mirror of
https://git.in.rschanz.org/ryan77627/guix.git
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b3a998374c
* gnu/packages/graph.scm (r-rgraphviz): Move from here... * gnu/packages/bioconductor.scm (r-rgraphviz): ...to here. Signed-off-by: Ricardo Wurmus <rekado@elephly.net>
508 lines
20 KiB
Scheme
508 lines
20 KiB
Scheme
;;; GNU Guix --- Functional package management for GNU
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;;; Copyright © 2017, 2018, 2019, 2020 Ricardo Wurmus <rekado@elephly.net>
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;;; Copyright © 2018 Joshua Sierles, Nextjournal <joshua@nextjournal.com>
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;;; Copyright © 2018, 2020 Tobias Geerinckx-Rice <me@tobias.gr>
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;;; Copyright © 2019 Efraim Flashner <efraim@flashner.co.il>
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;;; Copyright © 2019 Andreas Enge <andreas@enge.fr>
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;;; Copyright © 2020 Alexander Krotov <krotov@iitp.ru>
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;;; Copyright © 2020 Pierre Langlois <pierre.langlos@gmx.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 graph)
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#:use-module (guix download)
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#:use-module (guix git-download)
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#:use-module (guix packages)
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#:use-module (guix utils)
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#:use-module (guix build-system cmake)
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#:use-module (guix build-system gnu)
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#:use-module (guix build-system python)
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#:use-module (guix build-system r)
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#:use-module ((guix licenses) #:prefix license:)
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#:use-module (gnu packages)
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#:use-module (gnu packages gcc)
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#:use-module (gnu packages autotools)
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#:use-module (gnu packages bioconductor)
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#:use-module (gnu packages bioinformatics)
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#:use-module (gnu packages check)
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#:use-module (gnu packages compression)
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#:use-module (gnu packages cran)
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#:use-module (gnu packages gd)
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#:use-module (gnu packages graphviz)
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#:use-module (gnu packages maths)
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#:use-module (gnu packages multiprecision)
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#:use-module (gnu packages pkg-config)
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#:use-module (gnu packages python)
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#:use-module (gnu packages python-science)
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#:use-module (gnu packages python-web)
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#:use-module (gnu packages python-xyz)
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#:use-module (gnu packages statistics)
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#:use-module (gnu packages swig)
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#:use-module (gnu packages time)
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#:use-module (gnu packages xml))
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(define-public igraph
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(package
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(name "igraph")
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(version "0.8.2")
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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/igraph/igraph/releases/"
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"download/" version "/igraph-" version ".tar.gz"))
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(sha256
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(base32 "158flvl80qh1l1ikfa04p1dzh8kapsvm6q80x3ih5gwcgcg4g2ki"))))
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(build-system gnu-build-system)
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(arguments
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`(#:configure-flags
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(list "--with-external-glpk"
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"--with-external-blas"
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"--with-external-lapack")))
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(inputs
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`(("gmp" ,gmp)
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("glpk" ,glpk)
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("libxml2" ,libxml2)
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("lapack" ,lapack)
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("openblas" ,openblas)
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("zlib" ,zlib)))
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(home-page "https://igraph.org")
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(synopsis "Network analysis and visualization")
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(description
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"This package provides a library for the analysis of networks and graphs.
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It can handle large graphs very well and provides functions for generating
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random and regular graphs, graph visualization, centrality methods and much
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more.")
