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Fabrice Bellard
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max_size = ((nb_samples * (100 + SAMPLE_CORRECTION_PERCENT_MAX)) / 100) * n;
if (wanted_size < min_size)
wanted_size = min_size;
else if (wanted_size > max_size)
wanted_size = max_size;
/* add or remove samples to correction the synchro */
if (wanted_size < samples_size) {
/* remove samples */
samples_size = wanted_size;
} else if (wanted_size > samples_size) {
uint8_t *samples_end, *q;
int nb;
/* add samples */
nb = (samples_size - wanted_size);
samples_end = (uint8_t *)samples + samples_size - n;
q = samples_end + n;
while (nb > 0) {
memcpy(q, samples_end, n);
q += n;
nb -= n;
}
samples_size = wanted_size;
}
}
#if 0
printf("diff=%f adiff=%f sample_diff=%d apts=%0.3f vpts=%0.3f %f\n",
diff, avg_diff, samples_size - samples_size1,
is->audio_clock, is->video_clock, is->audio_diff_threshold);
#endif
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} else {
/* too big difference : may be initial PTS errors, so
reset A-V filter */
is->audio_diff_avg_count = 0;
is->audio_diff_cum = 0;
}
}
return samples_size;
}
/* decode one audio frame and returns its uncompressed size */
static int audio_decode_frame(VideoState *is, uint8_t *audio_buf, double *pts_ptr)
{
AVPacket *pkt = &is->audio_pkt;
/* NOTE: the audio packet can contain several frames */
SDL_LockMutex(is->audio_decoder_mutex);
len1 = avcodec_decode_audio(&is->audio_st->codec,
(int16_t *)audio_buf, &data_size,
is->audio_pkt_data, is->audio_pkt_size);
SDL_UnlockMutex(is->audio_decoder_mutex);
if (len1 < 0) {
/* if error, we skip the frame */
is->audio_pkt_size = 0;
is->audio_pkt_data += len1;
is->audio_pkt_size -= len1;
if (data_size <= 0)
continue;
/* if no pts, then compute it */
pts = is->audio_clock;
*pts_ptr = pts;
n = 2 * is->audio_st->codec.channels;
is->audio_clock += (double)data_size /
(double)(n * is->audio_st->codec.sample_rate);
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#if defined(DEBUG_SYNC)
{
static double last_clock;
printf("audio: delay=%0.3f clock=%0.3f pts=%0.3f\n",
is->audio_clock - last_clock,
is->audio_clock, pts);
last_clock = is->audio_clock;
/* free the current packet */
if (pkt->data)
if (is->paused || is->audioq.abort_request) {
return -1;
}
/* read next packet */
if (packet_queue_get(&is->audioq, pkt, 1) < 0)
return -1;
is->audio_pkt_data = pkt->data;
is->audio_pkt_size = pkt->size;
/* if update the audio clock with the pts */
if (pkt->pts != AV_NOPTS_VALUE) {
is->audio_clock = av_q2d(is->audio_st->time_base)*pkt->pts;
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/* get the current audio output buffer size, in samples. With SDL, we
cannot have a precise information */
static int audio_write_get_buf_size(VideoState *is)
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return is->audio_hw_buf_size - is->audio_buf_index;
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}
/* prepare a new audio buffer */
void sdl_audio_callback(void *opaque, Uint8 *stream, int len)
{
VideoState *is = opaque;
int audio_size, len1;
double pts;
audio_callback_time = av_gettime();
while (len > 0) {
if (is->audio_buf_index >= is->audio_buf_size) {
audio_size = audio_decode_frame(is, is->audio_buf, &pts);
if (audio_size < 0) {
/* if error, just output silence */
is->audio_buf_size = 1024;
memset(is->audio_buf, 0, is->audio_buf_size);
} else {
if (is->show_audio)
update_sample_display(is, (int16_t *)is->audio_buf, audio_size);
audio_size = synchronize_audio(is, (int16_t *)is->audio_buf, audio_size,
pts);
is->audio_buf_size = audio_size;
}
is->audio_buf_index = 0;
}
len1 = is->audio_buf_size - is->audio_buf_index;
