_display_time, (AVRational){1, 1000}, AV_TIME_BASE_Q);
01111         sub->end_display_time -= sub->start_display_time;
01112         sub->start_display_time = 0;
01113         subtitle_out_size = avcodec_encode_subtitle(enc, subtitle_out,
01114                                                     subtitle_out_max_size, sub);
01115         if (subtitle_out_size < 0) {
01116             av_log(NULL, AV_LOG_FATAL, "Subtitle encoding failed\n");
01117             exit_program(1);
01118         }
01119 
01120         av_init_packet(&pkt);
01121         pkt.stream_index = ost->index;
01122         pkt.data = subtitle_out;
01123         pkt.size = subtitle_out_size;
01124         pkt.pts = av_rescale_q(sub->pts, AV_TIME_BASE_Q, ost->st->time_base);
01125         if (enc->codec_id == CODEC_ID_DVB_SUBTITLE) {
01126             
01127 
01128             if (i == 0)
01129                 pkt.pts += 90 * sub->start_display_time;
01130             else
01131                 pkt.pts += 90 * sub->end_display_time;
01132         }
01133         write_frame(s, &pkt, ost->st->codec, ost->bitstream_filters);
01134     }
01135 }
01136 
01137 static int bit_buffer_size= 1024*256;
01138 static uint8_t *bit_buffer= NULL;
01139 
01140 static void do_video_resample(OutputStream *ost,
01141                               InputStream *ist,
01142                               AVFrame *in_picture,
01143                               AVFrame **out_picture)
01144 {
01145     int resample_changed = 0;
01146     AVCodecContext *dec = ist->st->codec;
01147     AVCodecContext *enc = ost->st->codec;
01148     *out_picture = in_picture;
01149 
01150     resample_changed = ost->resample_width   != dec->width  ||
01151                        ost->resample_height  != dec->height ||
01152                        ost->resample_pix_fmt != dec->pix_fmt;
01153 
01154 #if !CONFIG_AVFILTER
01155     if (resample_changed) {
01156         av_log(NULL, AV_LOG_INFO,
01157                "Input stream #%d:%d frame changed from size:%dx%d fmt:%s to size:%dx%d fmt:%s\n",
01158                ist->file_index, ist->st->index,
01159                ost->resample_width, ost->resample_height, av_get_pix_fmt_name(ost->resample_pix_fmt),
01160                dec->width         , dec->height         , av_get_pix_fmt_name(dec->pix_fmt));
01161         ost->resample_width   = dec->width;
01162         ost->resample_height  = dec->height;
01163         ost->resample_pix_fmt = dec->pix_fmt;
01164     }
01165 
01166     ost->video_resample = dec->width   != enc->width  ||
01167                           dec->height  != enc->height ||
01168                           dec->pix_fmt != enc->pix_fmt;
01169 
01170     if (ost->video_resample) {
01171         *out_picture = &ost->resample_frame;
01172         if (!ost->img_resample_ctx || resample_changed) {
01173             
01174             if (!ost->resample_frame.data[0]) {
01175                 avcodec_get_frame_defaults(&ost->resample_frame);
01176                 if (avpicture_alloc((AVPicture *)&ost->resample_frame, enc->pix_fmt,
01177                                     enc->width, enc->height)) {
01178                     fprintf(stderr, "Cannot allocate temp picture, check pix fmt\n");
01179                     exit_program(1);
01180                 }
01181             }
01182             
01183             sws_freeContext(ost->img_resample_ctx);
01184             ost->img_resample_ctx = sws_getContext(dec->width, dec->height, dec->pix_fmt,
01185                                                    enc->width, enc->height, enc->pix_fmt,
01186                                                    ost->sws_flags, NULL, NULL, NULL);
01187             if (ost->img_resample_ctx == NULL) {
01188                 av_log(NULL, AV_LOG_FATAL, "Cannot get resampling context\n");
01189                 exit_program(1);
01190             }
01191         }
01192         sws_scale(ost->img_resample_ctx, in_picture->data, in_picture->linesize,
01193               0, ost->resample_height, (*out_picture)->data, (*out_picture)->linesize);
01194     }
01195 #else
01196     if (resample_changed) {
01197         avfilter_graph_free(&ost->graph);
01198         if (configure_video_filters(ist, ost)) {
01199             av_log(NULL, AV_LOG_FATAL, "Error reinitializing filters!\n");
01200             exit_program(1);
01201         }
01202     }
01203 #endif
01204     if (resample_changed) {
01205         ost->resample_width   = dec->width;
01206         ost->resample_height  = dec->height;
01207         ost->resample_pix_fmt = dec->pix_fmt;
01208     }
01209 }
01210 
01211 
01212 static void do_video_out(AVFormatContext *s,
01213                          OutputStream *ost,
01214                          InputStream *ist,
01215                          AVFrame *in_picture,
01216                          int *frame_size, float quality)
01217 {
01218     int nb_frames, i, ret, format_video_sync;
01219     AVFrame *final_picture;
01220     AVCodecContext *enc;
01221     double sync_ipts;
01222 
01223     enc = ost->st->codec;
01224 
01225     sync_ipts = get_sync_ipts(ost) / av_q2d(enc->time_base);
01226 
01227     
01228     nb_frames = 1;
01229 
01230     *frame_size = 0;
01231 
01232     format_video_sync = video_sync_method;
01233     if (format_video_sync < 0)
01234         format_video_sync = (s->oformat->flags & AVFMT_NOTIMESTAMPS) ? 0 :
01235                             (s->oformat->flags & AVFMT_VARIABLE_FPS) ? 2 : 1;
01236 
01237     if (format_video_sync) {
01238         double vdelta = sync_ipts - ost->sync_opts;
01239         
01240         if (vdelta < -1.1)
01241             nb_frames = 0;
01242         else if (format_video_sync == 2) {
01243             if(vdelta<=-0.6){
01244                 nb_frames=0;
01245             }else if(vdelta>0.6)
01246                 ost->sync_opts= lrintf(sync_ipts);
01247         }else if (vdelta > 1.1)
01248             nb_frames = lrintf(vdelta);
01249 
01250         if (nb_frames == 0){
01251             ++nb_frames_drop;
01252             av_log(NULL, AV_LOG_VERBOSE, "*** drop!\n");
01253         }else if (nb_frames > 1) {
01254             nb_frames_dup += nb_frames - 1;
01255             av_log(NULL, AV_LOG_VERBOSE, "*** %d dup!\n", nb_frames-1);
01256         }
01257     }else
01258         ost->sync_opts= lrintf(sync_ipts);
01259 
01260     nb_frames = FFMIN(nb_frames, ost->max_frames - ost->frame_number);
01261     if (nb_frames <= 0)
01262         return;
01263 
01264     do_video_resample(ost, ist, in_picture, &final_picture);
01265 
01266     
01267     for(i=0;i<nb_frames;i++) {
01268         AVPacket pkt;
01269         av_init_packet(&pkt);
01270         pkt.stream_index= ost->index;
01271 
01272         if (s->oformat->flags & AVFMT_RAWPICTURE &&
01273             enc->codec->id == CODEC_ID_RAWVIDEO) {
01274             
01275 
01276 
01277             enc->coded_frame->interlaced_frame = in_picture->interlaced_frame;
01278             enc->coded_frame->top_field_first  = in_picture->top_field_first;
01279             pkt.data= (uint8_t *)final_picture;
01280             pkt.size=  sizeof(AVPicture);
01281             pkt.pts= av_rescale_q(ost->sync_opts, enc->time_base, ost->st->time_base);
01282             pkt.flags |= AV_PKT_FLAG_KEY;
01283 
01284             write_frame(s, &pkt, ost->st->codec, ost->bitstream_filters);
01285         } else {
01286             AVFrame big_picture;
01287 
01288             big_picture= *final_picture;
01289             
01290 
01291             big_picture.interlaced_frame = in_picture->interlaced_frame;
01292             if (ost->st->codec->flags & (CODEC_FLAG_INTERLACED_DCT|CODEC_FLAG_INTERLACED_ME)) {
01293                 if (ost->top_field_first == -1)
01294                     big_picture.top_field_first = in_picture->top_field_first;
01295                 else
01296                     big_picture.top_field_first = !!ost->top_field_first;
01297             }
01298 
01299             
01300 
01301             big_picture.quality = quality;
01302             if (!enc->me_threshold)
01303                 big_picture.pict_type = 0;
01304 
01305             big_picture.pts= ost->sync_opts;
01306 
01307 
01308             if (ost->forced_kf_index < ost->forced_kf_count &&
01309                 big_picture.pts >= ost->forced_kf_pts[ost->forced_kf_index]) {
01310                 big_picture.pict_type = AV_PICTURE_TYPE_I;
01311                 ost->forced_kf_index++;
01312             }
01313             ret = avcodec_encode_video(enc,
01314                                        bit_buffer, bit_buffer_size,
01315                                        &big_picture);
01316             if (ret < 0) {
01317                 av_log(NULL, AV_LOG_FATAL, "Video encoding failed\n");
01318                 exit_program(1);
01319             }
01320 
01321             if(ret>0){
01322                 pkt.data= bit_buffer;
01323                 pkt.size= ret;
01324                 if(enc->coded_frame->pts != AV_NOPTS_VALUE)
01325                     pkt.pts= av_rescale_q(enc->coded_frame->pts, enc->time_base, ost->st->time_base);
01326 
01327 
01328 
01329 
01330                 if(enc->coded_frame->key_frame)
01331                     pkt.flags |= AV_PKT_FLAG_KEY;
01332                 write_frame(s, &pkt, ost->st->codec, ost->bitstream_filters);
01333                 *frame_size = ret;
01334                 video_size += ret;
01335                 
01336                 
01337                 
01338                 if (ost->logfile && enc->stats_out) {
01339                     fprintf(ost->logfile, "%s", enc->stats_out);
01340                 }
01341             }
01342         }
01343         ost->sync_opts++;
01344         ost->frame_number++;
01345     }
01346 }
01347 
01348 static double psnr(double d){
01349     return -10.0*log(d)/log(10.0);
01350 }
01351 
01352 static void do_video_stats(AVFormatContext *os, OutputStream *ost,
01353                            int frame_size)
01354 {
01355     AVCodecContext *enc;
01356     int frame_number;
01357     double ti1, bitrate, avg_bitrate;
01358 
01359     
01360     if (!vstats_file) {
01361         vstats_file = fopen(vstats_filename, "w");
01362         if (!vstats_file) {
01363             perror("fopen");
01364             exit_program(1);
01365         }
01366     }
01367 
01368     enc = ost->st->codec;
01369     if (enc->codec_type == AVMEDIA_TYPE_VIDEO) {
01370         frame_number = ost->frame_number;
01371         fprintf(vstats_file, "frame= %5d q= %2.1f ", frame_number, enc->coded_frame->quality/(float)FF_QP2LAMBDA);
01372         if (enc->flags&CODEC_FLAG_PSNR)
01373             fprintf(vstats_file, "PSNR= %6.2f ", psnr(enc->coded_frame->error[0]/(enc->width*enc->height*255.0*255.0)));
01374 
01375         fprintf(vstats_file,"f_size= %6d ", frame_size);
01376         
01377         ti1 = ost->sync_opts * av_q2d(enc->time_base);
01378         if (ti1 < 0.01)
01379             ti1 = 0.01;
01380 
01381         bitrate = (frame_size * 8) / av_q2d(enc->time_base) / 1000.0;
01382         avg_bitrate = (double)(video_size * 8) / ti1 / 1000.0;
01383         fprintf(vstats_file, "s_size= %8.0fkB time= %0.3f br= %7.1fkbits/s avg_br= %7.1fkbits/s ",
01384             (double)video_size / 1024, ti1, bitrate, avg_bitrate);
01385         fprintf(vstats_file, "type= %c\n", av_get_picture_type_char(enc->coded_frame->pict_type));
01386     }
01387 }
01388 
01389 static void print_report(OutputFile *output_files,
01390                          OutputStream *ost_table, int nb_ostreams,
01391                          int is_last_report, int64_t timer_start)
01392 {
01393     char buf[1024];
01394     OutputStream *ost;
01395     AVFormatContext *oc;
01396     int64_t total_size;
01397     AVCodecContext *enc;
01398     int frame_number, vid, i;
01399     double bitrate;
01400     int64_t pts = INT64_MAX;
01401     static int64_t last_time = -1;
01402     static int qp_histogram[52];
01403     int hours, mins, secs, us;
01404 
01405     if (!print_stats && !is_last_report)
01406         return;
01407 
01408     if (!is_last_report) {
01409         int64_t cur_time;
01410         
01411         cur_time = av_gettime();
01412         if (last_time == -1) {
01413             last_time = cur_time;
01414             return;
01415         }
01416         if ((cur_time - last_time) < 500000)
01417             return;
01418         last_time = cur_time;
01419     }
01420 
01421 
01422     oc = output_files[0].ctx;
01423 
01424     total_size = avio_size(oc->pb);
01425     if(total_size<0) 
01426         total_size= avio_tell(oc->pb);
01427 
01428     buf[0] = '\0';
01429     vid = 0;
01430     for(i=0;i<nb_ostreams;i++) {
01431         float q = -1;
01432         ost = &ost_table[i];
01433         enc = ost->st->codec;
01434         if (!ost->stream_copy && enc->coded_frame)
01435             q = enc->coded_frame->quality/(float)FF_QP2LAMBDA;
01436         if (vid && enc->codec_type == AVMEDIA_TYPE_VIDEO) {
01437             snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "q=%2.1f ", q);
01438         }
01439         if (!vid && enc->codec_type == AVMEDIA_TYPE_VIDEO) {
01440             float t = (av_gettime()-timer_start) / 1000000.0;
01441 
01442             frame_number = ost->frame_number;
01443             snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "frame=%5d fps=%3d q=%3.1f ",
01444                      frame_number, (t>1)?(int)(frame_number/t+0.5) : 0, q);
01445             if(is_last_report)
01446                 snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "L");
01447             if(qp_hist){
01448                 int j;
01449                 int qp = lrintf(q);
01450                 if(qp>=0 && qp<FF_ARRAY_ELEMS(qp_histogram))
01451                     qp_histogram[qp]++;
01452                 for(j=0; j<32; j++)
01453                     snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "%X", (int)lrintf(log(qp_histogram[j]+1)/log(2)));
01454             }
01455             if (enc->flags&CODEC_FLAG_PSNR){
01456                 int j;
01457                 double error, error_sum=0;
01458                 double scale, scale_sum=0;
01459                 char type[3]= {'Y','U','V'};
01460                 snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "PSNR=");
01461                 for(j=0; j<3; j++){
01462                     if(is_last_report){
01463                         error= enc->error[j];
01464                         scale= enc->width*enc->height*255.0*255.0*frame_number;
01465                     }else{
01466                         error= enc->coded_frame->error[j];
01467                         scale= enc->width*enc->height*255.0*255.0;
01468                     }
01469                     if(j) scale/=4;
01470                     error_sum += error;
01471                     scale_sum += scale;
01472                     snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "%c:%2.2f ", type[j], psnr(error/scale));
01473                 }
01474                 snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), "*:%2.2f ", psnr(error_sum/scale_sum));
01475             }
01476             vid = 1;
01477         }
01478         
01479         pts = FFMIN(pts, av_rescale_q(ost->st->pts.val,
01480                                       ost->st->time_base, AV_TIME_BASE_Q));
01481     }
01482 
01483     secs = pts / AV_TIME_BASE;
01484     us = pts % AV_TIME_BASE;
01485     mins = secs / 60;
01486     secs %= 60;
01487     hours = mins / 60;
01488     mins %= 60;
01489 
01490     bitrate = pts ? total_size * 8 / (pts / 1000.0) : 0;
01491 
01492     snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf),
01493              "size=%8.0fkB time=", total_size / 1024.0);
01494     snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf),
01495              "%02d:%02d:%02d.%02d ", hours, mins, secs,
01496              (100 * us) / AV_TIME_BASE);
01497     snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf),
01498              "bitrate=%6.1fkbits/s", bitrate);
01499 
01500     if (nb_frames_dup || nb_frames_drop)
01501         snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), " dup=%d drop=%d",
01502                 nb_frames_dup, nb_frames_drop);
01503 
01504     av_log(NULL, AV_LOG_INFO, "%s    \r", buf);
01505 
01506     fflush(stderr);
01507 
01508     if (is_last_report) {
01509         int64_t raw= audio_size + video_size + extra_size;
01510         av_log(NULL, AV_LOG_INFO, "\n");
01511         av_log(NULL, AV_LOG_INFO, "video:%1.0fkB audio:%1.0fkB global headers:%1.0fkB muxing overhead %f%%\n",
01512                video_size/1024.0,
01513                audio_size/1024.0,
01514                extra_size/1024.0,
01515                100.0*(total_size - raw)/raw
01516         );
01517     }
01518 }
01519 
01520 static void flush_encoders(OutputStream *ost_table, int nb_ostreams)
01521 {
01522     int i, ret;
01523 
01524     for (i = 0; i < nb_ostreams; i++) {
01525         OutputStream   *ost = &ost_table[i];
01526         AVCodecContext *enc = ost->st->codec;
01527         AVFormatContext *os = output_files[ost->file_index].ctx;
01528 
01529         if (!ost->encoding_needed)
01530             continue;
01531 
01532         if (ost->st->codec->codec_type == AVMEDIA_TYPE_AUDIO && enc->frame_size <=1)
01533             continue;
01534         if (ost->st->codec->codec_type == AVMEDIA_TYPE_VIDEO && (os->oformat->flags & AVFMT_RAWPICTURE) && enc->codec->id == CODEC_ID_RAWVIDEO)
01535             continue;
01536 
01537         for(;;) {
01538             AVPacket pkt;
01539             int fifo_bytes;
01540             av_init_packet(&pkt);
01541             pkt.stream_index= ost->index;
01542 
01543             switch (ost->st->codec->codec_type) {
01544             case AVMEDIA_TYPE_AUDIO:
01545                 fifo_bytes = av_fifo_size(ost->fifo);
01546                 ret = 0;
01547                 
01548                 if (fifo_bytes > 0) {
01549                     int osize = av_get_bytes_per_sample(enc->sample_fmt);
01550                     int fs_tmp = enc->frame_size;
01551 
01552                     av_fifo_generic_read(ost->fifo, audio_buf, fifo_bytes, NULL);
01553                     if (enc->codec->capabilities & CODEC_CAP_SMALL_LAST_FRAME) {
01554                         enc->frame_size = fifo_bytes / (osize * enc->channels);
01555                     } else { 
01556                         int frame_bytes = enc->frame_size*osize*enc->channels;
01557                         if (allocated_audio_buf_size < frame_bytes)
