[info=c3db66ffc5c33630ecce82a61f3ba387417b115ca3a3e4b6358e73223dc1d261]

OBS-URL: https://build.opensuse.org/package/show/science/normaliz?expand=0&rev=63
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## Default LFS
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.osc

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mtime: 1717076013
commit: c3db66ffc5c33630ecce82a61f3ba387417b115ca3a3e4b6358e73223dc1d261
url: https://src.opensuse.org/jengelh/normaliz
revision: master

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-------------------------------------------------------------------
Wed May 29 19:00:09 UTC 2024 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.10.3
* Computation goals for SingleFusionRing and ModularGradings.
* Implement algorithmic variant UseModularGrading.
-------------------------------------------------------------------
Fri Mar 1 12:13:49 UTC 2024 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.10.2
* Special input types and computation goals for fusion rings
* Refined management of computations on an HPC for the patching
version of project-and-lift algorithm for lattice points
(used for fusion rings)
* Processing of lists of input files
* Orbit versions of (dual) face lattice and f-vector
* Full implementation of SingleLatticePoint
- Delete 0001-Add-FLINT-3-support.patch (fixed upstream)
-------------------------------------------------------------------
Sat Dec 23 13:42:28 UTC 2023 - Jan Engelhardt <jengelh@inai.de>
- Add 0001-Add-FLINT-3-support.patch
-------------------------------------------------------------------
Wed Jun 28 11:59:11 UTC 2023 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.10.1
* Improved the patching variant of the project-and-lift
algorithm for lattice points in polytopes.
-------------------------------------------------------------------
Tue Jan 31 11:03:14 UTC 2023 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.10.0
* This release adds general affine monoids and binomial ideals
to Normaliz. In particular, it computes:
* minimal systems of generators (Hilbert bases) of affine monoids
* Hilbert series of affine monoids
* singular loci of affine monoid algebras
* Markov and Gröbner bases of lattice ideals
* affine monoids from binomial ideals
-------------------------------------------------------------------
Wed Dec 21 00:20:12 UTC 2022 - Jan Engelhardt <jengelh@inai.de>
- normaliz-devel needs e-antic-devel for headers.
-------------------------------------------------------------------
Thu Aug 25 15:09:46 UTC 2022 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.9.4
* New: A variant of project-and-lift for "positive systems",
i.e. diophantine linear systems whose solutions are
nonnegative and for which Normaliz can derive upper bounds
for all coordinates directly from the input inequalities and
equations.
* Lattice points in polytopes can be constrained by polynomial
equations and inequalities.
-------------------------------------------------------------------
Wed Apr 20 09:34:45 UTC 2022 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.9.3
* Build system updates
* New reference manual, NmzShortRef.pdf
- Ship documentation.
-------------------------------------------------------------------
Mon Feb 7 15:02:49 UTC 2022 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.9.2
* It is now possible to construct a cone in libnormaliz or
PyNormaliz from an input file, and input files now allow the
definition of sparse vectors with ranges of indices.
-------------------------------------------------------------------
Wed Sep 1 14:58:34 UTC 2021 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.9.1
* This simplifies the handling of distributed computations in
connection with volume by signed decomposition. There are a
few other improvements.
-------------------------------------------------------------------
Fri Jul 2 21:41:53 UTC 2021 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.9.0
* Normaliz now uses e-antic for algebraic polyhedra.
* Added the Lawrence algorithm for polytope volumes by signed
decomposition into simplices.
* The descent algorithm for volumes now has a variant exploiting
isomorphisms of faces.
-------------------------------------------------------------------
Thu Feb 11 15:26:52 UTC 2021 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.10
* New data structure for the return of triangulations and other
decompositions by libnormaliz.
-------------------------------------------------------------------
Fri Oct 2 11:20:40 UTC 2020 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.9
* New extensions:
* Input types rational_lattice and rational_offset. They allow
to choose an arbitrary sublattice of the rational space as
the lattice of reference.
* Computation goal IsEmptySemiOpen. It allows to check the
emptyness of semiopen polyhedra defined by inequalities
and strict inequalities.
* Computation goals DualFaceLattice, DualFVector, DualIncidence
computing the face lattice etc. for the dual cone.
* Computation goal TriangulationGenerators: it replaces
unstable Generators, and the name says explicitly for what it
is meant.
-------------------------------------------------------------------
Tue Sep 1 06:57:22 UTC 2020 - Jan Engelhardt <jengelh@inai.de>
- Enable flint integration
-------------------------------------------------------------------
Sat Aug 29 20:49:17 UTC 2020 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.8
* No user-visible changes; a build fix for Debian packaging.
-------------------------------------------------------------------
Fri Jul 31 13:42:23 UTC 2020 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.7
* It is now possible to check the emptyness of semiopen
polyhedra via the new computation goal IsEmptySemiopen. The
'"open faces" are defined by excluded_faces and
inhom_excluded_faces.
-------------------------------------------------------------------
Fri Jun 5 14:20:27 UTC 2020 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.5
* New feature: computation of refined triangulations using all
input generators or all lattice points in a polytope or being
unimodular.