if (len1 > len)
len1 = len;
memcpy(stream, (uint8_t *)is->audio_buf + is->audio_buf_index, len1);
len -= len1;
stream += len1;
is->audio_buf_index += len1;
}
}
/* open a given stream. Return 0 if OK */
static int stream_component_open(VideoState *is, int stream_index)
{
AVFormatContext *ic = is->ic;
AVCodecContext *enc;
AVCodec *codec;
SDL_AudioSpec wanted_spec, spec;
if (stream_index < 0 || stream_index >= ic->nb_streams)
return -1;
enc = &ic->streams[stream_index]->codec;
/* prepare audio output */
if (enc->codec_type == CODEC_TYPE_AUDIO) {
wanted_spec.freq = enc->sample_rate;
wanted_spec.format = AUDIO_S16SYS;
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/* hack for AC3. XXX: suppress that */
if (enc->channels > 2)
enc->channels = 2;
wanted_spec.channels = enc->channels;
wanted_spec.silence = 0;
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wanted_spec.samples = SDL_AUDIO_BUFFER_SIZE;
wanted_spec.callback = sdl_audio_callback;
wanted_spec.userdata = is;
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if (SDL_OpenAudio(&wanted_spec, &spec) < 0) {
fprintf(stderr, "SDL_OpenAudio: %s\n", SDL_GetError());
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}
is->audio_hw_buf_size = spec.size;
}
codec = avcodec_find_decoder(enc->codec_id);
enc->debug_mv = debug_mv;
enc->debug = debug;
if(debug)
av_log_set_level(AV_LOG_DEBUG);
if(lowres) enc->flags |= CODEC_FLAG_EMU_EDGE;
if(fast) enc->flags2 |= CODEC_FLAG2_FAST;
if (!codec ||
avcodec_open(enc, codec) < 0)
return -1;
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#if defined(HAVE_THREADS)
if(thread_count>1)
avcodec_thread_init(enc, thread_count);
#endif
enc->thread_count= thread_count;
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switch(enc->codec_type) {
case CODEC_TYPE_AUDIO:
is->audio_stream = stream_index;
is->audio_st = ic->streams[stream_index];
is->audio_buf_size = 0;
is->audio_buf_index = 0;
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/* init averaging filter */
is->audio_diff_avg_coef = exp(log(0.01) / AUDIO_DIFF_AVG_NB);
is->audio_diff_avg_count = 0;
/* since we do not have a precise anough audio fifo fullness,
we correct audio sync only if larger than this threshold */
is->audio_diff_threshold = 2.0 * SDL_AUDIO_BUFFER_SIZE / enc->sample_rate;
memset(&is->audio_pkt, 0, sizeof(is->audio_pkt));
packet_queue_init(&is->audioq);
SDL_PauseAudio(0);
break;
case CODEC_TYPE_VIDEO:
is->video_stream = stream_index;
is->video_st = ic->streams[stream_index];
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is->frame_last_delay = 40e-3;
is->frame_timer = (double)av_gettime() / 1000000.0;
is->video_current_pts_time = av_gettime();
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packet_queue_init(&is->videoq);
is->video_tid = SDL_CreateThread(video_thread, is);
break;
default:
break;
}
return 0;
}
static void stream_component_close(VideoState *is, int stream_index)
{
AVFormatContext *ic = is->ic;
AVCodecContext *enc;
enc = &ic->streams[stream_index]->codec;
switch(enc->codec_type) {
case CODEC_TYPE_AUDIO:
packet_queue_abort(&is->audioq);
SDL_CloseAudio();
packet_queue_end(&is->audioq);
break;
case CODEC_TYPE_VIDEO:
packet_queue_abort(&is->videoq);
/* note: we also signal this mutex to make sure we deblock the
video thread in all cases */
SDL_LockMutex(is->pictq_mutex);
SDL_CondSignal(is->pictq_cond);
SDL_UnlockMutex(is->pictq_mutex);
SDL_WaitThread(is->video_tid, NULL);
packet_queue_end(&is->videoq);
break;
default:
break;
}
avcodec_close(enc);
switch(enc->codec_type) {
case CODEC_TYPE_AUDIO:
is->audio_st = NULL;
is->audio_stream = -1;
break;
case CODEC_TYPE_VIDEO:
is->video_st = NULL;
is->video_stream = -1;
