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* gnu/packages/datastructures.scm (uthash)[arguments]: Use INVOKE.
228 lines
9.7 KiB
Scheme
228 lines
9.7 KiB
Scheme
;;; GNU Guix --- Functional package management for GNU
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;;; Copyright © 2015, 2016, 2019 Ricardo Wurmus <rekado@elephly.net>
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;;; Copyright © 2016, 2017, 2019 Tobias Geerinckx-Rice <me@tobias.gr>
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;;; Copyright © 2018 Meiyo Peng <meiyo.peng@gmail.com>
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;;;
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;;; This file is part of GNU Guix.
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;;;
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;;; GNU Guix is free software; you can redistribute it and/or modify it
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;;; under the terms of the GNU General Public License as published by
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;;; the Free Software Foundation; either version 3 of the License, or (at
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;;; your option) any later version.
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;;;
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;;; GNU Guix is distributed in the hope that it will be useful, but
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;;; WITHOUT ANY WARRANTY; without even the implied warranty of
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;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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;;; GNU General Public License for more details.
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;;;
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;;; You should have received a copy of the GNU General Public License
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;;; along with GNU Guix. If not, see <http://www.gnu.org/licenses/>.
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(define-module (gnu packages datastructures)
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#:use-module (gnu packages)
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#:use-module (gnu packages documentation)
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#:use-module (gnu packages perl)
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#:use-module ((guix licenses) #:prefix license:)
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#:use-module (guix packages)
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#:use-module (guix download)
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#:use-module (guix git-download)
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#:use-module (guix build-system cmake)
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#:use-module (guix build-system gnu))
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(define-public gdsl
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(package
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(name "gdsl")
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(version "1.8")
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(source (origin
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(method url-fetch)
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(uri (string-append "http://download.gna.org/gdsl/"
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"gdsl-" version ".tar.gz"))
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(sha256
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(base32
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"1v64jvlnj8jfpphphgjgb36p0kv50kwfyqncf0y12f16v8ydyiaw"))))
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(build-system gnu-build-system)
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(home-page "http://home.gna.org/gdsl/")
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(synopsis "Generic data structures library")
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(description "The Generic Data Structures Library (GDSL) is a collection
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of routines for generic data structures manipulation. It is a re-entrant
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library fully written from scratch in pure ANSI C. It is designed to offer
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for C programmers common data structures with powerful algorithms, and hidden
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implementation. Available structures are lists, queues, stacks, hash tables,
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binary trees, binary search trees, red-black trees, 2D arrays, permutations
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and heaps.")
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(license license:gpl2+)))
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(define-public marisa
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(package
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(name "marisa")
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(version "0.2.5")
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(source
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(origin
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(method url-fetch)
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(uri (string-append "https://github.com/s-yata/marisa-trie"
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"/releases/download/v" version "/" name "-"
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version ".tar.gz"))
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(sha256
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(base32 "19ifrcmnbr9whaaf4ly3s9ndyiq9sjqhnfkrxbz9zsb44w2n36hf"))))
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(build-system gnu-build-system)
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(home-page "https://github.com/s-yata/marisa-trie")
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(synopsis "Trie data structure C++ library")
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(description "Matching Algorithm with Recursively Implemented
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StorAge (MARISA) is a static and space-efficient trie data structure C++
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library.")
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;; Dual-licensed, according to docs/readme.en.html (source files lack
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;; copyright/license headers.)
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(license (list license:bsd-2 license:lgpl2.1+))))
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(define-public sparsehash
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(package
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(name "sparsehash")
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(version "2.0.3")
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(source (origin
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(method url-fetch)
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(uri (string-append "https://github.com/sparsehash/sparsehash/"
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"archive/sparsehash-" version ".tar.gz"))
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(sha256
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(base32
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"133szz0ldwch0kd91l0sa57qsnl020njn622szd9cxrjqyjqds85"))))
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(build-system gnu-build-system)
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(synopsis "Memory-efficient hashtable implementations")
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(description
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"This library contains several hash-map implementations, similar in API
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to SGI's @code{hash_map} class, but with different performance
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characteristics. @code{sparse_hash_map} uses very little space overhead, 1-2
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bits per entry. @code{dense_hash_map} is very fast, particularly on lookup.
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@code{sparse_hash_set} and @code{dense_hash_set} are the set versions of these
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routines. All these implementation use a hashtable with internal quadratic
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probing. This method is space-efficient -- there is no pointer overhead --
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and time-efficient for good hash functions.")