01558                             exit_program(1);
01559                         generate_silence(audio_buf+fifo_bytes, enc->sample_fmt, frame_bytes - fifo_bytes);
01560                     }
01561 
01562                     ret = avcodec_encode_audio(enc, bit_buffer, bit_buffer_size, (short *)audio_buf);
01563                     pkt.duration = av_rescale((int64_t)enc->frame_size*ost->st->time_base.den,
01564                                               ost->st->time_base.num, enc->sample_rate);
01565                     enc->frame_size = fs_tmp;
01566                 }
01567                 if (ret <= 0) {
01568                     ret = avcodec_encode_audio(enc, bit_buffer, bit_buffer_size, NULL);
01569                 }
01570                 if (ret < 0) {
01571                     av_log(NULL, AV_LOG_FATAL, "Audio encoding failed\n");
01572                     exit_program(1);
01573                 }
01574                 audio_size += ret;
01575                 pkt.flags |= AV_PKT_FLAG_KEY;
01576                 break;
01577             case AVMEDIA_TYPE_VIDEO:
01578                 ret = avcodec_encode_video(enc, bit_buffer, bit_buffer_size, NULL);
01579                 if (ret < 0) {
01580                     av_log(NULL, AV_LOG_FATAL, "Video encoding failed\n");
01581                     exit_program(1);
01582                 }
01583                 video_size += ret;
01584                 if(enc->coded_frame && enc->coded_frame->key_frame)
01585                     pkt.flags |= AV_PKT_FLAG_KEY;
01586                 if (ost->logfile && enc->stats_out) {
01587                     fprintf(ost->logfile, "%s", enc->stats_out);
01588                 }
01589                 break;
01590             default:
01591                 ret=-1;
01592             }
01593 
01594             if (ret <= 0)
01595                 break;
01596             pkt.data = bit_buffer;
01597             pkt.size = ret;
01598             if (enc->coded_frame && enc->coded_frame->pts != AV_NOPTS_VALUE)
01599                 pkt.pts= av_rescale_q(enc->coded_frame->pts, enc->time_base, ost->st->time_base);
01600             write_frame(os, &pkt, ost->st->codec, ost->bitstream_filters);
01601         }
01602     }
01603 }
01604 
01605 
01606 
01607 
01608 static int check_output_constraints(InputStream *ist, OutputStream *ost)
01609 {
01610     OutputFile *of = &output_files[ost->file_index];
01611     int ist_index  = ist - input_streams;
01612 
01613     if (ost->source_index != ist_index)
01614         return 0;
01615 
01616     if (of->start_time && ist->pts < of->start_time)
01617         return 0;
01618 
01619     if (of->recording_time != INT64_MAX &&
01620         av_compare_ts(ist->pts, AV_TIME_BASE_Q, of->recording_time + of->start_time,
01621                       (AVRational){1, 1000000}) >= 0) {
01622         ost->is_past_recording_time = 1;
01623         return 0;
01624     }
01625 
01626     return 1;
01627 }
01628 
01629 static void do_streamcopy(InputStream *ist, OutputStream *ost, const AVPacket *pkt)
01630 {
01631     OutputFile *of = &output_files[ost->file_index];
01632     int64_t ost_tb_start_time = av_rescale_q(of->start_time, AV_TIME_BASE_Q, ost->st->time_base);
01633     AVPicture pict;
01634     AVPacket opkt;
01635 
01636     av_init_packet(&opkt);
01637 
01638     if ((!ost->frame_number && !(pkt->flags & AV_PKT_FLAG_KEY)) &&
01639         !ost->copy_initial_nonkeyframes)
01640         return;
01641 
01642     
01643     if (ost->st->codec->codec_type == AVMEDIA_TYPE_AUDIO)
01644         audio_size += pkt->size;
01645     else if (ost->st->codec->codec_type == AVMEDIA_TYPE_VIDEO) {
01646         video_size += pkt->size;
01647         ost->sync_opts++;
01648     }
01649 
01650     opkt.stream_index = ost->index;
01651     if (pkt->pts != AV_NOPTS_VALUE)
01652         opkt.pts = av_rescale_q(pkt->pts, ist->st->time_base, ost->st->time_base) - ost_tb_start_time;
01653     else
01654         opkt.pts = AV_NOPTS_VALUE;
01655 
01656     if (pkt->dts == AV_NOPTS_VALUE)
01657         opkt.dts = av_rescale_q(ist->pts, AV_TIME_BASE_Q, ost->st->time_base);
01658     else
01659         opkt.dts = av_rescale_q(pkt->dts, ist->st->time_base, ost->st->time_base);
01660     opkt.dts -= ost_tb_start_time;
01661 
01662     opkt.duration = av_rescale_q(pkt->duration, ist->st->time_base, ost->st->time_base);
01663     opkt.flags    = pkt->flags;
01664 
01665     
01666     if(   ost->st->codec->codec_id != CODEC_ID_H264
01667        && ost->st->codec->codec_id != CODEC_ID_MPEG1VIDEO
01668        && ost->st->codec->codec_id != CODEC_ID_MPEG2VIDEO
01669        ) {
01670         if (av_parser_change(ist->st->parser, ost->st->codec, &opkt.data, &opkt.size, pkt->data, pkt->size, pkt->flags & AV_PKT_FLAG_KEY))
01671             opkt.destruct = av_destruct_packet;
01672     } else {
01673         opkt.data = pkt->data;
01674         opkt.size = pkt->size;
01675     }
01676     if (of->ctx->oformat->flags & AVFMT_RAWPICTURE) {
01677         
01678         avpicture_fill(&pict, opkt.data, ost->st->codec->pix_fmt, ost->st->codec->width, ost->st->codec->height);
01679         opkt.data = (uint8_t *)&pict;
01680         opkt.size = sizeof(AVPicture);
01681         opkt.flags |= AV_PKT_FLAG_KEY;
01682     }
01683 
01684     write_frame(of->ctx, &opkt, ost->st->codec, ost->bitstream_filters);
01685     ost->st->codec->frame_number++;
01686     ost->frame_number++;
01687     av_free_packet(&opkt);
01688 }
01689 
01690 static void rate_emu_sleep(InputStream *ist)
01691 {
01692     if (input_files[ist->file_index].rate_emu) {
01693         int64_t pts = av_rescale(ist->pts, 1000000, AV_TIME_BASE);
01694         int64_t now = av_gettime() - ist->start;
01695         if (pts > now)
01696             usleep(pts - now);
01697     }
01698 }
01699 
01700 static int transcode_audio(InputStream *ist, AVPacket *pkt, int *got_output)
01701 {
01702     AVFrame *decoded_frame;
01703     AVCodecContext *avctx = ist->st->codec;
01704     int bps = av_get_bytes_per_sample(ist->st->codec->sample_fmt);
01705     int i, ret;
01706 
01707     if (!ist->decoded_frame && !(ist->decoded_frame = avcodec_alloc_frame()))
01708         return AVERROR(ENOMEM);
01709     else
01710         avcodec_get_frame_defaults(ist->decoded_frame);
01711     decoded_frame = ist->decoded_frame;
01712 
01713     ret = avcodec_decode_audio4(avctx, decoded_frame, got_output, pkt);
01714     if (ret < 0) {
01715         return ret;
01716     }
01717 
01718     if (!*got_output) {
01719         
01720         return ret;
01721     }
01722 
01723     
01724 
01725     if (decoded_frame->pts != AV_NOPTS_VALUE)
01726         ist->next_pts = decoded_frame->pts;
01727 
01728     
01729 
01730     ist->next_pts += ((int64_t)AV_TIME_BASE * decoded_frame->nb_samples) /
01731                      avctx->sample_rate;
01732 
01733     
01734     if (audio_volume != 256) {
01735         int decoded_data_size = decoded_frame->nb_samples * avctx->channels * bps;
01736         void *samples = decoded_frame->data[0];
01737         switch (avctx->sample_fmt) {
01738         case AV_SAMPLE_FMT_U8:
01739         {
01740             uint8_t *volp = samples;
01741             for (i = 0; i < (decoded_data_size / sizeof(*volp)); i++) {
01742                 int v = (((*volp - 128) * audio_volume + 128) >> 8) + 128;
01743                 *volp++ = av_clip_uint8(v);
01744             }
01745             break;
01746         }
01747         case AV_SAMPLE_FMT_S16:
01748         {
01749             int16_t *volp = samples;
01750             for (i = 0; i < (decoded_data_size / sizeof(*volp)); i++) {
01751                 int v = ((*volp) * audio_volume + 128) >> 8;
01752                 *volp++ = av_clip_int16(v);
01753             }
01754             break;
01755         }
01756         case AV_SAMPLE_FMT_S32:
01757         {
01758             int32_t *volp = samples;
01759             for (i = 0; i < (decoded_data_size / sizeof(*volp)); i++) {
01760                 int64_t v = (((int64_t)*volp * audio_volume + 128) >> 8);
01761                 *volp++ = av_clipl_int32(v);
01762             }
01763             break;
01764         }
01765         case AV_SAMPLE_FMT_FLT:
01766         {
01767             float *volp = samples;
01768             float scale = audio_volume / 256.f;
01769             for (i = 0; i < (decoded_data_size / sizeof(*volp)); i++) {
01770                 *volp++ *= scale;
01771             }
01772             break;
01773         }
01774         case AV_SAMPLE_FMT_DBL:
01775         {
01776             double *volp = samples;
01777             double scale = audio_volume / 256.;
01778             for (i = 0; i < (decoded_data_size / sizeof(*volp)); i++) {
01779                 *volp++ *= scale;
01780             }
01781             break;
01782         }
01783         default:
01784             av_log(NULL, AV_LOG_FATAL,
01785                    "Audio volume adjustment on sample format %s is not supported.\n",
01786                    av_get_sample_fmt_name(ist->st->codec->sample_fmt));
01787             exit_program(1);
01788         }
01789     }
01790 
01791     rate_emu_sleep(ist);
01792 
01793     for (i = 0; i < nb_output_streams; i++) {
01794         OutputStream *ost = &output_streams[i];
01795 
01796         if (!check_output_constraints(ist, ost) || !ost->encoding_needed)
01797             continue;
01798         do_audio_out(output_files[ost->file_index].ctx, ost, ist, decoded_frame);
01799     }
01800 
01801     return ret;
01802 }
01803 
01804 static int transcode_video(InputStream *ist, AVPacket *pkt, int *got_output, int64_t *pkt_pts)
01805 {
01806     AVFrame *decoded_frame, *filtered_frame = NULL;
01807     void *buffer_to_free = NULL;
01808     int i, ret = 0;
01809     float quality;
01810 #if CONFIG_AVFILTER
01811     int frame_available = 1;
01812 #endif
01813 
01814     if (!ist->decoded_frame && !(ist->decoded_frame = avcodec_alloc_frame()))
01815         return AVERROR(ENOMEM);
01816     else
01817         avcodec_get_frame_defaults(ist->decoded_frame);
01818     decoded_frame = ist->decoded_frame;
01819     pkt->pts  = *pkt_pts;
01820     pkt->dts  = ist->pts;
01821     *pkt_pts  = AV_NOPTS_VALUE;
01822 
01823     ret = avcodec_decode_video2(ist->st->codec,
01824                                 decoded_frame, got_output, pkt);
01825     if (ret < 0)
01826         return ret;
01827 
01828     quality = same_quant ? decoded_frame->quality : 0;
01829     if (!*got_output) {
01830         
01831         return ret;
01832     }
01833     ist->next_pts = ist->pts = decoded_frame->best_effort_timestamp;
01834     if (pkt->duration)
01835         ist->next_pts += av_rescale_q(pkt->duration, ist->st->time_base, AV_TIME_BASE_Q);
01836     else if (ist->st->codec->time_base.num != 0) {
01837         int ticks      = ist->st->parser ? ist->st->parser->repeat_pict + 1 :
01838                                            ist->st->codec->ticks_per_frame;
01839         ist->next_pts += ((int64_t)AV_TIME_BASE *
01840                           ist->st->codec->time_base.num * ticks) /
01841                           ist->st->codec->time_base.den;
01842     }
01843     pkt->size = 0;
01844     pre_process_video_frame(ist, (AVPicture *)decoded_frame, &buffer_to_free);
01845 
01846     rate_emu_sleep(ist);
01847 
01848     for (i = 0; i < nb_output_streams; i++) {
01849         OutputStream *ost = &output_streams[i];
01850         int frame_size;
01851 
01852         if (!check_output_constraints(ist, ost) || !ost->encoding_needed)
01853             continue;
01854 
01855 #if CONFIG_AVFILTER
01856         if (ost->input_video_filter) {
01857             if (!decoded_frame->sample_aspect_ratio.num)
01858                 decoded_frame->sample_aspect_ratio = ist->st->sample_aspect_ratio;
01859             decoded_frame->pts = ist->pts;
01860 
01861             av_vsrc_buffer_add_frame(ost->input_video_filter, decoded_frame, AV_VSRC_BUF_FLAG_OVERWRITE);
01862             if (!ist->filtered_frame && !(ist->filtered_frame = avcodec_alloc_frame())) {
01863                 av_free(buffer_to_free);
01864                 return AVERROR(ENOMEM);
01865             } else
01866                 avcodec_get_frame_defaults(ist->filtered_frame);
01867             filtered_frame = ist->filtered_frame;
01868             frame_available = avfilter_poll_frame(ost->output_video_filter->inputs[0]);
01869         }
01870         while (frame_available) {
01871             if (ost->output_video_filter) {
01872                 AVRational ist_pts_tb = ost->output_video_filter->inputs[0]->time_base;
01873                 if (av_buffersink_get_buffer_ref(ost->output_video_filter, &ost->picref, 0) < 0)
01874                     goto cont;
01875                 if (ost->picref) {
01876                     avfilter_fill_frame_from_video_buffer_ref(filtered_frame, ost->picref);
01877                     ist->pts = av_rescale_q(ost->picref->pts, ist_pts_tb, AV_TIME_BASE_Q);
01878                 }
01879             }
01880             if (ost->picref->video && !ost->frame_aspect_ratio)
01881                 ost->st->codec->sample_aspect_ratio = ost->picref->video->sample_aspect_ratio;
01882 #else
01883             filtered_frame = decoded_frame;
01884 #endif
01885 
01886             do_video_out(output_files[ost->file_index].ctx, ost, ist, filtered_frame, &frame_size,
01887                          same_quant ? quality : ost->st->codec->global_quality);
01888             if (vstats_filename && frame_size)
01889                 do_video_stats(output_files[ost->file_index].ctx, ost, frame_size);
01890 #if CONFIG_AVFILTER
01891             cont:
01892             frame_available = ost->output_video_filter && avfilter_poll_frame(ost->output_video_filter->inputs[0]);
01893             if (ost->picref)
01894                 avfilter_unref_buffer(ost->picref);
01895         }
01896 #endif
01897     }
01898 
01899     av_free(buffer_to_free);
01900     return ret;
01901 }
01902 
01903 static int transcode_subtitles(InputStream *ist, AVPacket *pkt, int *got_output)
01904 {
01905     AVSubtitle subtitle;
01906     int i, ret = avcodec_decode_subtitle2(ist->st->codec,
01907                                           &subtitle, got_output, pkt);
01908     if (ret < 0)
01909         return ret;
01910     if (!*got_output)
01911         return ret;
01912 
01913     rate_emu_sleep(ist);
01914 
01915     for (i = 0; i < nb_output_streams; i++) {
01916         OutputStream *ost = &output_streams[i];
01917 
01918         if (!check_output_constraints(ist, ost) || !ost->encoding_needed)
01919             continue;
01920 
01921         do_subtitle_out(output_files[ost->file_index].ctx, ost, ist, &subtitle, pkt->pts);
01922     }
01923 
01924     avsubtitle_free(&subtitle);
01925     return ret;
01926 }
01927 
01928 
01929 static int output_packet(InputStream *ist,
01930                          OutputStream *ost_table, int nb_ostreams,
01931                          const AVPacket *pkt)
01932 {
01933     int i;
01934     int got_output;
01935     int64_t pkt_pts = AV_NOPTS_VALUE;
01936     AVPacket avpkt;
01937 
01938     if (ist->next_pts == AV_NOPTS_VALUE)
01939         ist->next_pts = ist->pts;
01940 
01941     if (pkt == NULL) {
01942         
01943         av_init_packet(&avpkt);
01944         avpkt.data = NULL;
01945         avpkt.size = 0;
01946         goto handle_eof;
01947     } else {
01948         avpkt = *pkt;
01949     }
01950 
01951     if(pkt->dts != AV_NOPTS_VALUE)
01952         ist->next_pts = ist->pts = av_rescale_q(pkt->dts, ist->st->time_base, AV_TIME_BASE_Q);
01953     if(pkt->pts != AV_NOPTS_VALUE)
01954         pkt_pts = av_rescale_q(pkt->pts, ist->st->time_base, AV_TIME_BASE_Q);
01955 
01956     
01957     while (ist->decoding_needed && (avpkt.size > 0 || (!pkt && got_output))) {
01958         int ret = 0;
01959     handle_eof:
01960 
01961         ist->pts = ist->next_pts;
01962 
01963         if (avpkt.size && avpkt.size != pkt->size) {
01964             av_log(NULL, ist->showed_multi_packet_warning ? AV_LOG_VERBOSE : AV_LOG_WARNING,
01965                    "Multiple frames in a packet from stream %d\n", pkt->stream_index);
01966             ist->showed_multi_packet_warning = 1;
01967         }
01968 
01969         switch(ist->st->codec->codec_type) {
01970         case AVMEDIA_TYPE_AUDIO:
01971             ret = transcode_audio    (ist, &avpkt, &got_output);
01972             break;
01973         case AVMEDIA_TYPE_VIDEO:
01974             ret = transcode_video    (ist, &avpkt, &got_output, &pkt_pts);
01975             break;
01976         case AVMEDIA_TYPE_SUBTITLE:
01977             ret = transcode_subtitles(ist, &avpkt, &got_output);
01978             break;
01979         default:
01980             return -1;
01981         }
01982 
01983         if (ret < 0)
01984             return ret;
01985         
01986         if (pkt) {
01987             avpkt.data += ret;
01988             avpkt.size -= ret;
01989         }
01990         if (!got_output) {
01991             continue;
01992         }
01993     }
01994 
01995     
01996     if (!ist->decoding_needed) {
01997         rate_emu_sleep(ist);
01998         ist->pts = ist->next_pts;
01999         switch (ist->st->codec->codec_type) {
02000         case AVMEDIA_TYPE_AUDIO:
02001             ist->next_pts += ((int64_t)AV_TIME_BASE * ist->st->codec->frame_size) /
02002                              ist->st->codec->sample_rate;
02003             break;
02004         case AVMEDIA_TYPE_VIDEO:
02005             if (ist->st->codec->time_base.num != 0) {
02006                 int ticks = ist->st->parser ? ist->st->parser->repeat_pict+1 : ist->st->codec->ticks_per_frame;
02007                 ist->next_pts += ((int64_t)AV_TIME_BASE *
02008                                   ist->st->codec->time_base.num * ticks) /
02009                                   ist->st->codec->time_base.den;
02010             }
02011             break;
02012         }
02013     }
02014     for (i = 0; pkt && i < nb_ostreams; i++) {
02015         OutputStream *ost = &ost_table[i];
02016 
02017         if (!check_output_constraints(ist, ost) || ost->encoding_needed)
02018             continue;
02019 
02020         do_streamcopy(ist, ost, pkt);
02021     }
02022 
02023     return 0;
02024 }
02025 
02026 static void print_sdp(OutputFile *output_files, int n)
02027 {
02028     char sdp[2048];
02029     int i;
02030     AVFormatContext **avc = av_malloc(sizeof(*avc)*n);
02031 
02032     if (!avc)
02033         exit_program(1);
02034     for (i = 0; i < n; i++)
