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Autres articles (78)
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D’autres logiciels intéressants
12 avril 2011, parOn ne revendique pas d’être les seuls à faire ce que l’on fait ... et on ne revendique surtout pas d’être les meilleurs non plus ... Ce que l’on fait, on essaie juste de le faire bien, et de mieux en mieux...
La liste suivante correspond à des logiciels qui tendent peu ou prou à faire comme MediaSPIP ou que MediaSPIP tente peu ou prou à faire pareil, peu importe ...
On ne les connais pas, on ne les a pas essayé, mais vous pouvez peut être y jeter un coup d’oeil.
Videopress
Site Internet : (...) -
Contribute to a better visual interface
13 avril 2011MediaSPIP is based on a system of themes and templates. Templates define the placement of information on the page, and can be adapted to a wide range of uses. Themes define the overall graphic appearance of the site.
Anyone can submit a new graphic theme or template and make it available to the MediaSPIP community. -
Encoding and processing into web-friendly formats
13 avril 2011, parMediaSPIP automatically converts uploaded files to internet-compatible formats.
Video files are encoded in MP4, Ogv and WebM (supported by HTML5) and MP4 (supported by Flash).
Audio files are encoded in MP3 and Ogg (supported by HTML5) and MP3 (supported by Flash).
Where possible, text is analyzed in order to retrieve the data needed for search engine detection, and then exported as a series of image files.
All uploaded files are stored online in their original format, so you can (...)
Sur d’autres sites (9193)
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ffmpeg compilation problem : avcodec_find_decoder always returns null
15 mars 2016, par AdionI recently tried to upgrade the ffmpeg libraries I use in my Mac OS X application by downloading and compiling ffmpeg from source.
My code works correctly with pre-compiled libraries of the same version on windows.
On Mac OS X, the library appears to work (it can open the file and find the streams and codecs used), but when it gets to avcodec_find_decoder, this function always returns null.The code has worked with an older version of the library (compiled a year ago on Mac OS X 10.5)
I configured fmpeg using
./configure --extra-cflags="-arch i386" --extra-ldflags='-arch i386' --arch=x86_32 --target-os=darwin --enable-cross-compile --disable-indev=jack --enable-shared --disable-static
I checked config.mak, and it appears to have the decoders for the file types I tried enabled (ogg, vorbis, avi, mkv, ...)
I also checked that the correct header files have been used and that the newly compiled library is used.I have found only some older posts relating to this issue, but without any solution :
http://lists.mplayerhq.hu/pipermail/ffmpeg-devel/2007-January/021399.html
http://libav-users.943685.n4.nabble.com/avcodec-find-decoder-problem-td944800.html
Edit : checking further, it appears av_codec_next(NULL) returns null as well, which means there isn’t a single codec available, or that first_avcodec in utils.c is not set (I actually haven’t found at all where this variable is set, I would have assumed av_register_all, but I can’t find it there)
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aarch64 : vp9 : use alternative returns in the core loop filter function
14 novembre 2016, par Janne Grunauaarch64 : vp9 : use alternative returns in the core loop filter function
Since aarch64 has enough free general purpose registers use them to
branch to the appropiate storage code. 1-2 cycles faster for the
functions using loop_filter 8/16, ... on a cortex-a53. Mixed results
(up to 2 cycles faster/slower) on a cortex-a57. -
tf.contrib.signal.stft returns an empty matrix
9 décembre 2017, par matt-pielatThis is the piece of code I run :
import tensorflow as tf
sess = tf.InteractiveSession()
filename = 'song.mp3' # 30 second mp3 file
SAMPLES_PER_SEC = 44100
audio_binary = tf.read_file(filename)
pcm = tf.contrib.ffmpeg.decode_audio(audio_binary, file_format='mp3', samples_per_second=SAMPLES_PER_SEC, channel_count = 1)
stft = tf.contrib.signal.stft(pcm, frame_length=1024, frame_step=512, fft_length=1024)
sess.close()The mp3 file is properly decoded because
print(pcm.eval().shape)
returns :(1323119, 1)
And there are even some actual non-zero values when I print them with
print(pcm.eval()[1000:1010])
:[[ 0.18793298]
[ 0.16214484]
[ 0.16022217]
[ 0.15918455]
[ 0.16428113]
[ 0.19858395]
[ 0.22861415]
[ 0.2347789 ]
[ 0.22684409]
[ 0.20728172]]But for some reason
print(stft.eval().shape)
evaluates to :(1323119, 0, 513) # why the zero dimension?
And therefore
print(stft.eval())
is :[]
According to this the second dimension of the
tf.contrib.signal.stft
output is equal to the number of frames. Why are there no frames though ?