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(license license:gpl2+)))
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(define-public python-igraph
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(package (inherit igraph)
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(name "python-igraph")
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(version "0.8.2")
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(source
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(origin
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(method url-fetch)
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(uri (pypi-uri "python-igraph" version))
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(sha256
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(base32 "0wkxrs28qdvnrz7d4jzcf2bh6v2yqzx3wyfziihfgsi2gn6n60a6"))))
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(build-system python-build-system)
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(arguments
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'(#:configure-flags
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(list "--use-pkg-config")
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#:phases
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(modify-phases %standard-phases
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(replace 'build
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(lambda _
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(invoke "python" "./setup.py" "build" "--use-pkg-config")))
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(delete 'check)
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(add-after 'install 'check
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(lambda* (#:key inputs outputs #:allow-other-keys)
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(add-installed-pythonpath inputs outputs)
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(invoke "pytest" "-v"))))))
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(inputs
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`(("igraph" ,igraph)))
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(propagated-inputs
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`(("python-texttable" ,python-texttable)))
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(native-inputs
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`(("pkg-config" ,pkg-config)
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("python-pytest" ,python-pytest)))
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(home-page "https://pypi.org/project/python-igraph/")
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(synopsis "Python bindings for the igraph network analysis library")))
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(define-public r-rbiofabric
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(let ((commit "666c2ae8b0a537c006592d067fac6285f71890ac")
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(revision "1"))
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(package
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(name "r-rbiofabric")
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(version (string-append "0.3-" revision "." (string-take commit 7)))
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(source (origin
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(method git-fetch)
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(uri (git-reference
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(url "https://github.com/wjrl/RBioFabric")
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(commit commit)))
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(file-name (string-append name "-" version "-checkout"))
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(sha256
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(base32
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"1yahqrcrqpbcywv73y9rlmyz8apdnp08afialibrr93ch0p06f8z"))))
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(build-system r-build-system)
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(propagated-inputs
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`(("r-igraph" ,r-igraph)))
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(home-page "http://www.biofabric.org/")
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(synopsis "BioFabric network visualization")
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(description "This package provides an implementation of the function
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@code{bioFabric} for creating scalable network digrams where nodes are
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represented by horizontal lines, and edges are represented by vertical
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lines.")
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(license license:expat))))
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(define-public python-plotly
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(package
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(name "python-plotly")
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(version "4.8.1")
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(source (origin
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(method git-fetch)
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(uri (git-reference
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(url "https://github.com/plotly/plotly.py")
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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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"08ab677gr85m10zhixr6dnmlfws8q6sra7nhyb8nf3r8dx1ffqhz"))))
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(build-system python-build-system)
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(arguments
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`(#:phases
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(modify-phases %standard-phases
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(add-after 'unpack 'chdir
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(lambda _
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(chdir "packages/python/plotly")
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#t))
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(replace 'check
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(lambda _
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(invoke "pytest" "-x" "plotly/tests/test_core")
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(invoke "pytest" "-x" "plotly/tests/test_io")
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;; FIXME: Add optional dependencies and enable their tests.
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;; (invoke "pytest" "-x" "plotly/tests/test_optional")
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(invoke "pytest" "_plotly_utils/tests")))
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(add-before 'reset-gzip-timestamps 'make-files-writable
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(lambda* (#:key outputs #:allow-other-keys)
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(let ((out (assoc-ref outputs "out")))
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(for-each (lambda (file) (chmod file #o644))
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(find-files out "\\.gz"))
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#t))))))
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(native-inputs
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`(("python-pytest" ,python-pytest)))
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(propagated-inputs
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`(("python-decorator" ,python-decorator)
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("python-ipywidgets" ,python-ipywidgets)
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("python-pandas" ,python-pandas)
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("python-requests" ,python-requests)
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("python-retrying" ,python-retrying)
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("python-six" ,python-six)
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("python-statsmodels" ,python-statsmodels)
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("python-xarray" ,python-xarray)))
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(home-page "https://plotly.com/python/")
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(synopsis "Interactive plotting library for Python")
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(description "Plotly's Python graphing library makes interactive,
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publication-quality graphs online. Examples of how to make line plots, scatter
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plots, area charts, bar charts, error bars, box plots, histograms, heatmaps,
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subplots, multiple-axes, polar charts, and bubble charts. ")
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(license license:expat)))
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(define-public python-plotly-2.4.1
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(package (inherit python-plotly)
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(version "2.4.1")
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(source
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(origin
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(method url-fetch)
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(uri (pypi-uri "plotly" version))
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(sha256
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(base32
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"0s9gk2fl53x8wwncs3fwii1vzfngr0sskv15v3mpshqmrqfrk27m"))))
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(native-inputs '())
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(propagated-inputs
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`(("python-decorator" ,python-decorator)
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("python-nbformat" ,python-nbformat)
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("python-pandas" ,python-pandas)
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("python-pytz" ,python-pytz)
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("python-requests" ,python-requests)
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("python-six" ,python-six)))
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(arguments
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'(#:tests? #f)))) ; The tests are not distributed in the release
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(define-public python2-plotly
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(package-with-python2 python-plotly-2.4.1))
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(define-public python-louvain
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(package
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(name "python-louvain")
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(version "0.6.1")
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;; The tarball on Pypi does not include the tests.