02035         avc[i] = output_files[i].ctx;
02036 
02037     av_sdp_create(avc, n, sdp, sizeof(sdp));
02038     printf("SDP:\n%s\n", sdp);
02039     fflush(stdout);
02040     av_freep(&avc);
02041 }
02042 
02043 static int init_input_stream(int ist_index, OutputStream *output_streams, int nb_output_streams,
02044                              char *error, int error_len)
02045 {
02046     int i;
02047     InputStream *ist = &input_streams[ist_index];
02048     if (ist->decoding_needed) {
02049         AVCodec *codec = ist->dec;
02050         if (!codec) {
02051             snprintf(error, error_len, "Decoder (codec id %d) not found for input stream #%d:%d",
02052                     ist->st->codec->codec_id, ist->file_index, ist->st->index);
02053             return AVERROR(EINVAL);
02054         }
02055 
02056         if (avcodec_open2(ist->st->codec, codec, &ist->opts) < 0) {
02057             snprintf(error, error_len, "Error while opening decoder for input stream #%d:%d",
02058                     ist->file_index, ist->st->index);
02059             return AVERROR(EINVAL);
02060         }
02061         assert_codec_experimental(ist->st->codec, 0);
02062         assert_avoptions(ist->opts);
02063     }
02064 
02065     ist->pts = ist->st->avg_frame_rate.num ? - ist->st->codec->has_b_frames*AV_TIME_BASE / av_q2d(ist->st->avg_frame_rate) : 0;
02066     ist->next_pts = AV_NOPTS_VALUE;
02067     ist->is_start = 1;
02068 
02069     return 0;
02070 }
02071 
02072 static int transcode_init(OutputFile *output_files,
02073                           int nb_output_files,
02074                           InputFile *input_files,
02075                           int nb_input_files)
02076 {
02077     int ret = 0, i, j, k;
02078     AVFormatContext *oc;
02079     AVCodecContext *codec, *icodec;
02080     OutputStream *ost;
02081     InputStream *ist;
02082     char error[1024];
02083     int want_sdp = 1;
02084 
02085     
02086     for (i = 0; i < nb_input_files; i++) {
02087         InputFile *ifile = &input_files[i];
02088         if (ifile->rate_emu)
02089             for (j = 0; j < ifile->nb_streams; j++)
02090                 input_streams[j + ifile->ist_index].start = av_gettime();
02091     }
02092 
02093     
02094     for (i = 0; i < nb_output_files; i++) {
02095         oc = output_files[i].ctx;
02096         if (!oc->nb_streams && !(oc->oformat->flags & AVFMT_NOSTREAMS)) {
02097             av_dump_format(oc, i, oc->filename, 1);
02098             av_log(NULL, AV_LOG_ERROR, "Output file #%d does not contain any stream\n", i);
02099             return AVERROR(EINVAL);
02100         }
02101     }
02102 
02103     
02104     for (i = 0; i < nb_output_streams; i++) {
02105         ost = &output_streams[i];
02106         oc  = output_files[ost->file_index].ctx;
02107         ist = &input_streams[ost->source_index];
02108 
02109         if (ost->attachment_filename)
02110             continue;
02111 
02112         codec  = ost->st->codec;
02113         icodec = ist->st->codec;
02114 
02115         ost->st->disposition          = ist->st->disposition;
02116         codec->bits_per_raw_sample    = icodec->bits_per_raw_sample;
02117         codec->chroma_sample_location = icodec->chroma_sample_location;
02118 
02119         if (ost->stream_copy) {
02120             uint64_t extra_size = (uint64_t)icodec->extradata_size + FF_INPUT_BUFFER_PADDING_SIZE;
02121 
02122             if (extra_size > INT_MAX) {
02123                 return AVERROR(EINVAL);
02124             }
02125 
02126             
02127             codec->codec_id   = icodec->codec_id;
02128             codec->codec_type = icodec->codec_type;
02129 
02130             if (!codec->codec_tag) {
02131                 if (!oc->oformat->codec_tag ||
02132                      av_codec_get_id (oc->oformat->codec_tag, icodec->codec_tag) == codec->codec_id ||
02133                      av_codec_get_tag(oc->oformat->codec_tag, icodec->codec_id) <= 0)
02134                     codec->codec_tag = icodec->codec_tag;
02135             }
02136 
02137             codec->bit_rate       = icodec->bit_rate;
02138             codec->rc_max_rate    = icodec->rc_max_rate;
02139             codec->rc_buffer_size = icodec->rc_buffer_size;
02140             codec->extradata      = av_mallocz(extra_size);
02141             if (!codec->extradata) {
02142                 return AVERROR(ENOMEM);
02143             }
02144             memcpy(codec->extradata, icodec->extradata, icodec->extradata_size);
02145 
02146             codec->extradata_size = icodec->extradata_size;
02147             if (!copy_tb) {
02148                 codec->time_base      = icodec->time_base;
02149                 codec->time_base.num *= icodec->ticks_per_frame;
02150                 av_reduce(&codec->time_base.num, &codec->time_base.den,
02151                           codec->time_base.num, codec->time_base.den, INT_MAX);
02152             } else
02153                 codec->time_base = ist->st->time_base;
02154 
02155             switch(codec->codec_type) {
02156             case AVMEDIA_TYPE_AUDIO:
02157                 if(audio_volume != 256) {
02158                     av_log(NULL, AV_LOG_FATAL, "-acodec copy and -vol are incompatible (frames are not decoded)\n");
02159                     exit_program(1);
02160                 }
02161                 codec->channel_layout     = icodec->channel_layout;
02162                 codec->sample_rate        = icodec->sample_rate;
02163                 codec->channels           = icodec->channels;
02164                 codec->frame_size         = icodec->frame_size;
02165                 codec->audio_service_type = icodec->audio_service_type;
02166                 codec->block_align        = icodec->block_align;
02167                 break;
02168             case AVMEDIA_TYPE_VIDEO:
02169                 codec->pix_fmt            = icodec->pix_fmt;
02170                 codec->width              = icodec->width;
02171                 codec->height             = icodec->height;
02172                 codec->has_b_frames       = icodec->has_b_frames;
02173                 if (!codec->sample_aspect_ratio.num) {
02174                     codec->sample_aspect_ratio   =
02175                     ost->st->sample_aspect_ratio =
02176                         ist->st->sample_aspect_ratio.num ? ist->st->sample_aspect_ratio :
02177                         ist->st->codec->sample_aspect_ratio.num ?
02178                         ist->st->codec->sample_aspect_ratio : (AVRational){0, 1};
02179                 }
02180                 break;
02181             case AVMEDIA_TYPE_SUBTITLE:
02182                 codec->width  = icodec->width;
02183                 codec->height = icodec->height;
02184                 break;
02185             case AVMEDIA_TYPE_DATA:
02186             case AVMEDIA_TYPE_ATTACHMENT:
02187                 break;
02188             default:
02189                 abort();
02190             }
02191         } else {
02192             if (!ost->enc)
02193                 ost->enc = avcodec_find_encoder(ost->st->codec->codec_id);
02194 
02195             ist->decoding_needed = 1;
02196             ost->encoding_needed = 1;
02197 
02198             switch(codec->codec_type) {
02199             case AVMEDIA_TYPE_AUDIO:
02200                 ost->fifo = av_fifo_alloc(1024);
02201                 if (!ost->fifo) {
02202                     return AVERROR(ENOMEM);
02203                 }
02204                 ost->reformat_pair = MAKE_SFMT_PAIR(AV_SAMPLE_FMT_NONE,AV_SAMPLE_FMT_NONE);
02205 
02206                 if (!codec->sample_rate)
02207                     codec->sample_rate = icodec->sample_rate;
02208                 choose_sample_rate(ost->st, ost->enc);
02209                 codec->time_base = (AVRational){1, codec->sample_rate};
02210 
02211                 if (codec->sample_fmt == AV_SAMPLE_FMT_NONE)
02212                     codec->sample_fmt = icodec->sample_fmt;
02213                 choose_sample_fmt(ost->st, ost->enc);
02214 
02215                 if (!codec->channels) {
02216                     codec->channels = icodec->channels;
02217                     codec->channel_layout = icodec->channel_layout;
02218                 }
02219                 if (av_get_channel_layout_nb_channels(codec->channel_layout) != codec->channels)
02220                     codec->channel_layout = 0;
02221 
02222                 ost->audio_resample       = codec-> sample_rate != icodec->sample_rate || audio_sync_method > 1;
02223                 icodec->request_channels  = codec-> channels;
02224                 ost->resample_sample_fmt  = icodec->sample_fmt;
02225                 ost->resample_sample_rate = icodec->sample_rate;
02226                 ost->resample_channels    = icodec->channels;
02227                 break;
02228             case AVMEDIA_TYPE_VIDEO:
02229                 if (codec->pix_fmt == PIX_FMT_NONE)
02230                     codec->pix_fmt = icodec->pix_fmt;
02231                 choose_pixel_fmt(ost->st, ost->enc);
02232 
02233                 if (ost->st->codec->pix_fmt == PIX_FMT_NONE) {
02234                     av_log(NULL, AV_LOG_FATAL, "Video pixel format is unknown, stream cannot be encoded\n");
02235                     exit_program(1);
02236                 }
02237 
02238                 if (!codec->width || !codec->height) {
02239                     codec->width  = icodec->width;
02240                     codec->height = icodec->height;
02241                 }
02242 
02243                 ost->video_resample = codec->width   != icodec->width  ||
02244                                       codec->height  != icodec->height ||
02245                                       codec->pix_fmt != icodec->pix_fmt;
02246                 if (ost->video_resample) {
02247                     codec->bits_per_raw_sample= frame_bits_per_raw_sample;
02248                 }
02249 
02250                 ost->resample_height  = icodec->height;
02251                 ost->resample_width   = icodec->width;
02252                 ost->resample_pix_fmt = icodec->pix_fmt;
02253 
02254                 if (!ost->frame_rate.num)
02255                     ost->frame_rate = ist->st->r_frame_rate.num ? ist->st->r_frame_rate : (AVRational){25,1};
02256                 if (ost->enc && ost->enc->supported_framerates && !ost->force_fps) {
02257                     int idx = av_find_nearest_q_idx(ost->frame_rate, ost->enc->supported_framerates);
02258                     ost->frame_rate = ost->enc->supported_framerates[idx];
02259                 }
02260                 codec->time_base = (AVRational){ost->frame_rate.den, ost->frame_rate.num};
02261                 if(   av_q2d(codec->time_base) < 0.001 && video_sync_method
02262                    && (video_sync_method==1 || (video_sync_method<0 && !(oc->oformat->flags & AVFMT_VARIABLE_FPS)))){
02263                     av_log(oc, AV_LOG_WARNING, "Frame rate very high for a muxer not effciciently supporting it.\n"
02264                                                "Please consider specifiying a lower framerate, a different muxer or -vsync 2\n");
02265                 }
02266 
02267 #if CONFIG_AVFILTER
02268                 if (configure_video_filters(ist, ost)) {
02269                     av_log(NULL, AV_LOG_FATAL, "Error opening filters!\n");
02270                     exit(1);
02271                 }
02272 #endif
02273                 break;
02274             case AVMEDIA_TYPE_SUBTITLE:
02275                 break;
02276             default:
02277                 abort();
02278                 break;
02279             }
02280             
02281             if (codec->codec_id != CODEC_ID_H264 &&
02282                 (codec->flags & (CODEC_FLAG_PASS1 | CODEC_FLAG_PASS2))) {
02283                 char logfilename[1024];
02284                 FILE *f;
02285 
02286                 snprintf(logfilename, sizeof(logfilename), "%s-%d.log",
02287                          pass_logfilename_prefix ? pass_logfilename_prefix : DEFAULT_PASS_LOGFILENAME_PREFIX,
02288                          i);
02289                 if (codec->flags & CODEC_FLAG_PASS1) {
02290                     f = fopen(logfilename, "wb");
02291                     if (!f) {
02292                         av_log(NULL, AV_LOG_FATAL, "Cannot write log file '%s' for pass-1 encoding: %s\n",
02293                                logfilename, strerror(errno));
02294                         exit_program(1);
02295                     }
02296                     ost->logfile = f;
02297                 } else {
02298                     char  *logbuffer;
02299                     size_t logbuffer_size;
02300                     if (cmdutils_read_file(logfilename, &logbuffer, &logbuffer_size) < 0) {
02301                         av_log(NULL, AV_LOG_FATAL, "Error reading log file '%s' for pass-2 encoding\n",
02302                                logfilename);
02303                         exit_program(1);
02304                     }
02305                     codec->stats_in = logbuffer;
02306                 }
02307             }
02308         }
02309         if(codec->codec_type == AVMEDIA_TYPE_VIDEO){
02310             
02311             int        size = codec->width * codec->height;
02312             bit_buffer_size = FFMAX(bit_buffer_size, 6*size + 1664);
02313         }
02314     }
02315 
02316     if (!bit_buffer)
02317         bit_buffer = av_malloc(bit_buffer_size);
02318     if (!bit_buffer) {
02319         av_log(NULL, AV_LOG_ERROR, "Cannot allocate %d bytes output buffer\n",
02320                bit_buffer_size);
02321         return AVERROR(ENOMEM);
02322     }
02323 
02324     
02325     for (i = 0; i < nb_output_streams; i++) {
02326         ost = &output_streams[i];
02327         if (ost->encoding_needed) {
02328             AVCodec      *codec = ost->enc;
02329             AVCodecContext *dec = input_streams[ost->source_index].st->codec;
02330             if (!codec) {
02331                 snprintf(error, sizeof(error), "Encoder (codec id %d) not found for output stream #%d:%d",
02332                          ost->st->codec->codec_id, ost->file_index, ost->index);
02333                 ret = AVERROR(EINVAL);
02334                 goto dump_format;
02335             }
02336             if (dec->subtitle_header) {
02337                 ost->st->codec->subtitle_header = av_malloc(dec->subtitle_header_size);
02338                 if (!ost->st->codec->subtitle_header) {
02339                     ret = AVERROR(ENOMEM);
02340                     goto dump_format;
02341                 }
02342                 memcpy(ost->st->codec->subtitle_header, dec->subtitle_header, dec->subtitle_header_size);
02343                 ost->st->codec->subtitle_header_size = dec->subtitle_header_size;
02344             }
02345             if (avcodec_open2(ost->st->codec, codec, &ost->opts) < 0) {
02346                 snprintf(error, sizeof(error), "Error while opening encoder for output stream #%d:%d - maybe incorrect parameters such as bit_rate, rate, width or height",
02347                         ost->file_index, ost->index);
02348                 ret = AVERROR(EINVAL);
02349                 goto dump_format;
02350             }
02351             assert_codec_experimental(ost->st->codec, 1);
02352             assert_avoptions(ost->opts);
02353             if (ost->st->codec->bit_rate && ost->st->codec->bit_rate < 1000)
02354                 av_log(NULL, AV_LOG_WARNING, "The bitrate parameter is set too low."
02355                                              "It takes bits/s as argument, not kbits/s\n");
02356             extra_size += ost->st->codec->extradata_size;
02357 
02358             if (ost->st->codec->me_threshold)
02359                 input_streams[ost->source_index].st->codec->debug |= FF_DEBUG_MV;
02360         }
02361     }
02362 
02363     
02364     for (i = 0; i < nb_input_streams; i++)
02365         if ((ret = init_input_stream(i, output_streams, nb_output_streams, error, sizeof(error))) < 0)
02366             goto dump_format;
02367 
02368     
02369     for (i = 0; i < nb_input_files; i++) {
02370         InputFile *ifile = &input_files[i];
02371         for (j = 0; j < ifile->ctx->nb_programs; j++) {
02372             AVProgram *p = ifile->ctx->programs[j];
02373             int discard  = AVDISCARD_ALL;
02374 
02375             for (k = 0; k < p->nb_stream_indexes; k++)
02376                 if (!input_streams[ifile->ist_index + p->stream_index[k]].discard) {
02377                     discard = AVDISCARD_DEFAULT;
02378                     break;
02379                 }
02380             p->discard = discard;
02381         }
02382     }
02383 
02384     
02385     for (i = 0; i < nb_output_files; i++) {
02386         oc = output_files[i].ctx;
02387         oc->interrupt_callback = int_cb;
02388         if (avformat_write_header(oc, &output_files[i].opts) < 0) {
02389             snprintf(error, sizeof(error), "Could not write header for output file #%d (incorrect codec parameters ?)", i);
02390             ret = AVERROR(EINVAL);
02391             goto dump_format;
02392         }
02393 
02394         if (strcmp(oc->oformat->name, "rtp")) {
02395             want_sdp = 0;
02396         }
02397     }
02398 
02399  dump_format:
02400     
02401 
02402     for (i = 0; i < nb_output_files; i++) {
02403         av_dump_format(output_files[i].ctx, i, output_files[i].ctx->filename, 1);
02404     }
02405 
02406     
02407     av_log(NULL, AV_LOG_INFO, "Stream mapping:\n");
02408     for (i = 0; i < nb_output_streams; i++) {
02409         ost = &output_streams[i];
02410 
02411         if (ost->attachment_filename) {
02412             
02413             av_log(NULL, AV_LOG_INFO, "  File %s -> Stream #%d:%d\n",
02414                    ost->attachment_filename, ost->file_index, ost->index);
02415             continue;
02416         }
02417         av_log(NULL, AV_LOG_INFO, "  Stream #%d:%d -> #%d:%d",
02418                input_streams[ost->source_index].file_index,
02419                input_streams[ost->source_index].st->index,
02420                ost->file_index,
02421                ost->index);
02422         if (ost->sync_ist != &input_streams[ost->source_index])
02423             av_log(NULL, AV_LOG_INFO, " [sync #%d:%d]",
02424                    ost->sync_ist->file_index,
02425                    ost->sync_ist->st->index);
02426         if (ost->stream_copy)
02427             av_log(NULL, AV_LOG_INFO, " (copy)");
02428         else
02429             av_log(NULL, AV_LOG_INFO, " (%s -> %s)", input_streams[ost->source_index].dec ?
