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|year=2012|accessdate=2014-01-03}}</ref>
|year=2012|accessdate=2014-01-03}}</ref>


In summer 2010, Fiona Glaser, Ronald Bultje, and David Conrad of the FFmpeg Team announced the ffvp8 decoder. Through testing, they determined that ffvp8 was faster than Google's own [[libvpx]] decoder.<ref>{{citation |url=http://x264dev.multimedia.cx/?p=499 |title=Diary Of An x264 Developer: Announcing the world’s fastest VP8 decoder |first=Fiona|last=Glaser |date=2010-07-23 |accessdate=2012-01-04}}</ref><ref>{{citation |url=http://news.slashdot.org/story/10/07/24/1227241/FFmpeg-Announces-High-Performance-VP8-Decoder |title=FFmpeg Announces High-Performance VP8 Decoder |publisher=Slashdot |date=2010-07-24 |accessdate=2012-01-04}}</ref> Starting with version 0.6, FFmpeg also supported [[WebM]] and [[VP8]].<ref>{{cite web |url=http://newteevee.com/2010/06/17/ffmpeg-goes-webm-enabling-vp8-for-boxee-co/ |title=FFmpeg Goes WebM, Enabling VP8 for Boxee & Co |publisher=newteevee.com |date=2010-06-17 |accessdate=2012-01-04 |quote=...with [[VLC media player|VLC]], [[Boxee]], [[MythTV]], [[HandBrake|Handbrake]] and [[MPlayer]] being some of the more popular projects utilizing FFmpeg...}}</ref>
In summer 2010, Fiona Glaser, Ronald Bultje, and David Conrad of the FFmpeg Team announced the ffvp8 decoder. Through testing, they determined that ffvp8 was faster than Google's own [[libvpx]] decoder.<ref>{{citation |url=http://x264dev.multimedia.cx/?p=499 |title=Diary Of An x264 Developer: Announcing the world’s fastest VP8 decoder |first=Fiona |last=Glaser |date=2010-07-23 |accessdate=2012-01-04 |deadurl=yes |archiveurl=https://web.archive.org/web/20100930181634/http://x264dev.multimedia.cx/?p=499 |archivedate=2010-09-30 |df= }}</ref><ref>{{citation |url=http://news.slashdot.org/story/10/07/24/1227241/FFmpeg-Announces-High-Performance-VP8-Decoder |title=FFmpeg Announces High-Performance VP8 Decoder |publisher=Slashdot |date=2010-07-24 |accessdate=2012-01-04}}</ref> Starting with version 0.6, FFmpeg also supported [[WebM]] and [[VP8]].<ref>{{cite web |url=http://newteevee.com/2010/06/17/ffmpeg-goes-webm-enabling-vp8-for-boxee-co/ |title=FFmpeg Goes WebM, Enabling VP8 for Boxee & Co |publisher=newteevee.com |date=2010-06-17 |accessdate=2012-01-04 |quote=...with [[VLC media player|VLC]], [[Boxee]], [[MythTV]], [[HandBrake|Handbrake]] and [[MPlayer]] being some of the more popular projects utilizing FFmpeg...}}</ref>


