12a5199a27
* gnu/packages/algebra.scm (fplll): Update to version 4.0.2.
192 lines
7.4 KiB
Scheme
192 lines
7.4 KiB
Scheme
;;; GNU Guix --- Functional package management for GNU
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;;; Copyright © 2012, 2013 Andreas Enge <andreas@enge.fr>
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;;; Copyright © 2013 Ludovic Courtès <ludo@gnu.org>
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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 algebra)
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#:use-module (gnu packages)
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#:use-module (gnu packages multiprecision)
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#:use-module (gnu packages perl)
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#:use-module (gnu packages readline)
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#:use-module (gnu packages flex)
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#:use-module (guix licenses)
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#:use-module (guix packages)
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#:use-module (guix download)
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#:use-module (guix build-system gnu))
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(define-public mpfrcx
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(package
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(name "mpfrcx")
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(version "0.4.1")
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(source (origin
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(method url-fetch)
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(uri (string-append
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"http://www.multiprecision.org/mpfrcx/download/mpfrcx-"
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version ".tar.gz"))
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(sha256
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(base32
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"1rrc75chxyicqjgg5mfhgbz7p9mx1fgh0qlx14a82m25vfhifnd1"))))
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(build-system gnu-build-system)
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(inputs `(("gmp" ,gmp)
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("mpfr" ,mpfr)
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("mpc" ,mpc)))
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(synopsis "mpfrcx, a library for the arithmetic of univariate polynomials
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over arbitrary precision real or complex numbers")
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(description
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"mpfrcx is a library for the arithmetic of univariate polynomials over
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arbitrary precision real (mpfr) or complex (mpc) numbers, without control
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on the rounding. For the time being, only the few functions needed to
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implement the floating point approach to complex multiplication are
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implemented. On the other hand, these comprise asymptotically fast
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multiplication routines such as Toom–Cook and the FFT. ")
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(license lgpl2.1+)
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(home-page "http://mpfrcx.multiprecision.org/")))
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(define-public fplll
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(package
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(name "fplll")
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(version "4.0.2")
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(source (origin
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(method url-fetch)
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(uri (string-append
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"http://perso.ens-lyon.fr/damien.stehle/fplll/libfplll-"
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version ".tar.gz"))
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(sha256 (base32
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"0zkifm4s77cl2qib905lxpwvlwf6liy8q7bnmvfdfyz0fbgxl8z8"))))
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(build-system gnu-build-system)
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(inputs `(("gmp" ,gmp)
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("mpfr" ,mpfr)))
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(synopsis "fplll, a library for LLL-reduction of euclidean lattices")
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(description
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"fplll LLL-reduces euclidean lattices. Since version 3, it can also
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solve the shortest vector problem.")
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(license lgpl2.1+)
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(home-page "http://perso.ens-lyon.fr/damien.stehle/fplll/")))
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(define-public gsl
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(package
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(name "gsl")
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(version "1.15")
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(source
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(origin
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(method url-fetch)
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(uri (string-append "mirror://gnu/gsl/gsl-"
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version ".tar.gz"))
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(sha256
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(base32
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"18qf6jzz1r3mzb5qynywv4xx3z9g61hgkbpkdrhbgqh2g7jhgfc5"))))
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(build-system gnu-build-system)
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(home-page "http://www.gnu.org/software/gsl/")
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(synopsis "The GNU Scientific Library, a large numerical library")
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(description
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"The GNU Scientific Library (GSL) is a numerical library for C
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and C++ programmers. It is free software under the GNU General
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Public License.
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The library provides a wide range of mathematical routines such
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as random number generators, special functions and least-squares
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fitting. There are over 1000 functions in total with an
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extensive test suite.")
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(license gpl3+)))
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(define-public pari-gp
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(package
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(name "pari-gp")
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(version "2.5.3")
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(source (origin
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(method url-fetch)
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(uri (string-append
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"http://pari.math.u-bordeaux.fr/pub/pari/unix/pari-"
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version ".tar.gz"))
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(sha256 (base32
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"0zsjccnnv00kwj2gk3ww2v530kjin1rgj8p8hbl4pwcnwc7m68gl"))))
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(build-system gnu-build-system)
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(inputs `(("gmp" ,gmp)
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("perl" ,perl)
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("readline" ,readline)))
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(arguments
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'(#:make-flags '("gp")
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;; FIXME: building the documentation requires tex; once this is available,
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;; replace "gp" by "all"
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#:test-target "dobench"
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#:phases
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(alist-replace
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'configure
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(lambda* (#:key inputs outputs #:allow-other-keys)
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(let ((out (assoc-ref outputs "out"))
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(readline (assoc-ref inputs "readline"))
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(gmp (assoc-ref inputs "gmp")))
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(zero?
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(system* "./Configure"
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(string-append "--prefix=" out)
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(string-append "--with-readline=" readline)
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(string-append "--with-gmp=" gmp)))))
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;; FIXME: readline and gmp will be detected automatically in the next
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;; stable release
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%standard-phases)))
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(synopsis "PARI/GP, a computer algebra system for number theory")
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(description
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"PARI/GP is a widely used computer algebra system designed for fast
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computations in number theory (factorisations, algebraic number theory,
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elliptic curves...), but it also contains a large number of other useful
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functions to compute with mathematical entities such as matrices,
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polynomials, power series, algebraic numbers, etc., and a lot of
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transcendental functions.
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PARI is also available as a C library to allow for faster computations.")
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(license gpl2+)
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(home-page "http://pari.math.u-bordeaux.fr/")))
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(define-public bc
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(package
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(name "bc")
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(version "1.06")
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(source (origin
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(method url-fetch)
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(uri (string-append "mirror://gnu/bc/bc-" version ".tar.gz"))
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(sha256
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(base32
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"0cqf5jkwx6awgd2xc2a0mkpxilzcfmhncdcfg7c9439wgkqxkxjf"))))
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(build-system gnu-build-system)
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(inputs `(("readline" ,readline)
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("flex" ,flex)))
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(arguments
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'(#:phases
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(alist-replace 'configure
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(lambda* (#:key outputs #:allow-other-keys)
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;; This old `configure' script doesn't support
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;; variables passed as arguments.
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(let ((out (assoc-ref outputs "out")))
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(setenv "CONFIG_SHELL" (which "bash"))
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(zero?
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(system* "./configure"
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(string-append "--prefix=" out)))))
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%standard-phases)))
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(home-page "http://www.gnu.org/software/bc/")
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(synopsis "GNU software calculator")
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(description
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"bc is an arbitrary precision numeric processing language. Syntax
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is similar to C, but differs in many substantial areas. It supports
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interactive execution of statements. bc is a utility included in the
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POSIX P1003.2/D11 draft standard.
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Since the POSIX document does not specify how bc must be implemented,
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this version does not use the historical method of having bc be a
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compiler for the dc calculator. This version has a single executable
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that both compiles the language and runs the resulting `byte code'. The
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byte code is not the dc language.")
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(license gpl2+)))
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