*/
#include <stdint.h>
+#include <algorithm>
#include "player.h"
#include "film.h"
#include "ffmpeg_decoder.h"
#include "ffmpeg_content.h"
-#include "still_image_decoder.h"
-#include "still_image_content.h"
-#include "moving_image_decoder.h"
-#include "moving_image_content.h"
+#include "image_decoder.h"
+#include "image_content.h"
#include "sndfile_decoder.h"
#include "sndfile_content.h"
#include "subtitle_content.h"
+#include "subrip_decoder.h"
+#include "subrip_content.h"
#include "playlist.h"
#include "job.h"
#include "image.h"
#include "ratio.h"
-#include "resampler.h"
#include "log.h"
#include "scaler.h"
+#include "render_subtitles.h"
using std::list;
using std::cout;
using boost::shared_ptr;
using boost::weak_ptr;
using boost::dynamic_pointer_cast;
+using boost::optional;
class Piece
{
public:
- Piece (shared_ptr<Content> c)
- : content (c)
- , video_position (c->position ())
- , audio_position (c->position ())
- {}
-
- Piece (shared_ptr<Content> c, shared_ptr<Decoder> d)
+ Piece (shared_ptr<Content> c, shared_ptr<Decoder> d, FrameRateChange f)
: content (c)
, decoder (d)
- , video_position (c->position ())
- , audio_position (c->position ())
+ , frc (f)
{}
-
+
shared_ptr<Content> content;
shared_ptr<Decoder> decoder;
- Time video_position;
- Time audio_position;
+ FrameRateChange frc;
};
Player::Player (shared_ptr<const Film> f, shared_ptr<const Playlist> p)
, _audio_position (0)
, _audio_merger (f->audio_channels(), bind (&Film::time_to_audio_frames, f.get(), _1), bind (&Film::audio_frames_to_time, f.get(), _1))
, _last_emit_was_black (false)
+ , _just_did_inaccurate_seek (false)
+ , _approximate_size (false)
{
_playlist_changed_connection = _playlist->Changed.connect (bind (&Player::playlist_changed, this));
_playlist_content_changed_connection = _playlist->ContentChanged.connect (bind (&Player::content_changed, this, _1, _2, _3));
{
if (!_have_valid_pieces) {
setup_pieces ();
- _have_valid_pieces = true;
}
- Time earliest_t = TIME_MAX;
- shared_ptr<Piece> earliest;
- enum {
- VIDEO,
- AUDIO
- } type = VIDEO;
+ /* Interrogate all our pieces to find the one with the earliest decoded data */
+
+ shared_ptr<Piece> earliest_piece;
+ shared_ptr<Decoded> earliest_decoded;
+ DCPTime earliest_time = TIME_MAX;
+ DCPTime earliest_audio = TIME_MAX;
for (list<shared_ptr<Piece> >::iterator i = _pieces.begin(); i != _pieces.end(); ++i) {
- if ((*i)->decoder->done ()) {
+
+ DCPTime const offset = (*i)->content->position() - (*i)->content->trim_start();
+
+ bool done = false;
+ shared_ptr<Decoded> dec;
+ while (!done) {
+ dec = (*i)->decoder->peek ();
+ if (!dec) {
+ /* Decoder has nothing else to give us */
+ break;
+ }
+
+ dec->set_dcp_times (_film->video_frame_rate(), _film->audio_frame_rate(), (*i)->frc, offset);
+ DCPTime const t = dec->dcp_time - offset;
+ if (t >= ((*i)->content->full_length() - (*i)->content->trim_end ())) {
+ /* In the end-trimmed part; decoder has nothing else to give us */
+ dec.reset ();
+ done = true;
+ } else if (t >= (*i)->content->trim_start ()) {
+ /* Within the un-trimmed part; everything's ok */
+ done = true;
+ } else {
+ /* Within the start-trimmed part; get something else */
+ (*i)->decoder->consume ();
+ }
+ }
+
+ if (!dec) {
continue;
}
- if (_video && dynamic_pointer_cast<VideoDecoder> ((*i)->decoder)) {
- if ((*i)->video_position < earliest_t) {
- earliest_t = (*i)->video_position;
- earliest = *i;
- type = VIDEO;
- }
+ if (dec->dcp_time < earliest_time) {
+ earliest_piece = *i;
+ earliest_decoded = dec;
+ earliest_time = dec->dcp_time;
}
- if (_audio && dynamic_pointer_cast<AudioDecoder> ((*i)->decoder)) {
- if ((*i)->audio_position < earliest_t) {
- earliest_t = (*i)->audio_position;
- earliest = *i;
- type = AUDIO;
- }
+ if (dynamic_pointer_cast<DecodedAudio> (dec) && dec->dcp_time < earliest_audio) {
+ earliest_audio = dec->dcp_time;
}
}
-
- if (!earliest) {
+
+ if (!earliest_piece) {
flush ();
return true;
}
- switch (type) {
- case VIDEO:
- if (earliest_t > _video_position) {
- emit_black ();
- } else {
- earliest->decoder->pass ();
- }
- break;
+ if (earliest_audio != TIME_MAX) {
+ TimedAudioBuffers<DCPTime> tb = _audio_merger.pull (max (int64_t (0), earliest_audio));
+ Audio (tb.audio, tb.time);
+ /* This assumes that the audio_frames_to_time conversion is exact
+ so that there are no accumulated errors caused by rounding.