In October 2013, a native [[VP9]]<ref name="LaunchpadVP9Decoder">{{cite news |title=Native VP9 decoder is now in the Git master branch |work=[[Launchpad (website)|Launchpad]] |url=https://launchpad.net/ffmpeg/+announcement/12045 |date=2013-10-03 |accessdate=2013-10-21}}</ref> and the OpenHEVC decoder, an open source [[High Efficiency Video Coding]] (HEVC) decoder, were added to FFmpeg.<ref name=FFmpegHEVCOctober2013Softpedia>{{cite news |title=FFmpeg Now Features Native HEVC/H.265 Decoder Support |publisher=[[Softpedia]] |url=http://news.softpedia.com/news/Ffmpeg-Now-Features-Native-HEVC-H-265-Decoder-Support-391582.shtml |date=2013-10-16 |accessdate=2013-10-16}}</ref> In 2016 the native [[Advanced Audio Coding|AAC]] encoder was considered stable, removing support for the two external AAC encoders from [[VisualOn]] and [[FAAC]]. FFmpeg 3.0 (nicknamed ''"Einstein"&#x2009;'') retained build support for the [[Fraunhofer FDK AAC]] encoder.<ref name="Einstein">{{cite web|url=http://ffmpeg.org/index.html#pr3.0|title=February 15th, 2016, FFmpeg 3.0 "Einstein"|date=2016-02-15|accessdate=2016-04-02|author=FFmpeg|authorlink=FFmpeg<!-- [[Meh]] -->}}</ref>
In October 2013, a native [[VP9]]<ref name="LaunchpadVP9Decoder">{{cite news |title=Native VP9 decoder is now in the Git master branch |work=[[Launchpad (website)|Launchpad]] |url=https://launchpad.net/ffmpeg/+announcement/12045 |date=2013-10-03 |accessdate=2013-10-21}}</ref> and the OpenHEVC decoder, an open source [[High Efficiency Video Coding]] (HEVC) decoder, were added to FFmpeg.<ref name=FFmpegHEVCOctober2013Softpedia>{{cite news |title=FFmpeg Now Features Native HEVC/H.265 Decoder Support |publisher=[[Softpedia]] |url=http://news.softpedia.com/news/Ffmpeg-Now-Features-Native-HEVC-H-265-Decoder-Support-391582.shtml |date=2013-10-16 |accessdate=2013-10-16}}</ref> In 2016 the native [[Advanced Audio Coding|AAC]] encoder was considered stable, removing support for the two external AAC encoders from [[VisualOn]] and [[FAAC]]. FFmpeg 3.0 (nicknamed ''"Einstein"&#x2009;'') retained build support for the [[Fraunhofer FDK AAC]] encoder.<ref name="Einstein">{{cite web|url=http://ffmpeg.org/index.html#pr3.0|title=February 15th, 2016, FFmpeg 3.0 "Einstein"|date=2016-02-15|accessdate=2016-04-02|author=FFmpeg|authorlink=FFmpeg<!-- [[Meh]] -->}}</ref>
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* [[MPEG transport stream]] (including [[AVCHD]])
* [[MPEG transport stream]] (including [[AVCHD]])
* [[MXF]], Material eXchange Format, SMPTE 377M
* [[MXF]], Material eXchange Format, SMPTE 377M
* MSN Webcam stream<ref name="ffdev20080318">{{cite web|author=ramiro |url=http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-March/012708.html |title=FFmpeg development mailing list |publisher=FFmpeg website |work=FFmpeg development |date=18 March 2008 |accessdate=18 March 2008 |deadurl=yes |archiveurl=https://web.archive.org/web/20080817072304/http://lists.mplayerhq.hu:80/pipermail/ffmpeg-cvslog/2008-March/012708.html |archivedate=17 August 2008 |df= }}</ref>
* MSN Webcam stream<ref name="ffdev20080318">{{cite web |author=ramiro |url=http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-March/012708.html |title=FFmpeg development mailing list |publisher=FFmpeg website |work=FFmpeg development |date=18 March 2008 |accessdate=18 March 2008 |deadurl=yes |archiveurl=https://web.archive.org/web/20080817072304/http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-March/012708.html |archivedate=17 August 2008 |df= }}</ref>
* {{anchor|NUT}}NUT<ref name="nut" />
* {{anchor|NUT}}NUT<ref name="nut" />
* [[Ogg]]
* [[Ogg]]
* [[OpenMG Audio|OMA]]<ref name="ffdev20080608">{{cite web|author=banan |url=http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-June/014417.html |title=FFmpeg development mailing list |publisher=FFmpeg website |work=FFmpeg development |date=8 June 2008 |accessdate=8 June 2008 |deadurl=yes |archiveurl=https://web.archive.org/web/20090114195646/http://lists.mplayerhq.hu:80/pipermail/ffmpeg-cvslog/2008-June/014417.html |archivedate=14 January 2009 |df= }}</ref>
* [[OpenMG Audio|OMA]]<ref name="ffdev20080608">{{cite web |author=banan |url=http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-June/014417.html |title=FFmpeg development mailing list |publisher=FFmpeg website |work=FFmpeg development |date=8 June 2008 |accessdate=8 June 2008 |deadurl=yes |archiveurl=https://web.archive.org/web/20090114195646/http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-June/014417.html |archivedate=14 January 2009 |df= }}</ref>
* [[Voyeur (video game)|RL2]]<ref name="ffdev20080321">{{cite web|author=faust3 |url=http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-March/012799.html |title=FFmpeg development mailing list |publisher=FFmpeg website |work=FFmpeg development |date=21 March 2008 |accessdate=21 March 2008 |deadurl=yes |archiveurl=https://web.archive.org/web/20080425024126/http://lists.mplayerhq.hu:80/pipermail/ffmpeg-cvslog/2008-March/012799.html |archivedate=25 April 2008 |df= }}</ref>
* [[Voyeur (video game)|RL2]]<ref name="ffdev20080321">{{cite web |author=faust3 |url=http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-March/012799.html |title=FFmpeg development mailing list |publisher=FFmpeg website |work=FFmpeg development |date=21 March 2008 |accessdate=21 March 2008 |deadurl=yes |archiveurl=https://web.archive.org/web/20080425024126/http://lists.mplayerhq.hu/pipermail/ffmpeg-cvslog/2008-March/012799.html |archivedate=25 April 2008 |df= }}</ref>
* Segment, for creating segmented video streams
* Segment, for creating segmented video streams
* [[Smooth Streaming]]
* [[Smooth Streaming]]

