nixpkgs/pkgs/development/libraries/science/math/rubiks/default.nix
George Huebner 4d7959506e
rubiks: fix clang build
Adds newer patches upstreamed from Fedora into Sage; CRLF endings in the
`dietz` solver require `dos2unix` to apply the patches properly.
Frankly, I have no idea how this previously compiled on gcc.
2024-03-21 19:34:00 -05:00

113 lines
4.4 KiB
Nix

{ lib, stdenv
, fetchurl
, fetchpatch
, coreutils
, dos2unix
}:
stdenv.mkDerivation rec {
pname = "rubiks";
version = "20070912";
src = fetchurl {
url = "mirror://sageupstream/rubiks/rubiks-${version}.tar.bz2";
sha256 = "0zdmkb0j1kyspdpsszzb2k3279xij79jkx0dxd9f3ix1yyyg3yfq";
};
preConfigure = ''
export INSTALL="${coreutils}/bin/install"
'';
# everything is done in `make install`
buildPhase = "true";
installFlags = [
"PREFIX=$(out)"
];
nativeBuildInputs = [ dos2unix ];
prePatch = ''
find ./dietz/ -type f -exec dos2unix {} \;
'';
patches = [
# Fix makefiles which use all the variables in all the wrong ways and
# hardcode values for some variables.
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/dietz-cu2-Makefile.patch";
sha256 = "bRU7MJ/6BgCp2PUqZOragJhm38Q3E8ShStXQIYwIjvw=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/dietz-mcube-Makefile.patch";
sha256 = "f53z4DogXKax1vUNkraOTt3TQ4bvT7CdQK/hOaaBS38=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/dietz-solver-Makefile.patch";
sha256 = "7gMC8y9elyIy2KvXYcp7YjPBNqn9PVhUle+/GrYAAdE=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/reid-Makefile.patch";
sha256 = "rp3SYtx02vVBtSlg1vJpdIoXNcdBNKDLCLqLAKwOYeQ=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/fedora-1-rubiks-includes.patch";
sha256 = "QYJ1KQ73HTEGY/beMVbcU215g/B8rHDjYD1YM2WZ7sk=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/fedora-2-rubiks-ansi-c.patch";
sha256 = "Rnu7uphE9URxnbg2K8mkymnB61magweH+WxVWR9JC4s=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/fedora-3-rubiks-prototypes.patch";
sha256 = "Wi038g+y7No1TNMiITtAdipjRi0+g6h0Sspslm5rZGU=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/fedora-4-rubiks-longtype.patch";
sha256 = "6pNuxFM69CZ/TQGZfHXLlCN5g5lf3RiYYZKzMvLJwkw=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/fedora-5-rubiks-signed.patch";
sha256 = "CCGXBMYvSjTm4YKQZAQMi6pWGjyHDYYQzdMZDSW2vFE=";
})
(fetchpatch {
url = "https://raw.githubusercontent.com/sagemath/sage/2a9a4267f93588cf33119cbacc032ed9acc433e5/build/pkgs/rubiks/patches/fedora-6-rubiks-attributes.patch";
sha256 = "RhlzMb33iaLfeBoF7Y0LIgEzOB/EC+AoWMSkRPCICaU=";
})
];
meta = with lib; {
homepage = "https://wiki.sagemath.org/spkg/rubiks";
description = "Several programs for working with Rubik's cubes";
# The individual websites are no longer available
longDescription = ''
There are several programs for working with Rubik's cubes, by three
different people. Look inside the directories under /src to see
specific info and licensing. In summary the three contributers are:
Michael Reid (GPL) http://www.math.ucf.edu/~reid/Rubik/optimal_solver.html
optimal - uses many pre-computed tables to find an optimal
solution to the 3x3x3 Rubik's cube
Dik T. Winter (MIT License)
cube - uses Kociemba's algorithm to iteratively find a short
solution to the 3x3x3 Rubik's cube
size222 - solves a 2x2x2 Rubik's cube
Eric Dietz (GPL) http://www.wrongway.org/?rubiksource
cu2 - A fast, non-optimal 2x2x2 solver
cubex - A fast, non-optimal 3x3x3 solver
mcube - A fast, non-optimal 4x4x4 solver
'';
license = with licenses; [
gpl2 # Michael Reid's and Eric Dietz software
mit # Dik T. Winter's software
];
maintainers = teams.sage.members;
platforms = platforms.unix;
};
}