+ */
+ _audio_position += _film->audio_frames_to_time (tb.audio->frames ());
+ }
- case AUDIO:
- if (earliest_t > _audio_position) {
- emit_silence (_film->time_to_audio_frames (earliest_t - _audio_position));
- } else {
- earliest->decoder->pass ();
-
- if (earliest->decoder->done()) {
- shared_ptr<AudioContent> ac = dynamic_pointer_cast<AudioContent> (earliest->content);
- assert (ac);
- shared_ptr<Resampler> re = resampler (ac, false);
- if (re) {
- shared_ptr<const AudioBuffers> b = re->flush ();
- if (b->frames ()) {
- process_audio (earliest, b, ac->audio_length ());
- }
- }
+ /* Emit the earliest thing */
+
+ shared_ptr<DecodedVideo> dv = dynamic_pointer_cast<DecodedVideo> (earliest_decoded);
+ shared_ptr<DecodedAudio> da = dynamic_pointer_cast<DecodedAudio> (earliest_decoded);
+ shared_ptr<DecodedImageSubtitle> dis = dynamic_pointer_cast<DecodedImageSubtitle> (earliest_decoded);
+ shared_ptr<DecodedTextSubtitle> dts = dynamic_pointer_cast<DecodedTextSubtitle> (earliest_decoded);
+
+ /* Will be set to false if we shouldn't consume the peeked DecodedThing */
+ bool consume = true;
+
+ if (dv && _video) {
+
+ if (_just_did_inaccurate_seek) {
+
+ /* Just emit; no subtlety */
+ emit_video (earliest_piece, dv);
+ step_video_position (dv);
+
+ } else if (dv->dcp_time > _video_position) {
+
+ /* Too far ahead */
+
+ list<shared_ptr<Piece> >::iterator i = _pieces.begin();
+ while (i != _pieces.end() && ((*i)->content->position() >= _video_position || _video_position >= (*i)->content->end())) {
+ ++i;
}
- }
- break;
- }
- if (_audio) {
- Time audio_done_up_to = TIME_MAX;
- for (list<shared_ptr<Piece> >::iterator i = _pieces.begin(); i != _pieces.end(); ++i) {
- if (dynamic_pointer_cast<AudioDecoder> ((*i)->decoder)) {
- audio_done_up_to = min (audio_done_up_to, (*i)->audio_position);
+ if (i == _pieces.end() || !_last_incoming_video.video || !_have_valid_pieces) {
+ /* We're outside all video content */
+ emit_black ();
+ _statistics.video.black++;
+ } else {
+ /* We're inside some video; repeat the frame */
+ _last_incoming_video.video->dcp_time = _video_position;
+ emit_video (_last_incoming_video.weak_piece, _last_incoming_video.video);
+ step_video_position (_last_incoming_video.video);
+ _statistics.video.repeat++;
}
+
+ consume = false;
+
+ } else if (dv->dcp_time == _video_position) {
+ /* We're ok */
+ emit_video (earliest_piece, dv);
+ step_video_position (dv);
+ _statistics.video.good++;
+ } else {
+ /* Too far behind: skip */
+ _statistics.video.skip++;
}
- TimedAudioBuffers<Time> tb = _audio_merger.pull (audio_done_up_to);
- Audio (tb.audio, tb.time);
- _audio_position += _film->audio_frames_to_time (tb.audio->frames ());
- }
+ _just_did_inaccurate_seek = false;
+
+ } else if (da && _audio) {
+
+ if (da->dcp_time > _audio_position) {
+ /* Too far ahead */
+ emit_silence (da->dcp_time - _audio_position);
+ consume = false;
+ _statistics.audio.silence += (da->dcp_time - _audio_position);
+ } else if (da->dcp_time == _audio_position) {
+ /* We're ok */
+ emit_audio (earliest_piece, da);
+ _statistics.audio.good += da->data->frames();
+ } else {
+ /* Too far behind: skip */
+ _statistics.audio.skip += da->data->frames();
+ }
+ } else if (dis && _video) {
+ _image_subtitle.piece = earliest_piece;
+ _image_subtitle.subtitle = dis;
+ update_subtitle_from_image ();
+ } else if (dts && _video) {
+ _text_subtitle.piece = earliest_piece;
+ _text_subtitle.subtitle = dts;
+ update_subtitle_from_text ();
+ }
+
+ if (consume) {
+ earliest_piece->decoder->consume ();
+ }
+
return false;
}
void
