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ED-ME-5 1-DVD
11 octobre 2011, par
Mis à jour : Octobre 2011
Langue : English
Type : Audio
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Revolution of Open-source and film making towards open film making
6 octobre 2011, par
Mis à jour : Juillet 2013
Langue : English
Type : Texte
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Valkaama DVD Cover Outside
4 octobre 2011, par
Mis à jour : Octobre 2011
Langue : English
Type : Image
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Valkaama DVD Label
4 octobre 2011, par
Mis à jour : Février 2013
Langue : English
Type : Image
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Valkaama DVD Cover Inside
4 octobre 2011, par
Mis à jour : Octobre 2011
Langue : English
Type : Image
Autres articles (68)
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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 (...) -
De l’upload à la vidéo finale [version standalone]
31 janvier 2010, parLe chemin d’un document audio ou vidéo dans SPIPMotion est divisé en trois étapes distinctes.
Upload et récupération d’informations de la vidéo source
Dans un premier temps, il est nécessaire de créer un article SPIP et de lui joindre le document vidéo "source".
Au moment où ce document est joint à l’article, deux actions supplémentaires au comportement normal sont exécutées : La récupération des informations techniques des flux audio et video du fichier ; La génération d’une vignette : extraction d’une (...) -
Librairies et binaires spécifiques au traitement vidéo et sonore
31 janvier 2010, parLes logiciels et librairies suivantes sont utilisées par SPIPmotion d’une manière ou d’une autre.
Binaires obligatoires FFMpeg : encodeur principal, permet de transcoder presque tous les types de fichiers vidéo et sonores dans les formats lisibles sur Internet. CF ce tutoriel pour son installation ; Oggz-tools : outils d’inspection de fichiers ogg ; Mediainfo : récupération d’informations depuis la plupart des formats vidéos et sonores ;
Binaires complémentaires et facultatifs flvtool2 : (...)
Sur d’autres sites (11651)
-
How to speedup image processing (e.g. resizing, jpeg compress, encode) using ffmpeg command line utility from python on windows
28 mars 2020, par MSD PaulI am running ffmpeg commands to downsizing and jpeg compression of a 4K image using command prompt on windows 10. But its taking a long time. To downsize, jpeg compress and finally encode to a video file it takes more than 500 ms.
I can’t do the processing on images on batch but I have tried -hwaccel and -threads option (also -loglevel quiet for suppressing the logs being printed) in order to speedup the ffmpeg processing. Can someone please guide me towards how can I possibly speedup the ffmpeg command processing.
Is it possible to pass the image files already read into memory using read() API to the ffmpeg command ?
Please also let me know if there exists any other possible speedup techniques.
Updated log :
ffmpeg -i pic_1_org.png -vf scale=960 :-1 -q:v 80 -c:v libx264 -qp 25 -y temp_1.mp4*
ffmpeg version 3.2.4 Copyright (c) 2000-2017 the FFmpeg developers
built with gcc 6.3.0 (GCC)
configuration: --disable-static --enable-shared --enable-gpl --enable-version3 --enable-d3d11va --enable-dxva2 --enable-libmfx --enable-nvenc --enable-avisynth --enable-bzlib --enable-fontconfig --enable-frei0r --enable-gnutls --enable-iconv --enable-libass --enable-libbluray --enable-libbs2b --enable-libcaca --enable-libfreetype --enable-libgme --enable-libgsm --enable-libilbc --enable-libmodplug --enable-libmp3lame --enable-libopencore-amrnb --enable-libopencore-amrwb --enable-libopenh264 --enable-libopenjpeg --enable-libopus --enable-librtmp --enable-libsnappy --enable-libsoxr --enable-libspeex --enable-libtheora --enable-libtwolame --enable-libvidstab --enable-libvo-amrwbenc --enable-libvorbis --enable-libvpx --enable-libwavpack --enable-libwebp --enable-libx264 --enable-libx265 --enable-libxavs --enable-libxvid --enable-libzimg --enable-lzma --enable-zlib
libavutil 55. 34.101 / 55. 34.101
libavcodec 57. 64.101 / 57. 64.101
libavformat 57. 56.101 / 57. 56.101
libavdevice 57. 1.100 / 57. 1.100
libavfilter 6. 65.100 / 6. 65.100
libswscale 4. 2.100 / 4. 2.100
libswresample 2. 3.100 / 2. 3.100
libpostproc 54. 1.100 / 54. 1.100
[png_pipe @ 00000000001e7920] Stream #0: not enough frames to estimate rate; consider increasing probesize
Input #0, png_pipe, from 'pic_1_org.png':
Duration: N/A, bitrate: N/A
Stream #0:0: Video: png, rgb24(pc), 3840x2160 [SAR 1:1 DAR 16:9], 25 tbr, 25 tbn, 25 tbc
No pixel format specified, yuv444p for H.264 encoding chosen.