02430                    input_streams[ost->source_index].dec->name : "?",
02431                    ost->enc ? ost->enc->name : "?");
02432         av_log(NULL, AV_LOG_INFO, "\n");
02433     }
02434 
02435     if (ret) {
02436         av_log(NULL, AV_LOG_ERROR, "%s\n", error);
02437         return ret;
02438     }
02439 
02440     if (want_sdp) {
02441         print_sdp(output_files, nb_output_files);
02442     }
02443 
02444     return 0;
02445 }
02446 
02447 
02448 
02449 
02450 static int transcode(OutputFile *output_files,
02451                      int nb_output_files,
02452                      InputFile *input_files,
02453                      int nb_input_files)
02454 {
02455     int ret, i;
02456     AVFormatContext *is, *os;
02457     OutputStream *ost;
02458     InputStream *ist;
02459     uint8_t *no_packet;
02460     int no_packet_count=0;
02461     int64_t timer_start;
02462     int key;
02463 
02464     if (!(no_packet = av_mallocz(nb_input_files)))
02465         exit_program(1);
02466 
02467     ret = transcode_init(output_files, nb_output_files, input_files, nb_input_files);
02468     if (ret < 0)
02469         goto fail;
02470 
02471     if (!using_stdin) {
02472         av_log(NULL, AV_LOG_INFO, "Press [q] to stop, [?] for help\n");
02473         avio_set_interrupt_cb(decode_interrupt_cb);
02474     }
02475     term_init();
02476 
02477     timer_start = av_gettime();
02478 
02479     for(; received_sigterm == 0;) {
02480         int file_index, ist_index;
02481         AVPacket pkt;
02482         int64_t ipts_min;
02483         double opts_min;
02484 
02485         ipts_min = INT64_MAX;
02486         opts_min= 1e100;
02487         
02488         if (!using_stdin) {
02489             if (q_pressed)
02490                 break;
02491             
02492             key = read_key();
02493             if (key == 'q')
02494                 break;
02495             if (key == '+') av_log_set_level(av_log_get_level()+10);
02496             if (key == '-') av_log_set_level(av_log_get_level()-10);
02497             if (key == 's') qp_hist     ^= 1;
02498             if (key == 'h'){
02499                 if (do_hex_dump){
02500                     do_hex_dump = do_pkt_dump = 0;
02501                 } else if(do_pkt_dump){
02502                     do_hex_dump = 1;
02503                 } else
02504                     do_pkt_dump = 1;
02505                 av_log_set_level(AV_LOG_DEBUG);
02506             }
02507             if (key == 'd' || key == 'D'){
02508                 int debug=0;
02509                 if(key == 'D') {
02510                     debug = input_streams[0].st->codec->debug<<1;
02511                     if(!debug) debug = 1;
02512                     while(debug & (FF_DEBUG_DCT_COEFF|FF_DEBUG_VIS_QP|FF_DEBUG_VIS_MB_TYPE)) 
02513                         debug += debug;
02514                 }else
02515                     scanf("%d", &debug);
02516                 for(i=0;i<nb_input_streams;i++) {
02517                     input_streams[i].st->codec->debug = debug;
02518                 }
02519                 for(i=0;i<nb_output_streams;i++) {
02520                     ost = &output_streams[i];
02521                     ost->st->codec->debug = debug;
02522                 }
02523                 if(debug) av_log_set_level(AV_LOG_DEBUG);
02524                 fprintf(stderr,"debug=%d\n", debug);
02525             }
02526             if (key == '?'){
02527                 fprintf(stderr, "key    function\n"
02528                                 "?      show this help\n"
02529                                 "+      increase verbosity\n"
02530                                 "-      decrease verbosity\n"
02531                                 "D      cycle through available debug modes\n"
02532                                 "h      dump packets/hex press to cycle through the 3 states\n"
02533                                 "q      quit\n"
02534                                 "s      Show QP histogram\n"
02535                 );
02536             }
02537         }
02538 
02539         
02540 
02541         file_index = -1;
02542         for (i = 0; i < nb_output_streams; i++) {
02543             OutputFile *of;
02544             int64_t ipts;
02545             double  opts;
02546             ost = &output_streams[i];
02547             of = &output_files[ost->file_index];
02548             os = output_files[ost->file_index].ctx;
02549             ist = &input_streams[ost->source_index];
02550             if (ost->is_past_recording_time || no_packet[ist->file_index] ||
02551                 (os->pb && avio_tell(os->pb) >= of->limit_filesize))
02552                 continue;
02553             opts = ost->st->pts.val * av_q2d(ost->st->time_base);
02554             ipts = ist->pts;
02555             if (!input_files[ist->file_index].eof_reached){
02556                 if(ipts < ipts_min) {
02557                     ipts_min = ipts;
02558                     if(input_sync ) file_index = ist->file_index;
02559                 }
02560                 if(opts < opts_min) {
02561                     opts_min = opts;
02562                     if(!input_sync) file_index = ist->file_index;
02563                 }
02564             }
02565             if (ost->frame_number >= ost->max_frames) {
02566                 int j;
02567                 for (j = 0; j < of->ctx->nb_streams; j++)
02568                     output_streams[of->ost_index + j].is_past_recording_time = 1;
02569                 continue;
02570             }
02571         }
02572         
02573         if (file_index < 0) {
02574             if(no_packet_count){
02575                 no_packet_count=0;
02576                 memset(no_packet, 0, nb_input_files);
02577                 usleep(10000);
02578                 continue;
02579             }
02580             break;
02581         }
02582 
02583         
02584         is = input_files[file_index].ctx;
02585         ret= av_read_frame(is, &pkt);
02586         if(ret == AVERROR(EAGAIN)){
02587             no_packet[file_index]=1;
02588             no_packet_count++;
02589             continue;
02590         }
02591         if (ret < 0) {
02592             input_files[file_index].eof_reached = 1;
02593             if (opt_shortest)
02594                 break;
02595             else
02596                 continue;
02597         }
02598 
02599         no_packet_count=0;
02600         memset(no_packet, 0, nb_input_files);
02601 
02602         if (do_pkt_dump) {
02603             av_pkt_dump_log2(NULL, AV_LOG_DEBUG, &pkt, do_hex_dump,
02604                              is->streams[pkt.stream_index]);
02605         }
02606         
02607 
02608         if (pkt.stream_index >= input_files[file_index].nb_streams)
02609             goto discard_packet;
02610         ist_index = input_files[file_index].ist_index + pkt.stream_index;
02611         ist = &input_streams[ist_index];
02612         if (ist->discard)
02613             goto discard_packet;
02614 
02615         if (pkt.dts != AV_NOPTS_VALUE)
02616             pkt.dts += av_rescale_q(input_files[ist->file_index].ts_offset, AV_TIME_BASE_Q, ist->st->time_base);
02617         if (pkt.pts != AV_NOPTS_VALUE)
02618             pkt.pts += av_rescale_q(input_files[ist->file_index].ts_offset, AV_TIME_BASE_Q, ist->st->time_base);
02619 
02620         if(pkt.pts != AV_NOPTS_VALUE)
02621             pkt.pts *= ist->ts_scale;
02622         if(pkt.dts != AV_NOPTS_VALUE)
02623             pkt.dts *= ist->ts_scale;
02624 
02625 
02626         if (pkt.dts != AV_NOPTS_VALUE && ist->next_pts != AV_NOPTS_VALUE
02627             && (is->iformat->flags & AVFMT_TS_DISCONT)) {
02628             int64_t pkt_dts= av_rescale_q(pkt.dts, ist->st->time_base, AV_TIME_BASE_Q);
02629             int64_t delta= pkt_dts - ist->next_pts;
02630             if((FFABS(delta) > 1LL*dts_delta_threshold*AV_TIME_BASE || pkt_dts+1<ist->pts)&& !copy_ts){
02631                 input_files[ist->file_index].ts_offset -= delta;
02632                 av_log(NULL, AV_LOG_DEBUG, "timestamp discontinuity %"PRId64", new offset= %"PRId64"\n",
02633                        delta, input_files[ist->file_index].ts_offset);
02634                 pkt.dts-= av_rescale_q(delta, AV_TIME_BASE_Q, ist->st->time_base);
02635                 if(pkt.pts != AV_NOPTS_VALUE)
02636                     pkt.pts-= av_rescale_q(delta, AV_TIME_BASE_Q, ist->st->time_base);
02637             }
02638         }
02639 
02640         
02641         if (output_packet(ist, output_streams, nb_output_streams, &pkt) < 0) {
02642 
02643             av_log(NULL, AV_LOG_ERROR, "Error while decoding stream #%d:%d\n",
02644                    ist->file_index, ist->st->index);
02645             if (exit_on_error)
02646                 exit_program(1);
02647             av_free_packet(&pkt);
02648             continue;
02649         }
02650 
02651     discard_packet:
02652         av_free_packet(&pkt);
02653 
02654         
02655         print_report(output_files, output_streams, nb_output_streams, 0, timer_start);
02656     }
02657 
02658     
02659     for (i = 0; i < nb_input_streams; i++) {
02660         ist = &input_streams[i];
02661         if (ist->decoding_needed) {
02662             output_packet(ist, output_streams, nb_output_streams, NULL);
02663         }
02664     }
02665     flush_encoders(output_streams, nb_output_streams);
02666 
02667     term_exit();
02668 
02669     
02670     for(i=0;i<nb_output_files;i++) {
02671         os = output_files[i].ctx;
02672         av_write_trailer(os);
02673     }
02674 
02675     
02676     print_report(output_files, output_streams, nb_output_streams, 1, timer_start);
02677 
02678     
02679     for (i = 0; i < nb_output_streams; i++) {
02680         ost = &output_streams[i];
02681         if (ost->encoding_needed) {
02682             av_freep(&ost->st->codec->stats_in);
02683             avcodec_close(ost->st->codec);
02684         }
02685 #if CONFIG_AVFILTER
02686         avfilter_graph_free(&ost->graph);
02687 #endif
02688     }
02689 
02690     
02691     for (i = 0; i < nb_input_streams; i++) {
02692         ist = &input_streams[i];
02693         if (ist->decoding_needed) {
02694             avcodec_close(ist->st->codec);
02695         }
02696     }
02697 
02698     
02699     ret = 0;
02700 
02701  fail:
02702     av_freep(&bit_buffer);
02703     av_freep(&no_packet);
02704 
02705     if (output_streams) {
02706         for (i = 0; i < nb_output_streams; i++) {
02707             ost = &output_streams[i];
02708             if (ost) {
02709                 if (ost->stream_copy)
02710                     av_freep(&ost->st->codec->extradata);
02711                 if (ost->logfile) {
02712                     fclose(ost->logfile);
02713                     ost->logfile = NULL;
02714                 }
02715                 av_fifo_free(ost->fifo); 
02716 
02717                 av_freep(&ost->st->codec->subtitle_header);
02718                 av_free(ost->resample_frame.data[0]);
02719                 av_free(ost->forced_kf_pts);
02720                 if (ost->video_resample)
02721                     sws_freeContext(ost->img_resample_ctx);
02722                 if (ost->resample)
02723                     audio_resample_close(ost->resample);
02724                 if (ost->reformat_ctx)
02725                     av_audio_convert_free(ost->reformat_ctx);
02726                 av_dict_free(&ost->opts);
02727             }
02728         }
02729     }
02730     return ret;
02731 }
02732 
02733 static double parse_frame_aspect_ratio(const char *arg)
02734 {
02735     int x = 0, y = 0;
02736     double ar = 0;
02737     const char *p;
02738     char *end;
02739 
02740     p = strchr(arg, ':');
02741     if (p) {
02742         x = strtol(arg, &end, 10);
02743         if (end == p)
02744             y = strtol(end+1, &end, 10);
02745         if (x > 0 && y > 0)
02746             ar = (double)x / (double)y;
02747     } else
02748         ar = strtod(arg, NULL);
02749 
02750     if (!ar) {
02751         av_log(NULL, AV_LOG_FATAL, "Incorrect aspect ratio specification.\n");
02752         exit_program(1);
02753     }
02754     return ar;
02755 }
02756 
02757 static int opt_audio_codec(OptionsContext *o, const char *opt, const char *arg)
02758 {
02759     return parse_option(o, "codec:a", arg, options);
02760 }
02761 
02762 static int opt_video_codec(OptionsContext *o, const char *opt, const char *arg)
02763 {
02764     return parse_option(o, "codec:v", arg, options);
02765 }
02766 
02767 static int opt_subtitle_codec(OptionsContext *o, const char *opt, const char *arg)
02768 {
02769     return parse_option(o, "codec:s", arg, options);
02770 }
02771 
02772 static int opt_data_codec(OptionsContext *o, const char *opt, const char *arg)
02773 {
02774     return parse_option(o, "codec:d", arg, options);
02775 }
02776 
02777 static int opt_map(OptionsContext *o, const char *opt, const char *arg)
02778 {
02779     StreamMap *m = NULL;
02780     int i, negative = 0, file_idx;
02781     int sync_file_idx = -1, sync_stream_idx;
02782     char *p, *sync;
02783     char *map;
02784 
02785     if (*arg == '-') {
02786         negative = 1;
02787         arg++;
02788     }
02789     map = av_strdup(arg);
02790 
02791     
02792     if (sync = strchr(map, ',')) {
02793         *sync = 0;
02794         sync_file_idx = strtol(sync + 1, &sync, 0);
02795         if (sync_file_idx >= nb_input_files || sync_file_idx < 0) {
02796             av_log(NULL, AV_LOG_FATAL, "Invalid sync file index: %d.\n", sync_file_idx);
02797             exit_program(1);
02798         }
02799         if (*sync)
02800             sync++;
02801         for (i = 0; i < input_files[sync_file_idx].nb_streams; i++)
02802             if (check_stream_specifier(input_files[sync_file_idx].ctx,
02803                                        input_files[sync_file_idx].ctx->streams[i], sync) == 1) {
02804                 sync_stream_idx = i;
02805                 break;
02806             }
02807         if (i == input_files[sync_file_idx].nb_streams) {
02808             av_log(NULL, AV_LOG_FATAL, "Sync stream specification in map %s does not "
02809                                        "match any streams.\n", arg);
02810             exit_program(1);
02811         }
02812     }
02813 
02814 
02815     file_idx = strtol(map, &p, 0);
02816     if (file_idx >= nb_input_files || file_idx < 0) {
02817         av_log(NULL, AV_LOG_FATAL, "Invalid input file index: %d.\n", file_idx);
02818         exit_program(1);
02819     }
02820     if (negative)
02821         
02822         for (i = 0; i < o->nb_stream_maps; i++) {
02823             m = &o->stream_maps[i];
02824             if (file_idx == m->file_index &&
02825                 check_stream_specifier(input_files[m->file_index].ctx,
02826                                        input_files[m->file_index].ctx->streams[m->stream_index],
02827                                        *p == ':' ? p + 1 : p) > 0)
02828                 m->disabled = 1;
02829         }
02830     else
02831         for (i = 0; i < input_files[file_idx].nb_streams; i++) {
02832             if (check_stream_specifier(input_files[file_idx].ctx, input_files[file_idx].ctx->streams[i],
02833                         *p == ':' ? p + 1 : p) <= 0)
02834                 continue;
02835             o->stream_maps = grow_array(o->stream_maps, sizeof(*o->stream_maps),
02836                                         &o->nb_stream_maps, o->nb_stream_maps + 1);
02837             m = &o->stream_maps[o->nb_stream_maps - 1];
02838 
02839             m->file_index   = file_idx;
02840             m->stream_index = i;
02841 
02842             if (sync_file_idx >= 0) {
02843                 m->sync_file_index   = sync_file_idx;
02844                 m->sync_stream_index = sync_stream_idx;
02845             } else {
02846                 m->sync_file_index   = file_idx;
02847                 m->sync_stream_index = i;
02848             }
02849         }
02850 
02851     if (!m) {
02852         av_log(NULL, AV_LOG_FATAL, "Stream map '%s' matches no streams.\n", arg);
02853         exit_program(1);
02854     }
02855 
02856     av_freep(&map);
02857     return 0;
02858 }
02859 
02860 static int opt_attach(OptionsContext *o, const char *opt, const char *arg)
02861 {
02862     o->attachments = grow_array(o->attachments, sizeof(*o->attachments),
02863                                 &o->nb_attachments, o->nb_attachments + 1);
02864     o->attachments[o->nb_attachments - 1] = arg;
02865     return 0;
02866 }
02867 
02868 static void parse_meta_type(char *arg, char *type, int *index)
02869 {
02870     if (*arg) {
02871         *type = *arg;
02872         switch (*arg) {
02873         case 'g':
02874             break;
02875         case 's':
02876         case 'c':
02877         case 'p':
02878             if (*(++arg) == ':')
02879                 *index = strtol(++arg, NULL, 0);
02880             break;
02881         default:
02882             av_log(NULL, AV_LOG_FATAL, "Invalid metadata type %c.\n", *arg);
02883             exit_program(1);
02884         }
02885     } else
02886         *type = 'g';
02887 }
02888 
02889 static int opt_map_metadata(OptionsContext *o, const char *opt, const char *arg)
02890 {
02891     MetadataMap *m, *m1;
02892     char *p;
02893 
02894     o->meta_data_maps = grow_array(o->meta_data_maps, sizeof(*o->meta_data_maps),
02895                                    &o->nb_meta_data_maps, o->nb_meta_data_maps + 1);
02896 
02897     m = &o->meta_data_maps[o->nb_meta_data_maps - 1][1];
02898     m->file = strtol(arg, &p, 0);
02899     parse_meta_type(*p ? p + 1 : p, &m->type, &m->index);
02900 
02901     m1 = &o->meta_data_maps[o->nb_meta_data_maps - 1][0];
02902     if (p = strchr(opt, ':'))
02903         parse_meta_type(p + 1, &m1->type, &m1->index);
02904     else
02905         m1->type = 'g';
02906 
02907     if (m->type == 'g' || m1->type == 'g')
02908         o->metadata_global_manual = 1;
02909     if (m->type == 's' || m1->type == 's')
02910         o->metadata_streams_manual = 1;
02911     if (m->type == 'c' || m1->type == 'c')
02912         o->metadata_chapters_manual = 1;
02913 
02914     return 0;
02915 }
02916 
02917 static AVCodec *find_codec_or_die(const char *name, enum AVMediaType type, int encoder)
02918 {
02919     const char *codec_string = encoder ? "encoder" : "decoder";
02920     AVCodec *codec;
02921 
02922     codec = encoder ?