break;
default:
break;
}
}
void dump_stream_info(AVFormatContext *s)
{
if (s->track != 0)
fprintf(stderr, "Track: %d\n", s->track);
if (s->title[0] != '\0')
fprintf(stderr, "Title: %s\n", s->title);
if (s->author[0] != '\0')
fprintf(stderr, "Author: %s\n", s->author);
if (s->album[0] != '\0')
fprintf(stderr, "Album: %s\n", s->album);
if (s->year != 0)
fprintf(stderr, "Year: %d\n", s->year);
if (s->genre[0] != '\0')
fprintf(stderr, "Genre: %s\n", s->genre);
}
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/* since we have only one decoding thread, we can use a global
variable instead of a thread local variable */
static VideoState *global_video_state;
static int decode_interrupt_cb(void)
{
return (global_video_state && global_video_state->abort_request);
}
/* this thread gets the stream from the disk or the network */
static int decode_thread(void *arg)
{
VideoState *is = arg;
AVFormatContext *ic;
int err, i, ret, video_index, audio_index, use_play;
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AVFormatParameters params, *ap = ¶ms;
video_index = -1;
audio_index = -1;
is->video_stream = -1;
is->audio_stream = -1;
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global_video_state = is;
url_set_interrupt_cb(decode_interrupt_cb);
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memset(ap, 0, sizeof(*ap));
ap->image_format = image_format;
ap->initial_pause = 1; /* we force a pause when starting an RTSP
stream */
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err = av_open_input_file(&ic, is->filename, is->iformat, 0, ap);
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if (err < 0) {
print_error(is->filename, err);
ret = -1;
goto fail;
}
#ifdef CONFIG_NETWORK
use_play = (ic->iformat == &rtsp_demux);
#else
use_play = 0;
#endif
if (!use_play) {
err = av_find_stream_info(ic);
if (err < 0) {
fprintf(stderr, "%s: could not find codec parameters\n", is->filename);
ret = -1;
goto fail;
}
ic->pb.eof_reached= 0; //FIXME hack, ffplay maybe shouldnt use url_feof() to test for the end
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}
/* if seeking requested, we execute it */
if (start_time != AV_NOPTS_VALUE) {
int64_t timestamp;
timestamp = start_time;
/* add the stream start time */
if (ic->start_time != AV_NOPTS_VALUE)
timestamp += ic->start_time;
ret = av_seek_frame(ic, -1, timestamp, AVSEEK_FLAG_BACKWARD);
if (ret < 0) {
fprintf(stderr, "%s: could not seek to position %0.3f\n",
is->filename, (double)timestamp / AV_TIME_BASE);
}
}
/* now we can begin to play (RTSP stream only) */
av_read_play(ic);
if (use_play) {
err = av_find_stream_info(ic);
if (err < 0) {
fprintf(stderr, "%s: could not find codec parameters\n", is->filename);
ret = -1;
goto fail;
}
}
for(i = 0; i < ic->nb_streams; i++) {
AVCodecContext *enc = &ic->streams[i]->codec;
switch(enc->codec_type) {
case CODEC_TYPE_AUDIO:
if (audio_index < 0 && !audio_disable)
audio_index = i;
break;
case CODEC_TYPE_VIDEO:
if (video_index < 0 && !video_disable)
video_index = i;
break;
default:
break;
}
}
if (show_status) {
dump_format(ic, 0, is->filename, 0);
}
/* open the streams */
if (audio_index >= 0) {
stream_component_open(is, audio_index);
}
if (video_index >= 0) {
stream_component_open(is, video_index);
} else {
if (!display_disable)
is->show_audio = 1;
}
if (is->video_stream < 0 && is->audio_stream < 0) {
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fprintf(stderr, "%s: could not open codecs\n", is->filename);
ret = -1;
goto fail;
}
for(;;) {
if (is->abort_request)
break;
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#ifdef CONFIG_NETWORK
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if (is->paused != is->last_paused) {