Use -pix_fmt yuv420p for compatibility with outdated media players.
[libx264 @ 000000000260dcc0] -qscale is ignored, -crf is recommended.
[libx264 @ 000000000260dcc0] using SAR=1/1
[libx264 @ 000000000260dcc0] using cpu capabilities: MMX2 SSE2Fast SSSE3 SSE4.2 AVX FMA3 AVX2 LZCNT BMI2
[libx264 @ 000000000260dcc0] profile High 4:4:4 Predictive, level 3.1, 4:4:4 8-bit
[libx264 @ 000000000260dcc0] 264 - core 148 r2762 90a61ec - H.264/MPEG-4 AVC codec - Copyleft 2003-2017 - http://www.videolan.org/x264.html - options: cabac=1 ref=3 deblock=1:0:0 analyse=0x3:0x113 me=hex subme=7 psy=1 psy_rd=1.00:0.00 mixed_ref=1 me_range=16 chroma_me=1 trellis=1 8x8dct=1 cqm=0 deadzone=21,11 fast_pskip=1 chroma_qp_offset=4 threads=17 lookahead_threads=2 sliced_threads=0 nr=0 decimate=1 interlaced=0 bluray_compat=0 constrained_intra=0 bframes=3 b_pyramid=2 b_adapt=1 b_bias=0 direct=1 weightb=1 open_gop=0 weightp=2 keyint=250 keyint_min=25 scenecut=40 intra_refresh=0 rc=cqp mbtree=0 qp=25 ip_ratio=1.40 pb_ratio=1.30 aq=0
Output #0, mp4, to 'temp_1.mp4':
Metadata:
encoder : Lavf57.56.101
Stream #0:0: Video: h264 (libx264) ([33][0][0][0] / 0x0021), yuv444p, 960x540 [SAR 1:1 DAR 16:9], q=-1--1, 25 fps, 12800 tbn, 25 tbc
Metadata:
encoder : Lavc57.64.101 libx264
Side data:
cpb: bitrate max/min/avg: 0/0/0 buffer size: 0 vbv_delay: -1
Stream mapping:
Stream #0:0 -> #0:0 (png (native) -> h264 (libx264))
Press [q] to stop, [?] for help
frame= 1 fps=0.0 q=22.0 Lsize= 135kB time=00:00:00.00 bitrate=14197538.5kbits/s speed=0.000451x
video:134kB audio:0kB subtitle:0kB other streams:0kB global headers:0kB muxing overhead: 0.594442%
[libx264 @ 000000000260dcc0] frame I:1 Avg QP:22.00 size:136966
[libx264 @ 000000000260dcc0] mb I I16..4: 13.4% 32.1% 54.5%
[libx264 @ 000000000260dcc0] 8x8 transform intra:32.1%
[libx264 @ 000000000260dcc0] coded y,u,v intra: 80.3% 59.0% 55.2%
[libx264 @ 000000000260dcc0] i16 v,h,dc,p: 5% 70% 5% 19%
[libx264 @ 000000000260dcc0] i8 v,h,dc,ddl,ddr,vr,hd,vl,hu: 5% 38% 14% 4% 5% 4% 14% 3% 14%
[libx264 @ 000000000260dcc0] i4 v,h,dc,ddl,ddr,vr,hd,vl,hu: 8% 24% 10% 5% 6% 4% 26% 3% 14%
[libx264 @ 000000000260dcc0] kb/s:27393.20
time needed to execute : 478.073120 ms*
-
FFMPEG : custom sequence input images
31 juillet 2018, par Dmitriy PuchkovI created a video from a set of images.
The command look like :
ffmpeg -i bg.jpeg -i img_%d.png -filter_complex overlay=5:H-h-5[b]-shortest testvid.mp4
Problem :
The input
-i img_%d.png
meansimg_0.png
,img_1.png
,img_2.png
, ...But I have custom sequence like this :
{img_0.png, img_1.png, img_1.png, img_2.png, img_1.png, img5.png, img_4.png}
Question :
Can I put my image sequence into input of ffmpeg ?