02923         avcodec_find_encoder_by_name(name) :
02924         avcodec_find_decoder_by_name(name);
02925     if(!codec) {
02926         av_log(NULL, AV_LOG_FATAL, "Unknown %s '%s'\n", codec_string, name);
02927         exit_program(1);
02928     }
02929     if(codec->type != type) {
02930         av_log(NULL, AV_LOG_FATAL, "Invalid %s type '%s'\n", codec_string, name);
02931         exit_program(1);
02932     }
02933     return codec;
02934 }
02935 
02936 static AVCodec *choose_decoder(OptionsContext *o, AVFormatContext *s, AVStream *st)
02937 {
02938     char *codec_name = NULL;
02939 
02940     MATCH_PER_STREAM_OPT(codec_names, str, codec_name, s, st);
02941     if (codec_name) {
02942         AVCodec *codec = find_codec_or_die(codec_name, st->codec->codec_type, 0);
02943         st->codec->codec_id = codec->id;
02944         return codec;
02945     } else
02946         return avcodec_find_decoder(st->codec->codec_id);
02947 }
02948 
02953 static void add_input_streams(OptionsContext *o, AVFormatContext *ic)
02954 {
02955     int i, rfps, rfps_base;
02956 
02957     for (i = 0; i < ic->nb_streams; i++) {
02958         AVStream *st = ic->streams[i];
02959         AVCodecContext *dec = st->codec;
02960         InputStream *ist;
02961 
02962         input_streams = grow_array(input_streams, sizeof(*input_streams), &nb_input_streams, nb_input_streams + 1);
02963         ist = &input_streams[nb_input_streams - 1];
02964         ist->st = st;
02965         ist->file_index = nb_input_files;
02966         ist->discard = 1;
02967         ist->opts = filter_codec_opts(codec_opts, choose_decoder(o, ic, st), ic, st);
02968 
02969         ist->ts_scale = 1.0;
02970         MATCH_PER_STREAM_OPT(ts_scale, dbl, ist->ts_scale, ic, st);
02971 
02972         ist->dec = choose_decoder(o, ic, st);
02973 
02974         switch (dec->codec_type) {
02975         case AVMEDIA_TYPE_AUDIO:
02976             if(!ist->dec)
02977                 ist->dec = avcodec_find_decoder(dec->codec_id);
02978             if(o->audio_disable)
02979                 st->discard= AVDISCARD_ALL;
02980             break;
02981         case AVMEDIA_TYPE_VIDEO:
02982             if(!ist->dec)
02983                 ist->dec = avcodec_find_decoder(dec->codec_id);
02984             rfps      = ic->streams[i]->r_frame_rate.num;
02985             rfps_base = ic->streams[i]->r_frame_rate.den;
02986             if (dec->lowres) {
02987                 dec->flags |= CODEC_FLAG_EMU_EDGE;
02988             }
02989 
02990             if (dec->time_base.den != rfps*dec->ticks_per_frame || dec->time_base.num != rfps_base) {
02991 
02992                 av_log(NULL, AV_LOG_INFO,"\nSeems stream %d codec frame rate differs from container frame rate: %2.2f (%d/%d) -> %2.2f (%d/%d)\n",
02993                        i, (float)dec->time_base.den / dec->time_base.num, dec->time_base.den, dec->time_base.num,
02994                        (float)rfps / rfps_base, rfps, rfps_base);
02995             }
02996 
02997             if (o->video_disable)
02998                 st->discard= AVDISCARD_ALL;
02999             else if(video_discard)
03000                 st->discard= video_discard;
03001             break;
03002         case AVMEDIA_TYPE_DATA:
03003             break;
03004         case AVMEDIA_TYPE_SUBTITLE:
03005             if(!ist->dec)
03006                 ist->dec = avcodec_find_decoder(dec->codec_id);
03007             if(o->subtitle_disable)
03008                 st->discard = AVDISCARD_ALL;
03009             break;
03010         case AVMEDIA_TYPE_ATTACHMENT:
03011         case AVMEDIA_TYPE_UNKNOWN:
03012             break;
03013         default:
03014             abort();
03015         }
03016     }
03017 }
03018 
03019 static void assert_file_overwrite(const char *filename)
03020 {
03021     if ((!file_overwrite || no_file_overwrite) &&
03022         (strchr(filename, ':') == NULL || filename[1] == ':' ||
03023          av_strstart(filename, "file:", NULL))) {
03024         if (avio_check(filename, 0) == 0) {
03025             if (!using_stdin && (!no_file_overwrite || file_overwrite)) {
03026                 fprintf(stderr,"File '%s' already exists. Overwrite ? [y/N] ", filename);
03027                 fflush(stderr);
03028                 if (!read_yesno()) {
03029                     fprintf(stderr, "Not overwriting - exiting\n");
03030                     exit_program(1);
03031                 }
03032             }
03033             else {
03034                 fprintf(stderr,"File '%s' already exists. Exiting.\n", filename);
03035                 exit_program(1);
03036             }
03037         }
03038     }
03039 }
03040 
03041 static void dump_attachment(AVStream *st, const char *filename)
03042 {
03043     int ret;
03044     AVIOContext *out = NULL;
03045     AVDictionaryEntry *e;
03046 
03047     if (!st->codec->extradata_size) {
03048         av_log(NULL, AV_LOG_WARNING, "No extradata to dump in stream #%d:%d.\n",
03049                nb_input_files - 1, st->index);
03050         return;
03051     }
03052     if (!*filename && (e = av_dict_get(st->metadata, "filename", NULL, 0)))
03053         filename = e->value;
03054     if (!*filename) {
03055         av_log(NULL, AV_LOG_FATAL, "No filename specified and no 'filename' tag"
03056                "in stream #%d:%d.\n", nb_input_files - 1, st->index);
03057         exit_program(1);
03058     }
03059 
03060     assert_file_overwrite(filename);
03061 
03062     if ((ret = avio_open2(&out, filename, AVIO_FLAG_WRITE, &int_cb, NULL)) < 0) {
03063         av_log(NULL, AV_LOG_FATAL, "Could not open file %s for writing.\n",
03064                filename);
03065         exit_program(1);
03066     }
03067 
03068     avio_write(out, st->codec->extradata, st->codec->extradata_size);
03069     avio_flush(out);
03070     avio_close(out);
03071 }
03072 
03073 static int opt_input_file(OptionsContext *o, const char *opt, const char *filename)
03074 {
03075     AVFormatContext *ic;
03076     AVInputFormat *file_iformat = NULL;
03077     int err, i, ret;
03078     int64_t timestamp;
03079     uint8_t buf[128];
03080     AVDictionary **opts;
03081     int orig_nb_streams;                     
03082 
03083     if (o->format) {
03084         if (!(file_iformat = av_find_input_format(o->format))) {
03085             av_log(NULL, AV_LOG_FATAL, "Unknown input format: '%s'\n", o->format);
03086             exit_program(1);
03087         }
03088     }
03089 
03090     if (!strcmp(filename, "-"))
03091         filename = "pipe:";
03092 
03093     using_stdin |= !strncmp(filename, "pipe:", 5) ||
03094                     !strcmp(filename, "/dev/stdin");
03095 
03096     
03097     ic = avformat_alloc_context();
03098     if (!ic) {
03099         print_error(filename, AVERROR(ENOMEM));
03100         exit_program(1);
03101     }
03102     if (o->nb_audio_sample_rate) {
03103         snprintf(buf, sizeof(buf), "%d", o->audio_sample_rate[o->nb_audio_sample_rate - 1].u.i);
03104         av_dict_set(&format_opts, "sample_rate", buf, 0);
03105     }
03106     if (o->nb_audio_channels) {
03107         snprintf(buf, sizeof(buf), "%d", o->audio_channels[o->nb_audio_channels - 1].u.i);
03108         av_dict_set(&format_opts, "channels", buf, 0);
03109     }
03110     if (o->nb_frame_rates) {
03111         av_dict_set(&format_opts, "framerate", o->frame_rates[o->nb_frame_rates - 1].u.str, 0);
03112     }
03113     if (o->nb_frame_sizes) {
03114         av_dict_set(&format_opts, "video_size", o->frame_sizes[o->nb_frame_sizes - 1].u.str, 0);
03115     }
03116     if (o->nb_frame_pix_fmts)
03117         av_dict_set(&format_opts, "pixel_format", o->frame_pix_fmts[o->nb_frame_pix_fmts - 1].u.str, 0);
03118 
03119     ic->flags |= AVFMT_FLAG_NONBLOCK;
03120     ic->interrupt_callback = int_cb;
03121 
03122     
03123     err = avformat_open_input(&ic, filename, file_iformat, &format_opts);
03124     if (err < 0) {
03125         print_error(filename, err);
03126         exit_program(1);
03127     }
03128     assert_avoptions(format_opts);
03129 
03130     
03131     for (i = 0; i < ic->nb_streams; i++)
03132         choose_decoder(o, ic, ic->streams[i]);
03133 
03134     
03135     opts = setup_find_stream_info_opts(ic, codec_opts);
03136     orig_nb_streams = ic->nb_streams;
03137 
03138     
03139 
03140     ret = avformat_find_stream_info(ic, opts);
03141     if (ret < 0) {
03142         av_log(NULL, AV_LOG_FATAL, "%s: could not find codec parameters\n", filename);
03143         av_close_input_file(ic);
03144         exit_program(1);
03145     }
03146 
03147     timestamp = o->start_time;
03148     
03149     if (ic->start_time != AV_NOPTS_VALUE)
03150         timestamp += ic->start_time;
03151 
03152     
03153     if (o->start_time != 0) {
03154         ret = av_seek_frame(ic, -1, timestamp, AVSEEK_FLAG_BACKWARD);
03155         if (ret < 0) {
03156             av_log(NULL, AV_LOG_WARNING, "%s: could not seek to position %0.3f\n",
03157                    filename, (double)timestamp / AV_TIME_BASE);
03158         }
03159     }
03160 
03161     
03162     add_input_streams(o, ic);
03163 
03164     
03165     av_dump_format(ic, nb_input_files, filename, 0);
03166 
03167     input_files = grow_array(input_files, sizeof(*input_files), &nb_input_files, nb_input_files + 1);
03168     input_files[nb_input_files - 1].ctx        = ic;
03169     input_files[nb_input_files - 1].ist_index  = nb_input_streams - ic->nb_streams;
03170     input_files[nb_input_files - 1].ts_offset  = o->input_ts_offset - (copy_ts ? 0 : timestamp);
03171     input_files[nb_input_files - 1].nb_streams = ic->nb_streams;
03172     input_files[nb_input_files - 1].rate_emu   = o->rate_emu;
03173 
03174     for (i = 0; i < o->nb_dump_attachment; i++) {
03175         int j;
03176 
03177         for (j = 0; j < ic->nb_streams; j++) {
03178             AVStream *st = ic->streams[j];
03179 
03180             if (check_stream_specifier(ic, st, o->dump_attachment[i].specifier) == 1)
03181                 dump_attachment(st, o->dump_attachment[i].u.str);
03182         }
03183     }
03184 
03185     for (i = 0; i < orig_nb_streams; i++)
03186         av_dict_free(&opts[i]);
03187     av_freep(&opts);
03188 
03189     reset_options(o);
03190     return 0;
03191 }
03192 
03193 static void parse_forced_key_frames(char *kf, OutputStream *ost,
03194                                     AVCodecContext *avctx)
03195 {
03196     char *p;
03197     int n = 1, i;
03198     int64_t t;
03199 
03200     for (p = kf; *p; p++)
03201         if (*p == ',')
03202             n++;
03203     ost->forced_kf_count = n;
03204     ost->forced_kf_pts = av_malloc(sizeof(*ost->forced_kf_pts) * n);
03205     if (!ost->forced_kf_pts) {
03206         av_log(NULL, AV_LOG_FATAL, "Could not allocate forced key frames array.\n");
03207         exit_program(1);
03208     }
03209     for (i = 0; i < n; i++) {
03210         p = i ? strchr(p, ',') + 1 : kf;
03211         t = parse_time_or_die("force_key_frames", p, 1);
03212         ost->forced_kf_pts[i] = av_rescale_q(t, AV_TIME_BASE_Q, avctx->time_base);
03213     }
03214 }
03215 
03216 static uint8_t *get_line(AVIOContext *s)
03217 {
03218     AVIOContext *line;
03219     uint8_t *buf;
03220     char c;
03221 
03222     if (avio_open_dyn_buf(&line) < 0) {
03223         av_log(NULL, AV_LOG_FATAL, "Could not alloc buffer for reading preset.\n");
03224         exit_program(1);
03225     }
03226 
03227     while ((c = avio_r8(s)) && c != '\n')
03228         avio_w8(line, c);
03229     avio_w8(line, 0);
03230     avio_close_dyn_buf(line, &buf);
03231 
03232     return buf;
03233 }
03234 
03235 static int get_preset_file_2(const char *preset_name, const char *codec_name, AVIOContext **s)
03236 {
03237     int i, ret = 1;
03238     char filename[1000];
03239     const char *base[3] = { getenv("AVCONV_DATADIR"),
03240                             getenv("HOME"),
03241                             AVCONV_DATADIR,
03242                             };
03243 
03244     for (i = 0; i < FF_ARRAY_ELEMS(base) && ret; i++) {
03245         if (!base[i])
03246             continue;
03247         if (codec_name) {
03248             snprintf(filename, sizeof(filename), "%s%s/%s-%s.avpreset", base[i],
03249                      i != 1 ? "" : "/.avconv", codec_name, preset_name);
03250             ret = avio_open2(s, filename, AVIO_FLAG_READ, &int_cb, NULL);
03251         }
03252         if (ret) {
03253             snprintf(filename, sizeof(filename), "%s%s/%s.avpreset", base[i],
03254                      i != 1 ? "" : "/.avconv", preset_name);
03255             ret = avio_open2(s, filename, AVIO_FLAG_READ, &int_cb, NULL);
03256         }
03257     }
03258     return ret;
03259 }
03260 
03261 static void choose_encoder(OptionsContext *o, AVFormatContext *s, OutputStream *ost)
03262 {
03263     char *codec_name = NULL;
03264 
03265     MATCH_PER_STREAM_OPT(codec_names, str, codec_name, s, ost->st);
03266     if (!codec_name) {
03267         ost->st->codec->codec_id = av_guess_codec(s->oformat, NULL, s->filename,
03268                                                   NULL, ost->st->codec->codec_type);
03269         ost->enc = avcodec_find_encoder(ost->st->codec->codec_id);
03270     } else if (!strcmp(codec_name, "copy"))
03271         ost->stream_copy = 1;
03272     else {
03273         ost->enc = find_codec_or_die(codec_name, ost->st->codec->codec_type, 1);
03274         ost->st->codec->codec_id = ost->enc->id;
03275     }
03276 }
03277 
03278 static OutputStream *new_output_stream(OptionsContext *o, AVFormatContext *oc, enum AVMediaType type)
03279 {
03280     OutputStream *ost;
03281     AVStream *st = avformat_new_stream(oc, NULL);
03282     int idx      = oc->nb_streams - 1, ret = 0;
03283     char *bsf = NULL, *next, *codec_tag = NULL;
03284     AVBitStreamFilterContext *bsfc, *bsfc_prev = NULL;
03285     double qscale = -1;
03286     char *buf = NULL, *arg = NULL, *preset = NULL;
03287     AVIOContext *s = NULL;
03288 
03289     if (!st) {
03290         av_log(NULL, AV_LOG_FATAL, "Could not alloc stream.\n");
03291         exit_program(1);
03292     }
03293 
03294     if (oc->nb_streams - 1 < o->nb_streamid_map)
03295         st->id = o->streamid_map[oc->nb_streams - 1];
03296 
03297     output_streams = grow_array(output_streams, sizeof(*output_streams), &nb_output_streams,
03298                                 nb_output_streams + 1);
03299     ost = &output_streams[nb_output_streams - 1];
03300     ost->file_index = nb_output_files;
03301     ost->index = idx;
03302     ost->st    = st;
03303     st->codec->codec_type = type;
03304     choose_encoder(o, oc, ost);
03305     if (ost->enc) {
03306         ost->opts  = filter_codec_opts(codec_opts, ost->enc, oc, st);
03307     }
03308 
03309     avcodec_get_context_defaults3(st->codec, ost->enc);
03310     st->codec->codec_type = type; 
03311 
03312     MATCH_PER_STREAM_OPT(presets, str, preset, oc, st);
03313     if (preset && (!(ret = get_preset_file_2(preset, ost->enc->name, &s)))) {
03314         do  {
03315             buf = get_line(s);
03316             if (!buf[0] || buf[0] == '#') {
03317                 av_free(buf);
03318                 continue;
03319             }
03320             if (!(arg = strchr(buf, '='))) {
03321                 av_log(NULL, AV_LOG_FATAL, "Invalid line found in the preset file.\n");
03322                 exit_program(1);
03323             }
03324             *arg++ = 0;
03325             av_dict_set(&ost->opts, buf, arg, AV_DICT_DONT_OVERWRITE);
03326             av_free(buf);
03327         } while (!s->eof_reached);
03328         avio_close(s);
03329     }
03330     if (ret) {
03331         av_log(NULL, AV_LOG_FATAL,
03332                "Preset %s specified for stream %d:%d, but could not be opened.\n",
03333                preset, ost->file_index, ost->index);
03334         exit_program(1);
03335     }
03336 
03337     ost->max_frames = INT64_MAX;
03338     MATCH_PER_STREAM_OPT(max_frames, i64, ost->max_frames, oc, st);
03339 
03340     MATCH_PER_STREAM_OPT(bitstream_filters, str, bsf, oc, st);
