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author | Efraim Flashner <efraim@flashner.co.il> | 2016-11-15 15:21:15 +0200 |
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committer | Efraim Flashner <efraim@flashner.co.il> | 2016-11-15 15:21:15 +0200 |
commit | f5a077b10f7e073b9242cfada78a1d8b8e920e3e (patch) | |
tree | 11f42608267f28c3f0720ace5ba8c5084e3c6f31 /gnu/packages/maths.scm | |
parent | fccab9931cdde00a7d308c29458af5c65d977375 (diff) | |
download | gnu-guix-f5a077b10f7e073b9242cfada78a1d8b8e920e3e.tar gnu-guix-f5a077b10f7e073b9242cfada78a1d8b8e920e3e.tar.gz |
gnu: octave: Update to 4.2.0.
* gnu/packages/maths.scm (octave): Update to 4.2.0.
[native-inputs]: Add lzip.
[home-page]: Use https.
Diffstat (limited to 'gnu/packages/maths.scm')
-rw-r--r-- | gnu/packages/maths.scm | 11 |
1 files changed, 6 insertions, 5 deletions
diff --git a/gnu/packages/maths.scm b/gnu/packages/maths.scm index f7a4bbe75f..a1bd7846f8 100644 --- a/gnu/packages/maths.scm +++ b/gnu/packages/maths.scm @@ -891,15 +891,15 @@ can solve two kinds of problems: (define-public octave (package (name "octave") - (version "4.0.3") + (version "4.2.0") (source (origin (method url-fetch) (uri (string-append "mirror://gnu/octave/octave-" - version ".tar.xz")) + version ".tar.lz")) (sha256 (base32 - "11day29k4yfvxh4101x5yf26ld992x5n6qvmhjjk6mzsd26fqayw")))) + "19vvliwxgip0af812vny5xy5r8kacyj7v62203mh4z2n3p14b78i")))) (build-system gnu-build-system) (inputs `(("lapack" ,lapack) @@ -918,7 +918,8 @@ can solve two kinds of problems: ("glu" ,glu) ("zlib" ,zlib))) (native-inputs - `(("gfortran" ,gfortran) + `(("lzip" ,lzip) + ("gfortran" ,gfortran) ("pkg-config" ,pkg-config) ("perl" ,perl) ;; The following inputs are not actually used in the build process. @@ -937,7 +938,7 @@ can solve two kinds of problems: (list (string-append "--with-shell=" (assoc-ref %build-inputs "bash") "/bin/sh")))) - (home-page "http://www.gnu.org/software/octave/") + (home-page "https://www.gnu.org/software/octave/") (synopsis "High-level language for numerical computation") (description "GNU Octave is a high-level interpreted language that is specialized for numerical computations. It can be used for both linear and |