Updated
cmd :
ffmpeg -i bg.jpeg -f concat -fflags +genpts -i test.txt -filter_complex overlay=5:H-h-5 -shortest testvid.mp4
output :
ffmpeg version 3.1.1 Copyright (c) 2000-2016 the FFmpeg developers
built with gcc 4.8 (Ubuntu 4.8.4-2ubuntu1~14.04.3)
configuration: --enable-gpl --enable-libx264 --enable-libfreetype
libavutil 55. 28.100 / 55. 28.100
libavcodec 57. 48.101 / 57. 48.101
libavformat 57. 41.100 / 57. 41.100
libavdevice 57. 0.101 / 57. 0.101
libavfilter 6. 47.100 / 6. 47.100
libswscale 4. 1.100 / 4. 1.100
libswresample 2. 1.100 / 2. 1.100
libpostproc 54. 0.100 / 54. 0.100
Input #0, image2, from 'bg.jpeg':
Duration: 00:00:00.04, start: 0.000000, bitrate: 47329 kb/s
Stream #0:0: Video: mjpeg, yuvj420p(pc, bt470bg/unknown/unknown), 600x800 [SAR 1:1 DAR 3:4], 25 tbr, 25 tbn, 25 tbc
Input #1, concat, from 'test.txt':
Duration: N/A, start: 0.000000, bitrate: N/A
Stream #1:0: Video: png, pal8(pc), 200x200, 25 tbr, 25 tbn, 25 tbc
File 'testvid.mp4' already exists. Overwrite ? [y/N] y
[swscaler @ 0x2a18360] deprecated pixel format used, make sure you did set range correctly
[libx264 @ 0x2a05d80] using SAR=1/1
[libx264 @ 0x2a05d80] using cpu capabilities: MMX2 SSE2Fast SSSE3 SSE4.2 AVX FMA3 AVX2 LZCNT BMI2
[libx264 @ 0x2a05d80] profile High, level 3.1
[libx264 @ 0x2a05d80] 264 - core 148 r2705 3f5ed56 - H.264/MPEG-4 AVC codec - Copyleft 2003-2016 - http://www.videolan.org/x264.html - options: cabac=1 ref=3 deblock=1:0:0 analyse=0x3:0x113 me=hex subme=7 psy=1 psy_rd=1.00:0.00 mixed_ref=1 me_range=16 chroma_me=1 trellis=1 8x8dct=1 cqm=0 deadzone=21,11 fast_pskip=1 chroma_qp_offset=-2 threads=6 lookahead_threads=1 sliced_threads=0 nr=0 decimate=1 interlaced=0 bluray_compat=0 constrained_intra=0 bframes=3 b_pyramid=2 b_adapt=1 b_bias=0 direct=1 weightb=1 open_gop=0 weightp=2 keyint=250 keyint_min=25 scenecut=40 intra_refresh=0 rc_lookahead=40 rc=crf mbtree=1 crf=23.0 qcomp=0.60 qpmin=0 qpmax=69 qpstep=4 ip_ratio=1.40 aq=1:1.00
[mp4 @ 0x2a04b20] Using AVStream.codec to pass codec parameters to muxers is deprecated, use AVStream.codecpar instead.