is->last_paused = is->paused;
if (is->paused)
av_read_pause(ic);
else
av_read_play(ic);
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}
if (is->paused && ic->iformat == &rtsp_demux) {
/* wait 10 ms to avoid trying to get another packet */
/* XXX: horrible */
SDL_Delay(10);
continue;
}
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#endif
if (is->seek_req) {
/* XXX: must lock decoder threads */
SDL_LockMutex(is->video_decoder_mutex);
SDL_LockMutex(is->audio_decoder_mutex);
ret = av_seek_frame(is->ic, -1, is->seek_pos, is->seek_flags);
if (ret < 0) {
fprintf(stderr, "%s: error while seeking\n", is->ic->filename);
}else{
if (is->audio_stream >= 0) {
packet_queue_flush(&is->audioq);
}
if (is->video_stream >= 0) {
packet_queue_flush(&is->videoq);
avcodec_flush_buffers(&ic->streams[video_index]->codec);
SDL_UnlockMutex(is->audio_decoder_mutex);
SDL_UnlockMutex(is->video_decoder_mutex);
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/* if the queue are full, no need to read more */
if (is->audioq.size > MAX_AUDIOQ_SIZE ||
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is->videoq.size > MAX_VIDEOQ_SIZE ||
url_feof(&ic->pb)) {
/* wait 10 ms */
SDL_Delay(10);
continue;
}
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if (url_ferror(&ic->pb) == 0) {
SDL_Delay(100); /* wait for user event */
continue;
} else
break;
}
if (pkt->stream_index == is->audio_stream) {
packet_queue_put(&is->audioq, pkt);
} else if (pkt->stream_index == is->video_stream) {
packet_queue_put(&is->videoq, pkt);
} else {
av_free_packet(pkt);
}
}
/* wait until the end */
while (!is->abort_request) {
SDL_Delay(100);
}
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ret = 0;
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/* disable interrupting */
global_video_state = NULL;
/* close each stream */
if (is->audio_stream >= 0)
stream_component_close(is, is->audio_stream);
if (is->video_stream >= 0)
stream_component_close(is, is->video_stream);
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if (is->ic) {
av_close_input_file(is->ic);
is->ic = NULL; /* safety */
}
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url_set_interrupt_cb(NULL);
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if (ret != 0) {
SDL_Event event;
event.type = FF_QUIT_EVENT;
event.user.data1 = is;
SDL_PushEvent(&event);
}
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static VideoState *stream_open(const char *filename, AVInputFormat *iformat)
{
VideoState *is;
is = av_mallocz(sizeof(VideoState));
if (!is)
return NULL;
pstrcpy(is->filename, sizeof(is->filename), filename);
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is->iformat = iformat;
if (screen) {
is->width = screen->w;
is->height = screen->h;
}
is->ytop = 0;
is->xleft = 0;
/* start video display */
is->pictq_mutex = SDL_CreateMutex();
is->pictq_cond = SDL_CreateCond();
is->audio_decoder_mutex = SDL_CreateMutex();
is->video_decoder_mutex = SDL_CreateMutex();
/* add the refresh timer to draw the picture */
schedule_refresh(is, 40);
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is->av_sync_type = av_sync_type;
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is->parse_tid = SDL_CreateThread(decode_thread, is);
if (!is->parse_tid) {
av_free(is);
return NULL;
}
return is;
}
static void stream_close(VideoState *is)
{
VideoPicture *vp;
int i;
/* XXX: use a special url_shutdown call to abort parse cleanly */
is->abort_request = 1;
SDL_WaitThread(is->parse_tid, NULL);
/* free all pictures */
for(i=0;i<VIDEO_PICTURE_QUEUE_SIZE; i++) {
vp = &is->pictq[i];
if (vp->bmp) {
SDL_FreeYUVOverlay(vp->bmp);
vp->bmp = NULL;
}
}
SDL_DestroyMutex(is->pictq_mutex);