-Player::process_video (weak_ptr<Piece> weak_piece, shared_ptr<const Image> image, Eyes eyes, bool same, VideoContent::Frame frame)
+Player::emit_video (weak_ptr<Piece> weak_piece, shared_ptr<DecodedVideo> video)
{
/* Keep a note of what came in so that we can repeat it if required */
- _last_process_video.weak_piece = weak_piece;
- _last_process_video.image = image;
- _last_process_video.eyes = eyes;
- _last_process_video.same = same;
- _last_process_video.frame = frame;
+ _last_incoming_video.weak_piece = weak_piece;
+ _last_incoming_video.video = video;
shared_ptr<Piece> piece = weak_piece.lock ();
if (!piece) {
shared_ptr<VideoContent> content = dynamic_pointer_cast<VideoContent> (piece->content);
assert (content);
- FrameRateConversion frc (content->video_frame_rate(), _film->video_frame_rate());
- if (frc.skip && (frame % 2) == 1) {
- return;
- }
-
- Time const relative_time = (frame * frc.factor() * TIME_HZ / _film->video_frame_rate());
- if (content->trimmed (relative_time)) {
- return;
- }
-
- /* Convert to RGB first, as FFmpeg doesn't seem to like handling YUV images with odd widths */
- shared_ptr<Image> work_image = image->scale (image->size (), _film->scaler(), PIX_FMT_RGB24, true);
-
- work_image = work_image->crop (content->crop(), true);
+ FrameRateChange frc (content->video_frame_rate(), _film->video_frame_rate());
float const ratio = content->ratio() ? content->ratio()->ratio() : content->video_size_after_crop().ratio();
libdcp::Size image_size = fit_ratio_within (ratio, _video_container_size);
+ if (_approximate_size) {
+ image_size.width &= ~3;
+ image_size.height &= ~3;
+ }
+
+ shared_ptr<PlayerImage> pi (
+ new PlayerImage (
+ video->image,
+ content->crop(),
+ image_size,
+ _video_container_size,
+ _film->scaler()
+ )
+ );
- work_image = work_image->scale (image_size, _film->scaler(), PIX_FMT_RGB24, true);
+ if (
+ _film->with_subtitles () &&
+ _out_subtitle.image &&
+ video->dcp_time >= _out_subtitle.from && video->dcp_time <= _out_subtitle.to
+ ) {
- Time time = content->position() + relative_time - content->trim_start ();
-
- if (_film->with_subtitles () && _out_subtitle.image && time >= _out_subtitle.from && time <= _out_subtitle.to) {
- work_image->alpha_blend (_out_subtitle.image, _out_subtitle.position);
- }
+ Position<int> const container_offset (
+ (_video_container_size.width - image_size.width) / 2,
+ (_video_container_size.height - image_size.height) / 2
+ );
- if (image_size != _video_container_size) {
- assert (image_size.width <= _video_container_size.width);
- assert (image_size.height <= _video_container_size.height);
- shared_ptr<Image> im (new Image (PIX_FMT_RGB24, _video_container_size, true));
- im->make_black ();
- im->copy (work_image, Position<int> ((_video_container_size.width - image_size.width) / 2, (_video_container_size.height - image_size.height) / 2));
- work_image = im;
+ pi->set_subtitle (_out_subtitle.image, _out_subtitle.position + container_offset);
}
-
+
+
#ifdef DCPOMATIC_DEBUG
_last_video = piece->content;
#endif
- Video (work_image, eyes, content->colour_conversion(), same, time);
- time += TIME_HZ / _film->video_frame_rate();
-
+ Video (pi, video->eyes, content->colour_conversion(), video->same, video->dcp_time);
+
_last_emit_was_black = false;
+}
- _video_position = piece->video_position = time;
+void
+Player::step_video_position (shared_ptr<DecodedVideo> video)
+{
+ /* This is a bit of a hack; don't update _video_position if EYES_RIGHT is on its way */
+ if (video->eyes != EYES_LEFT) {
+ /* This assumes that the video_frames_to_time conversion is exact
+ so that there are no accumulated errors caused by rounding.
