Result for DCFC40745B2B819802E06C02F0F944F3A5508B1F

Query result

Key Value
FileName./usr/share/doc/libghc-enumerator-prof/buildinfo_s390x.gz
FileSize2911
MD5EB7B73DE727D62EE9CE0164CABCCA715
SHA-1DCFC40745B2B819802E06C02F0F944F3A5508B1F
SHA-25613A8495B720A0D1C8E939FE6A2686D2623BFE296BA59087D0F4F601B2CD92713
SSDEEP48:XaQMOWh7NLw3PViUc6k80/UN12ApvnH2StJ/e54AZregoQGdJgaDMRtKK:rMrK3Tc6wSBpvphdoSgrGdJgaDstf
TLSHT107516BE57A267E06E22D20E0FF442FF4634024DDE4305A8DA9E2333AD05B8E49208677
hashlookup:parent-total2
hashlookup:trust60

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Parents (Total: 2)

The searched file hash is included in 2 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
FileSize318020
MD585F91BD450C8BDBD5A7418F0CB21C59C
PackageDescriptionhigh-performance left-fold enumerators; profiling libraries Typical buffer–based incremental I/O is based around a single loop, which reads data from some source (such as a socket or file), transforms it, and generates one or more outputs (such as a line count, HTTP responses, or modified file). Although efficient and safe, these loops are all single–purpose; it is difficult or impossible to compose buffer–based processing loops. . Haskell's concept of "lazy I/O" allows pure code to operate on data from an external source. However, lazy I/O has several shortcomings. Most notably, resources such as memory and file handles can be retained for arbitrarily long periods of time, causing unpredictable performance and error conditions. . Enumerators are an efficient, predictable, and safe alternative to lazy I/O. Discovered by Oleg Kiselyov, they allow large datasets to be processed in near–constant space by pure code. Although somewhat more complex to write, using enumerators instead of lazy I/O produces more correct programs. . This library contains an enumerator implementation for Haskell, designed to be both simple and efficient. Three core types are defined, along with numerous helper functions: . Iteratee: Data sinks, analogous to left folds. Iteratees consume a sequence of input values, and generate a single output value. Many iteratees are designed to perform side effects (such as printing to stdout), so they can also be used as monad transformers. . Enumerator: Data sources, which generate input sequences. Typical enumerators read from a file handle, socket, random number generator, or other external stream. To operate, enumerators are passed an iteratee, and provide that iteratee with input until either the iteratee has completed its computation, or EOF. . Enumeratee: Data transformers, which operate as both enumerators and iteratees. Enumeratees read from an outer enumerator, and provide the transformed data to an inner iteratee. . This package provides a library for the Haskell programming language, compiled for profiling. See http://www.haskell.org/ for more information on Haskell.
PackageMaintainerDebian Haskell Group <pkg-haskell-maintainers@lists.alioth.debian.org>
PackageNamelibghc-enumerator-prof
PackageSectionhaskell
PackageVersion0.4.20-6+b1
SHA-1C3B401A36BDDF172CD5AC147D723EE99D4C9C293
SHA-2569E231A8535DBFCB6DEBA51FCF78DB29A8834FC2037B2D0961777ADC5628076DB
Key Value
FileSize326058
MD5698D94148BFF16F0539F8D20AA927872
PackageDescriptionhigh-performance left-fold enumerators Typical buffer–based incremental I/O is based around a single loop, which reads data from some source (such as a socket or file), transforms it, and generates one or more outputs (such as a line count, HTTP responses, or modified file). Although efficient and safe, these loops are all single–purpose; it is difficult or impossible to compose buffer–based processing loops. . Haskell's concept of "lazy I/O" allows pure code to operate on data from an external source. However, lazy I/O has several shortcomings. Most notably, resources such as memory and file handles can be retained for arbitrarily long periods of time, causing unpredictable performance and error conditions. . Enumerators are an efficient, predictable, and safe alternative to lazy I/O. Discovered by Oleg Kiselyov, they allow large datasets to be processed in near–constant space by pure code. Although somewhat more complex to write, using enumerators instead of lazy I/O produces more correct programs. . This library contains an enumerator implementation for Haskell, designed to be both simple and efficient. Three core types are defined, along with numerous helper functions: . Iteratee: Data sinks, analogous to left folds. Iteratees consume a sequence of input values, and generate a single output value. Many iteratees are designed to perform side effects (such as printing to stdout), so they can also be used as monad transformers. . Enumerator: Data sources, which generate input sequences. Typical enumerators read from a file handle, socket, random number generator, or other external stream. To operate, enumerators are passed an iteratee, and provide that iteratee with input until either the iteratee has completed its computation, or EOF. . Enumeratee: Data transformers, which operate as both enumerators and iteratees. Enumeratees read from an outer enumerator, and provide the transformed data to an inner iteratee. . This package provides a library for the Haskell programming language. See http://www.haskell.org/ for more information on Haskell.
PackageMaintainerDebian Haskell Group <pkg-haskell-maintainers@lists.alioth.debian.org>
PackageNamelibghc-enumerator-dev
PackageSectionhaskell
PackageVersion0.4.20-6+b1
SHA-1BD23D0EBAFC7008E74F591D2589C625B243E282B
SHA-2567603550A568672C2A0A27E56F88AEC21D610C45A78E93AE62FAAA2D03C793ED8