SDL_DestroyCond(is->pictq_cond);
SDL_DestroyMutex(is->audio_decoder_mutex);
SDL_DestroyMutex(is->video_decoder_mutex);
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void stream_cycle_channel(VideoState *is, int codec_type)
{
AVFormatContext *ic = is->ic;
int start_index, stream_index;
AVStream *st;
if (codec_type == CODEC_TYPE_VIDEO)
start_index = is->video_stream;
else
start_index = is->audio_stream;
if (start_index < 0)
return;
stream_index = start_index;
for(;;) {
if (++stream_index >= is->ic->nb_streams)
stream_index = 0;
if (stream_index == start_index)
return;
st = ic->streams[stream_index];
if (st->codec.codec_type == codec_type) {
/* check that parameters are OK */
switch(codec_type) {
case CODEC_TYPE_AUDIO:
if (st->codec.sample_rate != 0 &&
st->codec.channels != 0)
goto the_end;
break;
case CODEC_TYPE_VIDEO:
goto the_end;
default:
break;
}
}
}
the_end:
stream_component_close(is, start_index);
stream_component_open(is, stream_index);
}
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void toggle_full_screen(void)
{
int w, h, flags;
is_full_screen = !is_full_screen;
if (!fs_screen_width) {
/* use default SDL method */
SDL_WM_ToggleFullScreen(screen);
} else {
/* use the recorded resolution */
flags = SDL_HWSURFACE|SDL_ASYNCBLIT|SDL_HWACCEL;
if (is_full_screen) {
w = fs_screen_width;
h = fs_screen_height;
flags |= SDL_FULLSCREEN;
} else {
w = screen_width;
h = screen_height;
flags |= SDL_RESIZABLE;
}
screen = SDL_SetVideoMode(w, h, 0, flags);
cur_stream->width = w;
cur_stream->height = h;
}
}
void toggle_pause(void)
{
if (cur_stream)
stream_pause(cur_stream);
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step = 0;
}
void step_to_next_frame(void)
{
if (cur_stream) {
if (cur_stream->paused)
cur_stream->paused=0;
cur_stream->video_current_pts = get_video_clock(cur_stream);
}
step = 1;
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}
void do_exit(void)
{
if (cur_stream) {
stream_close(cur_stream);
cur_stream = NULL;
}
if (show_status)
printf("\n");
SDL_Quit();
exit(0);
}
void toggle_audio_display(void)
{
if (cur_stream) {
cur_stream->show_audio = !cur_stream->show_audio;
}
}
/* handle an event sent by the GUI */
void event_loop(void)
{
SDL_Event event;
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double incr, pos, frac;
for(;;) {
SDL_WaitEvent(&event);
switch(event.type) {
case SDL_KEYDOWN:
switch(event.key.keysym.sym) {
case SDLK_ESCAPE:
case SDLK_q:
do_exit();
break;
case SDLK_f:
toggle_full_screen();
break;
case SDLK_p:
case SDLK_SPACE:
toggle_pause();
break;
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case SDLK_s: //S: Step to next frame
step_to_next_frame();
break;
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if (cur_stream)
stream_cycle_channel(cur_stream, CODEC_TYPE_AUDIO);
break;
case SDLK_v:
if (cur_stream)
stream_cycle_channel(cur_stream, CODEC_TYPE_VIDEO);
break;
case SDLK_w:
case SDLK_LEFT:
incr = -10.0;
goto do_seek;
case SDLK_RIGHT:
incr = 10.0;
goto do_seek;
case SDLK_UP:
incr = 60.0;
goto do_seek;
case SDLK_DOWN:
incr = -60.0;
do_seek:
if (cur_stream) {
pos = get_master_clock(cur_stream);
pos += incr;
stream_seek(cur_stream, (int64_t)(pos * AV_TIME_BASE), incr);
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case SDL_MOUSEBUTTONDOWN:
if (cur_stream) {
int ns, hh, mm, ss;
int tns, thh, tmm, tss;
tns = cur_stream->ic->duration/1000000LL;
thh = tns/3600;
tmm = (tns%3600)/60;
tss = (tns%60);
frac = (double)event.button.x/(double)cur_stream->width;
ns = frac*tns;
hh = ns/3600;
mm = (ns%3600)/60;
ss = (ns%60);
fprintf(stderr, "Seek to %2.0f%% (%2d:%02d:%02d) of total duration (%2d:%02d:%02d) \n", frac*100,
hh, mm, ss, thh, tmm, tss);