Output #0, mp4, to 'testvid.mp4':
Metadata:
encoder : Lavf57.41.100
Stream #0:0: Video: h264 (libx264) ([33][0][0][0] / 0x0021), yuv420p, 600x800 [SAR 1:1 DAR 3:4], q=-1--1, 25 fps, 12800 tbn, 25 tbc (default)
Metadata:
encoder : Lavc57.48.101 libx264
Side data:
cpb: bitrate max/min/avg: 0/0/0 buffer size: 0 vbv_delay: -1
Stream mapping:
Stream #0:0 (mjpeg) -> overlay:main
Stream #1:0 (png) -> overlay:overlay
overlay -> Stream #0:0 (libx264)
Press [q] to stop, [?] for help
[concat @ 0x29e2400] DTS -230575710986777 < 0 out of order
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
frame= 4 fps=0.0 q=-1.0 Lsize= 39kB time=00:00:00.04 bitrate=8050.9kbits/s dup=0 drop=65 speed=0.516x
video:39kB audio:0kB subtitle:0kB other streams:0kB global headers:0kB muxing overhead: 2.222729%
[libx264 @ 0x2a05d80] frame I:1 Avg QP:24.64 size: 37536
[libx264 @ 0x2a05d80] frame P:1 Avg QP:27.18 size: 1085
[libx264 @ 0x2a05d80] frame B:2 Avg QP:29.93 size: 73
[libx264 @ 0x2a05d80] consecutive B-frames: 25.0% 0.0% 75.0% 0.0%
[libx264 @ 0x2a05d80] mb I I16..4: 1.7% 86.1% 12.2%
[libx264 @ 0x2a05d80] mb P I16..4: 0.0% 0.0% 0.0% P16..4: 1.7% 1.3% 1.5% 0.0% 0.0% skip:95.5%
[libx264 @ 0x2a05d80] mb B I16..4: 0.0% 0.0% 0.0% B16..8: 2.4% 0.0% 0.0% direct: 0.0% skip:97.6% L0:62.6% L1:37.4% BI: 0.0%
[libx264 @ 0x2a05d80] 8x8 transform intra:86.1% inter:33.9%
[libx264 @ 0x2a05d80] coded y,uvDC,uvAC intra: 91.5% 84.4% 38.5% inter: 0.6% 0.4% 0.1%
[libx264 @ 0x2a05d80] i16 v,h,dc,p: 9% 12% 3% 76%
[libx264 @ 0x2a05d80] i8 v,h,dc,ddl,ddr,vr,hd,vl,hu: 24% 19% 17% 8% 4% 5% 5% 7% 10%
[libx264 @ 0x2a05d80] i4 v,h,dc,ddl,ddr,vr,hd,vl,hu: 22% 18% 10% 10% 9% 7% 10% 8% 7%
[libx264 @ 0x2a05d80] i8c dc,h,v,p: 45% 21% 26% 8%
[libx264 @ 0x2a05d80] Weighted P-Frames: Y:0.0% UV:0.0%
[libx264 @ 0x2a05d80] ref B L0: 84.2% 15.8%
[libx264 @ 0x2a05d80] kb/s:1938.35 -
FFMPEG : custom sequence input images
14 juillet 2016, par gabberI created a video from a set of images.
The command look like :
ffmpeg -i bg.jpeg -i img_%d.png -filter_complex overlay=5:H-h-5[b]-shortest testvid.mp4
Problem :
The input
-i img_%d.png
meansimg_0.png
,img_1.png
,img_2.png
, ...But I have custom sequence like this :
{img_0.png, img_1.png, img_1.png, img_2.png, img_1.png, img5.png, img_4.png}
Question :
Can I put my image sequence into input of ffmpeg ?
Updated
cmd :
ffmpeg -i bg.jpeg -f concat -fflags +genpts -i test.txt -filter_complex overlay=5:H-h-5 -shortest testvid.mp4
output :
ffmpeg version 3.1.1 Copyright (c) 2000-2016 the FFmpeg developers
built with gcc 4.8 (Ubuntu 4.8.4-2ubuntu1~14.04.3)
configuration: --enable-gpl --enable-libx264 --enable-libfreetype
libavutil 55. 28.100 / 55. 28.100
libavcodec 57. 48.101 / 57. 48.101
libavformat 57. 41.100 / 57. 41.100
libavdevice 57. 0.101 / 57. 0.101
libavfilter 6. 47.100 / 6. 47.100
libswscale 4. 1.100 / 4. 1.100
libswresample 2. 1.100 / 2. 1.100
libpostproc 54. 0.100 / 54. 0.100
Input #0, image2, from 'bg.jpeg':
Duration: 00:00:00.04, start: 0.000000, bitrate: 47329 kb/s
Stream #0:0: Video: mjpeg, yuvj420p(pc, bt470bg/unknown/unknown), 600x800 [SAR 1:1 DAR 3:4], 25 tbr, 25 tbn, 25 tbc
Input #1, concat, from 'test.txt':
Duration: N/A, start: 0.000000, bitrate: N/A
Stream #1:0: Video: png, pal8(pc), 200x200, 25 tbr, 25 tbn, 25 tbc
File 'testvid.mp4' already exists. Overwrite ? [y/N] y
[swscaler @ 0x2a18360] deprecated pixel format used, make sure you did set range correctly
[libx264 @ 0x2a05d80] using SAR=1/1
[libx264 @ 0x2a05d80] using cpu capabilities: MMX2 SSE2Fast SSSE3 SSE4.2 AVX FMA3 AVX2 LZCNT BMI2
[libx264 @ 0x2a05d80] profile High, level 3.1
[libx264 @ 0x2a05d80] 264 - core 148 r2705 3f5ed56 - H.264/MPEG-4 AVC codec - Copyleft 2003-2016 - http://www.videolan.org/x264.html - options: cabac=1 ref=3 deblock=1:0:0 analyse=0x3:0x113 me=hex subme=7 psy=1 psy_rd=1.00:0.00 mixed_ref=1 me_range=16 chroma_me=1 trellis=1 8x8dct=1 cqm=0 deadzone=21,11 fast_pskip=1 chroma_qp_offset=-2 threads=6 lookahead_threads=1 sliced_threads=0 nr=0 decimate=1 interlaced=0 bluray_compat=0 constrained_intra=0 bframes=3 b_pyramid=2 b_adapt=1 b_bias=0 direct=1 weightb=1 open_gop=0 weightp=2 keyint=250 keyint_min=25 scenecut=40 intra_refresh=0 rc_lookahead=40 rc=crf mbtree=1 crf=23.0 qcomp=0.60 qpmin=0 qpmax=69 qpstep=4 ip_ratio=1.40 aq=1:1.00
[mp4 @ 0x2a04b20] Using AVStream.codec to pass codec parameters to muxers is deprecated, use AVStream.codecpar instead.