Revision as of 07:49, 3 September 2017

FFmpeg
Original author(s)Fabrice Bellard
Developer(s)FFmpeg team
Initial releaseDecember 20, 2000; 23 years ago (2000-12-20)[1]
Repositorygit.ffmpeg.org/ffmpeg.git
Written inC and Assembly[2]
Operating systemWindows, OS X, and Linux; may be compiled for other OSes.[3]
Platformx86, ARM, PowerPC, MIPS, DEC Alpha, Blackfin, AVR32, SH-4, and SPARC; may be compiled for other desktop computers
TypeMultimedia framework
LicenseLGPL 2.1+, GPL 2+
Unredistributable if compiled as such[4]
Websiteffmpeg.org

FFmpeg is a free software project that produces libraries and programs for handling multimedia data. FFmpeg includes libavcodec, an audio/video codec library used by several other projects, libavformat (Lavf),[5] an audio/video container mux and demux library, and the ffmpeg command line program for transcoding multimedia files. FFmpeg is published under the GNU Lesser General Public License 2.1+ or GNU General Public License 2+ (depending on which options are enabled).[6]

The name of the project is inspired by the MPEG video standards group, together with "FF" for "fast forward".[7] The logo uses a zigzag pattern that shows how MPEG video codecs handle entropy encoding.[8]

History

The project was started by Fabrice Bellard[6] (using the pseudonym "Gérard Lantau") in 2000, and was led by Michael Niedermayer from 2004 until 2015.[9] Some FFmpeg developers were also part of the MPlayer project.

The project publishes a new release every three months on average. While release versions are available from the website for download, FFmpeg developers recommend that users compile the software from source using the latest build from their source code Git version control system.[10]

On January 10, 2014, two Google employees announced that over 1000 bugs had been fixed in FFmpeg during the previous two years by means of fuzz testing.[11]

Codec history

Two video coding formats with corresponding codecs and one container format have been created within the FFmpeg project so far. The two video codecs are the lossless FFV1, and the lossless and lossy Snow codec. Development of Snow has stalled, while its bit-stream format has not been finalized yet, making it experimental since 2011. The multimedia container format called NUT is no longer being actively developed, but still maintained.[12]

In summer 2010, Fiona Glaser, Ronald Bultje, and David Conrad of the FFmpeg Team announced the ffvp8 decoder. Through testing, they determined that ffvp8 was faster than Google's own libvpx decoder.[13][14] Starting with version 0.6, FFmpeg also supported WebM and VP8.[15]