-------------------------------------------------------------------
Fri Feb 14 13:58:07 UTC 2020 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.4
* Use of precomputed data newly designed.
* New versions of CoCoALib and nauty integrated.
-------------------------------------------------------------------
Tue Nov 26 11:18:43 UTC 2019 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.3
* Technical realease that fixes an incompatibility between
libnormaliz and PyNormaliz in version 3.8.2.
-------------------------------------------------------------------
Sun Nov 24 16:21:26 UTC 2019 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.2
* Some improvement in convex hull computation for algebraic
polytopes.
* Code cleaned up and formatted; also in the installation files.
-------------------------------------------------------------------
Sun Sep 29 14:42:32 UTC 2019 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.1
* This release fixes the codimension bug of 3.8.0.
-------------------------------------------------------------------
Tue Sep 10 08:31:45 UTC 2019 - Jan Engelhardt <jengelh@inai.de>
- Update to release 3.8.0
* This release adds the computation of automorphism groups to
Normaliz. Various types of automorphism groups can be
computed: combinatorial, rational/algebraic, integral and
euclidean. It is not yet possible to use the automorphism
groups in the computation of other invariants, which is the
main reason for their introduction.
- Remove 0001-Fix-a-bunch-of-compiler-warnings-and-two-actual-bugs.patch,
headerfile.patch
-------------------------------------------------------------------
Mon Aug 26 05:13:03 UTC 2019 - Jan Engelhardt <jengelh@inai.de>
- Add headerfile.patch to provide normaliz/output.h.
-------------------------------------------------------------------
Sat Aug 24 18:18:50 UTC 2019 - Jan Engelhardt <jengelh@inai.de>
- Update to new upstream release 3.7.4
* Algebraic polyhedra: these can now be computed directly in
Normaliz so that QNormaliz has become obsolete.
* Face lattice and f-vector can now be computed by Normaliz.
* NumberLatticePoints is a new computation goal that lets
Normaliz count lattice points in polytopes without storing
them.
* Added the computation goals Dynamic and Static and the
libnormaliz function modifyCone.
- Add 0001-Fix-a-bunch-of-compiler-warnings-and-two-actual-bugs.patch
-------------------------------------------------------------------
Mon Oct 22 13:56:08 UTC 2018 - badshah400@gmail.com
- Update to version 3.6.3:
* Fix configure.ac that caused building issues.
- Update to version 3.6.2:
* Fix problems with certain borderline input, like empty
polytopes or polytopes of embedding dimension 0.
-------------------------------------------------------------------
Wed Jul 18 07:23:34 UTC 2018 - badshah400@gmail.com
- Update to version 3.6.1:
* Introduction of NoGradingDenom and better treatment of
polytopes.
* Refinements in the computation of volumes.
-------------------------------------------------------------------
Sat Jun 9 13:33:58 UTC 2018 - badshah400@gmail.com
- Update to version 3.6.0:
* Includes QNormaliz as a tool for algebraic polyhedra and its
Python interface PyQNormaliz.
* The install scripts have been revised thoroughly.
-------------------------------------------------------------------
Mon Apr 30 20:27:12 UTC 2018 - badshah400@gmail.com
- Update to version 3.5.4:
* Make computations that so far required homogeneous input
available to all polytopes, regardless of the input type:
Ehrhart series, triangulations, cone decomposition, Stanley
decomposition.
- Changes from version 3.5.3:
* Performance improvements.
* Bug fixes.
- Changes from version 3.5.2:
* Introduce a new algorithm for volume computations by descent
in the face lattice.
* Bug fixes.
- Use %%license to package COPYING file, instead of %%doc.
-------------------------------------------------------------------
Tue Jan 9 15:57:34 UTC 2018 - badshah400@gmail.com
- Update to version 3.5.1:
* Uniqueness in output of not uniqely determined results (bases
of sublattices, equations), necessary to make all tests yield
the same results on all.
systems
- Drop 0001-Fix-compiler-warnings-in-matrix.cpp.patch:
incorporated upstream.
-------------------------------------------------------------------
Mon Dec 25 13:13:38 UTC 2017 - jengelh@inai.de
- Update to new upstream release 3.5.0
* Euclidean volume of polytopes
* Expansion of series
* Projection of cones and polyhedra
* LLL reduced coordinates for project-and-lift
- Add 0001-Fix-compiler-warnings-in-matrix.cpp.patch
-------------------------------------------------------------------
Wed Nov 22 09:25:13 UTC 2017 - badshah400@gmail.com
- Update to version 3.4.1:
* Miscellaneous bug fixes.
-------------------------------------------------------------------
Wed Sep 27 08:41:20 UTC 2017 - jengelh@inai.de
- Let normaliz-devel require boost-devel because its
header files do.
-------------------------------------------------------------------
Mon Sep 25 15:02:18 UTC 2017 - jengelh@inai.de
- Drop unusual Require on gap-core (copy&paste error?)
