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Exemple de boutons d’action pour une collection collaborative
27 février 2013, par
Mis à jour : Mars 2013
Langue : français
Type : Image
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Exemple de boutons d’action pour une collection personnelle
27 février 2013, par
Mis à jour : Février 2013
Langue : English
Type : Image
Autres articles (49)
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Les autorisations surchargées par les plugins
27 avril 2010, parMediaspip core
autoriser_auteur_modifier() afin que les visiteurs soient capables de modifier leurs informations sur la page d’auteurs -
Support audio et vidéo HTML5
10 avril 2011MediaSPIP utilise les balises HTML5 video et audio pour la lecture de documents multimedia en profitant des dernières innovations du W3C supportées par les navigateurs modernes.
Pour les navigateurs plus anciens, le lecteur flash Flowplayer est utilisé.
Le lecteur HTML5 utilisé a été spécifiquement créé pour MediaSPIP : il est complètement modifiable graphiquement pour correspondre à un thème choisi.
Ces technologies permettent de distribuer vidéo et son à la fois sur des ordinateurs conventionnels (...) -
HTML5 audio and video support
13 avril 2011, parMediaSPIP uses HTML5 video and audio tags to play multimedia files, taking advantage of the latest W3C innovations supported by modern browsers.
The MediaSPIP player used has been created specifically for MediaSPIP and can be easily adapted to fit in with a specific theme.
For older browsers the Flowplayer flash fallback is used.
MediaSPIP allows for media playback on major mobile platforms with the above (...)
Sur d’autres sites (8838)
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FFMpeg : reencode audio file to have the same codec params as another file [closed]
11 mars 2023, par EvilOrangeI need to merge three audio files :


- 

- big1
- small1
- big2








Codecs in these files may differ (but big1 and big2 which always have the same codec)


small1 is about 20-30 seconds


Now I'm using the following command for that :


ffmpeg -i big1 -i small1 -i big1 -filter_complex concat=n=3:v=0:a=1 -c:a {big1.extension} -vn out.{big1.extension


it's working, but this will require reencoding and it's slow.


I think, that it can be optimized by using concatenation without reencoding : https://trac.ffmpeg.org/wiki/Concatenate


But I need the same codec for all files.


So, now I need the following :


- 

- Get codec information from big1
- Reencode small1 to the same parameters
- merge files using concat demuxer without reencoding








So, I need a way to get codec information and pass these params to ffmpeg to convert small1.


I'm not tied to ffmpeg, if another linux cmd tool can do the same ( fastly merge three audio files) - it's also acceptable.


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HW Accel Transcode Intel Quick Sync Video QSV h264_qsv and CRF Quality
26 août 2020, par Matt McManisI'm having a problem with HW Accel Intel Quick Sync Video and CRF.



It looks like CRF
-crf
is not compatible with-c:v h264_qsv
.


Only Bit Rate
-b:v
works with-c:v h264_qsv
.


ffmpeg -i input.mp4 -c:v h264_qsv -crf 25 -pix_fmt nv12 output.mkv






https://trac.ffmpeg.org/wiki/Hardware/QuickSync



The guide says "ICQ mode (which is similar to crf mode of x264)"
-global_quality 25



ffmpeg -i input.mp4 -c:v h264_qsv -global_quality 25 -pix_fmt nv12 output.mkv




But I cannot get it to work. I get the error
Selected ratecontrol mode is unsupported
.




How do I get either CRF or ICQ to work ?


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ffmpeg and gnu parallel
16 août 2013, par souvikMy work would require me to encode a few thousand movies in a few days. Each movie needs to be encoded in 3 different formats. I use ffmpeg to output these formats in parallel with a single read of the input source as detailed here : http://ffmpeg.org/trac/ffmpeg/wiki/Creating%20multiple%20outputs
In addition, I am using GNU Parallel to encode from multiple video files in parallel. We have four blade servers of different configurations (48, 32, 16 and 16 cores) encoding videos in parallel. Ideally, we should be able to encode 112 videos in parallel.
However, it seems that encoding completes faster on machines with lesser cores. I have 16 completed encodes on the 16 core servers in around 4 hours, while it takes close to 10 hours for 48 encodes to complete on the 48 core system. What could be the bottleneck ? A typical encode command is as follows :
ffmpeg -i sample.mpg -y -vcodec libx264 -vprofile baseline -level 30 -acodec libfdk_aac -ab 128k -ac 2 -b:v 500K -threads 1 encoded/sample_enc.mp4
Any pointers highly appreciated. Thanks !