03341     while (bsf) {
03342         if (next = strchr(bsf, ','))
03343             *next++ = 0;
03344         if (!(bsfc = av_bitstream_filter_init(bsf))) {
03345             av_log(NULL, AV_LOG_FATAL, "Unknown bitstream filter %s\n", bsf);
03346             exit_program(1);
03347         }
03348         if (bsfc_prev)
03349             bsfc_prev->next = bsfc;
03350         else
03351             ost->bitstream_filters = bsfc;
03352 
03353         bsfc_prev = bsfc;
03354         bsf       = next;
03355     }
03356 
03357     MATCH_PER_STREAM_OPT(codec_tags, str, codec_tag, oc, st);
03358     if (codec_tag) {
03359         uint32_t tag = strtol(codec_tag, &next, 0);
03360         if (*next)
03361             tag = AV_RL32(codec_tag);
03362         st->codec->codec_tag = tag;
03363     }
03364 
03365     MATCH_PER_STREAM_OPT(qscale, dbl, qscale, oc, st);
03366     if (qscale >= 0 || same_quant) {
03367         st->codec->flags |= CODEC_FLAG_QSCALE;
03368         st->codec->global_quality = FF_QP2LAMBDA * qscale;
03369     }
03370 
03371     if (oc->oformat->flags & AVFMT_GLOBALHEADER)
03372         st->codec->flags |= CODEC_FLAG_GLOBAL_HEADER;
03373 
03374     av_opt_get_int(sws_opts, "sws_flags", 0, &ost->sws_flags);
03375     return ost;
03376 }
03377 
03378 static void parse_matrix_coeffs(uint16_t *dest, const char *str)
03379 {
03380     int i;
03381     const char *p = str;
03382     for(i = 0;; i++) {
03383         dest[i] = atoi(p);
03384         if(i == 63)
03385             break;
03386         p = strchr(p, ',');
03387         if(!p) {
03388             av_log(NULL, AV_LOG_FATAL, "Syntax error in matrix \"%s\" at coeff %d\n", str, i);
03389             exit_program(1);
03390         }
03391         p++;
03392     }
03393 }
03394 
03395 static OutputStream *new_video_stream(OptionsContext *o, AVFormatContext *oc)
03396 {
03397     AVStream *st;
03398     OutputStream *ost;
03399     AVCodecContext *video_enc;
03400 
03401     ost = new_output_stream(o, oc, AVMEDIA_TYPE_VIDEO);
03402     st  = ost->st;
03403     video_enc = st->codec;
03404 
03405     if (!ost->stream_copy) {
03406         const char *p = NULL;
03407         char *forced_key_frames = NULL, *frame_rate = NULL, *frame_size = NULL;
03408         char *frame_aspect_ratio = NULL, *frame_pix_fmt = NULL;
03409         char *intra_matrix = NULL, *inter_matrix = NULL, *filters = NULL;
03410         int i;
03411 
03412         MATCH_PER_STREAM_OPT(frame_rates, str, frame_rate, oc, st);
03413         if (frame_rate && av_parse_video_rate(&ost->frame_rate, frame_rate) < 0) {
03414             av_log(NULL, AV_LOG_FATAL, "Invalid framerate value: %s\n", frame_rate);
03415             exit_program(1);
03416         }
03417 
03418         MATCH_PER_STREAM_OPT(frame_sizes, str, frame_size, oc, st);
03419         if (frame_size && av_parse_video_size(&video_enc->width, &video_enc->height, frame_size) < 0) {
03420             av_log(NULL, AV_LOG_FATAL, "Invalid frame size: %s.\n", frame_size);
03421             exit_program(1);
03422         }
03423 
03424         MATCH_PER_STREAM_OPT(frame_aspect_ratios, str, frame_aspect_ratio, oc, st);
03425         if (frame_aspect_ratio)
03426             ost->frame_aspect_ratio = parse_frame_aspect_ratio(frame_aspect_ratio);
03427 
03428         MATCH_PER_STREAM_OPT(frame_pix_fmts, str, frame_pix_fmt, oc, st);
03429         if (frame_pix_fmt && (video_enc->pix_fmt = av_get_pix_fmt(frame_pix_fmt)) == PIX_FMT_NONE) {
03430             av_log(NULL, AV_LOG_FATAL, "Unknown pixel format requested: %s.\n", frame_pix_fmt);
03431             exit_program(1);
03432         }
03433         st->sample_aspect_ratio = video_enc->sample_aspect_ratio;
03434 
03435         MATCH_PER_STREAM_OPT(intra_matrices, str, intra_matrix, oc, st);
03436         if (intra_matrix) {
03437             if (!(video_enc->intra_matrix = av_mallocz(sizeof(*video_enc->intra_matrix) * 64))) {
03438                 av_log(NULL, AV_LOG_FATAL, "Could not allocate memory for intra matrix.\n");
03439                 exit_program(1);
03440             }
03441             parse_matrix_coeffs(video_enc->intra_matrix, intra_matrix);
03442         }
03443         MATCH_PER_STREAM_OPT(inter_matrices, str, inter_matrix, oc, st);
03444         if (inter_matrix) {
03445             if (!(video_enc->inter_matrix = av_mallocz(sizeof(*video_enc->inter_matrix) * 64))) {
03446                 av_log(NULL, AV_LOG_FATAL, "Could not allocate memory for inter matrix.\n");
03447                 exit_program(1);
03448             }
03449             parse_matrix_coeffs(video_enc->inter_matrix, inter_matrix);
03450         }
03451 
03452         MATCH_PER_STREAM_OPT(rc_overrides, str, p, oc, st);
03453         for(i=0; p; i++){
03454             int start, end, q;
03455             int e=sscanf(p, "%d,%d,%d", &start, &end, &q);
03456             if(e!=3){
03457                 av_log(NULL, AV_LOG_FATAL, "error parsing rc_override\n");
03458                 exit_program(1);
03459             }
03460             video_enc->rc_override=
03461                 av_realloc(video_enc->rc_override,
03462                            sizeof(RcOverride)*(i+1));
03463             video_enc->rc_override[i].start_frame= start;
03464             video_enc->rc_override[i].end_frame  = end;
03465             if(q>0){
03466                 video_enc->rc_override[i].qscale= q;
03467                 video_enc->rc_override[i].quality_factor= 1.0;
03468             }
03469             else{
03470                 video_enc->rc_override[i].qscale= 0;
03471                 video_enc->rc_override[i].quality_factor= -q/100.0;
03472             }
03473             p= strchr(p, '/');
03474             if(p) p++;
03475         }
03476         video_enc->rc_override_count=i;
03477         if (!video_enc->rc_initial_buffer_occupancy)
03478             video_enc->rc_initial_buffer_occupancy = video_enc->rc_buffer_size*3/4;
03479         video_enc->intra_dc_precision= intra_dc_precision - 8;
03480 
03481         
03482         if (do_pass) {
03483             if (do_pass == 1) {
03484                 video_enc->flags |= CODEC_FLAG_PASS1;
03485             } else {
03486                 video_enc->flags |= CODEC_FLAG_PASS2;
03487             }
03488         }
03489 
03490         MATCH_PER_STREAM_OPT(forced_key_frames, str, forced_key_frames, oc, st);
03491         if (forced_key_frames)
03492             parse_forced_key_frames(forced_key_frames, ost, video_enc);
03493 
03494         MATCH_PER_STREAM_OPT(force_fps, i, ost->force_fps, oc, st);
03495 
03496         ost->top_field_first = -1;
03497         MATCH_PER_STREAM_OPT(top_field_first, i, ost->top_field_first, oc, st);
03498 
03499         MATCH_PER_STREAM_OPT(copy_initial_nonkeyframes, i, ost->copy_initial_nonkeyframes, oc ,st);
03500 
03501 #if CONFIG_AVFILTER
03502         MATCH_PER_STREAM_OPT(filters, str, filters, oc, st);
03503         if (filters)
03504             ost->avfilter = av_strdup(filters);
03505 #endif
03506     }
03507 
03508     return ost;
03509 }
03510 
03511 static OutputStream *new_audio_stream(OptionsContext *o, AVFormatContext *oc)
03512 {
03513     AVStream *st;
03514     OutputStream *ost;
03515     AVCodecContext *audio_enc;
03516 
03517     ost = new_output_stream(o, oc, AVMEDIA_TYPE_AUDIO);
03518     st  = ost->st;
03519 
03520     audio_enc = st->codec;
03521     audio_enc->codec_type = AVMEDIA_TYPE_AUDIO;
03522 
03523     if (!ost->stream_copy) {
03524         char *sample_fmt = NULL;
03525 
03526         MATCH_PER_STREAM_OPT(audio_channels, i, audio_enc->channels, oc, st);
03527 
03528         MATCH_PER_STREAM_OPT(sample_fmts, str, sample_fmt, oc, st);
03529         if (sample_fmt &&
03530             (audio_enc->sample_fmt = av_get_sample_fmt(sample_fmt)) == AV_SAMPLE_FMT_NONE) {
03531             av_log(NULL, AV_LOG_FATAL, "Invalid sample format '%s'\n", sample_fmt);
03532             exit_program(1);
03533         }
03534 
03535         MATCH_PER_STREAM_OPT(audio_sample_rate, i, audio_enc->sample_rate, oc, st);
03536     }
03537 
03538     return ost;
03539 }
03540 
03541 static OutputStream *new_data_stream(OptionsContext *o, AVFormatContext *oc)
03542 {
03543     OutputStream *ost;
03544 
03545     ost = new_output_stream(o, oc, AVMEDIA_TYPE_DATA);
03546     if (!ost->stream_copy) {
03547         av_log(NULL, AV_LOG_FATAL, "Data stream encoding not supported yet (only streamcopy)\n");
03548         exit_program(1);
03549     }
03550 
03551     return ost;
03552 }
03553 
03554 static OutputStream *new_attachment_stream(OptionsContext *o, AVFormatContext *oc)
03555 {
03556     OutputStream *ost = new_output_stream(o, oc, AVMEDIA_TYPE_ATTACHMENT);
03557     ost->stream_copy = 1;
03558     return ost;
03559 }
03560 
03561 static OutputStream *new_subtitle_stream(OptionsContext *o, AVFormatContext *oc)
03562 {
03563     AVStream *st;
03564     OutputStream *ost;
03565     AVCodecContext *subtitle_enc;
03566 
03567     ost = new_output_stream(o, oc, AVMEDIA_TYPE_SUBTITLE);
03568     st  = ost->st;
03569     subtitle_enc = st->codec;
03570 
03571     subtitle_enc->codec_type = AVMEDIA_TYPE_SUBTITLE;
03572 
03573     return ost;
03574 }
03575 
03576 
03577 static int opt_streamid(OptionsContext *o, const char *opt, const char *arg)
03578 {
03579     int idx;
03580     char *p;
03581     char idx_str[16];
03582 
03583     av_strlcpy(idx_str, arg, sizeof(idx_str));
03584     p = strchr(idx_str, ':');
03585     if (!p) {
03586         av_log(NULL, AV_LOG_FATAL,
03587                "Invalid value '%s' for option '%s', required syntax is 'index:value'\n",
03588                arg, opt);
03589         exit_program(1);
03590     }
03591     *p++ = '\0';
03592     idx = parse_number_or_die(opt, idx_str, OPT_INT, 0, MAX_STREAMS-1);
03593     o->streamid_map = grow_array(o->streamid_map, sizeof(*o->streamid_map), &o->nb_streamid_map, idx+1);
03594     o->streamid_map[idx] = parse_number_or_die(opt, p, OPT_INT, 0, INT_MAX);
03595     return 0;
03596 }
03597 
03598 static int copy_chapters(InputFile *ifile, OutputFile *ofile, int copy_metadata)
03599 {
03600     AVFormatContext *is = ifile->ctx;
03601     AVFormatContext *os = ofile->ctx;
03602     int i;
03603 
03604     for (i = 0; i < is->nb_chapters; i++) {
03605         AVChapter *in_ch = is->chapters[i], *out_ch;
03606         int64_t ts_off   = av_rescale_q(ofile->start_time - ifile->ts_offset,
03607                                       AV_TIME_BASE_Q, in_ch->time_base);
03608         int64_t rt       = (ofile->recording_time == INT64_MAX) ? INT64_MAX :
03609                            av_rescale_q(ofile->recording_time, AV_TIME_BASE_Q, in_ch->time_base);
03610 
03611 
03612         if (in_ch->end < ts_off)
03613             continue;
03614         if (rt != INT64_MAX && in_ch->start > rt + ts_off)
03615             break;
03616 
03617         out_ch = av_mallocz(sizeof(AVChapter));
03618         if (!out_ch)
03619             return AVERROR(ENOMEM);
03620 
03621         out_ch->id        = in_ch->id;
03622         out_ch->time_base = in_ch->time_base;
03623         out_ch->start     = FFMAX(0,  in_ch->start - ts_off);
03624         out_ch->end       = FFMIN(rt, in_ch->end   - ts_off);
03625 
03626         if (copy_metadata)
03627             av_dict_copy(&out_ch->metadata, in_ch->metadata, 0);
03628 
03629         os->nb_chapters++;
03630         os->chapters = av_realloc(os->chapters, sizeof(AVChapter)*os->nb_chapters);
03631         if (!os->chapters)
03632             return AVERROR(ENOMEM);
03633         os->chapters[os->nb_chapters - 1] = out_ch;
03634     }
03635     return 0;
03636 }
03637 
03638 static void opt_output_file(void *optctx, const char *filename)
03639 {
03640     OptionsContext *o = optctx;
03641     AVFormatContext *oc;
03642     int i, err;
03643     AVOutputFormat *file_oformat;
03644     OutputStream *ost;
03645     InputStream  *ist;
03646 
03647     if (!strcmp(filename, "-"))
03648         filename = "pipe:";
03649 
03650     err = avformat_alloc_output_context2(&oc, NULL, o->format, filename);
03651     if (!oc) {
03652         print_error(filename, err);
03653         exit_program(1);
03654     }
03655 
03656     file_oformat= oc->oformat;
03657     oc->interrupt_callback = int_cb;
03658 
03659     if (!o->nb_stream_maps) {
03660         
03661 #define NEW_STREAM(type, index)\
03662         if (index >= 0) {\
03663             ost = new_ ## type ## _stream(o, oc);\
03664             ost->source_index = index;\
03665             ost->sync_ist     = &input_streams[index];\
03666             input_streams[index].discard = 0;\
03667         }
03668 
03669         
03670         if (!o->video_disable && oc->oformat->video_codec != CODEC_ID_NONE) {
03671             int area = 0, idx = -1;
03672             for (i = 0; i < nb_input_streams; i++) {
03673                 ist = &input_streams[i];
03674                 if (ist->st->codec->codec_type == AVMEDIA_TYPE_VIDEO &&
03675                     ist->st->codec->width * ist->st->codec->height > area) {
03676                     area = ist->st->codec->width * ist->st->codec->height;
03677                     idx = i;
03678                 }
03679             }
03680             NEW_STREAM(video, idx);
03681         }
03682 
03683         
03684         if (!o->audio_disable && oc->oformat->audio_codec != CODEC_ID_NONE) {
03685             int channels = 0, idx = -1;
03686             for (i = 0; i < nb_input_streams; i++) {
03687                 ist = &input_streams[i];
03688                 if (ist->st->codec->codec_type == AVMEDIA_TYPE_AUDIO &&
03689                     ist->st->codec->channels > channels) {
03690                     channels = ist->st->codec->channels;
03691                     idx = i;
03692                 }
03693             }
03694             NEW_STREAM(audio, idx);
03695         }
03696 
03697         
03698         if (!o->subtitle_disable && oc->oformat->subtitle_codec != CODEC_ID_NONE) {
03699             for (i = 0; i < nb_input_streams; i++)
03700                 if (input_streams[i].st->codec->codec_type == AVMEDIA_TYPE_SUBTITLE) {
03701                     NEW_STREAM(subtitle, i);
03702                     break;
03703                 }
03704         }
03705         
03706     } else {
03707         for (i = 0; i < o->nb_stream_maps; i++) {
03708             StreamMap *map = &o->stream_maps[i];
03709 
03710             if (map->disabled)
03711                 continue;
03712 
03713             ist = &input_streams[input_files[map->file_index].ist_index + map->stream_index];
03714             switch (ist->st->codec->codec_type) {
03715             case AVMEDIA_TYPE_VIDEO:    ost = new_video_stream(o, oc);    break;
03716             case AVMEDIA_TYPE_AUDIO:    ost = new_audio_stream(o, oc);    break;
03717             case AVMEDIA_TYPE_SUBTITLE: ost = new_subtitle_stream(o, oc); break;
03718             case AVMEDIA_TYPE_DATA:     ost = new_data_stream(o, oc);     break;
03719             case AVMEDIA_TYPE_ATTACHMENT: ost = new_attachment_stream(o, oc); break;
03720             default:
03721                 av_log(NULL, AV_LOG_FATAL, "Cannot map stream #%d:%d - unsupported type.\n",
03722                        map->file_index, map->stream_index);
03723                 exit_program(1);
03724             }
03725 
03726             ost->source_index = input_files[map->file_index].ist_index + map->stream_index;
03727             ost->sync_ist = &input_streams[input_files[map->sync_file_index].ist_index +
03728                                            map->sync_stream_index];
03729             ist->discard = 0;
03730         }
03731     }
03732 
03733     
03734     for (i = 0; i < o->nb_attachments; i++) {
03735         AVIOContext *pb;
03736         uint8_t *attachment;
03737         const char *p;
03738         int64_t len;
03739 
03740         if ((err = avio_open2(&pb, o->attachments[i], AVIO_FLAG_READ, &int_cb, NULL)) < 0) {
03741             av_log(NULL, AV_LOG_FATAL, "Could not open attachment file %s.\n",