In October 2013, a native VP9[16] and the OpenHEVC decoder, an open source High Efficiency Video Coding (HEVC) decoder, were added to FFmpeg.[17] In 2016 the native AAC encoder was considered stable, removing support for the two external AAC encoders from VisualOn and FAAC. FFmpeg 3.0 (nicknamed "Einstein" ) retained build support for the Fraunhofer FDK AAC encoder.[18]

Components

Command line tools

  • ffmpeg is a command-line tool that converts audio or video formats. It can also capture and encode in real-time from various hardware and software sources such as a TV capture card.
  • ffserver is an HTTP and RTSP multimedia streaming server for live and recorded broadcasts. It can also be used to time shift live broadcasts.
  • ffplay is a simple media player utilizing SDL and the FFmpeg libraries.
  • ffprobe is a command-line tool to display media information (text, CSV, XML, JSON), see also Mediainfo.

Libraries

  • libswresample is a library containing audio resampling routines.
  • libavresample is a library containing audio resampling routines from the Libav project, similar to libswresample from ffmpeg.
  • libavcodec is a library containing all of the native FFmpeg audio/video encoders and decoders. Most codecs were developed from scratch to ensure best performance and high code reusability.
  • libavformat (Lavf)[5] is a library containing demuxers and muxers for audio/video container formats.
  • libavutil is a helper library containing routines common to different parts of FFmpeg. This library includes hash functions (Adler-32, CRC, MD5, RIPEMD, SHA-1. SHA-2, MurmurHash3, HMAC MD-5, HMAC SHA-1 and HMAC SHA-2), ciphers (DES, RC4, AES, AES-CTR, TEA, XTEA, Blowfish, CAST-128, Twofish and Camellia), LZO decompressor and Base64 encoder/decoder.
  • libpostproc is a library containing older h263 based video postprocessing routines.
  • libswscale is a library containing video image scaling and colorspace/pixelformat conversion routines.
  • libavfilter is the substitute for vhook which allows the video/audio to be modified or examined between the decoder and the encoder. Filters have been ported from many projects including MPlayer and avisynth

Supported hardware

CPUs

FFmpeg encompasses software implementations of video and audio compressing and decompressing algorithms. These can be compiled and run on diverse instruction sets.

Many widespread instruction sets are supported by FFmpeg, like x86 (IA-32 and x86-64), PPC (PowerPC), ARM, DEC Alpha, SPARC, and MIPS.[19]

Special purpose hardware

Various application-specific integrated circuit related to video and audio compression and decompression do exist. Such ASIC can perform the computation for audio/video decompression or compression partly or fully to offload these from the host CPU. To make use of such ASIC, instead of a complete implementation of some algorithm, only the API is required. There are numerous ASICs and APIs available, of which several are supported by FFmpeg.[20]

Firm ASIC purpose supported by FFmpeg Details
AMD UVD decompression ?
VCE compression ?
Amlogic Amlogic Video Engine decompression ?
Broadcom Crystal HD decompression ?
Intel Intel Clear Video decompression
Intel Quick Sync Video both
Nvidia PureVideo / NVDEC decompression via the VDPAU API as of FFmpeg v1.2 (deprecated)
via CUVID API as of FFmpeg v3.1[21]
NVENC compression as of FFmpeg v2.6

Supported codecs and formats

Image formats

FFmpeg supports many common and some uncommon image formats.

The PGMYUV image format is a homebrewn variant of the binary (P5) PGM Netpbm format. FFmpeg also supports 16-bit depths of the PGM and PPM formats, and the binary (P7) PAM format with or without alpha channel, depth 8 bit or 16 bit for pix_fmts monob, gray, gray16be, rgb24, rgb48be, ya8, rgba, rgb64be.