stream_seek(cur_stream, (int64_t)(cur_stream->ic->start_time+frac*cur_stream->ic->duration), 0);
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}
break;
case SDL_VIDEORESIZE:
if (cur_stream) {
screen = SDL_SetVideoMode(event.resize.w, event.resize.h, 0,
SDL_HWSURFACE|SDL_RESIZABLE|SDL_ASYNCBLIT|SDL_HWACCEL);
cur_stream->width = event.resize.w;
cur_stream->height = event.resize.h;
}
break;
case SDL_QUIT:
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case FF_QUIT_EVENT:
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do_exit();
break;
case FF_ALLOC_EVENT:
alloc_picture(event.user.data1);
break;
case FF_REFRESH_EVENT:
video_refresh_timer(event.user.data1);
break;
default:
break;
}
}
}
void opt_width(const char *arg)
{
screen_width = atoi(arg);
}
void opt_height(const char *arg)
{
screen_height = atoi(arg);
}
static void opt_format(const char *arg)
{
file_iformat = av_find_input_format(arg);
if (!file_iformat) {
fprintf(stderr, "Unknown input format: %s\n", arg);
exit(1);
}
}
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static void opt_image_format(const char *arg)
{
AVImageFormat *f;
for(f = first_image_format; f != NULL; f = f->next) {
if (!strcmp(arg, f->name))
break;
}
if (!f) {
fprintf(stderr, "Unknown image format: '%s'\n", arg);
exit(1);
}
image_format = f;
}
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#ifdef CONFIG_NETWORK
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void opt_rtp_tcp(void)
{
/* only tcp protocol */
rtsp_default_protocols = (1 << RTSP_PROTOCOL_RTP_TCP);
}
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#endif
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void opt_sync(const char *arg)
{
if (!strcmp(arg, "audio"))
av_sync_type = AV_SYNC_AUDIO_MASTER;
else if (!strcmp(arg, "video"))
av_sync_type = AV_SYNC_VIDEO_MASTER;
else if (!strcmp(arg, "ext"))
av_sync_type = AV_SYNC_EXTERNAL_CLOCK;
else
show_help();
}
void opt_seek(const char *arg)
{
start_time = parse_date(arg, 1);
}
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static void opt_debug(const char *arg)
{
debug = atoi(arg);
}
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static void opt_vismv(const char *arg)
{
debug_mv = atoi(arg);
}
static void opt_thread_count(const char *arg)
{
thread_count= atoi(arg);
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#if !defined(HAVE_THREADS)
fprintf(stderr, "Warning: not compiled with thread support, using thread emulation\n");
#endif
}
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{ "h", 0, {(void*)show_help}, "show help" },
{ "x", HAS_ARG, {(void*)opt_width}, "force displayed width", "width" },
{ "y", HAS_ARG, {(void*)opt_height}, "force displayed height", "height" },
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#if 0
/* disabled as SDL/X11 does not support it correctly on application launch */
{ "fs", OPT_BOOL, {(void*)&is_full_screen}, "force full screen" },
#endif
{ "an", OPT_BOOL, {(void*)&audio_disable}, "disable audio" },
{ "vn", OPT_BOOL, {(void*)&video_disable}, "disable video" },
{ "ss", HAS_ARG, {(void*)&opt_seek}, "seek to a given position in seconds", "pos" },
{ "nodisp", OPT_BOOL, {(void*)&display_disable}, "disable graphical display" },
{ "f", HAS_ARG, {(void*)opt_format}, "force format", "fmt" },
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{ "img", HAS_ARG, {(void*)opt_image_format}, "force image format", "img_fmt" },
{ "stats", OPT_BOOL | OPT_EXPERT, {(void*)&show_status}, "show status", "" },
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{ "debug", HAS_ARG | OPT_EXPERT, {(void*)opt_debug}, "print specific debug info", "" },
{ "bug", OPT_INT | HAS_ARG | OPT_EXPERT, {(void*)&workaround_bugs}, "workaround bugs", "" },