Output #0, mp4, to 'testvid.mp4':
Metadata:
encoder : Lavf57.41.100
Stream #0:0: Video: h264 (libx264) ([33][0][0][0] / 0x0021), yuv420p, 600x800 [SAR 1:1 DAR 3:4], q=-1--1, 25 fps, 12800 tbn, 25 tbc (default)
Metadata:
encoder : Lavc57.48.101 libx264
Side data:
cpb: bitrate max/min/avg: 0/0/0 buffer size: 0 vbv_delay: -1
Stream mapping:
Stream #0:0 (mjpeg) -> overlay:main
Stream #1:0 (png) -> overlay:overlay
overlay -> Stream #0:0 (libx264)
Press [q] to stop, [?] for help
[concat @ 0x29e2400] DTS -230575710986777 < 0 out of order
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
DTS -230575710986777, next:40000 st:0 invalid dropping
PTS -230575710986777, next:40000 invalid dropping st:0
frame= 4 fps=0.0 q=-1.0 Lsize= 39kB time=00:00:00.04 bitrate=8050.9kbits/s dup=0 drop=65 speed=0.516x
video:39kB audio:0kB subtitle:0kB other streams:0kB global headers:0kB muxing overhead: 2.222729%
[libx264 @ 0x2a05d80] frame I:1 Avg QP:24.64 size: 37536
[libx264 @ 0x2a05d80] frame P:1 Avg QP:27.18 size: 1085
[libx264 @ 0x2a05d80] frame B:2 Avg QP:29.93 size: 73
[libx264 @ 0x2a05d80] consecutive B-frames: 25.0% 0.0% 75.0% 0.0%
[libx264 @ 0x2a05d80] mb I I16..4: 1.7% 86.1% 12.2%
[libx264 @ 0x2a05d80] mb P I16..4: 0.0% 0.0% 0.0% P16..4: 1.7% 1.3% 1.5% 0.0% 0.0% skip:95.5%
[libx264 @ 0x2a05d80] mb B I16..4: 0.0% 0.0% 0.0% B16..8: 2.4% 0.0% 0.0% direct: 0.0% skip:97.6% L0:62.6% L1:37.4% BI: 0.0%
[libx264 @ 0x2a05d80] 8x8 transform intra:86.1% inter:33.9%
[libx264 @ 0x2a05d80] coded y,uvDC,uvAC intra: 91.5% 84.4% 38.5% inter: 0.6% 0.4% 0.1%
[libx264 @ 0x2a05d80] i16 v,h,dc,p: 9% 12% 3% 76%
[libx264 @ 0x2a05d80] i8 v,h,dc,ddl,ddr,vr,hd,vl,hu: 24% 19% 17% 8% 4% 5% 5% 7% 10%
[libx264 @ 0x2a05d80] i4 v,h,dc,ddl,ddr,vr,hd,vl,hu: 22% 18% 10% 10% 9% 7% 10% 8% 7%
[libx264 @ 0x2a05d80] i8c dc,h,v,p: 45% 21% 26% 8%
[libx264 @ 0x2a05d80] Weighted P-Frames: Y:0.0% UV:0.0%
[libx264 @ 0x2a05d80] ref B L0: 84.2% 15.8%
[libx264 @ 0x2a05d80] kb/s:1938.35