+ */
+ _video_position += _film->video_frames_to_time (1);
+ }
}
void
-Player::process_audio (weak_ptr<Piece> weak_piece, shared_ptr<const AudioBuffers> audio, AudioContent::Frame frame)
+Player::emit_audio (weak_ptr<Piece> weak_piece, shared_ptr<DecodedAudio> audio)
{
shared_ptr<Piece> piece = weak_piece.lock ();
if (!piece) {
/* Gain */
if (content->audio_gain() != 0) {
- shared_ptr<AudioBuffers> gain (new AudioBuffers (audio));
+ shared_ptr<AudioBuffers> gain (new AudioBuffers (audio->data));
gain->apply_gain (content->audio_gain ());
- audio = gain;
+ audio->data = gain;
}
- /* Resample */
- if (content->content_audio_frame_rate() != content->output_audio_frame_rate()) {
- shared_ptr<Resampler> r = resampler (content, true);
- pair<shared_ptr<const AudioBuffers>, AudioContent::Frame> ro = r->run (audio, frame);
- audio = ro.first;
- frame = ro.second;
- }
-
- Time const relative_time = _film->audio_frames_to_time (frame);
-
- if (content->trimmed (relative_time)) {
- return;
- }
-
- Time time = content->position() + (content->audio_delay() * TIME_HZ / 1000) + relative_time;
-
/* Remap channels */
- shared_ptr<AudioBuffers> dcp_mapped (new AudioBuffers (_film->audio_channels(), audio->frames()));
+ shared_ptr<AudioBuffers> dcp_mapped (new AudioBuffers (_film->audio_channels(), audio->data->frames()));
dcp_mapped->make_silent ();
- list<pair<int, libdcp::Channel> > map = content->audio_mapping().content_to_dcp ();
- for (list<pair<int, libdcp::Channel> >::iterator i = map.begin(); i != map.end(); ++i) {
- if (i->first < audio->channels() && i->second < dcp_mapped->channels()) {
- dcp_mapped->accumulate_channel (audio.get(), i->first, i->second);
+ AudioMapping map = content->audio_mapping ();
+ for (int i = 0; i < map.content_channels(); ++i) {
+ for (int j = 0; j < _film->audio_channels(); ++j) {
+ if (map.get (i, static_cast<libdcp::Channel> (j)) > 0) {
+ dcp_mapped->accumulate_channel (
+ audio->data.get(),
+ i,
+ static_cast<libdcp::Channel> (j),
+ map.get (i, static_cast<libdcp::Channel> (j))
+ );
+ }
}
}
- audio = dcp_mapped;
+ audio->data = dcp_mapped;
- /* We must cut off anything that comes before the start of all time */
- if (time < 0) {
- int const frames = - time * _film->audio_frame_rate() / TIME_HZ;
- if (frames >= audio->frames ()) {
+ /* Delay */
+ audio->dcp_time += content->audio_delay() * TIME_HZ / 1000;
+ if (audio->dcp_time < 0) {
+ int const frames = - audio->dcp_time * _film->audio_frame_rate() / TIME_HZ;
+ if (frames >= audio->data->frames ()) {
return;
}
- shared_ptr<AudioBuffers> trimmed (new AudioBuffers (audio->channels(), audio->frames() - frames));
- trimmed->copy_from (audio.get(), audio->frames() - frames, frames, 0);
+ shared_ptr<AudioBuffers> trimmed (new AudioBuffers (audio->data->channels(), audio->data->frames() - frames));
+ trimmed->copy_from (audio->data.get(), audio->data->frames() - frames, frames, 0);
- audio = trimmed;
- time = 0;