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(source (origin
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(method git-fetch)
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(uri (git-reference
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(url "https://github.com/vtraag/louvain-igraph")
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(commit 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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"0w31537sifkf65sck1iaip5i6d8g64pa3wdwad83d6p9jwkck57k"))))
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(build-system python-build-system)
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(propagated-inputs
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`(("python-ddt" ,python-ddt)
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("python-igraph" ,python-igraph)))
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(inputs
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`(("igraph" ,igraph)))
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(native-inputs
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`(("pkg-config" ,pkg-config)
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("python-pytest" ,python-pytest)))
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(home-page "https://github.com/vtraag/louvain-igraph")
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(synopsis "Algorithm for methods of community detection in large networks")
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(description
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"This package provides an implementation of the Louvain algorithm for use
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with igraph. Louvain is a general algorithm for methods of community
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detection in large networks.
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This package has been superseded by the @code{leidenalg} package and should
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not be used for new projects.")
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(license license:gpl3+)))
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(define-public faiss
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(package
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(name "faiss")
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(version "1.5.0")
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(source (origin
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(method git-fetch)
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(uri (git-reference
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(url "https://github.com/facebookresearch/faiss")
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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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"0pk15jfa775cy2pqmzq62nhd6zfjxmpvz5h731197c28aq3zw39w"))
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(modules '((guix build utils)))
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(snippet
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'(begin
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(substitute* "utils.cpp"
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(("#include <immintrin.h>")
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"#ifdef __SSE__\n#include <immintrin.h>\n#endif"))
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#t))))
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(build-system cmake-build-system)
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(arguments
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`(#:configure-flags
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(list "-DBUILD_WITH_GPU=OFF" ; thanks, but no thanks, CUDA.
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"-DBUILD_TUTORIAL=OFF") ; we don't need those
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#:phases
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(modify-phases %standard-phases
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(add-after 'unpack 'prepare-build
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(lambda _
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(let ((features (list ,@(let ((system (or (%current-target-system)
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(%current-system))))
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(cond
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((string-prefix? "x86_64" system)
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'("-mavx" "-msse2" "-mpopcnt"))
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((string-prefix? "i686" system)
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'("-msse2" "-mpopcnt"))
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(else
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'()))))))
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(substitute* "CMakeLists.txt"
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(("-m64") "")
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(("-mpopcnt") "") ; only some architectures
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(("-msse4")
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(string-append
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(string-join features)
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" -I" (getcwd)))
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;; Build also the shared library
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(("ARCHIVE DESTINATION lib")
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"LIBRARY DESTINATION lib")
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(("add_library.*" m)
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"\
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add_library(objlib OBJECT ${faiss_cpu_headers} ${faiss_cpu_cpp})
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set_property(TARGET objlib PROPERTY POSITION_INDEPENDENT_CODE 1)
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add_library(${faiss_lib}_static STATIC $<TARGET_OBJECTS:objlib>)
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add_library(${faiss_lib} SHARED $<TARGET_OBJECTS:objlib>)
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install(TARGETS ${faiss_lib}_static ARCHIVE DESTINATION lib)
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\n")))
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;; See https://github.com/facebookresearch/faiss/issues/520
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(substitute* "IndexScalarQuantizer.cpp"
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(("#define USE_AVX") ""))
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;; Make header files available for compiling tests.
