compress (software)#Description

{{Short description|Unix shell compression program based on the LZW compression algorithm}}

{{redirect|compress|the cloth used in medicine|Compress (medical)|other uses|Compression (disambiguation)}}

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{{Infobox software

| name = compress / uncompress

| logo =

| screenshot =

| screenshot size =

| caption =

| author = Spencer Thomas

| developer =

| released = {{Start date and age|1985|2}}

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| operating system = Unix, Unix-like, IBM i

| genre = Command

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{{Infobox file format

| name = compress .Z

| extension = .Z

| mime = application/x-compress

| owner = Spencer Thomas

| genre = data compression

| website =

}}

compress is a Unix shell compression program based on the LZW compression algorithm.{{cite web |url=http://ncompress.sourceforge.net/ |title=ncompress: a public domain project |last=Frysinger |first=Mike |access-date=2014-07-30 |quote=Compress is a fast, simple LZW file compressor. Compress does not have the highest compression rate, but it is one of the fastest programs to compress data. Compress is the de facto standard in the UNIX community for compressing files. }} Compared to gzip's fastest setting, compress is slightly slower at compression, slightly faster at decompression, and has a significantly lower compression ratio.{{cite web |first=Luc|last=Gommans|title=compression - What's the difference between gzip and compress? |url=https://unix.stackexchange.com/a/412573 |website=Unix & Linux Stack Exchange |language=en}} 1.8 MiB of memory is used to compress the Hutter Prize data, slightly more than gzip's slowest setting.{{cite web |title=Large Text Compression Benchmark |url=http://mattmahoney.net/dc/text.html |website=mattmahoney.net |quote=compress 4.3d....}}

The uncompress utility will restore files to their original state after they have been compressed using the compress utility. If no files are specified, the standard input will be uncompressed to the standard output.

Description

Files compressed by compress are typically given the extension ".Z" (modeled after the earlier pack program which used the extension ".z"). Most tar programs will pipe their data through compress when given the command line option "-Z". (The tar program in its own does not compress; it just stores multiple files within one tape archive.)

Files can be returned to their original state using uncompress. The usual action of uncompress is not merely to create an uncompressed copy of the file, but also to restore the timestamp and other attributes of the compressed file.

For files produced by compress on other systems, uncompress supports 9- to 16-bit compression.

History

The LZW algorithm used in {{Mono|compress}} was patented by Sperry Research Center in 1983. Terry Welch published an IEEE article on the algorithm in 1984,{{cite journal|author=Welch, Terry A.|author-link=Terry Welch|url=https://www.cs.duke.edu/courses/spring03/cps296.5/papers/welch_1984_technique_for.pdf|title=A technique for high performance data compression|journal=IEEE Computer|volume=17|issue=6|pages=8–19|year=1984|doi=10.1109/MC.1984.1659158|s2cid=2055321 }} but failed to note that he had applied for a patent on the algorithm. Spencer Thomas of the University of Utah took this article and implemented {{Mono|compress}} in 1984, without realizing that a patent was pending on the LZW algorithm. The GIF image format also incorporated LZW compression in this way, and Unisys later claimed royalties on implementations of GIF. Joseph M. Orost led the team and worked with Thomas et al. to create the 'final' (4.0) version of {{Mono|compress}} and published it as free software to the 'net.sources' USENET group in 1985. {{US patent|4558302}} was granted in 1985, and this is why {{Mono|compress}} could not be used without paying royalties to Sperry Research, which was eventually merged into Unisys.

{{Mono|compress}} has fallen out of favor in particular user-groups because it makes use of the LZW algorithm, which was covered by a Unisys patent{{snd}}because of this, gzip and bzip2 increased in popularity on Linux-based operating systems due to their alternative algorithms, along with better file compression. compress has, however, maintained a presence on Unix and BSD systems and the {{Mono|compress}} and {{Mono|uncompress}} commands have also been ported to the IBM i operating system.{{cite web |title=IBM System i Version 7.2 Programming Qshell |language=en |author=IBM |website=IBM |author-link=IBM |url=https://www.ibm.com/support/knowledgecenter/ssw_ibm_i_74/rzahz/rzahzpdf.pdf?view=kc |access-date=2020-09-05 }}

The US LZW patent expired in 2003, so it is now in the public domain in the United States. All patents on the LZW worldwide have also expired (see Graphics Interchange Format#Unisys and LZW patent enforcement).

As of POSIX.1-2024 compress supports the DEFLATE algorithm used in gzip.{{cite web |title=compress |url=https://pubs.opengroup.org/onlinepubs/9799919799/utilities/compress.html |publisher=opengroup |access-date=2 November 2024}}

Special output format

The output binary consists of bit groups. Each bit group consists of codes with fixed amount of bits (9–16). Each group, except the last group, is aligned to the number of bits per code multiplied by 8 and right padded with zeroes. The last group is aligned to 8 bit octets and padded with zeroes. More information can be found at an issue on the ncompress GitHub repository.{{Cite web |title=compression with 9 bits don't work · Issue #5 · vapier/ncompress |url=https://github.com/vapier/ncompress/issues/5 |access-date=2024-09-17 |website=GitHub |language=en}}

Example:

: Suppose the output has ten 9-bit codes, five 10-bit codes, and thirteen 11-bit codes. There are three groups to output containing 90 bits, 50 bits, and 143 bits of data.

:* First group will be 90 bits of data + 54 zero bits of padding in order to be aligned to 72 bits (9 bits × 8).

:* Second group will be 50 bits of data + 30 zero bits of padding in order to be aligned to 80 bits (10 bits × 8).

:* Third group will be 143 bits of data + 1 zero bit of padding in order to be aligned to 8 bits (since this is the last group in the output).

It{{What|date=September 2024}} is actually a bug. LZW does not require any alignment. This bug existed for more than 35 years and was in the original UNIX compress, ncompress, gzip and the Windows port. All application/x-compress files were created using this bug.

Some compress implementations write random bits from uninitialized buffer in paddings. There is no guarantee that the paddings will be zeroes. The decompressor must ignore the values in the paddings for compatibility.

Standardization and availability

compress was standardized in X/Open CAE Specification in 1994,[https://pubs.opengroup.org/onlinepubs/009656399/toc.pdf X/Open CAE Specification Commands and Utilities Issue 4, Version 2] (pdf), 1994, opengroup.org and further in The Open Group Base Specifications, Issue 6 and 7.{{man|cu|compress|SUS6}} Linux Standard Base does not requires compress.[https://refspecs.linuxfoundation.org/LSB_5.0.0/LSB-Core-generic/LSB-Core-generic/command.html Chapter 17. Commands and Utilities] in Linux Standard Base Core Specification 5.0.0, linuxfoundation.org

compress is often not installed by default in Linux distributions, but can be installed from an additional package.[https://pkgs.org/download/ncompress ncompress], pkgs.org compress is available for FreeBSD, OpenBSD, MINIX, Solaris and AIX.

compress is allowed for Point-to-Point Protocol in {{IETF RFC|1977}} and for HTTP/1.1 in {{IETF RFC|9110}}, though it is rarely used in modern deployments as the better deflate/gzip is available.

The gunzip utility is able to decompress .Z files.{{cite web | title=GNU Gzip | website=The GNU Operating System and the Free Software Movement | date=2023-02-05 | url=https://www.gnu.org/software/gzip/manual/gzip.html | access-date=2024-04-03 |quote=gunzip can currently decompress files created by gzip, zip, compress or pack. The detection of the input format is automatic. }}

See also

References

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