03742                    o->attachments[i]);
03743             exit_program(1);
03744         }
03745         if ((len = avio_size(pb)) <= 0) {
03746             av_log(NULL, AV_LOG_FATAL, "Could not get size of the attachment %s.\n",
03747                    o->attachments[i]);
03748             exit_program(1);
03749         }
03750         if (!(attachment = av_malloc(len))) {
03751             av_log(NULL, AV_LOG_FATAL, "Attachment %s too large to fit into memory.\n",
03752                    o->attachments[i]);
03753             exit_program(1);
03754         }
03755         avio_read(pb, attachment, len);
03756 
03757         ost = new_attachment_stream(o, oc);
03758         ost->stream_copy               = 0;
03759         ost->source_index              = -1;
03760         ost->attachment_filename       = o->attachments[i];
03761         ost->st->codec->extradata      = attachment;
03762         ost->st->codec->extradata_size = len;
03763 
03764         p = strrchr(o->attachments[i], '/');
03765         av_dict_set(&ost->st->metadata, "filename", (p && *p) ? p + 1 : o->attachments[i], AV_DICT_DONT_OVERWRITE);
03766         avio_close(pb);
03767     }
03768 
03769     output_files = grow_array(output_files, sizeof(*output_files), &nb_output_files, nb_output_files + 1);
03770     output_files[nb_output_files - 1].ctx       = oc;
03771     output_files[nb_output_files - 1].ost_index = nb_output_streams - oc->nb_streams;
03772     output_files[nb_output_files - 1].recording_time = o->recording_time;
03773     output_files[nb_output_files - 1].start_time     = o->start_time;
03774     output_files[nb_output_files - 1].limit_filesize = o->limit_filesize;
03775     av_dict_copy(&output_files[nb_output_files - 1].opts, format_opts, 0);
03776 
03777     
03778     if (oc->oformat->flags & AVFMT_NEEDNUMBER) {
03779         if (!av_filename_number_test(oc->filename)) {
03780             print_error(oc->filename, AVERROR(EINVAL));
03781             exit_program(1);
03782         }
03783     }
03784 
03785     if (!(oc->oformat->flags & AVFMT_NOFILE)) {
03786         
03787         assert_file_overwrite(filename);
03788 
03789         
03790         if ((err = avio_open2(&oc->pb, filename, AVIO_FLAG_WRITE,
03791                               &oc->interrupt_callback,
03792                               &output_files[nb_output_files - 1].opts)) < 0) {
03793             print_error(filename, err);
03794             exit_program(1);
03795         }
03796     }
03797 
03798     if (o->mux_preload) {
03799         uint8_t buf[64];
03800         snprintf(buf, sizeof(buf), "%d", (int)(o->mux_preload*AV_TIME_BASE));
03801         av_dict_set(&output_files[nb_output_files - 1].opts, "preload", buf, 0);
03802     }
03803     oc->max_delay = (int)(o->mux_max_delay * AV_TIME_BASE);
03804 
03805     
03806     if (o->chapters_input_file >= nb_input_files) {
03807         if (o->chapters_input_file == INT_MAX) {
03808             
03809             o->chapters_input_file = -1;
03810             for (i = 0; i < nb_input_files; i++)
03811                 if (input_files[i].ctx->nb_chapters) {
03812                     o->chapters_input_file = i;
03813                     break;
03814                 }
03815         } else {
03816             av_log(NULL, AV_LOG_FATAL, "Invalid input file index %d in chapter mapping.\n",
03817                    o->chapters_input_file);
03818             exit_program(1);
03819         }
03820     }
03821     if (o->chapters_input_file >= 0)
03822         copy_chapters(&input_files[o->chapters_input_file], &output_files[nb_output_files - 1],
03823                       !o->metadata_chapters_manual);
03824 
03825     
03826     for (i = 0; i < o->nb_meta_data_maps; i++) {
03827         AVFormatContext *files[2];
03828         AVDictionary    **meta[2];
03829         int j;
03830 
03831 #define METADATA_CHECK_INDEX(index, nb_elems, desc)\
03832         if ((index) < 0 || (index) >= (nb_elems)) {\
03833             av_log(NULL, AV_LOG_FATAL, "Invalid %s index %d while processing metadata maps\n",\
03834                      (desc), (index));\
03835             exit_program(1);\
03836         }
03837 
03838         int in_file_index = o->meta_data_maps[i][1].file;
03839         if (in_file_index < 0)
03840             continue;
03841         METADATA_CHECK_INDEX(in_file_index, nb_input_files, "input file")
03842 
03843         files[0] = oc;
03844         files[1] = input_files[in_file_index].ctx;
03845 
03846         for (j = 0; j < 2; j++) {
03847             MetadataMap *map = &o->meta_data_maps[i][j];
03848 
03849             switch (map->type) {
03850             case 'g':
03851                 meta[j] = &files[j]->metadata;
03852                 break;
03853             case 's':
03854                 METADATA_CHECK_INDEX(map->index, files[j]->nb_streams, "stream")
03855                 meta[j] = &files[j]->streams[map->index]->metadata;
03856                 break;
03857             case 'c':
03858                 METADATA_CHECK_INDEX(map->index, files[j]->nb_chapters, "chapter")
03859                 meta[j] = &files[j]->chapters[map->index]->metadata;
03860                 break;
03861             case 'p':
03862                 METADATA_CHECK_INDEX(map->index, files[j]->nb_programs, "program")
03863                 meta[j] = &files[j]->programs[map->index]->metadata;
03864                 break;
03865             }
03866         }
03867 
03868         av_dict_copy(meta[0], *meta[1], AV_DICT_DONT_OVERWRITE);
03869     }
03870 
03871     
03872     if (!o->metadata_global_manual && nb_input_files)
03873         av_dict_copy(&oc->metadata, input_files[0].ctx->metadata,
03874                      AV_DICT_DONT_OVERWRITE);
03875     if (!o->metadata_streams_manual)
03876         for (i = output_files[nb_output_files - 1].ost_index; i < nb_output_streams; i++) {
03877             InputStream *ist;
03878             if (output_streams[i].source_index < 0)         
03879                 continue;
03880             ist = &input_streams[output_streams[i].source_index];
03881             av_dict_copy(&output_streams[i].st->metadata, ist->st->metadata, AV_DICT_DONT_OVERWRITE);
03882         }
03883 
03884     
03885     for (i = 0; i < o->nb_metadata; i++) {
03886         AVDictionary **m;
03887         char type, *val;
03888         int index = 0;
03889 
03890         val = strchr(o->metadata[i].u.str, '=');
03891         if (!val) {
03892             av_log(NULL, AV_LOG_FATAL, "No '=' character in metadata string %s.\n",
03893                    o->metadata[i].u.str);
03894             exit_program(1);
03895         }
03896         *val++ = 0;
03897 
03898         parse_meta_type(o->metadata[i].specifier, &type, &index);
03899         switch (type) {
03900         case 'g':
03901             m = &oc->metadata;
03902             break;
03903         case 's':
03904             if (index < 0 || index >= oc->nb_streams) {
03905                 av_log(NULL, AV_LOG_FATAL, "Invalid stream index %d in metadata specifier.\n", index);
03906                 exit_program(1);
03907             }
03908             m = &oc->streams[index]->metadata;
03909             break;
03910         case 'c':
03911             if (index < 0 || index >= oc->nb_chapters) {
03912                 av_log(NULL, AV_LOG_FATAL, "Invalid chapter index %d in metadata specifier.\n", index);
03913                 exit_program(1);
03914             }
03915             m = &oc->chapters[index]->metadata;
03916             break;
03917         default:
03918             av_log(NULL, AV_LOG_FATAL, "Invalid metadata specifier %s.\n", o->metadata[i].specifier);
03919             exit_program(1);
03920         }
03921 
03922         av_dict_set(m, o->metadata[i].u.str, *val ? val : NULL, 0);
03923     }
03924 
03925     reset_options(o);
03926 }
03927 
03928 
03929 static int opt_pass(const char *opt, const char *arg)
03930 {
03931     do_pass = parse_number_or_die(opt, arg, OPT_INT, 1, 2);
03932     return 0;
03933 }
03934 
03935 static int64_t getutime(void)
03936 {
03937 #if HAVE_GETRUSAGE
03938     struct rusage rusage;
03939 
03940     getrusage(RUSAGE_SELF, &rusage);
03941     return (rusage.ru_utime.tv_sec * 1000000LL) + rusage.ru_utime.tv_usec;
03942 #elif HAVE_GETPROCESSTIMES
03943     HANDLE proc;
03944     FILETIME c, e, k, u;
03945     proc = GetCurrentProcess();
03946     GetProcessTimes(proc, &c, &e, &k, &u);
03947     return ((int64_t) u.dwHighDateTime << 32 | u.dwLowDateTime) / 10;
03948 #else
03949     return av_gettime();
03950 #endif
03951 }
03952 
03953 static int64_t getmaxrss(void)
03954 {
03955 #if HAVE_GETRUSAGE && HAVE_STRUCT_RUSAGE_RU_MAXRSS
03956     struct rusage rusage;
03957     getrusage(RUSAGE_SELF, &rusage);
03958     return (int64_t)rusage.ru_maxrss * 1024;
03959 #elif HAVE_GETPROCESSMEMORYINFO
03960     HANDLE proc;
03961     PROCESS_MEMORY_COUNTERS memcounters;
03962     proc = GetCurrentProcess();
03963     memcounters.cb = sizeof(memcounters);
03964     GetProcessMemoryInfo(proc, &memcounters, sizeof(memcounters));
03965     return memcounters.PeakPagefileUsage;
03966 #else
03967     return 0;
03968 #endif
03969 }
03970 
03971 static int opt_audio_qscale(OptionsContext *o, const char *opt, const char *arg)
03972 {
03973     return parse_option(o, "q:a", arg, options);
03974 }
03975 
03976 static void show_usage(void)
03977 {
03978     printf("Hyper fast Audio and Video encoder\n");
03979     printf("usage: %s [options] [[infile options] -i infile]... {[outfile options] outfile}...\n", program_name);
03980     printf("\n");
03981 }
03982 
03983 static int opt_help(const char *opt, const char *arg)
03984 {
03985     int flags = AV_OPT_FLAG_DECODING_PARAM | AV_OPT_FLAG_ENCODING_PARAM;
03986     av_log_set_callback(log_callback_help);
03987     show_usage();
03988     show_help_options(options, "Main options:\n",
03989                       OPT_EXPERT | OPT_AUDIO | OPT_VIDEO | OPT_SUBTITLE | OPT_GRAB, 0);
03990     show_help_options(options, "\nAdvanced options:\n",
03991                       OPT_EXPERT | OPT_AUDIO | OPT_VIDEO | OPT_SUBTITLE | OPT_GRAB,
03992                       OPT_EXPERT);
03993     show_help_options(options, "\nVideo options:\n",
03994                       OPT_EXPERT | OPT_AUDIO | OPT_VIDEO | OPT_GRAB,
03995                       OPT_VIDEO);
03996     show_help_options(options, "\nAdvanced Video options:\n",
03997                       OPT_EXPERT | OPT_AUDIO | OPT_VIDEO | OPT_GRAB,
03998                       OPT_VIDEO | OPT_EXPERT);
03999     show_help_options(options, "\nAudio options:\n",
04000                       OPT_EXPERT | OPT_AUDIO | OPT_VIDEO | OPT_GRAB,
04001                       OPT_AUDIO);
04002     show_help_options(options, "\nAdvanced Audio options:\n",
04003                       OPT_EXPERT | OPT_AUDIO | OPT_VIDEO | OPT_GRAB,
04004                       OPT_AUDIO | OPT_EXPERT);
04005     show_help_options(options, "\nSubtitle options:\n",
04006                       OPT_SUBTITLE | OPT_GRAB,
04007                       OPT_SUBTITLE);
04008     show_help_options(options, "\nAudio/Video grab options:\n",
04009                       OPT_GRAB,
04010                       OPT_GRAB);
04011     printf("\n");
04012     show_help_children(avcodec_get_class(), flags);
04013     show_help_children(avformat_get_class(), flags);
04014     show_help_children(sws_get_class(), flags);
04015 
04016     return 0;
04017 }
04018 
04019 static int opt_target(OptionsContext *o, const char *opt, const char *arg)
04020 {
04021     enum { PAL, NTSC, FILM, UNKNOWN } norm = UNKNOWN;
04022     static const char *const frame_rates[] = {"25", "30000/1001", "24000/1001"};
04023 
04024     if(!strncmp(arg, "pal-", 4)) {
04025         norm = PAL;
04026         arg += 4;
04027     } else if(!strncmp(arg, "ntsc-", 5)) {
04028         norm = NTSC;
04029         arg += 5;
04030     } else if(!strncmp(arg, "film-", 5)) {
04031         norm = FILM;
04032         arg += 5;
04033     } else {
04034         
04035         if(nb_input_files) {
04036             int i, j, fr;
04037             for (j = 0; j < nb_input_files; j++) {
04038                 for (i = 0; i < input_files[j].nb_streams; i++) {
04039                     AVCodecContext *c = input_files[j].ctx->streams[i]->codec;
04040                     if(c->codec_type != AVMEDIA_TYPE_VIDEO)
04041                         continue;
04042                     fr = c->time_base.den * 1000 / c->time_base.num;
04043                     if(fr == 25000) {
04044                         norm = PAL;
04045                         break;
04046                     } else if((fr == 29970) || (fr == 23976)) {
04047                         norm = NTSC;
04048                         break;
04049                     }
04050                 }
04051                 if(norm != UNKNOWN)
04052                     break;
04053             }
04054         }
04055         if (norm != UNKNOWN)
04056             av_log(NULL, AV_LOG_INFO, "Assuming %s for target.\n", norm == PAL ? "PAL" : "NTSC");
04057     }
04058 
04059     if(norm == UNKNOWN) {
04060         av_log(NULL, AV_LOG_FATAL, "Could not determine norm (PAL/NTSC/NTSC-Film) for target.\n");
04061         av_log(NULL, AV_LOG_FATAL, "Please prefix target with \"pal-\", \"ntsc-\" or \"film-\",\n");
04062         av_log(NULL, AV_LOG_FATAL, "or set a framerate with \"-r xxx\".\n");
04063         exit_program(1);
04064     }
04065 
04066     if(!strcmp(arg, "vcd")) {
04067         opt_video_codec(o, "c:v", "mpeg1video");
04068         opt_audio_codec(o, "c:a", "mp2");
04069         parse_option(o, "f", "vcd", options);
04070 
04071         parse_option(o, "s", norm == PAL ? "352x288" : "352x240", options);
04072         parse_option(o, "r", frame_rates[norm], options);
04073         opt_default("g", norm == PAL ? "15" : "18");
04074 
04075         opt_default("b", "1150000");
04076         opt_default("maxrate", "1150000");
04077         opt_default("minrate", "1150000");
04078         opt_default("bufsize", "327680"); 
04079 
04080         opt_default("b:a", "224000");
04081         parse_option(o, "ar", "44100", options);
04082         parse_option(o, "ac", "2", options);
04083 
04084         opt_default("packetsize", "2324");
04085         opt_default("muxrate", "1411200"); 
04086 
04087         
04088 
04089 
04090 
04091 
04092         o->mux_preload = (36000+3*1200) / 90000.0; 
04093     } else if(!strcmp(arg, "svcd")) {
04094 
04095         opt_video_codec(o, "c:v", "mpeg2video");
04096         opt_audio_codec(o, "c:a", "mp2");
04097         parse_option(o, "f", "svcd", options);
04098 
04099         parse_option(o, "s", norm == PAL ? "480x576" : "480x480", options);
04100         parse_option(o, "r", frame_rates[norm], options);
04101         opt_default("g", norm == PAL ? "15" : "18");
04102 
04103         opt_default("b", "2040000");
04104         opt_default("maxrate", "2516000");
04105         opt_default("minrate", "0"); 
04106         opt_default("bufsize", "1835008"); 
04107         opt_default("flags", "+scan_offset");
04108 
04109 
04110         opt_default("b:a", "224000");
04111         parse_option(o, "ar", "44100", options);
04112 
04113         opt_default("packetsize", "2324");
04114 
04115     } else if(!strcmp(arg, "dvd")) {
04116 
04117         opt_video_codec(o, "c:v", "mpeg2video");
04118         opt_audio_codec(o, "c:a", "ac3");
04119         parse_option(o, "f", "dvd", options);
04120 
04121         parse_option(o, "s", norm == PAL ? "720x576" : "720x480", options);
04122         parse_option(o, "r", frame_rates[norm], options);
04123         opt_default("g", norm == PAL ? "15" : "18");
04124 
04125         opt_default("b", "6000000");
04126         opt_default("maxrate", "9000000");
04127         opt_default("minrate", "0"); 
04128         opt_default("bufsize", "1835008"); 
04129 
04130         opt_default("packetsize", "2048");  
04131         opt_default("muxrate", "10080000"); 
04132 
04133         opt_default("b:a", "448000");
