rheolef 6.7-6 source package in Ubuntu

Changelog

rheolef (6.7-6) unstable; urgency=medium

  * d/rules:
    - autoconf/automake regeneration forced, since configure.ac is patched
    - dh_auto_test delayed to the next 7.0 upstream version (closes: #888879)
  * d/*.install: pkglibdir changed to usr/lib/*/rheolef for multiarch
  * d/control:
    - Build-Depends: autoconf, automake & libtool added
    - Description: updated
  * d/patch: remove skip_failing_tests.patch
  * d/README.Debian: completed
  * d/compat: decreased from 11 to 9, for smooth (old)stable package building
         also decreased in d/control for debhelper dependency in Build-Depends

 -- Pierre Saramito <email address hidden>  Fri, 16 Feb 2018 12:19:06 +0100

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Uploaded by:
Debian Science Team
Uploaded to:
Sid
Original maintainer:
Debian Science Team
Architectures:
any all
Section:
math
Urgency:
Medium Urgency

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Series Pocket Published Component Section
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File Size SHA-256 Checksum
rheolef_6.7-6.dsc 2.5 KiB 91b4162321864b0d68a14b25c00f4db750ddb58737de1c0a82ce3d38fe67fad3
rheolef_6.7.orig.tar.gz 35.0 MiB 3ea6677edbdf4ca02c50eedf54882d4b9821a00587d0ab7cfb7302b90d8eb908
rheolef_6.7-6.debian.tar.xz 10.0 KiB ffb3f8d568e78e49bf36fde25e77780286f5b2cac5d7f2d4e0e157678451c5ac

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Binary packages built by this source

librheolef-dev: No summary available for librheolef-dev in ubuntu cosmic.

No description available for librheolef-dev in ubuntu cosmic.

librheolef1: efficient Finite Element environment - shared library

 Rheolef is a computer environment that serves as a convenient laboratory for
 computations in applied mathematics involving finite element-like methods.
 It provides a set of commands and C++ algorithms and containers.
 .
 Most basically, containers cover the classic graph data structure for sparse
 matrix formats and finite element meshes. At a higher level of abstraction,
 they can handle approximate finite element spaces, discrete fields.
 Flexible and powerful expressions are used to specify bilinear forms.
 .
 Current applications include:
  * massively distributed memory finite element environment, based on MPI;
  * elasticity, Stokes and Navier-Stokes problems in 2D and 3D;
  * complex fluids applications: viscoplasticity, viscoelasticity, wall slip;
  * nonlinear problems with fixed-point, Newton and continuation methods;
  * high order polynomials, mixed elements and discontinuous Galerkin methods;
  * auto-adaptive mesh approaches;
  * axisymmetric problems;
  * multi-regions and variable coefficient problems.
 .
 This package provides the shared library.

librheolef1-dbgsym: debug symbols for librheolef1
rheolef: efficient Finite Element environment

 Rheolef is a computer environment that serves as a convenient laboratory for
 computations in applied mathematics involving finite element-like methods.
 It provides a set of commands and C++ algorithms and containers.
 .
 Most basically, containers cover the classic graph data structure for sparse
 matrix formats and finite element meshes. At a higher level of abstraction,
 they can handle approximate finite element spaces, discrete fields.
 Flexible and powerful expressions are used to specify bilinear forms.
 .
 Current applications include:
  * massively distributed memory finite element environment, based on MPI;
  * elasticity, Stokes and Navier-Stokes problems in 2D and 3D;
  * complex fluids applications: viscoplasticity, viscoelasticity, wall slip;
  * nonlinear problems with fixed-point, Newton and continuation methods;
  * high order polynomials, mixed elements and discontinuous Galerkin methods;
  * auto-adaptive mesh approaches;
  * axisymmetric problems;
  * multi-regions and variable coefficient problems.
 .
 This package provides the rheolef commands. These support input and
 output in various file formats for mesh-generators and numerical data
 visualization systems such as MayaVi, Paraview, and gnuplot.

rheolef-dbgsym: debug symbols for rheolef
rheolef-doc: efficient Finite Element environment - documentation

 Rheolef is a computer environment that serves as a convenient laboratory for
 computations in applied mathematics involving finite element-like methods.
 It provides a set of commands and C++ algorithms and containers.
 .
 Most basically, containers cover the classic graph data structure for sparse
 matrix formats and finite element meshes. At a higher level of abstraction,
 they can handle approximate finite element spaces, discrete fields.
 Flexible and powerful expressions are used to specify bilinear forms.
 .
 Current applications include:
  * massively distributed memory finite element environment, based on MPI;
  * elasticity, Stokes and Navier-Stokes problems in 2D and 3D;
  * complex fluids applications: viscoplasticity, viscoelasticity, wall slip;
  * nonlinear problems with fixed-point, Newton and continuation methods;
  * high order polynomials, mixed elements and discontinuous Galerkin methods;
  * auto-adaptive mesh approaches;
  * axisymmetric problems;
  * multi-regions and variable coefficient problems.
 .
 This package provides the documentation.