Supported formats

In addition to FFV1 and Snow formats, which were created and developed from within FFmpeg, the project also supports the following formats:

Group Format type Format name
ISO/IEC/ITU-T Video MPEG-1 Part 2, H.261 (Px64),[22] H.262/MPEG-2 Part 2, H.263,[22] MPEG-4 Part 2, H.264/MPEG-4 AVC, HEVC/H.265[17] (MPEG-H Part 2), Motion JPEG, IEC DV video and CD+G
Audio MP1, MP2, MP3, AAC, HE-AAC, MPEG-4 ALS, G.711 µ-law, G.711 A-law, G.721 (a.k.a. G.726 32k), G.722, G.722.2 (a.k.a. AMR-WB), G.723 (a.k.a. G.726 24k and 40k), G.723.1, G.726, G.729, G.729D, IEC DV audio and Direct Stream Transfer
Subtitle MPEG-4 Timed Text (a.k.a. 3GPP Timed Text)
Image JPEG, JPEG-LS, JPEG 2000, PNG, CCITT G3 and CCITT G4
EBU Subtitle Spruce subtitle (EBU STL)
EIA Subtitle EIA-608
CEA Subtitle CEA-708
SMPTE Video SMPTE 314M (a.k.a. DVCAM and DVCPRO), SMPTE 370M (a.k.a. DVCPRO HD), VC-1 (a.k.a. WMV3), VC-2 (a.k.a. Dirac Pro), VC-3 (a.k.a. AVID DNxHD), VC-5 (a.k.a. Cineform)
Audio SMPTE 302M
Image DPX
ATSC/ETSI/DVB Audio Full Rate (GSM 06.10), AC-3 (Dolby Digital), Enhanced AC-3 (Dolby Digital Plus) and DTS Coherent Acoustics (a.k.a. DTS or DCA)
Subtitle DVB Subtitling (ETSI 300 743)
DVD Forum/Dolby Audio MLP / Dolby TrueHD
Subtitle DVD-Video subtitles
DTS, Inc/QDesign Audio DTS Coherent Acoustics (a.k.a. DTS or DCA), DTS Extended Surround (a.k.a. DTS-ES), DTS 96/24, DTS-HD High Resolution Audio, DTS Express (a.k.a. DTS-HD LBR), DTS-HD Master Audio, QDesign Music Codec 1 and 2
Blu-ray Disc Association Subtitle PGS (Presentation Graphics Stream)
3GPP Audio AMR-NB, AMR-WB (a.k.a. G.722.2)
3GPP2 Audio QCELP-8 (a.k.a. SmartRate or IS-96C), QCELP-13 (a.k.a. PureVoice or IS-733) and Enhanced Variable Rate Codec (EVRC. a.k.a. IS-127)
World Wide Web Consortium Video Animated GIF
Subtitle WebVTT
Image GIF
IETF Audio iLBC (via libilbc), Opus and Comfort noise
International Voice Association Audio DSS-SP
SAC Video AVS video
Microsoft Video Microsoft RLE, Microsoft Video 1, Cinepak, Indeo (v2, v3 and v5),[22] Microsoft MPEG-4 v1, v2 and v3, Windows Media Video (WMV1, WMV2, WMV3/VC-1), WMV Screen and Mimic codec
Audio Windows Media Audio (WMA1, WMA2, WMA Pro and WMA Lossless), XMA (XMA1 and XMA2), MS-GSM and MS-ADPCM
Subtitle SAMI
Image Windows Bitmap, WMV Image (WMV9 Image and WMV9 Image v2) and DirectDraw Surface
Interactive Multimedia Association Audio IMA ADPCM
Digital Video Interactive Video RTV 2.1 (Intel Indeo 2)
Audio DVI4 audio codec
RealNetworks Video RealVideo 1, 2, 3 and 4
Audio RealAudio v1 – v10
Subtitle RealText
Apple Video Cinepak (Apple Compact Video), ProRes, Sorenson 3 Codec, QuickTime Animation (Apple Animation), QuickTime Graphics (Apple Graphics), Apple Video, Apple Intermediate Codec and Pixlet
Audio ALAC
Adobe Flash Player (SWF) Video Screen video, Screen video 2, Sorenson Spark and VP6
Audio Adobe SWF ADPCM and Nellymoser Asao
Aldus / Adobe Image TIFF and PSD
Xiph.Org Video Theora
Audio Speex (via libspeex), Vorbis, Opus and FLAC
Subtitle Ogg Writ
Sony Audio Adaptive Transform Acoustic Coding (ATRAC1, ATRAC3 and ATRAC3Plus)[22][23] and PSX ADPCM
NTT Audio TwinVQ
On2 / GIPS / Google Video Duck TrueMotion 1, Duck TrueMotion 2, Duck TrueMotion 2.0 Real Time, VP3, VP5,[22] VP6,[22] VP7, VP8, VP9[16] and animated WebP
Audio DK ADPCM Audio 3/4, On2 AVC and iLBC (via libilbc)
Image WebP
RAD Game Tools Video Smacker video and Bink video
DSP Group Audio Truespeech
RenderWare Video TXD[24]
Netpbm Image PBM, PGM, PPM, PNM and PAM
MIT/X Consortium/The Open Group Image XBM, XPM and xwd
Silicon Graphics Video Silicon Graphics RLE 8-bit video, Silicon Graphics MVC1/2
Image Silicon Graphics Image
Oracle/Sun Microsystems Image Sun Raster
IBM Video IBM UltiMotion
Avid Technology / Truevision Video Avid 1:1x, Avid Meridien, Avid DNxHD and DNxHR
Image Targa
Autodesk / Alias Video Autodesk Animator Studio Codec and FLIC
Image Alias PIX
Grass Valley / Canopus Video HQ, HQA, HQX and Lossless
NewTek Video SpeedHQ
Industrial Light & Magic / Lucasfilm Image OpenEXR
Mozilla Corporation Video APNG
Matrox Video Matrox Uncompressed SD (M101) / HD (M102)
AMD/ATI Video ATI VCR1/VCR2
Asus Video ASUS V1/V2 codec