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(mkdir-p "faiss")
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(for-each (lambda (file)
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(mkdir-p (string-append "faiss/" (dirname file)))
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(copy-file file (string-append "faiss/" file)))
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(find-files "." "\\.h$"))
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#t))
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(replace 'check
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(lambda _
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(invoke "make" "-C" "tests"
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(format #f "-j~a" (parallel-job-count)))))
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(add-after 'install 'remove-tests
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(lambda* (#:key outputs #:allow-other-keys)
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(delete-file-recursively
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(string-append (assoc-ref outputs "out")
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"/test"))
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#t)))))
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(inputs
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`(("openblas" ,openblas)))
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(native-inputs
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`(("googletest" ,googletest)))
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(home-page "https://github.com/facebookresearch/faiss")
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(synopsis "Efficient similarity search and clustering of dense vectors")
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(description "Faiss is a library for efficient similarity search and
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clustering of dense vectors. It contains algorithms that search in sets of
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vectors of any size, up to ones that possibly do not fit in RAM. It also
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contains supporting code for evaluation and parameter tuning.")
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(license license:bsd-3)))
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(define-public python-faiss
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(package (inherit faiss)
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(name "python-faiss")
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(build-system python-build-system)
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(arguments
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`(#:phases
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(modify-phases %standard-phases
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(add-after 'unpack 'chdir
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(lambda _ (chdir "python") #t))
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(add-after 'chdir 'build-swig
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(lambda* (#:key inputs #:allow-other-keys)
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(with-output-to-file "../makefile.inc"
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(lambda ()
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(let ((python-version ,(version-major+minor (package-version python))))
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(format #t "\
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PYTHONCFLAGS =-I~a/include/python~am/ -I~a/lib/python~a/site-packages/numpy/core/include
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LIBS = -lpython~am -lfaiss
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SHAREDFLAGS = -shared -fopenmp
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CXXFLAGS = -fpermissive -fopenmp -fPIC
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CPUFLAGS = ~{~a ~}~%"
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(assoc-ref inputs "python*") python-version
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(assoc-ref inputs "python-numpy") python-version
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python-version
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(list ,@(let ((system (or (%current-target-system)
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(%current-system))))
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(cond
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((string-prefix? "x86_64" system)
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'("-mavx" "-msse2" "-mpopcnt"))
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((string-prefix? "i686" system)
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'("-msse2" "-mpopcnt"))
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(else
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'()))))))))
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(substitute* "Makefile"
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(("../libfaiss.a") ""))
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(invoke "make" "cpu"))))))
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(inputs
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`(("faiss" ,faiss)
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("openblas" ,openblas)
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|
("python*" ,python)
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("swig" ,swig)))
|
|
(propagated-inputs
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`(("python-matplotlib" ,python-matplotlib)
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("python-numpy" ,python-numpy)))
|
|
(description "Faiss is a library for efficient similarity search and
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clustering of dense vectors. This package provides Python bindings to the
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Faiss library.")))
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|
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(define-public python-leidenalg
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(package
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(name "python-leidenalg")
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(version "0.7.0")
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(source
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(origin
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(method url-fetch)
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(uri (pypi-uri "leidenalg" version))
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(sha256
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(base32
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"15fwld9hdw357rd026mzcwpah5liy4f33vc9x9kwy37g71b2rjf1"))))
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(build-system python-build-system)
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(arguments '(#:tests? #f)) ; tests are not included
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(native-inputs
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`(("pkg-config" ,pkg-config)))
|
|
(inputs
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`(("igraph" ,igraph)))
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|
(propagated-inputs
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`(("python-igraph" ,python-igraph)))
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(home-page "https://github.com/vtraag/leidenalg")
|
|
(synopsis "Community detection in large networks")
|
|
(description
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"Leiden is a general algorithm for methods of community detection in
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large networks. This package implements the Leiden algorithm in C++ and
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exposes it to Python. Besides the relative flexibility of the implementation,
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it also scales well, and can be run on graphs of millions of nodes (as long as
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they can fit in memory). The core function is @code{find_partition} which
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finds the optimal partition using the Leiden algorithm, which is an extension
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of the Louvain algorithm, for a number of different methods.")