+ audio->data = trimmed;
+ audio->dcp_time = 0;
}
- _audio_merger.push (audio, time);
- piece->audio_position += _film->audio_frames_to_time (audio->frames ());
+ _audio_merger.push (audio->data, audio->dcp_time);
}
void
Player::flush ()
{
- TimedAudioBuffers<Time> tb = _audio_merger.flush ();
- if (tb.audio) {
+ TimedAudioBuffers<DCPTime> tb = _audio_merger.flush ();
+ if (_audio && tb.audio) {
Audio (tb.audio, tb.time);
_audio_position += _film->audio_frames_to_time (tb.audio->frames ());
}
- while (_video_position < _audio_position) {
+ while (_video && _video_position < _audio_position) {
emit_black ();
}
- while (_audio_position < _video_position) {
- emit_silence (_film->time_to_audio_frames (_video_position - _audio_position));
+ while (_audio && _audio_position < _video_position) {
+ emit_silence (_video_position - _audio_position);
}
}
* @return true on error
*/
void
-Player::seek (Time t, bool accurate)
+Player::seek (DCPTime t, bool accurate)
{
if (!_have_valid_pieces) {
setup_pieces ();
- _have_valid_pieces = true;
}
if (_pieces.empty ()) {
}
for (list<shared_ptr<Piece> >::iterator i = _pieces.begin(); i != _pieces.end(); ++i) {
- shared_ptr<VideoContent> vc = dynamic_pointer_cast<VideoContent> ((*i)->content);
- if (!vc) {
- continue;
- }
-
- Time s = t - vc->position ();
- s = max (static_cast<Time> (0), s);
- s = min (vc->length_after_trim(), s);
+ /* s is the offset of t from the start position of this content */
+ DCPTime s = t - (*i)->content->position ();
+ s = max (static_cast<DCPTime> (0), s);
+ s = min ((*i)->content->length_after_trim(), s);
- (*i)->video_position = (*i)->audio_position = vc->position() + s;
+ /* Convert this to the content time */
+ ContentTime ct = (s + (*i)->content->trim_start()) * (*i)->frc.speed_up;
- FrameRateConversion frc (vc->video_frame_rate(), _film->video_frame_rate());
- /* Here we are converting from time (in the DCP) to a frame number in the content.
- Hence we need to use the DCP's frame rate and the double/skip correction, not
- the source's rate.
- */
- VideoContent::Frame f = (s + vc->trim_start ()) * _film->video_frame_rate() / (frc.factor() * TIME_HZ);
- dynamic_pointer_cast<VideoDecoder>((*i)->decoder)->seek (f, accurate);
+ /* And seek the decoder */
+ (*i)->decoder->seek (ct, accurate);
}
- _video_position = _audio_position = t;
-
- /* XXX: don't seek audio because we don't need to... */
+ _video_position = time_round_up (t, TIME_HZ / _film->video_frame_rate());
+ _audio_position = time_round_up (t, TIME_HZ / _film->audio_frame_rate());
+
+ _audio_merger.clear (_audio_position);
+
+ if (!accurate) {
+ /* We just did an inaccurate seek, so it's likely that the next thing seen
+ out of pass() will be a fair distance from _{video,audio}_position. Setting
+ this flag stops pass() from trying to fix that: we assume that if it
+ was an inaccurate seek then the caller does not care too much about
+ inserting black/silence to keep the time tidy.