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(home-page "https://github.com/sparsehash/sparsehash")
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(license license:bsd-3)))
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(define-public ssdeep
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(package
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(name "ssdeep")
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(version "2.13")
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(source (origin
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(method url-fetch)
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(uri (string-append "mirror://sourceforge/ssdeep/"
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name "-" version "/"
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name "-" version ".tar.gz"))
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(sha256
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(base32
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"1igqy0j7jrklb8fdlrm6ald4cyl1fda5ipfl8crzyl6bax2ajk3f"))))
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(build-system gnu-build-system)
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(home-page "http://ssdeep.sourceforge.net")
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(synopsis "Context-triggered piecewise hashing algorithm")
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(description "ssdeep computes and matches context triggered piecewise
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hashes (CTPH), also called fuzzy checksums. It can identify similar files
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that have sequences of identical bytes in the same order, even though bytes
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in between these sequences may be different in both content and length.")
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(license license:gpl2+)))
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(define-public liburcu
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(package
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(name "liburcu")
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(version "0.10.2")
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(source (origin
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(method url-fetch)
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(uri (string-append "https://www.lttng.org/files/urcu/"
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"userspace-rcu-" version ".tar.bz2"))
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(sha256
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(base32
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"1k31faqz9plx5dwxq8g1fnczxda1is4s1x4ph0gjrq3gmy6qixmk"))))
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(build-system gnu-build-system)
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(native-inputs
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`(("perl" ,perl))) ; for tests
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(home-page "https://liburcu.org/")
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(synopsis "User-space RCU data synchronisation library")
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(description "liburcu is a user-space @dfn{Read-Copy-Update} (RCU) data
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synchronisation library. It provides read-side access that scales linearly
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with the number of cores. liburcu-cds provides efficient data structures
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based on RCU and lock-free algorithms. These structures include hash tables,
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queues, stacks, and doubly-linked lists.")
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(license license:lgpl2.1+)))
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(define-public uthash
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(package
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(name "uthash")
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(version "2.0.2")
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(source
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(origin
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(method git-fetch)
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(uri (git-reference
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(url "https://github.com/troydhanson/uthash.git")
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(commit (string-append "v" version))))
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(file-name (git-file-name name version))
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(sha256
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(base32
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"0kslz8k6lssh7fl7ayzwlj62p0asxs3dq03357ls5ywjad238gqg"))))
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(build-system gnu-build-system)
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(native-inputs
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`(("perl" ,perl)))
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(arguments
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`(#:make-flags
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(list "CC=gcc")
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#:phases
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(modify-phases %standard-phases
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(delete 'configure) ; nothing to configure
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(delete 'build) ; nothing to build
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(replace 'check
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(lambda* (#:key make-flags #:allow-other-keys)
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(with-directory-excursion "tests"
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(apply invoke "make" make-flags))))
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(replace 'install
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;; There is no top-level Makefile to do this for us.
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(lambda* (#:key outputs #:allow-other-keys)
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(let* ((out (assoc-ref outputs "out"))
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(doc (string-append out "/share/doc/" ,name))
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(include (string-append out "/include")))
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;; Don't install HTML files: they're just the below .txt files
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;; dolled up, can be stale, and regeneration requires asciidoc.
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(for-each (λ (file) (install-file file doc))
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(find-files "doc" "\\.txt$"))
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(for-each (λ (file) (install-file file include))
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(find-files "src" "\\.h$"))
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#t))))))
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(home-page "https://troydhanson.github.io/uthash/")
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(synopsis
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"Hash tables, lists, and other data structures implemented as C macros")
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(description
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"uthash implements a hash table and a few other basic data structures
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as C preprocessor macros. It aims to be minimalistic and efficient: it's
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around 1,000 lines of code which, being macros, inline automatically.
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Unlike function calls with fixed prototypes, macros operate on untyped
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arguments. Thus, they are able to work with any type of structure and key.
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Any C structure can be stored in a hash table by adding @code{UT_hash_handle}
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to the structure and choosing one or more fields to act as the key.")
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(license license:bsd-2)))
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(define-public sdsl-lite
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(package
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(name "sdsl-lite")
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(version "2.1.1")
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(source (origin
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(method url-fetch)
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(uri (string-append "https://github.com/simongog/sdsl-lite/"
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"releases/download/v" version "/"
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"sdsl-lite-" version
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".tar.gz.offline.install.gz"))
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(sha256
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(base32
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"1v86ivv3mmdy802i9xkjpxb4cggj3s27wb19ja4sw1klnivjj69g"))))
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(build-system cmake-build-system)
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(native-inputs
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`(("doxygen" ,doxygen)))
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(home-page "https://github.com/simongog/sdsl-lite")
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(synopsis "Succinct data structure library")
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(description "The Succinct Data Structure Library (SDSL) is a powerful and
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flexible C++11 library implementing succinct data structures. In total, the
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library contains the highlights of 40 research publications. Succinct data
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structures can represent an object (such as a bitvector or a tree) in space
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close to the information-theoretic lower bound of the object while supporting
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operations of the original object efficiently. The theoretical time
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complexity of an operation performed on the classical data structure and the
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equivalent succinct data structure are (most of the time) identical.")
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(license license:gpl3+)))
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