x264 2:0.123.2189+git35cf912-1ubuntu3 source package in Ubuntu
Changelog
x264 (2:0.123.2189+git35cf912-1ubuntu3) trusty; urgency=low * No change rebuild against libav 9. -- Dmitrijs Ledkovs <email address hidden> Sun, 10 Nov 2013 20:37:42 +0000
Upload details
- Uploaded by:
- Dimitri John Ledkov
- Uploaded to:
- Trusty
- Original maintainer:
- Ubuntu Developers
- Architectures:
- any
- Section:
- libs
- Urgency:
- Low Urgency
See full publishing history Publishing
Series | Published | Component | Section |
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Downloads
File | Size | SHA-256 Checksum |
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x264_0.123.2189+git35cf912.orig.tar.gz | 654.7 KiB | fd76017cc64c5eee95e980d8c3f0f5901548dc38fab1a5357ccbf1a6afbfa430 |
x264_0.123.2189+git35cf912-1ubuntu3.debian.tar.gz | 20.9 KiB | 32f09a2da174998fb53f11ef637a309bcac197fbfc975351869c574d2b5dbe4c |
x264_0.123.2189+git35cf912-1ubuntu3.dsc | 2.4 KiB | e34b8d657aa0ef1712ea76e46a7e8cb244da9548c81020f816aa7e0d69587d54 |
Available diffs
Binary packages built by this source
- libx264-123: No summary available for libx264-123 in ubuntu trusty.
No description available for libx264-123 in ubuntu trusty.
- libx264-dev: development files for libx264
libx264 is an advanced encoding library for creating H.264 (MPEG-4 AVC)
video streams.
.
This package contains the static library and headers used to build programs
that use libx264.
- x264: video encoder for the H.264/MPEG-4 AVC standard
x264 is an advanced commandline encoder for creating H.264 (MPEG-4 AVC)
video streams.
.
x264 supports the following features:
* CABAC (context-based adaptive binary arithmetic coding) and CAVLC
(context-based adaptive variable length coding
* multiple reference frames
* 16x16, 8x8 and 4x4 intra-predicted macroblocks
* all P-frame inter-predicted macroblock types
* B-Inter-predicted macroblock types from 16x16 down to 8x8
* rate distortion optimization
* multiple rate control modes (constant quantizer, constant quality, single
or multipass ABR with the option of VBV)
* scene cut detection
* adaptive B-frame placement, with the option of keeping B-frames as
references / arbitrary frame order
* 8x8 and 4x4 adaptive spatial transform (high profile)
* lossless mode (high 4:4:4 profile)
* custom quantization matrices (high profile)
* parallel encoding on multiple CPUs
* interlaced streams