+ */
+ _just_did_inaccurate_seek = true;
+ }
}
void
Player::setup_pieces ()
{
list<shared_ptr<Piece> > old_pieces = _pieces;
-
_pieces.clear ();
ContentList content = _playlist->content ();
- sort (content.begin(), content.end(), ContentSorter ());
for (ContentList::iterator i = content.begin(); i != content.end(); ++i) {
- shared_ptr<Piece> piece (new Piece (*i));
+ shared_ptr<Decoder> decoder;
+ optional<FrameRateChange> frc;
+
+ /* Work out a FrameRateChange for the best overlap video for this content, in case we need it below */
+ DCPTime best_overlap_t = 0;
+ shared_ptr<VideoContent> best_overlap;
+ for (ContentList::iterator j = content.begin(); j != content.end(); ++j) {
+ shared_ptr<VideoContent> vc = dynamic_pointer_cast<VideoContent> (*j);
+ if (!vc) {
+ continue;
+ }
+
+ DCPTime const overlap = max (vc->position(), (*i)->position()) - min (vc->end(), (*i)->end());
+ if (overlap > best_overlap_t) {
+ best_overlap = vc;
+ best_overlap_t = overlap;
+ }
+ }
- /* XXX: into content? */
+ optional<FrameRateChange> best_overlap_frc;
+ if (best_overlap) {
+ best_overlap_frc = FrameRateChange (best_overlap->video_frame_rate(), _film->video_frame_rate ());
+ } else {
+ /* No video overlap; e.g. if the DCP is just audio */
+ best_overlap_frc = FrameRateChange (_film->video_frame_rate(), _film->video_frame_rate ());
+ }
+ /* FFmpeg */
shared_ptr<const FFmpegContent> fc = dynamic_pointer_cast<const FFmpegContent> (*i);
if (fc) {
- shared_ptr<FFmpegDecoder> fd (new FFmpegDecoder (_film, fc, _video, _audio));
-
- fd->Video.connect (bind (&Player::process_video, this, piece, _1, _2, _3, _4));
- fd->Audio.connect (bind (&Player::process_audio, this, piece, _1, _2));
- fd->Subtitle.connect (bind (&Player::process_subtitle, this, piece, _1, _2, _3, _4));
-
- piece->decoder = fd;
+ decoder.reset (new FFmpegDecoder (_film, fc, _video, _audio));
+ frc = FrameRateChange (fc->video_frame_rate(), _film->video_frame_rate());
}
-
- shared_ptr<const StillImageContent> ic = dynamic_pointer_cast<const StillImageContent> (*i);
+
+ /* ImageContent */
+ shared_ptr<const ImageContent> ic = dynamic_pointer_cast<const ImageContent> (*i);
if (ic) {
- shared_ptr<StillImageDecoder> id;
-
- /* See if we can re-use an old StillImageDecoder */
+ /* See if we can re-use an old ImageDecoder */
for (list<shared_ptr<Piece> >::const_iterator j = old_pieces.begin(); j != old_pieces.end(); ++j) {
- shared_ptr<StillImageDecoder> imd = dynamic_pointer_cast<StillImageDecoder> ((*j)->decoder);
+ shared_ptr<ImageDecoder> imd = dynamic_pointer_cast<ImageDecoder> ((*j)->decoder);
if (imd && imd->content() == ic) {
- id = imd;
+ decoder = imd;
}
}
- if (!id) {
- id.reset (new StillImageDecoder (_film, ic));
- id->Video.connect (bind (&Player::process_video, this, piece, _1, _2, _3, _4));
+ if (!decoder) {
+ decoder.reset (new ImageDecoder (_film, ic));
}
- piece->decoder = id;
- }
-
- shared_ptr<const MovingImageContent> mc = dynamic_pointer_cast<const MovingImageContent> (*i);
- if (mc) {
- shared_ptr<MovingImageDecoder> md;
-
- if (!md) {
- md.reset (new MovingImageDecoder (_film, mc));
- md->Video.connect (bind (&Player::process_video, this, piece, _1, _2, _3, _4));
- }
-
- piece->decoder = md;
+ frc = FrameRateChange (ic->video_frame_rate(), _film->video_frame_rate());
}
+ /* SndfileContent */
shared_ptr<const SndfileContent> sc = dynamic_pointer_cast<const SndfileContent> (*i);
if (sc) {
- shared_ptr<AudioDecoder> sd (new SndfileDecoder (_film, sc));
