x264 2:0.164.3108+git31e19f9-ok1 source package in openKylin
Changelog
x264 (2:0.164.3108+git31e19f9-ok1) nile; urgency=medium * Build for openKylin. -- Luoyaoming <email address hidden> Wed, 24 Apr 2024 17:53:00 +0800
x264 (2:0.164.3108+git31e19f9-ok1) nile; urgency=medium * Build for openKylin. -- Luoyaoming <email address hidden> Wed, 24 Apr 2024 17:53:00 +0800
Series | Published | Component | Section | |
---|---|---|---|---|
Huanghe V3.0 | proposed | main | libs | |
Huanghe V3.0 | release | main | libs | |
Nile V2.0 | release | main | libs | |
Nile V2.0 | proposed | main | libs |
File | Size | SHA-256 Checksum |
---|---|---|
x264_0.164.3108+git31e19f9.orig.tar.gz | 932.4 KiB | 41606cb8e788a7f8c4514290646d4ba5c7bc68d9e1ccd1a73f446a90546913eb |
x264_0.164.3108+git31e19f9-ok1.debian.tar.xz | 16.1 KiB | ba3bbe0e056f197214ad81c9e1dd404f12607ae6302123bc73ac4c492be566df |
x264_0.164.3108+git31e19f9-ok1.dsc | 2.1 KiB | 395c40f2be6d3eee99ca1faa9499304f6bebcefe62d7863623aa2844d2d04ae4 |
libx264 is an advanced encoding library for creating H.264 (MPEG-4 AVC)
video streams.
.
This package contains the libx264 shared library.
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 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