Zlib
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zlib (/ˈziːlɪb/ or "zeta-lib", /ˈziːtəˌlɪb/)cite-ref-2[2]cite-ref-3[3] is a software library used for data compression as well as a data format.cite-ref-rfc1950-4-0[4] zlib was written by Jean-loup Gailly and Mark Adler and is an abstraction of the DEFLATE compression algorithm used in their gzip file compression program. zlib is also a crucial component of many software platforms, including Linux, macOS, and iOS. It has also been used in gaming consoles such as the PlayStation 4, PlayStation 3, Wii U, Wii, Xbox One and Xbox 360.
The first public version of Zlib, 0.9, was released on 1 May 1995 and was originally intended for use with the libpng image library. It is free software, distributed under the zlib License.
Contents
• Strategy
• Forks
• See also
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Capabilities
Encapsulation
Algorithm
As of September 2018, zlib only supports one algorithm, called DEFLATE, which uses a combination of a variation of LZ77 (Lempel–Ziv 1977) and Huffman coding.cite-ref-7[7] This algorithm provides good compression on a wide variety of data with minimal use of system resources. This is also the algorithm used in the Zip archive format. The header makes allowance for other algorithms, but none are currently implemented.
Resource use
zlib provides facilities for control of processor and memory use. A compression level value may be supplied that trades speed for compression. There are also facilities for conserving memory, useful in restricted memory environments, such as some embedded systems.
Strategy
The compression can be optimized for specific types of data. If one is using the library to always compress specific types of data, then using a specific strategy may improve compression and performance. For example, if the data contain long lengths of repeated bytes, the run-length encoding (RLE) strategy may give good results at a higher speed. For general data, the default strategy is preferred.
Error handling
Errors in compressed data may be detected and skipped. Further, if "full-flush" points are written to the compressed stream, then corrupt data can be skipped, and the decompression will resynchronize at the next flush point—although no error recovery of the corrupt data is provided. Full-flush points are useful for large data streams on unreliable channels, where some data loss is unimportant, such as in some multimedia applications. However, creating many flush points can affect the speed as well as the amount (ratio) of compression.
Data length
There is no limit to the length of data that can be compressed or decompressed. Repeated calls to the library allow an unlimited number of blocks of data to be handled. Some ancillary code (counters) may suffer from overflow for long data streams, but this does not affect the actual compression or decompression.
When compressing a long (or infinite) data stream, it is advisable to write regular full-flush points.
Applications
• The Linux kernel, where zlib is used to implement compressed network protocols, compressed file systems, and to decompress the kernel image at boot time.
• GNU Binutils and GNU Debugger (GDB)
• libpng, the reference implementation for the PNG image format, which specifies DEFLATE as the stream compression for its bitmap data.
• libwww, an API for web applications like web browsers.
• The Apache HTTP Server, which uses zlib to implement HTTP/1.1.
• The OpenSSH client and server, which rely on zlib to perform the optional compression offered by the Secure Shell protocol.
• The FFmpeg multimedia library, which uses zlib to read and write the DEFLATE-compressed parts of stream formats, such as Matroska.
• The rsync remote file synchronizer, which uses zlib to implement optional protocol compression.
• The dpkg and RPM package managers, which use zlib to unpack files from compressed software packages.
• The Apache Subversion and CVS version control systems, which use zlib to compress traffic to and from remote repositories.
• The Apache ORC column-oriented data storage format use ZLib as its default compression method.cite-ref-10[10]
• The Git version control system uses zlib to store the contents of its data objects (blobs, trees, commits and tags).
• The PostgreSQL RDBMS uses zlib with custom dump format (pg_dump -Fc) for database backups.
• The class System.IO.Compression.DeflateStream of the Microsoft .NET Framework 2.0 and higher.cite-ref-11[11]
• The "deflate" utility in TORNADO as part of VxWorks Operating System made by Wind River Systems uses zlib to compress boot ROM images.
zlib is also used in many embedded devices, such as the Apple iPhone and Sony PlayStation 3, because the code is portable, liberally licensed, and has a relatively small memory footprint.
Forks
A commonly used library built on an old codebase, zlib is also frequently forked by third-parties that claim improvements to this library:
• Cloudflare maintains a high-performance fork with "massive" improvements.cite-ref-16[16]
• zlib-ng is a zlib replacement fork for "next generation" systems. It removes workaround code for compilers that do not support ANSI C, integrates Cloudflare and Intel optimizations, adds hardware acceleration (SIMD and intrinsic functions), and uses code sanitizers, fuzzing, and code coverage to help find bugs.cite-ref-17[17]
See also
References
cite-note-wikidata-82dfc924cdc41efef076758cd6d9338f0c2f0a87-v20-11. citerefadler-mark2024Adler, Mark (22 January 2024). "[Zlib-announce] zlib 1.3.1 released". Retrieved 23 January 2024.
cite-note-88. ↑ citerefgaillyadler2002Gailly, Jean-loup; Adler, Mark (2002-04-18), zlib Applications, archived from the original on 2019-06-10, retrieved 2007-12-09
cite-note-99. ↑ "c++ - Why does cURL use zlib?". Stack Overflow.
cite-note-1010. ↑ "ORCFile in HDP 2: Better Compression, Better Performance". 6 September 2013. Archived from the original on 6 August 2020. Retrieved 16 May 2020.
cite-note-1111. ↑ System.IO.Compression.DeflateStream Archived 2016-02-06 at the Wayback Machine. MSDN Library.
cite-note-1313. ↑ "qpdf". Archived from the original on 2024-07-11. Retrieved 2021-03-28.
cite-note-1414. ↑ "MySQL :: MySQL 8.0 Reference Manual :: 15.9.1.5 How Compression Works for InnoDB Tables". dev.mysql.com. Archived from the original on 2021-08-01. Retrieved 2021-07-14.
cite-note-1515. ↑ "github Intel ZLIB". github. 25 January 2024. Archived from the original on 25 January 2024. Retrieved 25 January 2024.
cite-note-1616. ↑ "Fighting Cancer: The Unexpected Benefit Of Open Sourcing Our Code". The Cloudflare Blog. 8 July 2015. Archived from the original on 21 September 2019. Retrieved 18 January 2020.
cite-note-1717. ↑ citerefrosbach2023Rosbach, HK (24 February 2023). "zlib-ng/zlib-ng: zlib replacement with optimizations for "next generation" systems". GitHub. zlib-ng. Archived from the original on 20 April 2020. Retrieved 18 January 2020.
External links