- sd->Audio.connect (bind (&Player::process_audio, this, piece, _1, _2));
+ decoder.reset (new SndfileDecoder (_film, sc));
+ frc = best_overlap_frc;
+ }
- piece->decoder = sd;
+ /* SubRipContent */
+ shared_ptr<const SubRipContent> rc = dynamic_pointer_cast<const SubRipContent> (*i);
+ if (rc) {
+ decoder.reset (new SubRipDecoder (_film, rc));
+ frc = best_overlap_frc;
}
- _pieces.push_back (piece);
+ ContentTime st = (*i)->trim_start() * frc->speed_up;
+ decoder->seek (st, true);
+
+ _pieces.push_back (shared_ptr<Piece> (new Piece (*i, decoder, frc.get ())));
}
+
+ _have_valid_pieces = true;
+
+ /* The Piece for the _last_incoming_video will no longer be valid */
+ _last_incoming_video.video.reset ();
+
+ _video_position = _audio_position = 0;
}
void
if (
property == ContentProperty::POSITION || property == ContentProperty::LENGTH ||
- property == ContentProperty::TRIM_START || property == ContentProperty::TRIM_END
+ property == ContentProperty::TRIM_START || property == ContentProperty::TRIM_END ||
+ property == VideoContentProperty::VIDEO_FRAME_TYPE
) {
_have_valid_pieces = false;
} else if (property == SubtitleContentProperty::SUBTITLE_OFFSET || property == SubtitleContentProperty::SUBTITLE_SCALE) {
- update_subtitle ();
+ update_subtitle_from_image ();
+ update_subtitle_from_text ();
Changed (frequent);
} else if (
- property == VideoContentProperty::VIDEO_FRAME_TYPE || property == VideoContentProperty::VIDEO_CROP ||
- property == VideoContentProperty::VIDEO_RATIO
+ property == VideoContentProperty::VIDEO_CROP || property == VideoContentProperty::VIDEO_RATIO ||
+ property == VideoContentProperty::VIDEO_FRAME_RATE
) {
+ Changed (frequent);
+
+ } else if (property == ContentProperty::PATH) {
+
Changed (frequent);
}
}
Player::set_video_container_size (libdcp::Size s)
{
_video_container_size = s;
- _black_frame.reset (new Image (PIX_FMT_RGB24, _video_container_size, true));
- _black_frame->make_black ();
-}
-shared_ptr<Resampler>
-Player::resampler (shared_ptr<AudioContent> c, bool create)
-{
- map<shared_ptr<AudioContent>, shared_ptr<Resampler> >::iterator i = _resamplers.find (c);
- if (i != _resamplers.end ()) {
- return i->second;
- }
-
- if (!create) {
- return shared_ptr<Resampler> ();
- }
+ shared_ptr<Image> im (new Image (PIX_FMT_RGB24, _video_container_size, true));
+ im->make_black ();
- shared_ptr<Resampler> r (new Resampler (c->content_audio_frame_rate(), c->output_audio_frame_rate(), c->audio_channels()));
- _resamplers[c] = r;
- return r;
+ _black_frame.reset (
+ new PlayerImage (
+ im,
+ Crop(),
+ _video_container_size,
+ _video_container_size,
+ Scaler::from_id ("bicubic")
+ )
+ );
}
void
#ifdef DCPOMATIC_DEBUG
_last_video.reset ();
#endif
-
+
Video (_black_frame, EYES_BOTH, ColourConversion(), _last_emit_was_black, _video_position);
_video_position += _film->video_frames_to_time (1);
_last_emit_was_black = true;
}
void
-Player::emit_silence (OutputAudioFrame most)
+Player::emit_silence (DCPTime most)
{
if (most == 0) {
return;
}
- OutputAudioFrame N = min (most, _film->audio_frame_rate() / 2);
- shared_ptr<AudioBuffers> silence (new AudioBuffers (_film->audio_channels(), N));
+ DCPTime t = min (most, TIME_HZ / 2);
+ shared_ptr<AudioBuffers> silence (new AudioBuffers (_film->audio_channels(), t * _film->audio_frame_rate() / TIME_HZ));
silence->make_silent ();
Audio (silence, _audio_position);
- _audio_position += _film->audio_frames_to_time (N);
+
+ _audio_position += t;
}
void
last time we were run.