The default MPEG-4 codec used by FFmpeg for encoding has the FourCC of FMP4.

Muxers

Output formats (container formats and other ways of creating output streams) in FFmpeg are called "muxers". FFmpeg supports, among others, the following:

Pixel formats

FFmpeg supports many pixel formats.[32] Some of these formats are only supported as input formats. The command ffmpeg -pix_fmts provides a list of supported pixel formats.

Type Color Packed Planar Palette
Without alpha With alpha Without alpha With alpha Chroma-interleaved With alpha
Monochrome Binary (1-bit monochrome) monoblack, monowhite - - - - -
Grayscale 8 / 9 / 10 / 12 / 16bpp 16 / 32bpp - - - -
RGB RGB 1:2:1 (4-bit color) 4bpp - - - - -
RGB 3:3:2 (8-bit color) 8bpp - - - - -
RGB 5:5:5 (High color) 16bpp - - - - -
RGB 5:6:5 (High color) 16bpp - - - - -
RGB/BGR 24 / 48bpp 32[p 1] / 64bpp - - - 8bit->32bpp
GBR[p 2] - - 8 / 9 / 10 / 12 / 14 / 16bpc 8 / 10 / 12 / 16bpc - -
RGB Float GBR - - 32bpc 32bpc - -
YUV YVU 4:1:0 - - (9bpp (YVU9))[p 3] - - -
YUV 4:1:0 - - 9bpp - - -
YUV 4:1:1 8bpc (UYYVYY) - 8bpc - (8bpc (NV11)) -
YVU 4:2:0 - - (8bpc (YV12))[p 3] - 8 (NV21) -
YUV 4:2:0 - - 8[p 4] / 9 / 10 / 12 / 14 / 16bpc 8 / 9 / 10 / 16bpc 8 (NV12) / 10 (P010) / 16bpc (P016) -
YVU 4:2:2 - - (8bpc (YV16))[p 3] - (8bpc (NV61)) -
YUV 4:2:2 8bpc (YUYV[p 5] and UYVY)[p 6] - 8[p 7] / 9 / 10 / 12 / 14 / 16bpc 8 / 9 / 10 / 16bpc 8 (NV16) / 10bpc (NV20 a.k.a. P210)[p 8] -
YUV 4:4:0 - - 8 / 10 / 12bpc - - -
YVU 4:4:4 - - (8bpc (YV24))[p 3] - (8bpc (NV42)) -
YUV 4:4:4 (10 (Y410) and 16bpc (Y416)) 16bpc[p 9] 8[p 10] / 9 / 10 / 12 / 14 / 16bpc 8 / 9 / 10 / 16bpc (8bpc (NV24)) -
XYZ XYZ 4:4:4[p 11] 12bpc - - - - -
Bayer BGGR/RGGB/GBRG/GRBG 8 / 16bpp - - - - -
  1. ^ RGBx (rgb0) and xBGR (0bgr) are also supported
  2. ^ used in YUV-centric codecs such like H.264
  3. ^ a b c d YVU9, YV12, YV16, and YV24 are supported as rawvideo codec in FFmpeg.
  4. ^ I420 a.k.a. YUV420P
  5. ^ aka YUY2 in Windows
  6. ^ Y210 (YUYV 10bpc) is not supported. UYVY 10bpc without a padding is supported as bitpacked codec in FFmpeg. UYVY 10bpc with 2-bits padding is supported as v210 codec in FFmpeg. 16bpc (Y216) is supported as targa_y216 codec in FFmpeg.
  7. ^ I422 a.k.a. YUV422P
  8. ^ 16bpc (P216) is not supported
  9. ^ 8bpc (AYUV) is not supported
  10. ^ I444 a.k.a. YUV444P
  11. ^ used in JPEG2000