-------------------------------------------------------------------
Sat Aug 26 15:16:45 UTC 2017 - badshah400@gmail.com
- Update to version 3.4.0:
* New project-and-lift algorithm, also in a floating point
variant.
* Improved subdivision of large simplicial cones, equivalent own
replacement of Scip.
* Floating point input (and, partly, output).
* Fast Gorenstein test.
* Restriction of number of significant coefficients of
quasipolynomial.
-------------------------------------------------------------------
Sun Jul 9 12:26:22 UTC 2017 - badshah400@gmail.com
- Update to new upstream release 3.3.0:
* Inclusion of NmzIntegrate in libnormaliz
* Rational numbers in input
* Improvement of polynomial arithmetic
* Controlled interruption
-------------------------------------------------------------------
Thu Mar 23 15:49:31 UTC 2017 - jengelh@inai.de
- Update to new upstream release 3.2.1
* Automatic choice of symmetrization
* better use of HSOP option via libnormaliz
-------------------------------------------------------------------
Tue Feb 21 00:23:26 UTC 2017 - jengelh@inai.de
- Update to new upstream release 3.2.0
* Constriants in symbolic format
* A better implementation of Approximate and its use in the
inhomogeneous case
* Option for Symmetrize that produces symmetrized input for and
runs nmzIntegrate and runs on it
* QNormaliz, a version of Normaliz using coordinates in an
extension of the rational numbers (estricted to convex hull
computations and triangulation)
* Further automatic choices of algorithmic variants
-------------------------------------------------------------------
Wed Jun 8 09:45:59 UTC 2016 - jengelh@inai.de
- Update to new upstream release 3.1.1
* support for nonpointed cones / input of subspace
* new computation goals: IsIntegrallyClosed and
WitnessNotIntegrallyClosed
* new computation goal: IntegerHull
* new computation goal: ConeDecomposition
-------------------------------------------------------------------
Sat Mar 12 18:51:04 UTC 2016 - jengelh@inai.de
- Initial package (version 3.1.0) for build.opensuse.org

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#
# spec file for package normaliz
#
# Copyright (c) 2024 SUSE LLC
#
# All modifications and additions to the file contributed by third parties
# remain the property of their copyright owners, unless otherwise agreed
# upon. The license for this file, and modifications and additions to the
# file, is the same license as for the pristine package itself (unless the
# license for the pristine package is not an Open Source License, in which
# case the license is the MIT License). An "Open Source License" is a
# license that conforms to the Open Source Definition (Version 1.9)
# published by the Open Source Initiative.
# Please submit bugfixes or comments via https://bugs.opensuse.org/
#
Name: normaliz
%define lname libnormaliz3
Version: 3.10.3
Release: 0
Summary: Tools for computations in affine monoids and rational cones
License: GPL-3.0-or-later
Group: Productivity/Scientific/Math
URL: https://www.normaliz.uni-osnabrueck.de/
Source: https://github.com/Normaliz/Normaliz/releases/download/v%version/%name-%version.tar.gz
BuildRequires: e-antic-devel >= 1.0.1
BuildRequires: flint-devel
BuildRequires: gcc-c++
BuildRequires: gmp-devel
BuildRequires: libtool
BuildRequires: mpfr-devel
%description
Normaliz is a tool for computations in affine monoids, vector configurations,
lattice polytopes, and rational cones. It supports,
* convex hulls and dual cones
* conversion from generators to constraints and vice versa
* triangulations, disjoint decompositions and Stanley decompositions
* Hilbert basis of rational, not necessarily pointed cones
* normalization of affine monoids
* lattice points of rational polytopes and (unbounded) polyhedra
* Hilbert (or Ehrhart) series and (quasi) polynomials under
Z-gradings (for example, for rational polytopes)
* generalized (or weighted) Ehrhart series and Lebesgue integrals of
polynomials over rational polytopes via NmzIntegrate
%package -n %lname
Summary: C++ API for Normaliz, a tool for computation of rotational cones
Group: System/Libraries
%description -n %lname
Normaliz is a tool for computations in affine monoids, vector configurations,
lattice polytopes, and rational cones.
Normaliz offers an API, libnormaliz, that allows the user to access
the Normaliz computations from C++ programs.
%package devel
Summary: Development files for Normaliz, a tool for computation of rotational cones
Group: Development/Libraries/C and C++
Requires: %lname = %version
Requires: e-antic-devel
Requires: gmp-devel
%description devel
Normaliz is a tool for computations in affine monoids, vector configurations,
lattice polytopes, and rational cones.
Normaliz offers an API, libnormaliz, that allows the user to access
the Normaliz computations from C++ programs.
%prep
%autosetup -p1
%build
autoreconf -fi
%configure --disable-static
%make_build
%install
%make_install
rm -f "%buildroot/%_libdir"/*.la
%post -n %lname -p /sbin/ldconfig
%postun -n %lname -p /sbin/ldconfig
%files
%_bindir/normaliz
%license COPYING
%doc doc/*.pdf
%files -n %lname
%_libdir/libnormaliz.so.3*
%files devel
%_includedir/libnormaliz/
%_libdir/libnormaliz.so
%changelog