04134         parse_option(o, "ar", "48000", options);
04135 
04136     } else if(!strncmp(arg, "dv", 2)) {
04137 
04138         parse_option(o, "f", "dv", options);
04139 
04140         parse_option(o, "s", norm == PAL ? "720x576" : "720x480", options);
04141         parse_option(o, "pix_fmt", !strncmp(arg, "dv50", 4) ? "yuv422p" :
04142                           norm == PAL ? "yuv420p" : "yuv411p", options);
04143         parse_option(o, "r", frame_rates[norm], options);
04144 
04145         parse_option(o, "ar", "48000", options);
04146         parse_option(o, "ac", "2", options);
04147 
04148     } else {
04149         av_log(NULL, AV_LOG_ERROR, "Unknown target: %s\n", arg);
04150         return AVERROR(EINVAL);
04151     }
04152     return 0;
04153 }
04154 
04155 static int opt_vstats_file(const char *opt, const char *arg)
04156 {
04157     av_free (vstats_filename);
04158     vstats_filename=av_strdup (arg);
04159     return 0;
04160 }
04161 
04162 static int opt_vstats(const char *opt, const char *arg)
04163 {
04164     char filename[40];
04165     time_t today2 = time(NULL);
04166     struct tm *today = localtime(&today2);
04167 
04168     snprintf(filename, sizeof(filename), "vstats_%02d%02d%02d.log", today->tm_hour, today->tm_min,
04169              today->tm_sec);
04170     return opt_vstats_file(opt, filename);
04171 }
04172 
04173 static int opt_video_frames(OptionsContext *o, const char *opt, const char *arg)
04174 {
04175     return parse_option(o, "frames:v", arg, options);
04176 }
04177 
04178 static int opt_audio_frames(OptionsContext *o, const char *opt, const char *arg)
04179 {
04180     return parse_option(o, "frames:a", arg, options);
04181 }
04182 
04183 static int opt_data_frames(OptionsContext *o, const char *opt, const char *arg)
04184 {
04185     return parse_option(o, "frames:d", arg, options);
04186 }
04187 
04188 static void log_callback_null(void* ptr, int level, const char* fmt, va_list vl)
04189 {
04190 }
04191 
04192 static int opt_passlogfile(const char *opt, const char *arg)
04193 {
04194     pass_logfilename_prefix = arg;
04195 #if CONFIG_LIBX264_ENCODER
04196     return opt_default("passlogfile", arg);
04197 #else
04198     return 0;
04199 #endif
04200 }
04201 
04202 static int opt_video_tag(OptionsContext *o, const char *opt, const char *arg)
04203 {
04204     return parse_option(o, "tag:v", arg, options);
04205 }
04206 
04207 static int opt_audio_tag(OptionsContext *o, const char *opt, const char *arg)
04208 {
04209     return parse_option(o, "tag:a", arg, options);
04210 }
04211 
04212 static int opt_subtitle_tag(OptionsContext *o, const char *opt, const char *arg)
04213 {
04214     return parse_option(o, "tag:s", arg, options);
04215 }
04216 
04217 static int opt_video_filters(OptionsContext *o, const char *opt, const char *arg)
04218 {
04219     return parse_option(o, "filter:v", arg, options);
04220 }
04221 
04222 #define OFFSET(x) offsetof(OptionsContext, x)
04223 static const OptionDef options[] = {
04224     
04225 #include "cmdutils_common_opts.h"
04226     { "f", HAS_ARG | OPT_STRING | OPT_OFFSET, {.off = OFFSET(format)}, "force format", "fmt" },
04227     { "i", HAS_ARG | OPT_FUNC2, {(void*)opt_input_file}, "input file name", "filename" },
04228     { "y", OPT_BOOL, {(void*)&file_overwrite}, "overwrite output files" },
04229     { "n", OPT_BOOL, {(void*)&no_file_overwrite}, "do not overwrite output files" },
04230     { "c", HAS_ARG | OPT_STRING | OPT_SPEC, {.off = OFFSET(codec_names)}, "codec name", "codec" },
04231     { "codec", HAS_ARG | OPT_STRING | OPT_SPEC, {.off = OFFSET(codec_names)}, "codec name", "codec" },
04232     { "pre", HAS_ARG | OPT_STRING | OPT_SPEC, {.off = OFFSET(presets)}, "preset name", "preset" },
04233     { "map", HAS_ARG | OPT_EXPERT | OPT_FUNC2, {(void*)opt_map}, "set input stream mapping", "file.stream[:syncfile.syncstream]" },
04234     { "map_metadata", HAS_ARG | OPT_EXPERT | OPT_FUNC2, {(void*)opt_map_metadata}, "set metadata information of outfile from infile",
04235       "outfile[,metadata]:infile[,metadata]" },
04236     { "map_chapters",  OPT_INT | HAS_ARG | OPT_EXPERT | OPT_OFFSET, {.off = OFFSET(chapters_input_file)},  "set chapters mapping", "input_file_index" },
04237     { "t", HAS_ARG | OPT_TIME | OPT_OFFSET, {.off = OFFSET(recording_time)}, "record or transcode \"duration\" seconds of audio/video", "duration" },
04238     { "fs", HAS_ARG | OPT_INT64 | OPT_OFFSET, {.off = OFFSET(limit_filesize)}, "set the limit file size in bytes", "limit_size" }, 
04239     { "ss", HAS_ARG | OPT_TIME | OPT_OFFSET, {.off = OFFSET(start_time)}, "set the start time offset", "time_off" },
04240     { "itsoffset", HAS_ARG | OPT_TIME | OPT_OFFSET, {.off = OFFSET(input_ts_offset)}, "set the input ts offset", "time_off" },
04241     { "itsscale", HAS_ARG | OPT_DOUBLE | OPT_SPEC, {.off = OFFSET(ts_scale)}, "set the input ts scale", "scale" },
04242     { "metadata", HAS_ARG | OPT_STRING | OPT_SPEC, {.off = OFFSET(metadata)}, "add metadata", "string=string" },
04243     { "dframes", HAS_ARG | OPT_FUNC2, {(void*)opt_data_frames}, "set the number of data frames to record", "number" },
04244     { "benchmark", OPT_BOOL | OPT_EXPERT, {(void*)&do_benchmark},
04245       "add timings for benchmarking" },
04246     { "timelimit", HAS_ARG, {(void*)opt_timelimit}, "set max runtime in seconds", "limit" },
04247     { "dump", OPT_BOOL | OPT_EXPERT, {(void*)&do_pkt_dump},
04248       "dump each input packet" },
04249     { "hex", OPT_BOOL | OPT_EXPERT, {(void*)&do_hex_dump},
04250       "when dumping packets, also dump the payload" },
04251     { "re", OPT_BOOL | OPT_EXPERT | OPT_OFFSET, {.off = OFFSET(rate_emu)}, "read input at native frame rate", "" },
04252     { "target", HAS_ARG | OPT_FUNC2, {(void*)opt_target}, "specify target file type (\"vcd\", \"svcd\", \"dvd\", \"dv\", \"dv50\", \"pal-vcd\", \"ntsc-svcd\", ...)", "type" },
04253     { "vsync", HAS_ARG | OPT_INT | OPT_EXPERT, {(void*)&video_sync_method}, "video sync method", "" },
04254     { "async", HAS_ARG | OPT_INT | OPT_EXPERT, {(void*)&audio_sync_method}, "audio sync method", "" },
04255     { "adrift_threshold", HAS_ARG | OPT_FLOAT | OPT_EXPERT, {(void*)&audio_drift_threshold}, "audio drift threshold", "threshold" },
04256     { "copyts", OPT_BOOL | OPT_EXPERT, {(void*)©_ts}, "copy timestamps" },
04257     { "copytb", OPT_BOOL | OPT_EXPERT, {(void*)©_tb}, "copy input stream time base when stream copying" },
04258     { "shortest", OPT_BOOL | OPT_EXPERT, {(void*)&opt_shortest}, "finish encoding within shortest input" }, 
04259     { "dts_delta_threshold", HAS_ARG | OPT_FLOAT | OPT_EXPERT, {(void*)&dts_delta_threshold}, "timestamp discontinuity delta threshold", "threshold" },
04260     { "xerror", OPT_BOOL, {(void*)&exit_on_error}, "exit on error", "error" },
04261     { "copyinkf", OPT_BOOL | OPT_EXPERT | OPT_SPEC, {.off = OFFSET(copy_initial_nonkeyframes)}, "copy initial non-keyframes" },
04262     { "frames", OPT_INT64 | HAS_ARG | OPT_SPEC, {.off = OFFSET(max_frames)}, "set the number of frames to record", "number" },
04263     { "tag",   OPT_STRING | HAS_ARG | OPT_SPEC, {.off = OFFSET(codec_tags)}, "force codec tag/fourcc", "fourcc/tag" },
04264     { "q", HAS_ARG | OPT_EXPERT | OPT_DOUBLE | OPT_SPEC, {.off = OFFSET(qscale)}, "use fixed quality scale (VBR)", "q" },
04265     { "qscale", HAS_ARG | OPT_EXPERT | OPT_DOUBLE | OPT_SPEC, {.off = OFFSET(qscale)}, "use fixed quality scale (VBR)", "q" },
04266 #if CONFIG_AVFILTER
04267     { "filter", HAS_ARG | OPT_STRING | OPT_SPEC, {.off = OFFSET(filters)}, "set stream filterchain", "filter_list" },
04268 #endif
04269     { "stats", OPT_BOOL, {&print_stats}, "print progress report during encoding", },
04270     { "attach", HAS_ARG | OPT_FUNC2, {(void*)opt_attach}, "add an attachment to the output file", "filename" },
04271     { "dump_attachment", HAS_ARG | OPT_STRING | OPT_SPEC, {.off = OFFSET(dump_attachment)}, "extract an attachment into a file", "filename" },
04272 
04273     
04274     { "vframes", HAS_ARG | OPT_VIDEO | OPT_FUNC2, {(void*)opt_video_frames}, "set the number of video frames to record", "number" },
04275     { "r", HAS_ARG | OPT_VIDEO | OPT_STRING | OPT_SPEC, {.off = OFFSET(frame_rates)}, "set frame rate (Hz value, fraction or abbreviation)", "rate" },
04276     { "s", HAS_ARG | OPT_VIDEO | OPT_STRING | OPT_SPEC, {.off = OFFSET(frame_sizes)}, "set frame size (WxH or abbreviation)", "size" },
04277     { "aspect", HAS_ARG | OPT_VIDEO | OPT_STRING | OPT_SPEC, {.off = OFFSET(frame_aspect_ratios)}, "set aspect ratio (4:3, 16:9 or 1.3333, 1.7777)", "aspect" },
04278     { "pix_fmt", HAS_ARG | OPT_EXPERT | OPT_VIDEO | OPT_STRING | OPT_SPEC, {.off = OFFSET(frame_pix_fmts)}, "set pixel format", "format" },
04279     { "bits_per_raw_sample", OPT_INT | HAS_ARG | OPT_VIDEO, {(void*)&frame_bits_per_raw_sample}, "set the number of bits per raw sample", "number" },
04280     { "vn", OPT_BOOL | OPT_VIDEO | OPT_OFFSET, {.off = OFFSET(video_disable)}, "disable video" },
04281     { "vdt", OPT_INT | HAS_ARG | OPT_EXPERT | OPT_VIDEO, {(void*)&video_discard}, "discard threshold", "n" },
04282     { "rc_override", HAS_ARG | OPT_EXPERT | OPT_VIDEO | OPT_STRING | OPT_SPEC, {.off = OFFSET(rc_overrides)}, "rate control override for specific intervals", "override" },
04283     { "vcodec", HAS_ARG | OPT_VIDEO | OPT_FUNC2, {(void*)opt_video_codec}, "force video codec ('copy' to copy stream)", "codec" },
04284     { "same_quant", OPT_BOOL | OPT_VIDEO, {(void*)&same_quant},
04285       "use same quantizer as source (implies VBR)" },
04286     { "pass", HAS_ARG | OPT_VIDEO, {(void*)opt_pass}, "select the pass number (1 or 2)", "n" },
04287     { "passlogfile", HAS_ARG | OPT_VIDEO, {(void*)&opt_passlogfile}, "select two pass log file name prefix", "prefix" },
04288     { "deinterlace", OPT_BOOL | OPT_EXPERT | OPT_VIDEO, {(void*)&do_deinterlace},
04289       "deinterlace pictures" },
04290     { "vstats", OPT_EXPERT | OPT_VIDEO, {(void*)&opt_vstats}, "dump video coding statistics to file" },
04291     { "vstats_file", HAS_ARG | OPT_EXPERT | OPT_VIDEO, {(void*)opt_vstats_file}, "dump video coding statistics to file", "file" },
04292 #if CONFIG_AVFILTER
04293     { "vf", HAS_ARG | OPT_VIDEO | OPT_FUNC2, {(void*)opt_video_filters}, "video filters", "filter list" },
04294 #endif
04295     { "intra_matrix", HAS_ARG | OPT_EXPERT | OPT_VIDEO | OPT_STRING | OPT_SPEC, {.off = OFFSET(intra_matrices)}, "specify intra matrix coeffs", "matrix" },
04296     { "inter_matrix", HAS_ARG | OPT_EXPERT | OPT_VIDEO | OPT_STRING | OPT_SPEC, {.off = OFFSET(inter_matrices)}, "specify inter matrix coeffs", "matrix" },
04297     { "top", HAS_ARG | OPT_EXPERT | OPT_VIDEO | OPT_INT| OPT_SPEC, {.off = OFFSET(top_field_first)}, "top=1/bottom=0/auto=-1 field first", "" },
04298     { "dc", OPT_INT | HAS_ARG | OPT_EXPERT | OPT_VIDEO, {(void*)&intra_dc_precision}, "intra_dc_precision", "precision" },
04299     { "vtag", HAS_ARG | OPT_EXPERT | OPT_VIDEO | OPT_FUNC2, {(void*)opt_video_tag}, "force video tag/fourcc", "fourcc/tag" },
04300     { "qphist", OPT_BOOL | OPT_EXPERT | OPT_VIDEO, { (void *)&qp_hist }, "show QP histogram" },
04301     { "force_fps", OPT_BOOL | OPT_EXPERT | OPT_VIDEO | OPT_SPEC, {.off = OFFSET(force_fps)}, "force the selected framerate, disable the best supported framerate selection" },
04302     { "streamid", HAS_ARG | OPT_EXPERT | OPT_FUNC2, {(void*)opt_streamid}, "set the value of an outfile streamid", "streamIndex:value" },
04303     { "force_key_frames", OPT_STRING | HAS_ARG | OPT_EXPERT | OPT_VIDEO | OPT_SPEC, {.off = OFFSET(forced_key_frames)}, "force key frames at specified timestamps", "timestamps" },
04304 
04305     
04306     { "aframes", HAS_ARG | OPT_AUDIO | OPT_FUNC2, {(void*)opt_audio_frames}, "set the number of audio frames to record", "number" },
04307     { "aq", HAS_ARG | OPT_AUDIO | OPT_FUNC2, {(void*)opt_audio_qscale}, "set audio quality (codec-specific)", "quality", },
04308     { "ar", HAS_ARG | OPT_AUDIO | OPT_INT | OPT_SPEC, {.off = OFFSET(audio_sample_rate)}, "set audio sampling rate (in Hz)", "rate" },
04309     { "ac", HAS_ARG | OPT_AUDIO | OPT_INT | OPT_SPEC, {.off = OFFSET(audio_channels)}, "set number of audio channels", "channels" },
04310     { "an", OPT_BOOL | OPT_AUDIO | OPT_OFFSET, {.off = OFFSET(audio_disable)}, "disable audio" },
04311     { "acodec", HAS_ARG | OPT_AUDIO | OPT_FUNC2, {(void*)opt_audio_codec}, "force audio codec ('copy' to copy stream)", "codec" },
04312     { "atag", HAS_ARG | OPT_EXPERT | OPT_AUDIO | OPT_FUNC2, {(void*)opt_audio_tag}, "force audio tag/fourcc", "fourcc/tag" },
04313     { "vol", OPT_INT | HAS_ARG | OPT_AUDIO, {(void*)&audio_volume}, "change audio volume (256=normal)" , "volume" }, 
04314     { "sample_fmt", HAS_ARG | OPT_EXPERT | OPT_AUDIO | OPT_SPEC | OPT_STRING, {.off = OFFSET(sample_fmts)}, "set sample format", "format" },
04315 
04316     
04317     { "sn", OPT_BOOL | OPT_SUBTITLE | OPT_OFFSET, {.off = OFFSET(subtitle_disable)}, "disable subtitle" },
04318     { "scodec", HAS_ARG | OPT_SUBTITLE | OPT_FUNC2, {(void*)opt_subtitle_codec}, "force subtitle codec ('copy' to copy stream)", "codec" },
04319     { "stag", HAS_ARG | OPT_EXPERT | OPT_SUBTITLE | OPT_FUNC2, {(void*)opt_subtitle_tag}, "force subtitle tag/fourcc", "fourcc/tag" },
04320 
04321     
04322     { "isync", OPT_BOOL | OPT_EXPERT | OPT_GRAB, {(void*)&input_sync}, "sync read on input", "" },
04323 
04324     
04325     { "muxdelay", OPT_FLOAT | HAS_ARG | OPT_EXPERT   | OPT_OFFSET, {.off = OFFSET(mux_max_delay)}, "set the maximum demux-decode delay", "seconds" },
04326     { "muxpreload", OPT_FLOAT | HAS_ARG | OPT_EXPERT | OPT_OFFSET, {.off = OFFSET(mux_preload)},   "set the initial demux-decode delay", "seconds" },
04327 
04328     { "bsf", HAS_ARG | OPT_STRING | OPT_SPEC, {.off = OFFSET(bitstream_filters)}, "A comma-separated list of bitstream filters", "bitstream_filters" },
04329 
04330     
04331     { "dcodec", HAS_ARG | OPT_DATA | OPT_FUNC2, {(void*)opt_data_codec}, "force data codec ('copy' to copy stream)", "codec" },
04332 
04333     { "default", HAS_ARG | OPT_AUDIO | OPT_VIDEO | OPT_EXPERT, {(void*)opt_default}, "generic catch all option", "" },
04334     { NULL, },
04335 };
04336 
04337 int main(int argc, char **argv)
04338 {
04339     OptionsContext o = { 0 };
04340     int64_t ti;
04341 
04342     reset_options(&o);
04343 
04344     av_log_set_flags(AV_LOG_SKIP_REPEATED);
04345     parse_loglevel(argc, argv, options);
04346 
04347     if(argc>1 && !strcmp(argv[1], "-d")){
04348         run_as_daemon=1;
04349         av_log_set_callback(log_callback_null);
04350         argc--;
04351         argv++;
04352     }
04353 
04354     avcodec_register_all();
04355 #if CONFIG_AVDEVICE
04356     avdevice_register_all();
04357 #endif
04358 #if CONFIG_AVFILTER
04359     avfilter_register_all();
04360 #endif
04361     av_register_all();
04362     avformat_network_init();
04363 
04364     show_banner(argc, argv, options);
04365 
04366     
04367     parse_options(&o, argc, argv, options, opt_output_file);
04368 
04369     if(nb_output_files <= 0 && nb_input_files == 0) {
04370         show_usage();
04371         av_log(NULL, AV_LOG_WARNING, "Use -h to get full help or, even better, run 'man %s'\n", program_name);
04372         exit_program(1);
04373     }
04374 
04375     
04376     if (nb_output_files <= 0) {
04377         fprintf(stderr, "At least one output file must be specified\n");
04378         exit_program(1);
04379     }
04380 
04381     if (nb_input_files == 0) {
04382         av_log(NULL, AV_LOG_FATAL, "At least one input file must be specified\n");
04383         exit_program(1);
04384     }
04385 
04386     ti = getutime();
04387     if (transcode(output_files, nb_output_files, input_files, nb_input_files) < 0)
04388         exit_program(1);
04389     ti = getutime() - ti;
04390     if (do_benchmark) {
04391         int maxrss = getmaxrss() / 1024;
04392         printf("bench: utime=%0.3fs maxrss=%ikB\n", ti / 1000000.0, maxrss);
04393     }
04394 
04395     exit_program(0);
04396     return 0;
04397 }