FFmpeg does not support IMC1-IMC4, AI44, CYMK, RGBE, Log RGB and other formats. It also does not yet support ARGB 1:5:5:5, 2:10:10:10, or other BMP bitfield formats that are not commonly used.

Supported protocols

Open standards

Open-source

Proprietary

  • Adobe RTMP, RTMPT, RTMPE, RTMPTE and RTMPS (can be compiled with the native support or using rtmpdumps librtmp library)
  • RealMedia RTSP/RDT

Supported filters

FFmpeg supports, among others, the following filters.[36]

Audio

Video

FFmpeg contains more than 100 codecs,[38] most of which use compression techniques of one kind or another. Many such compression techniques may be subject to legal claims relating to software patents.[39] Such claims may be enforceable in countries like the United States which have implemented software patents, but are considered unenforceable or void in member countries of the European Union, for example.

FFmtech Foundation

In June 2011 an election was organized to establish the board of FFmtech foundation,[40] a non-profit organization dedicated for managing donation funds. It was designed to offer reimbursement for expenses and work done to FFmpeg and Libav. However, according to FFmpeg developer Ronald Bultje the results have been doubtful.[41]

Projects using FFmpeg

FFmpeg is used by software such as VLC media player, xine, Plex, Blender, YouTube,[42] and MPC-HC;[43] it handles video and audio playback in Google Chrome,[43] and Linux version of Firefox.[44] Graphical user interface front-ends for FFmpeg have been developed, including Avanti,[45] and XMedia Recode. JavaCV, a Java wrapper for OpenCV, includes a supplementary Java wrapper for FFmpeg.[46]

FFmpeg is used by ffdshow, LAV Filters, GStreamer FFmpeg plug-in, Perian and OpenMAX IL to expand the encoding and decoding capabilities of their respective multimedia platform.

Forks

Libav

On March 13, 2011, a group of FFmpeg developers decided to fork the project under the name "Libav".[47][48][49] The event was related to an issue in project management, in which developers disagreed with the leadership of FFmpeg.[50][51][52]

See also

References

  1. ^ "Initial revision - git.videolan.org/ffmpeg.git/commit". git.videolan.org. 2000-12-20. Retrieved 2013-05-11.
  2. ^ "Developer Documentation". ffmpeg.org. 2011-12-08. Retrieved 2012-01-04.
  3. ^ "Download". ffmpeg.org. FFmpeg. Retrieved 2012-01-04.
  4. ^ FFmpeg can be configured to make it proprietary and unredistributable software because NVIDIA Performance Primitives, an optional external library, is proprietary software and cannot be distributed under the terms of the GPL.
  5. ^ a b "FFmpeg: Lavf: I/O and Muxing/Demuxing Library". ffmpeg.org. Retrieved 21 October 2016.
  6. ^ Bellard, Fabrice (18 February 2006). "FFmpeg naming and logo". FFmpeg developer mailing list. FFmpeg website. Retrieved 24 December 2011.
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