*/
- if (p == Film::SCALER || p == Film::WITH_SUBTITLES || p == Film::CONTAINER) {
+ if (p == Film::SCALER || p == Film::WITH_SUBTITLES || p == Film::CONTAINER || p == Film::VIDEO_FRAME_RATE) {
Changed (false);
}
}
void
-Player::process_subtitle (weak_ptr<Piece> weak_piece, shared_ptr<Image> image, dcpomatic::Rect<double> rect, Time from, Time to)
+Player::update_subtitle_from_image ()
{
- _in_subtitle.piece = weak_piece;
- _in_subtitle.image = image;
- _in_subtitle.rect = rect;
- _in_subtitle.from = from;
- _in_subtitle.to = to;
-
- update_subtitle ();
-}
-
-void
-Player::update_subtitle ()
-{
- shared_ptr<Piece> piece = _in_subtitle.piece.lock ();
+ shared_ptr<Piece> piece = _image_subtitle.piece.lock ();
if (!piece) {
return;
}
- if (!_in_subtitle.image) {
+ if (!_image_subtitle.subtitle->image) {
_out_subtitle.image.reset ();
return;
}
shared_ptr<SubtitleContent> sc = dynamic_pointer_cast<SubtitleContent> (piece->content);
assert (sc);
- dcpomatic::Rect<double> in_rect = _in_subtitle.rect;
+ dcpomatic::Rect<double> in_rect = _image_subtitle.subtitle->rect;
libdcp::Size scaled_size;
in_rect.y += sc->subtitle_offset ();
_out_subtitle.position.x = rint (_video_container_size.width * (in_rect.x + (in_rect.width * (1 - sc->subtitle_scale ()) / 2)));
_out_subtitle.position.y = rint (_video_container_size.height * (in_rect.y + (in_rect.height * (1 - sc->subtitle_scale ()) / 2)));
- _out_subtitle.image = _in_subtitle.image->scale (
+ _out_subtitle.image = _image_subtitle.subtitle->image->scale (
scaled_size,
Scaler::from_id ("bicubic"),
- _in_subtitle.image->pixel_format (),
+ _image_subtitle.subtitle->image->pixel_format (),
true
);
- _out_subtitle.from = _in_subtitle.from + piece->content->position ();
- _out_subtitle.to = _in_subtitle.to + piece->content->position ();
+
+ _out_subtitle.from = _image_subtitle.subtitle->dcp_time;
+ _out_subtitle.to = _image_subtitle.subtitle->dcp_time_to;
}
/** Re-emit the last frame that was emitted, using current settings for crop, ratio, scaler and subtitles.
bool
Player::repeat_last_video ()
{
- if (!_last_process_video.image) {
+ if (!_last_incoming_video.video || !_have_valid_pieces) {
return false;
}
- process_video (
- _last_process_video.weak_piece,
- _last_process_video.image,
- _last_process_video.eyes,
- _last_process_video.same,
- _last_process_video.frame
+ emit_video (
+ _last_incoming_video.weak_piece,
+ _last_incoming_video.video
);
return true;
}
+
+void
+Player::update_subtitle_from_text ()
+{
+ if (_text_subtitle.subtitle->subs.empty ()) {
+ _out_subtitle.image.reset ();
+ return;
+ }
+
+ render_subtitles (_text_subtitle.subtitle->subs, _video_container_size, _out_subtitle.image, _out_subtitle.position);
+}
+
+void
+Player::set_approximate_size ()
+{
+ _approximate_size = true;
+}
+
+PlayerImage::PlayerImage (
+ shared_ptr<const Image> in,
+ Crop crop,
+ libdcp::Size inter_size,
+ libdcp::Size out_size,
+ Scaler const * scaler
+ )
+ : _in (in)
+ , _crop (crop)
+ , _inter_size (inter_size)
+ , _out_size (out_size)
+ , _scaler (scaler)
+{
+
+}
+
+void
+PlayerImage::set_subtitle (shared_ptr<const Image> image, Position<int> pos)
+{
+ _subtitle_image = image;
+ _subtitle_position = pos;
+}
+
+shared_ptr<Image>
+PlayerImage::image (AVPixelFormat format, bool aligned)
+{
+ shared_ptr<Image> out = _in->crop_scale_window (_crop, _inter_size, _out_size, _scaler, format, aligned);
+
+ Position<int> const container_offset ((_out_size.width - _inter_size.width) / 2, (_out_size.height - _inter_size.width) / 2);
+
+ if (_subtitle_image) {
+ out->alpha_blend (_subtitle_image, _subtitle_position);
+ }
+
+ return out;
+}
+
+void
+PlayerStatistics::dump (shared_ptr<Log> log) const
+{
+ log->log (String::compose ("Video: %1 good %2 skipped %3 black %4 repeat", video.good, video.skip, video.black, video.repeat));
+ log->log (String::compose ("Audio: %1 good %2 skipped %3 silence", audio.good, audio.skip, audio.silence));
+}
+
+PlayerStatistics const &
+Player::statistics () const
+{
+ return _statistics;
+}