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{ "vismv", HAS_ARG | OPT_EXPERT, {(void*)opt_vismv}, "visualize motion vectors", "" },
{ "fast", OPT_BOOL | OPT_EXPERT, {(void*)&fast}, "non spec compliant optimizations", "" },
{ "lowres", OPT_INT | HAS_ARG | OPT_EXPERT, {(void*)&lowres}, "", "" },
{ "idct", OPT_INT | HAS_ARG | OPT_EXPERT, {(void*)&idct}, "set idct algo", "algo" },
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#ifdef CONFIG_NETWORK
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{ "rtp_tcp", OPT_EXPERT, {(void*)&opt_rtp_tcp}, "force RTP/TCP protocol usage", "" },
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#endif
{ "sync", HAS_ARG | OPT_EXPERT, {(void*)opt_sync}, "set audio-video sync. type (type=audio/video/ext)", "type" },
{ "threads", HAS_ARG | OPT_EXPERT, {(void*)opt_thread_count}, "thread count", "count" },
{ NULL, },
};
void show_help(void)
{
printf("ffplay version " FFMPEG_VERSION ", Copyright (c) 2003 Fabrice Bellard\n"
"usage: ffplay [options] input_file\n"
show_help_options(options, "Main options:\n",
OPT_EXPERT, 0);
show_help_options(options, "\nAdvanced options:\n",
OPT_EXPERT, OPT_EXPERT);
printf("\nWhile playing:\n"
"q, ESC quit\n"
"f toggle full screen\n"
"p, SPC pause\n"
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"a cycle audio channel\n"
"v cycle video channel\n"
"w show audio waves\n"
"left/right seek backward/forward 10 seconds\n"
"down/up seek backward/forward 1 minute\n"
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"mouse click seek to percentage in file corresponding to fraction of width\n"
);
exit(1);
}
void parse_arg_file(const char *filename)
{
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if (!strcmp(filename, "-"))
filename = "pipe:";
input_filename = filename;
}
/* Called from the main */
int main(int argc, char **argv)
{
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int flags, w, h;
/* register all codecs, demux and protocols */
av_register_all();
#ifdef CONFIG_OS2
MorphToPM(); // Morph the VIO application to a PM one to be able to use Win* functions
// Make stdout and stderr unbuffered
setbuf( stdout, NULL );
setbuf( stderr, NULL );
#endif
parse_options(argc, argv, options);
if (!input_filename)
show_help();
if (display_disable) {
video_disable = 1;
}
flags = SDL_INIT_VIDEO | SDL_INIT_AUDIO | SDL_INIT_TIMER;
#ifndef CONFIG_WIN32
flags |= SDL_INIT_EVENTTHREAD; /* Not supported on win32 */
#endif
fprintf(stderr, "Could not initialize SDL - %s\n", SDL_GetError());
exit(1);
}
if (!display_disable) {
#ifdef HAVE_X11
/* save the screen resolution... SDL should allow full screen
by resizing the window */
{
Display *dpy;
dpy = XOpenDisplay(NULL);
if (dpy) {
fs_screen_width = DisplayWidth(dpy, DefaultScreen(dpy));
fs_screen_height = DisplayHeight(dpy, DefaultScreen(dpy));
XCloseDisplay(dpy);
}
}
#endif
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flags = SDL_HWSURFACE|SDL_ASYNCBLIT|SDL_HWACCEL;
if (is_full_screen && fs_screen_width) {
w = fs_screen_width;
h = fs_screen_height;
flags |= SDL_FULLSCREEN;
} else {
w = screen_width;
h = screen_height;
flags |= SDL_RESIZABLE;
}
screen = SDL_SetVideoMode(w, h, 0, flags);
if (!screen) {
fprintf(stderr, "SDL: could not set video mode - exiting\n");
exit(1);
}
SDL_WM_SetCaption("FFplay", "FFplay");
}
SDL_EventState(SDL_ACTIVEEVENT, SDL_IGNORE);
SDL_EventState(SDL_MOUSEMOTION, SDL_IGNORE);
SDL_EventState(SDL_SYSWMEVENT, SDL_IGNORE);
SDL_EventState(SDL_USEREVENT, SDL_IGNORE);
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cur_stream = stream_open(input_filename, file_iformat);
event_loop();
/* never returns */
return 0;
}