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(license license:gpl3+)))
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(define-public edge-addition-planarity-suite
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(package
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(name "edge-addition-planarity-suite")
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(version "3.0.0.5")
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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 (string-append "https://github.com/graph-algorithms/"
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name))
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|
(commit (string-append "Version_" version))))
|
|
(file-name (git-file-name name version))
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|
(sha256
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|
(base32
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"01cm7ay1njkfsdnmnvh5zwc7wg7x189hq1vbfhh9p3ihrbnmqzh8"))))
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|
(build-system gnu-build-system)
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|
(native-inputs
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`(("autoconf" ,autoconf)
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("automake" ,automake)
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("libtool" ,libtool)))
|
|
(synopsis "Embedding of planar graphs")
|
|
(description "The package provides a reference implementation of the
|
|
linear time edge addition algorithm for embedding planar graphs and
|
|
isolating planarity obstructions.")
|
|
(license license:bsd-3)
|
|
(home-page
|
|
"https://github.com/graph-algorithms/edge-addition-planarity-suite")))
|
|
|
|
(define-public rw
|
|
(package
|
|
(name "rw")
|
|
;; There is a version 0.8, but the tarball is broken with symlinks
|
|
;; to /usr/share.
|
|
(version "0.7")
|
|
(source (origin
|
|
(method url-fetch)
|
|
(uri (string-append "mirror://sourceforge/rankwidth/"
|
|
"rw-" version ".tar.gz"))
|
|
(sha256
|
|
(base32
|
|
"1rv2v42x2506x7f10349m1wpmmfxrv9l032bkminni2gbip9cjg0"))))
|
|
(build-system gnu-build-system)
|
|
(native-inputs
|
|
`(("pkg-config" ,pkg-config)))
|
|
(inputs
|
|
`(("igraph" ,igraph)))
|
|
(home-page "https://sourceforge.net/projects/rankwidth/")
|
|
(synopsis "Rank-width and rank-decomposition of graphs")
|
|
(description "rw computes rank-width and rank-decompositions
|
|
of graphs.")
|
|
(license license:gpl2+)))
|
|
|
|
(define-public mscgen
|
|
(package
|
|
(name "mscgen")
|
|
(version "0.20")
|
|
(source
|
|
(origin
|
|
(method url-fetch)
|
|
(uri (string-append "http://www.mcternan.me.uk/mscgen/software/mscgen-src-"
|
|
version ".tar.gz"))
|
|
(sha256
|
|
(base32
|
|
"08yw3maxhn5fl1lff81gmcrpa4j9aas4mmby1g9w5qcr0np82d1w"))))
|
|
(build-system gnu-build-system)
|
|
(native-inputs
|
|
`(("pkg-config" ,pkg-config)))
|
|
(inputs
|
|
`(("gd" ,gd)))
|
|
(home-page "http://www.mcternan.me.uk/mscgen/")
|
|
(synopsis "Message Sequence Chart Generator")
|
|
(description "Mscgen is a small program that parses Message Sequence Chart
|
|
descriptions and produces PNG, SVG, EPS or server side image maps (ismaps) as
|
|
the output. Message Sequence Charts (MSCs) are a way of representing entities
|
|
and interactions over some time period and are often used in combination with
|
|
SDL. MSCs are popular in Telecoms to specify how protocols operate although
|
|
MSCs need not be complicated to create or use. Mscgen aims to provide a simple
|
|
text language that is clear to create, edit and understand, which can also be
|
|
transformed into common image formats for display or printing.")
|
|
(license license:gpl2+)))
|